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Role of transforming growth factor-βin peripheral nerve regeneration
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作者 Zihan Ding Maorong Jiang +4 位作者 Jiaxi Qian Dandan Gu Huiyuan Bai Min Cai Dengbing Yao 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第2期380-386,共7页
Injuries caused by trauma and neurodegenerative diseases can damage the peripheral nervous system and cause functional deficits.Unlike in the central nervous system,damaged axons in peripheral nerves can be induced to... Injuries caused by trauma and neurodegenerative diseases can damage the peripheral nervous system and cause functional deficits.Unlike in the central nervous system,damaged axons in peripheral nerves can be induced to regenerate in response to intrinsic cues after reprogramming or in a growth-promoting microenvironment created by Schwann cells.However,axon regeneration and repair do not automatically result in the restoration of function,which is the ultimate therapeutic goal but also a major clinical challenge.Transforming growth factor(TGF)is a multifunctional cytokine that regulates various biological processes including tissue repair,embryo development,and cell growth and differentiation.There is accumulating evidence that TGF-βfamily proteins participate in peripheral nerve repair through various factors and signaling pathways by regulating the growth and transformation of Schwann cells;recruiting specific immune cells;controlling the permeability of the blood-nerve barrier,thereby stimulating axon growth;and inhibiting remyelination of regenerated axons.TGF-βhas been applied to the treatment of peripheral nerve injury in animal models.In this context,we review the functions of TGF-βin peripheral nerve regeneration and potential clinical applications. 展开更多
关键词 MYELINATION nerve repair and regeneration NEURITE NEUROINFLAMMATION peripheral nerve injury Schwann cell transforming growth factor-β Wallerian degeneration
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Hsa_circRNA_102610 upregulation in Crohn’s disease promotes transforming growth factor-β1-induced epithelial-mesenchymal transition via sponging of hsa-miR-130a-3p 被引量:2
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作者 Juan Yin Yu-Lan Ye +7 位作者 Tong Hu Li-Juan Xu Li-Ping Zhang Ru-Ning Ji Ping Li Qian Chen Jian-Yun Zhu Zhi Pang 《World Journal of Gastroenterology》 SCIE CAS 2020年第22期3034-3055,共22页
BACKGROUND The incidence of inflammatory bowel disease,a chronic intestinal inflammatory disorder that includes Crohn’s disease(CD)and ulcerative colitis,is rising.Circular RNAs are considered valuable diagnostic bio... BACKGROUND The incidence of inflammatory bowel disease,a chronic intestinal inflammatory disorder that includes Crohn’s disease(CD)and ulcerative colitis,is rising.Circular RNAs are considered valuable diagnostic biomarkers for CD.Current evidence supports the views that epithelial-mesenchymal transition(EMT)plays an important role in CD pathogenesis,and that hsa-miR-130a-3p can inhibit transforming growth factor-β1(TGF-β1)-induced EMT.Our previous study revealed that hsa_circRNA_102610 was upregulated in CD patients.Moreover,we predicted an interaction between hsa_circRNA_102610 and hsa-miR-130a-3p.Thus,we hypothesized that hsa_circRNA_102610 may play roles in the proliferation and EMT of intestinal epithelial cells by sponging hsa-miR-130a-3p to participate in the pathogenesis of CD.AIM To explore the mechanism of hsa_circRNA_102610 in the pathogenesis of CD.METHODS The relative expression levels of hsa_circRNA_102610 and hsa-miR-130a-3p in patients were detected by quantitative reverse transcription-polymerase chain reaction.The proliferation of human intestinal epithelial cells(HIECs)and normal-derived colon mucosa cell line 460(NCM460)cells was detected by cell counting kit-8,5-ethynyl-2’-deoxyuridine staining and cell cycle assays following overexpression or downregulation of hsa_circRNA_102610.Cell proliferation assays were performed as described above in a rescue experiment with hsa-miR-130a-3p mimics.The interaction of hsa_circRNA_102610 and hsa-miR-130a-3p was verified by fluorescence in situ hybridization and dual luciferase reporter assays.The relative expression levels of CyclinD1,mothers against decapentaplegic homolog 4(SMAD4),E-cadherin,N-cadherin and Vimentin were detected by western blotting following hsa_circRNA_102610 overexpression,TGF-β1-induced EMT or hsa-miR-130a-3p mimic transfection(in rescue experiments).RESULTS Upregulation of hsa_circRNA_102610 was determined to be positively correlated with elevated fecal calprotectin levels in CD(r=0.359,P=0.007)by Pearson correlation analysis.Hsa_circRNA_102610 promoted the proliferation of HIECs and NCM460 cells,while hsa-miR-130a-3p reversed the cell proliferationpromoting effects of hsa_circRNA_102610.Fluorescence in situ hybridization and dual luciferase reporter assays showed that hsa_circRNA_102610 directly bound hsa-miR-130a-3p in NCM460 and 293T cells.An inverse correlation between downregulation of hsa-miR-130a-3p and upregulation of hsa_circRNA_102610 in CD patients was observed(r=-0.290,P=0.024)by Pearson correlation analysis.Moreover,overexpression of hsa_circRNA_102610 promoted SMAD4 and CyclinD1 protein expression validated by western-blotting.Furthermore,overexpression of hsa_circRNA_102610 promoted TGF-β1 induced EMT in HIECs and NCM460 cells via targeting of hsa-miR-130a-3p,with increased expression of Vimentin and N-cadherin and decreased expression of E-cadherin.CONCLUSION Hsa_circRNA_102610 upregulation in CD patients could promote the proliferation and EMT of intestinal epithelial cells via sponging of hsa-miR-130a-3p. 展开更多
关键词 Hsa_circRNA_102610 Hsa-miR-130a-3p Epithelial-mesenchymal transition Crohn’s disease Mothers against decapentaplegic homolog 4 transforming growth factor-β1
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Regulatory role of the transforming growth factor-β signaling pathway in the drug resistance of gastrointestinal cancers 被引量:2
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作者 Xiaoqun Lv Guoxiong Xu 《World Journal of Gastrointestinal Oncology》 SCIE 2021年第11期1648-1667,共20页
Gastrointestinal(GI)cancer,including esophageal,gastric,and colorectal cancer,is one of the most prevalent types of malignant carcinoma and the leading cause of cancer-related deaths.Despite significant advances in th... Gastrointestinal(GI)cancer,including esophageal,gastric,and colorectal cancer,is one of the most prevalent types of malignant carcinoma and the leading cause of cancer-related deaths.Despite significant advances in therapeutic strategies for GI cancers in recent decades,drug resistance with various mechanisms remains the prevailing cause of therapy failure in GI cancers.Accumulating evidence has demonstrated that the transforming growth factor(TGF)-βsignaling pathway has crucial,complex roles in many cellular functions related to drug resistance.This review summarizes current knowledge regarding the role of the TGF-βsignaling pathway in the resistance of GI cancers to conventional chemotherapy,targeted therapy,immunotherapy,and traditional medicine.Various processes,including epithelial-mesenchymal transition,cancer stem cell development,tumor microenvironment alteration,and microRNA biogenesis,are proposed as the main mechanisms of TGF-β-mediated drug resistance in GI cancers.Several studies have already indicated the benefit of combining antitumor drugs with agents that suppress the TGF-βsignaling pathway,but this approach needs to be verified in additional clinical studies.Moreover,the identification of potential biological markers that can be used to predict the response to TGF-βsignaling pathway inhibitors during anticancer treatments will have important clinical implications in the future. 展开更多
关键词 Drug resistance Gastrointestinal cancer transforming growth factor-β Epithelial-mesenchymal transition Cancer stem cells MICRORNAS
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Cross-talk between microRNA-let7c and transforming growth factor-β2 during epithelial-to-mesenchymal transition of retinal pigment epithelial cells 被引量:2
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作者 Qu-Zhen Deji Feng Yan +3 位作者 Wang-Dui Zhaba Ya-Jun Liu Jie Yin Zhen-Ping Huang 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2020年第5期693-700,共8页
AIM: To explore the roles of microRNA-let7 c(miR-let7 c) and transforming growth factor-β2(TGF-β2) and cellular signaling during epithelial-to-mesenchymal transition(EMT) of retinal pigment epithelial cells. METHODS... AIM: To explore the roles of microRNA-let7 c(miR-let7 c) and transforming growth factor-β2(TGF-β2) and cellular signaling during epithelial-to-mesenchymal transition(EMT) of retinal pigment epithelial cells. METHODS: Retinal pigment epithelial(ARPE-19) cells were cultured with no serum for 12 h, and then with recombinant human TGF-β2 for different lengths of time. ARPE-19 cells were transfected with 1×106 TU/mL miR-let7 c mimcs(miR-let7 cM), miR-let7 c mimcs negative control(miR-let7cMNC) and miR-let7 c inhibitor(miR-let7 cI) using the transfection reagent. The expression of keratin-18, vimentin, N-cadherin, IKB alpha, p65 were detected by Western blot, quantitative polymerase chain reaction and immunofluorescence. RESULTS: The expression of miR-let7c was dramatically reduced and the nuclear factor-kappa B(NF-κB) signaling pathway was activated after induction by TGF-β2(P<0.05). In turn, overexpressed miR-let7 c significantly inhibited TGF-β2-induced EMT(P<0.05). However, miR-let7 c was unable to inhibit TGF-β2-induced EMT when the NF-κB signaling pathway was inhibited by BAY11-7082(P<0.01). CONCLUSION: The miR-let7 c regulates TGF-β2-induced EMT through the NF-κB signaling pathway in ARPE-19 cells. 展开更多
关键词 microRNA-let7c transforming growth factor-β2 epithelial-to-mesenchymal transition human retinal pigment epithelial cells nuclear factor-kappa B pathway
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Alendronate disturbs femoral growth due to changes during immunolocalization of transforming growth factor-β1 and bone morphogenetic protein-2 in epiphyseal plate 被引量:1
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作者 Juliana Souza Vieira Emanuelle Juliana Cunha +3 位作者 Juliana Feltrin de Souza Luis Henrique Koeler Chaves Jessica Lakes de Souza Allan Fernando Giovanini 《World Journal of Experimental Medicine》 2020年第1期1-9,共9页
BACKGROUND The epiphyseal growth plate is an important anatomical segment localized on the ends of a long bone.Despite the abovementioned atractive reasons for alendronate’s use,few data on the effect of alendronate ... BACKGROUND The epiphyseal growth plate is an important anatomical segment localized on the ends of a long bone.Despite the abovementioned atractive reasons for alendronate’s use,few data on the effect of alendronate during epiphyseal growth exist.AIM Verify the effect of alendronate on the growth epiphyseal plate,and compare its effect with the size of the femur during the double-staining of the immunolocalization of transforming growth factor-β1(TGF-β1)and bone morphogenetic protein-2(BMP2)in endochondral ossifing in specimens that have received alendronate.METHODS Forty newborn rats were randomly divided into two groups:a control group(were given applications of 1 mg/kg physiologic saline)and a group that received Alendronate(a dose of 2.5 mg/kg).These groups were then divided into two subgroups for euthanasia in two and 12 d of life.After euthanasia,the femurs were removed,and the femoral bones were measured linearly between the apex of the greater trochanter until the lower intercondylar midlle face to verify the probable bone growth between 3 and 12 d in control and alednroanto treated rats.Posteriorly,the surgical pieces were also sent to the histopathology laboratory to produce histological slides.The obtained slides were stained with hematoxylin and eosin to measure each of the cartilage zones in endochondral development.and other slides were immunohistochemically tested for anti-TGF-β1 and BMP-2 antibodies to investigate the immunolocalization of these proteins in the epiphyseal plaque area.RESULTS On the third day,some diferences between the control group and specimens treated with alendronate were verified.Macroscopiccaly,we found similarities in size between the femoral bones when we compared the control group with the specimens that received alendronate.On the 12^th day,the bone size of the mice receiving the drug was significantly smaller than those of the control group.These results coincide with changes in the TGF-β1 and BMP-2 expression.In the specimens that received alendronate,the TGF-β1 was expressed in some sites of trabecular bone that was neoformed,peripherally to the bone marrow area.The BMP-2 was also positive in proliferative chondrocytes and hypertrofic chondrocytes.On the 12^th day,all layers of chondrocytes exhibited positivity for BMP-2 in the specimens that received alendronate.In the interface between the trabecular bone and cartilage,an area of disorganized bone deposition was evident.Neoformed bone also appeared to be different at 12 d.In the control group,BMP-2 was positive in an intense area of bone trabeculae,whereas the alendronate-treated group showed TGF-β1 positive trabeculae and a greater bone area.CONCLUSION Alendronate alters the immunolocalization of TGF-β1 and BMP-2 simultaneously,a condition that changes the usual histological aspects of the cartilage zone and impairs epiphysis growth and femur growth. 展开更多
关键词 ALENDRONATE Bone development Epiphyseal plate Bone morphogentic protein-2 transforming growth factor-β1
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Spatial signalling mediated by the transforming growth factor-β signalling pathway during tooth formation
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作者 Xin-Yu He Ke Sun +7 位作者 Ruo-Shi Xu Jia-Li Tan Cai-Xia Pi Mian Wan Yi-Ran Peng Ling Ye Li-Wei Zheng Xue-Dong Zhou 《International Journal of Oral Science》 SCIE CAS CSCD 2016年第4期199-204,共6页
Tooth development relies on sequential and reciprocal interactions between the epithelial and mesenchymal tissues, and it is continuously regulated by a variety of conserved and specific temporal-spatial signalling pa... Tooth development relies on sequential and reciprocal interactions between the epithelial and mesenchymal tissues, and it is continuously regulated by a variety of conserved and specific temporal-spatial signalling pathways. It is well known that suspensions of tooth germ cells can form tooth-like structures after losing the positional information provided by the epithelial and mesenchymal tissues. However, the particular stage in which the tooth germ cells start to form tooth-like structures after losing their positional information remains unclear. In this study, we investigated the reassociation of tooth germ cells suspension from different morphological stages during tooth development and the phosphorylation of Smad2/3 in this process.Four tooth morphological stages were designed in this study. The results showed that tooth germ cells formed odontogenic tissue at embryonic day(E) 14.5, which is referred to as the cap stage, and they formed tooth-like structures at E16.5, which is referred to as the early bell stage, and E18.5, which is referred to as the late bell stage. Moreover, the transforming growth factor-β signalling pathway might play a role in this process. 展开更多
关键词 positional information transforming growth factor-β signalling pathway tooth development
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Effects of Lingguizhugan Decoction on α-SMA and collagen synthesis in rat myocardial fibroblasts induced by transforming growth factor-β_(1)
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作者 Rui-Rui Ge Xiang Wang +6 位作者 Tong-Juan Tang Liang Wang Meng-Ting Zhai Meng-Yu Zuo Jian Chen Peng Zhou Jin-Ling Huang 《Journal of Hainan Medical University》 2021年第10期19-24,共6页
Objective:To explore the protective effect of Linggui Zhugan Decoction(LGZGD)medicated serum on myocardial fibrosis induced by transforming growth factor-β1(TGF-β1).Methods:Using enzyme digestion method,combined wit... Objective:To explore the protective effect of Linggui Zhugan Decoction(LGZGD)medicated serum on myocardial fibrosis induced by transforming growth factor-β1(TGF-β1).Methods:Using enzyme digestion method,combined with differential adherence to isolate and culture Sprague-Dawley(SD)suckling mouse Cardiac fibroblasys(CFB)in vitro.Divided into:blank group,blank rat serum group,model group,and LGZGD medicated serum group(5%、10%、20%).Except for blank group and blank rat serum group,they were stimulated with 5 ng/ml TGF-β1 for 12 hours,and then then intervene with LGZGD medicated serum(5%、10%、20%)and continue to culture for 24 hours.Use immunofluorescence and Western blot(WB)to detect the expression ofα-smooth muscle actin(α-SMA),Enzyme-linked immunosorbent assay(ELISA)and WB to detect type Ⅰ collagen(Collagen Ⅰ),type Ⅰ collagen(Collagen Ⅲ)and fibronectin(FN)expression.Results:Compared with the blank group,the expressions of Collagen Ⅰ,Collagen Ⅲ,α-SMA and FN in the model group were significantly increased(P<0.01);Compared with the model group,the expressions of Collagen Ⅰ and Collagen Ⅲ in each concentration group of the experiment were significantly reduced(P<0.01);the expression ofα-SMA and FN were significantly reduced(P<0.01).Conclusions:LGZGD has an inhibitory effect on collagen synthesis and the expression ofα-SMA and FN,indicating that the anti-fibrosis effect of LGZGD is related to it. 展开更多
关键词 Lingguizhugan Decoction transforming growth factor-β_(1) Cardiac fibroblasys Myocardial fibrosis Α-SMA COLLAGEN FIBRONECTIN
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Huangqi Decoction,a compound Chinese herbal medicine,inhibits the proliferation and activation of hepatic stellate cells by regulating the long noncoding RNA-C18orf26-1/microRNA-663a/transforming growth factor-βaxis 被引量:4
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作者 Ben-sheng Dong Fu-qun Liu +5 位作者 Wen-na Yang Xiao-dong Li Miao-juan Shi Mao-rong Li Xiu-li Yan Hui Zhang 《Journal of Integrative Medicine》 SCIE CAS CSCD 2023年第1期47-61,共15页
Objective Huangqi Decoction(HQD),a classical traditional Chinese medicine formula,has been used as a valid treatment for alleviating liver fibrosis;however,the underlying molecular mechanism is still unknown.Although ... Objective Huangqi Decoction(HQD),a classical traditional Chinese medicine formula,has been used as a valid treatment for alleviating liver fibrosis;however,the underlying molecular mechanism is still unknown.Although our previous studies showed that microRNA-663a(miR-663a)suppresses the proliferation and activation of hepatic stellate cells(HSCs)and the transforming growth factor-β/small mothers against decapentaplegic(TGF-β/Smad)pathway,whether long noncoding RNAs(lncRNAs)are involved in HSC activation via the miR-663a/TGF-β/Smad signaling pathway has not yet reported.The present study aimed to investigate the roles of lncRNA lnc-C18orf26-1 in the activation of HSCs and the mechanism by which HQD inhibits hepatic fibrosis.Methods The expression levels of lnc-C18orf26-1,miR-663a and related genes were measured by quantitative reverse transcription-polymerase chain reaction.HSCs were transfected with the miR-663a mimic or inhibitor and lnc-C18orf26-1 small interfering RNAs.The water-soluble tetrazolium salt-1 assay was used to assess the proliferation rate of HSCs.Changes in lncRNA expression were evaluated in miR-663a-overexpressing HSCs by using microarray to identify miR-663a-regulated lncRNAs.RNA hybrid was used to predict the potential miR-663a binding sites on lncRNAs.Luciferase reporter assays further confirmed the interaction between miR-663a and the lncRNA.The expression levels of collagen α-2(I)chain(COL1A2),α-smooth muscle actin(α-SMA)and TGF-β/Smad signaling pathway-related proteins were determined using Western blotting.Results Lnc-C18orf26-1 was upregulated in TGF-β1-activated HSCs and competitively bound to miR-663a.Knockdown of lnc-C18orf26-1 inhibited HSC proliferation and activation,downregulated TGF-β1-stimulatedα-SMA and COL1A2 expression,and inhibited the TGF-β1/Smad signaling pathway.HQD suppressed the proliferation and activation of HSCs.HQD increased miR-663a expression and decreased lnc-C18orf26-1 expression in HSCs.Further studies showed that HQD inhibited the expression of COL1A2,α-SMA,TGF-β1,TGF-βtype I receptor(TGF-βRI)and phosphorylated Smad2(p-Smad2)in HSCs,and these effects were reversed by miR-663a inhibitor treatment.Conclusion Our study identified lnc-C18orf26-1 and miR-663a as promising therapeutic targets for hepatic fibrosis.HQD inhibits HSC proliferation and activation at least partially by regulating the lnc-C18orf26-1/miR-663a/TGF-β1/TGF-βRI/p-Smad2 axis. 展开更多
关键词 Longnoncoding RNA-C18orf26-1 MicroRNA-663a transforming growth factor-β Hepatic stellate cells Huangqi Decoction
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Transforming growth factor beta-1 upregulates glucose transporter 1 and glycolysis through canonical and noncanonical pathways in hepatic stellate cells 被引量:4
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作者 Ming-Yu Zhou Ming-Liang Cheng +8 位作者 Tao Huang Rui-Han Hu Gao-Liang Zou Hong Li Bao-Fang Zhang Juan-Juan Zhu Yong-Mei Liu Yang Liu Xue-Ke Zhao 《World Journal of Gastroenterology》 SCIE CAS 2021年第40期6908-6926,共19页
BACKGROUND Hepatic stellate cells(HSCs)are the key effector cells mediating the occurrence and development of liver fibrosis,while aerobic glycolysis is an important metabolic characteristic of HSC activation.Transfor... BACKGROUND Hepatic stellate cells(HSCs)are the key effector cells mediating the occurrence and development of liver fibrosis,while aerobic glycolysis is an important metabolic characteristic of HSC activation.Transforming growth factor-β1(TGF-β1)induces aerobic glycolysis and is a driving factor for metabolic reprogramming.The occurrence of glycolysis depends on a high glucose uptake level.Glucose transporter 1(GLUT1)is the most widely distributed glucose transporter in the body and mainly participates in the regulation of carbohydrate metabolism,thus affecting cell proliferation and growth.However,little is known about the relationship between TGF-β1 and GLUT1 in the process of liver fibrosis and the molecular mechanism underlying the promotion of aerobic glycolysis in HSCs.AIM To investigate the mechanisms of action of GLUT1,TGF-β1 and aerobic glycolysis in the process of HSC activation during liver fibrosis.METHODS Immunohistochemical staining and immunofluorescence assays were used to examine GLUT1 expression in fibrotic liver tissue.A Seahorse extracellular flux(XF)analyzer was used to examine changes in aerobic glycolytic flux,lactate production levels and glucose consumption levels in HSCs upon TGF-β1 stimulation.The mechanism by which TGF-β1 induces GLUT1 protein expression in HSCs was further explored by inhibiting/promoting the TGF-β1/mothersagainst-decapentaplegic-homolog 2/3(Smad2/3)signaling pathway and inhibiting the p38 and phosphoinositide 3-kinase(PI3K)/AKT signaling pathways.In addition,GLUT1 expression was silenced to observe changes in the growth and proliferation of HSCs.Finally,a GLUT1 inhibitor was used to verify the in vivo effects of GLUT1 on a mouse model of liver fibrosis.RESULTS GLUT1 protein expression was increased in both mouse and human fibrotic liver tissues.In addition,immunofluorescence staining revealed colocalization of GLUT1 and alpha-smooth muscle actin proteins,indicating that GLUT1 expression was related to the development of liver fibrosis.TGF-β1 caused an increase in aerobic glycolysis in HSCs and induced GLUT1 expression in HSCs by activating the Smad,p38 MAPK and P13K/AKT signaling pathways.The p38 MAPK and Smad pathways synergistically affected the induction of GLUT1 expression.GLUT1 inhibition eliminated the effect of TGF-β1 on HSC proliferation and migration.A GLUT1 inhibitor was administered in a mouse model of liver fibrosis,and GLUT1 inhibition reduced the degree of liver inflammation and liver fibrosis.CONCLUSION TGF-β1 induces GLUT1 expression in HSCs,a process related to liver fibrosis progression.In vitro experiments revealed that TGF-β1-induced GLUT1 expression might be one of the mechanisms mediating the metabolic reprogramming of HSCs.In addition,in vivo experiments also indicated that the GLUT1 protein promotes the occurrence and development of liver fibrosis. 展开更多
关键词 Gene regulation GLYCOLYSIS Liver fibrosis Glucose transporter 1 transforming growth factor-β1
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Growth factor-and cytokine-driven pathways governing liver stemness and differentiation 被引量:7
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作者 Aránzazu Sánchez Isabel Fabregat 《World Journal of Gastroenterology》 SCIE CAS CSCD 2010年第41期5148-5161,共14页
Liver is unique in its capacity to regenerate in response to injury or tissue loss. Hepatocytes and other liver cells are able to proliferate and repopulate the liver. However, when this response is impaired, the cont... Liver is unique in its capacity to regenerate in response to injury or tissue loss. Hepatocytes and other liver cells are able to proliferate and repopulate the liver. However, when this response is impaired, the contribution of hepatic progenitors becomes very relevant. Here, we present an update of recent studies on growth factors and cytokine-driven intracellular pathways that govern liver stem/pro-genitor cell expansion and differentiation, and the rel-evance of these signals in liver development, regeneration and carcinogenesis. Tyrosine kinase receptor signaling, in particular, c-Met, epidermal growth factor receptors or fibroblast growth factor receptors, contribute to prolifera-tion, survival and differentiation of liver stem/progenitor cells. Different evidence suggests a dual role for the trans-forming growth factor (TGF)-β signaling pathway in liver stemness and differentiation. On the one hand, TGF-βmediates progression of differentiation from a progenitor stage, but on the other hand, it contributes to the expan-sion of liver stem cells. Hedgehog family ligands are nec-essary to promote hepatoblast proliferation but need to be shut off to permit subsequent hepatoblast differentiation. In the same line, the Wnt family and β-catenin/T-cell fac-tor pathway is clearly involved in the maintenance of liver stemness phenotype, and its repression is necessary for liver differentiation during development. Collectively, data indicate that liver stem/progenitor cells follow their own rules and regulations. The same signals that are essential for their activation, expansion and differentiation are good candidates to contribute, under adequate conditions, to the paradigm of transformation from a pro-regenerative to a pro-tumorigenic role. From a clinical perspective, this is a fundamental issue for liver stem/progenitor cell-based therapies. 展开更多
关键词 Hepatocyte growth factor Epidermal growth factor Fibroblast growth factor transforming growth factor-β Hedgehog and β-catenin LIVER Stem cell
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Pathological and therapeutic effects of extracellular vesicles in neurological and neurodegenerative diseases
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作者 Paula lzquierdo-Altarejos Victoria Moreno-Manzano Vicente Felipo 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第1期55-61,共7页
Extracellular vesicles are released by all cell types and contain proteins,microRNAs,mRNAs,and other bioactive molecules.Extracellular vesicles play an important role in intercellular communication and in the modulati... Extracellular vesicles are released by all cell types and contain proteins,microRNAs,mRNAs,and other bioactive molecules.Extracellular vesicles play an important role in intercellular communication and in the modulation of the immune system and neuroinflammation.The cargo of extra cellular vesicles(e.g.,proteins and microRNAs)is altered in pathological situations.Extracellular vesicles contribute to the pathogenesis of many pathologies associated with sustained inflammation and neuroinflammation,including cance r,diabetes,hype rammonemia and hepatic encephalopathy,and other neurological and neurodegenerative diseases.Extracellular vesicles may cross the blood-brain barrier and transfer pathological signals from the periphery to the brain.This contributes to inducing neuroinflammation and cognitive and motor impairment in hyperammonemia and hepatic encephalopathy and in neurodegenerative diseases.The mechanisms involved are beginning to be unde rstood.For example,increased tumor necrosis factor a in extracellular vesicles from plasma of hype rammonemic rats induces neuroinflammation and motor impairment when injected into normal rats.Identifying the mechanisms by which extracellular vesicles contribute to the pathogenesis of these diseases will help to develop new treatments and diagnostic tools for their easy and early detection.In contrast,extra cellular vesicles from mesenchymal stem cells have therapeutic utility in many of the above pathologies,by reducing inflammation and neuroinflammation and improving cognitive and motor function.These extra cellular vesicles recapitulate the beneficial effects of mesenchymal stem cells and have advantages as therapeutic tools:they are less immunoge nic,may not diffe rentiate to malignant cells,cross the blood-brain barrier,and may reach more easily target organs.Extracellular vesicles from mesenchymal stem cells have beneficial effects in models of ischemic brain injury,Alzheimer's and Parkinson's diseases,hyperammonemia,and hepatic encephalopathy.Extracellular vesicles from mesenchymal stem cells modulate the immune system,promoting the shift from a pro-inflammato ry to an anti-inflammatory state.For example,extracellular vesicles from mesenchymal stem cells modulate the Th17/Treg balance,promoting the anti-inflammatory Treg.Extracellular vesicles from mesenchymal stem cells may also act directly in the brain to modulate microglia activation,promoting a shift from a pro-inflammatory to an anti-inflammatory state.This reduces neuroinflammation and improves cognitive and motor function.Two main components of extracellular vesicles from mesenchymal stem cells which contribute to these beneficial effects are transforming growth factor-βand miR-124.Identifying the mechanisms by which extracellular vesicles from mesenchymal stem cells induce the beneficial effects and the main molecules(e.g.,proteins and mRNAs)involved may help to improve their therapeutic utility.The aims of this review are to summarize the knowledge of the pathological effects of extracellular vesicles in different pathologies,the therapeutic potential of extra cellular vesicles from mesenchymal stem cells to recover cognitive and motor function and the molecular mechanisms for these beneficial effects on neurological function. 展开更多
关键词 extracellular vesicles INFLAMMATION cognitive function mesenchymal stem cells neurodegenerative diseases NEUROINFLAMMATION THERAPY transforming growth factor-β
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Prognostic significance and relationship of SMAD3 phosphoisoforms and VEGFR-1 in gastric cancer:A clinicopathological study
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作者 Shi-Lin Lv Pei Guo +3 位作者 Jun-Rong Zou Ren-Sheng Chen Ling-Yu Luo De-Qiang Huang 《World Journal of Gastrointestinal Oncology》 SCIE 2024年第1期118-132,共15页
BACKGROUND The TGF-β/SMAD3 and VEGFR-1 signaling pathways play important roles in gastric cancer metastasis.SMAD3 phosphorylation is a crucial prognostic marker in gastric cancer.AIM To determine the prognostic value... BACKGROUND The TGF-β/SMAD3 and VEGFR-1 signaling pathways play important roles in gastric cancer metastasis.SMAD3 phosphorylation is a crucial prognostic marker in gastric cancer.AIM To determine the prognostic value and relationship of SMAD3 phospho-isoforms and VEGFR-1 in gastric cancer.METHODS This was a single-center observational study which enrolled 98 gastric cancer patients and 82 adjacent normal gastric tissues from patients aged 32-84 years(median age 65)between July 2006 and April 2007.Patients were followed up until death or the study ended(median follow-up duration of 28.5 mo).The samples were used to generate tissue microarrays(TMAs)for immunohistochemical(IHC)staining.The expressions of TGF-β1,pSMAD3C(S423/425),pSMAD3L(S204),and VEGFR-1 in gastric cancer(GC)tumor tissue and normal tissue were measured by IHC staining using TMAs obtained from 98 GC patients.Prognosis and survival information of the patients was recorded by Outdo Biotech from May 2007 to July 2015.The relationship between TGF-β1,pSMAD3C(S423/425),pSMAD3L(S204),and VEGFR-1 protein expression levels was analyzed using Pearson's correlation coefficient.The relationship between protein expression levels and clinicopathological parameters was analyzed using the Chi-squared test.A survival curve was generated using the Kaplan-Meier survival analysis.RESULTS TGFβ-1 and VEGFR-1 expression was significantly upregulated in gastric cancer tissue compared to adjacent noncancerous tissue.The positive expression of phosphorylated isoforms of Smad3 varied depending on the phosphorylation site[pSMAD3C(S423/425):51.0%and pSMAD3L(S204):31.6%].High expression of pSMAD-3L(S204)was significantly correlated with larger tumors(P=0.038)and later N stages(P=0.035).Additionally,high expression of VEGFR-1 was closely correlated with tumor size(P=0.015)and pathological grading(P=0.013).High expression of both pSMAD3L(S204)and VEGFR-1 was associated with unfavorable outcomes in terms of overall survival(OS).Multivariate analysis indicated that high expression of pSMAD3L(S204)and VEGFR-1 were independent risk factors for prognosis in GC patients.VEGFR-1 protein expression was correlated with TGF-β1(r=0.220,P=0.029),pSMAD3C(S423/425)(r=0.302,P=0.002),and pSMAD3L(S204)(r=0.201,P=0.047),respectively.Simultaneous overexpression of pSMAD3L(S204)and VEGFR-1 was associated with poor OS in gastric cancer patients.CONCLUSION Co-upregulation of pSMAD3L(S204)and VEGFR-1 can serve as a predictive marker for poor gastric cancer prognosis,and pSMAD3L(204)may be involved in enhanced gastric cancer metastasis in a VEGFR-1-dependent manner. 展开更多
关键词 Gastric cancer pSMAD3L(S204) pSMAD3C(S423/425) SURVIVAL transforming growth factor-β1 VEGFR-1
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沙棘总黄酮干预兔耳增生性瘢痕组织块的消退 被引量:1
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作者 牛梓晗 余扬 +4 位作者 艾江 卜盼盼 李文博 苏日耶·热合曼 马少林 《中国组织工程研究》 CAS 北大核心 2023年第2期258-263,共6页
背景:沙棘总黄酮可抑制肾脏、肝脏、心肌纤维化,但其对增生性瘢痕纤维化的相关疗效鲜有报道。目的:对兔耳增生性瘢痕组织块局部注射中草药沙棘总黄酮,观察其对增生性瘢痕组织块消退的影响并探讨其作用机制。方法:选择8只新西兰大白兔,... 背景:沙棘总黄酮可抑制肾脏、肝脏、心肌纤维化,但其对增生性瘢痕纤维化的相关疗效鲜有报道。目的:对兔耳增生性瘢痕组织块局部注射中草药沙棘总黄酮,观察其对增生性瘢痕组织块消退的影响并探讨其作用机制。方法:选择8只新西兰大白兔,每只耳沿腹侧中线两侧各建立3个直径8 mm圆形创面,共96个创面。21 d创面上皮化后,随机分为5组:0.5,1.0,2.0 g/L沙棘总黄酮组,2只/组;二甲基亚砜组(药物溶剂对照)和空白对照组,1只/组。于组织块基底部注射相应药物,每间隔3 d注射1次,连续干预4周。通过苏木精-伊红染色和Masson染色对比各组增生性瘢痕组织块病理组织变化;实时荧光定量PCR检测各组组织块中Ⅰ、Ⅲ型胶原的mRNA表达;Western blot检测各组兔耳瘢痕组织块Ⅰ、Ⅲ型胶原、转化生长因子β1、α-平滑肌肌动蛋白、血管内皮生长因子的蛋白表达。结果与结论:①大体观察:不同质量浓度的沙棘总黄酮局部注射后瘢痕组织块明显软化、变平;②空白对照组大量炎性细胞浸润、血管生成、胶原纤维不规则排列;与空白对照组相比,各沙棘总黄酮组可见整齐的束状胶原纤维分布,新生血管较少,特别是2 g/L沙棘总黄酮组改善较为明显;不同质量浓度沙棘总黄酮组间瘢痕增生指数和胶原密度均低于空白对照组和二甲基亚砜组(P<0.05);③各沙棘总黄酮组和二甲基亚砜组瘢痕组织块的Ⅰ、Ⅲ型胶原mRNA表达水平均显著低于空白对照组,其中2 g/L沙棘总黄酮组的抑制作用最明显(P<0.05);④与空白对照组相比,二甲基亚砜一定程度上可以降低组织块中Ⅲ型胶原、转化生长因子β1、α-平滑肌肌动蛋白、血管内皮生长因子蛋白表达水平;但不同质量浓度沙棘总黄酮组均可明显抑制兔耳增生性瘢痕组织块Ⅰ、Ⅲ型胶原、转化生长因子β1、α-平滑肌肌动蛋白、血管内皮生长因子蛋白的表达水平,且呈剂量依赖性(P<0.05);⑤提示沙棘总黄酮可抑制瘢痕增生,使瘢痕组织块软化、变平,颜色变淡,降低兔耳增生性瘢痕组织块转化生长因子β1、Ⅰ、Ⅲ型胶原纤维的表达,抑制成纤维细胞向肌成纤维细胞转化,减少瘢痕组织内血管生成,从而达到治疗增生性瘢痕的作用。 展开更多
关键词 沙棘总黄酮 增生性瘢痕 胶原纤维 转化生长因子Β1 血管内皮生长因子缩略语:转化生长因子β1:transforming growth factor-β1 TGF-β1
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17β-estradiol inhibits TGF-β-induced collagen gel contraction mediated by human Tenon fibroblasts via Smads and MAPK signaling pathways 被引量:1
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作者 Cheng-Cheng Yang Meng-Jie Liu +5 位作者 Yun-Ze-Peng Li Zheng-Hua Xu Yang Liu Zi-Han Guo Bin-Hui Li Xiu-Xia Yang 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2023年第9期1441-1449,共9页
AIM:To investigate the impact of 17β-estradiol on the collagen gels contraction(CGC)and inflammation induced by transforming growth factor(TGF)-βin human Tenon fibroblasts(HTFs).METHODS:HTFs were three-dimensionally... AIM:To investigate the impact of 17β-estradiol on the collagen gels contraction(CGC)and inflammation induced by transforming growth factor(TGF)-βin human Tenon fibroblasts(HTFs).METHODS:HTFs were three-dimensionally cultivated in type I collagen-generated gels with or without TGF-β(5 ng/mL),17β-estradiol(12.5 to 100μmol/L),or progesterone(12.5 to 100μmol/L).Then,the collagen gel diameter was determined to assess the contraction,and the development of stress fibers was analyzed using immunofluorescence staining.Immunoblot and gelatin zymography assays were used to analyze matrix metalloproteinases(MMPs)and tissue inhibitors of metalloproteinases(TIMPs)being released into culture supernatants.Enzyme-linked immunosorbent assay(ELISA)and reverse transcription-quantitative polymerase chain reaction(RT-PCR)were used to detect interleukin(IL)-6,monocyte chemoattractant proteins(MCP)-1,and vascular endothelial growth factor(VEGF)in HTFs at the translational and transcriptional levels.The phosphorylation levels of Sma-and Mad-related proteins(Smads),mitogen-activated protein kinases(MAPKs),and protein kinase B(AKT)were measured by immunoblotting.Statistical analysis was performed using either the Tukey-Kramer test or Student’s unpaired t-test to compare the various treatments.RESULTS:The CGC caused by TGF-βin HTFs was significantly inhibited by 17β-estradiol(25 to 100μmol/L),and a statistically significant difference was observed when comparing the normal control group with 17β-estradiol concentrations exceeding 25μmol/L(P<0.05).The suppressive impact of 17β-estradiol became evident 24h after administration and peaked at 72h(P<0.05),whereas progesterone had no impact.Moreover,17β-estradiol attenuated the formation of stress fibers,and the production of MMP-3 and MMP-1 in HTFs stimulated by TGF-β.The expression of MCP-1,IL-6,and VEGF mRNA and protein in HTFs were suppressed by 100μmol/L 17β-estradiol(P<0.01).Additionally,the phosphorylation of Smad2 Smad3,p38,and extracellular signal-regulated kinase(ERK)were downregulated(P<0.01).CONCLUSION:17β-estradiol significantly inhibits the CGC and inflammation caused by TGF-βin HTFs.This inhibition is likely related to the suppression of stress fibers,inhibition of MMPs,and attenuation of Smads and MAPK(ERK and p38)signaling.17β-estradiol may have potential clinical benefits in preventing scar development and inflammation in the conjunctiva. 展开更多
关键词 Tenon fibroblasts transforming growth factor-β 17Β-ESTRADIOL FIBROSIS wound healing
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All-trans retinoic acid regulates the expression of MMP-2 and TGF-β2 via RDH5 in retinal pigment epithelium cells 被引量:1
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作者 Yu-Mei Mao Chang-Jun Lan +4 位作者 Qing-Qing Tan Gui-Mei Zhou Xiao-Ling Xiang Jia Lin Xuan Liao 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2023年第6期849-854,共6页
·AIM: To investigate the effect of all-trans retinoic acid(ATRA) on retinol dehydrogenase 5(RDH5), matrix metalloproteinase-2(MMP-2) and transforming growth factor-β2(TGF-β2) transcription levels, and the effec... ·AIM: To investigate the effect of all-trans retinoic acid(ATRA) on retinol dehydrogenase 5(RDH5), matrix metalloproteinase-2(MMP-2) and transforming growth factor-β2(TGF-β2) transcription levels, and the effect of RDH5 on MMP-2 and TGF-β2 in retinal pigment epithelium(RPE) cells.·METHODS: After adult RPE cell line-19(ARPE-19 cells) intervened with gradient concentrations of ATRA(0-20 μmol/L) for 24h, flow cytometry was used to detect the proliferation and apoptosis of cells in each group, and quantitative realtime polymerase chain reaction(q RT-PCR) was used to detect RDH5, MMP-2 and TGF-β2 m RNA expression. Then, after ARPE-19 cells transfected with three different si RNA targets for 48h, the RDH5 knockdown efficiency of each group and expression of MMP-2 and TGF-β2 m RNA within them was detected by q RT-PCR. ·RESULTS: Flow cytometry results showed that ATRA could inhibit the proliferation of RPE cells and promote the apoptosis of RPE cells, and the difference of apoptosis was statistically significant when the ATRA concentration exceeded 5 μmol/L and compared with the normal control group(P=0.027 and P=0.031, respectively). q RT-PCR results showed that ATRA could significantly inhibit the expression level of RDH5 m RNA(P<0.001) and promote the expression of MMP-2 and TGF-β2 m RNA(P=0.03 and P<0.001, respectively) in a dose-dependent manner, especially when treated with 5 μmol/L ATRA. The knockdown efficiency of RDH5 si RNA varies with different targets, among which RDH5 si RNA-435 had the highest knockdown efficiency, i.e., more than 50% lower than that of the negative control group(P=0.02). When RDH5 was knocked down for 48h, the results of q RT-PCR showed that the expressions of MMP-2 and TGF-β2 m RNA were significantly up-regulated(P<0.001).·CONCLUSION: ATRA inhibits the expression of RDH5 and promotes MMP-2 and TGF-β2, and further RDH5 knockdown significantly upregulates MMP-2 and TGF-β2. These findings suggest that RDH5 may be involved in an epithelial-mesenchymal transition of RPE cells mediated by ATRA. 展开更多
关键词 KEYWORDS:retinol dehydrogenase 5 matrix metalloproteinase-2 transforming growth factor-β2 all-trans retinoic acid ARPE-19
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Bone marrow mesenchymal stem cell transplantation downregulates plasma level and the microglia expression of transforming growth factor β1 in the acute phase of cerebral cortex ischemia 被引量:4
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作者 Zhao-Hui Liang Jian-Juan Gu +3 位作者 Wen-Xiu Yu Yun-Qian Guan Mostafa Khater Xiao-Bo Li 《Chronic Diseases and Translational Medicine》 CSCD 2020年第4期270-280,共11页
Background:Both bone marrow mesenchymal stem cell(BM-MSC)and transforming growth factor-β1(TGF-β1)have a strong anti-inflammatory capacity in stroke.But their relationship has not been well addressed.In this study,w... Background:Both bone marrow mesenchymal stem cell(BM-MSC)and transforming growth factor-β1(TGF-β1)have a strong anti-inflammatory capacity in stroke.But their relationship has not been well addressed.In this study,we investigated how intravenous BM-MSC transplantation in rats effected the expression of TGF-β148 h post cerebral ischemia,and we analyzed the main cells that produce TGF-β1.Methods:We used a distal middle cerebral artery occlusion(dMCAO)model in twenty Sprague-Dawley(SD)rats.The rats were randomly divided into two groups:the ischemic control group and the postischemic BM-MSC transplantation group.One hour after the dMCAO model was established,the rats were injected in the tail vein with either 1 ml saline or 1×106 BM-MSCs suspended in 1 ml saline.ELISAs were used to detect TGF-β1 content in the brain infarct core area,striatum and the plasma at 48 h after cerebral infarction.Immunofluorescent staining of brain tissue sections for TGF-β1,Iba-1,CD68 and NeuN was performed to determine the number and the proportion of double stained cells and to detect possible TGF-β1 producing cells in the brain tissue.Results:Forty-eight hours after ischemia,the TGF-β1 content in the infarcted area of the BM-MSC transplantation group(23.94±4.48 pg/ml)was significantly lower than it was in the ischemic control group(34.18±4.32 pg/ml)(F=13.534,P=0.006).The TGF-β1 content in the rat plasma in the BM-MSC transplantation group(75.91±12.53 pg/ml)was significantly lower than it was in the ischemic control group(131.18±16.07 pg/ml)(F=36.779,P=0.0002),suggesting that after transplantation of BM-MSCs,TGF-β1 levels in the plasma decreased,but there was no significant change in the striatum area.Immunofluorescence staining showed that the total number of nucleated cells(1037.67±222.16 cells/mm2)in the infarcted area after transplantation was significantly higher than that in the ischemic control group(391.67±69.50 cells/mm2)(F=92.421,P<0.01);the number of TGF-β1+cells after transplantation(35.00±13.66 cells/mm2)was significantly reduced in comparison to that in the ischemic control group(72.33±32.08 cells/mm2)(F=37.680,P<0.01).The number of TGF-β1+/Iba-1+microglia cells in the transplantation group(3.67±3.17 cells/mm2)was significantly reduced in comparison to that of the ischemic control group(13.67±5.52 cells/mm2)(F=29.641,P<0.01).The proportion of TGF-β1+/Iba-1+microglia cells out of all Iba-1+microglia cells after transplantation(4.38±3.18%)was significantly decreased compared with that in the ischemic control group(12.81±4.86%)(F=28.125,P<0.01).Conclusions:Iba-1+microglia is one of the main cell types that express TGF-β1.Intravenous transplantation of BM-MSCs does not cooperate with TGF-β1+cells in immune-regulation,but reduces the TGF-β1 content in the infarcted area and in the plasma at 48 h after cerebral infarction. 展开更多
关键词 Cerebral infarction Mesenchymal stem cell TRANSPLANTATION transforming growth factor-β1 MICROGLIA
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Role of Cyclin D1b in Inducing Macrophages Toward a Tumor-associated Macrophage-like Phenotype in Murine Breast Cancer
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作者 Lei XIANG Qi RAO +5 位作者 Bin HE Xiao-hong GUO Yun-dan XU Bao-ping LUO Gang ZHAO Feng-hua WU 《Current Medical Science》 SCIE CAS 2023年第4期655-667,共13页
Objective:Tumor-associated macrophages(TAMs)of the M2 phenotype are frequently associated with cancer progression.Invasive cancer cells undergoing epithelial-mesenchymal transition(EMT)have a selective advantage as TA... Objective:Tumor-associated macrophages(TAMs)of the M2 phenotype are frequently associated with cancer progression.Invasive cancer cells undergoing epithelial-mesenchymal transition(EMT)have a selective advantage as TAM activators.Cyclin D1b is a highly oncogenic splice variant of cyclin D1.We previously reported that cyclin D1b enhances the invasiveness of breast cancer cells by inducing EMT.However,the role of cyclin D1b in inducing macrophage differentiation toward tumor-associated macrophage-like cells remains unknown.This study aimed to explore the relationship between breast cancer cells overexpressing cyclin Dlb and TAMs.Methods:Mouse breast cancer 4T1 cells were transfected with cyclin D1b variant and co-cultured with macrophage cells in a Transwell coculture system.The expression of characteristic cytokines in differentiated macrophages was detected using qRT-PCR,ELISA and zymography assay.Tumor-associated macrophage distribution in a transplanted tumor was detected by immunofluorescence staining.The proliferation and migration ability of breast cancer cells was detected using the cell counting kit-8(CCK-8)assay,wound healing assay,Transwell invasion assay,and lung metastasis assay.Expression levels of mRNAs were detected by qRT-PCR.Protein expression levels were detected by Western blotting.The integrated analyses of The Cancer Genome Atlas(TCGA)datasets and bioinformatics methods were adopted to discover gene expression,gene coexpression,and overall survival in patients with breast cancer.Results:After co-culture with breast cancer cells overexpressing cyclin D1b,RAW264.7 macrophages were differentiated into an M2 phenotype.Moreover,differentiated M2-like macrophages promoted the proliferation and migration of breast cancer cells in turn.Notably,these macrophages facilitated the migration of breast cancer cells in vivo.Further investigations indicated that differentiated M2-like macrophages induced EMT of breast cancer cells accompanied with upregulation of TGF-β1 and integrinβ3 expression.Conclusion:Breast cancer cells transfected with cyclin D1b can induce the differentiation of macrophages into a tumor-associated macrophage-like phenotype,which promotes tumor metastasis in vitro and in vivo. 展开更多
关键词 cyclin D1b tumor-associated macrophages breast cancer transforming growth factor-β1 integrinβ3 epithelial-to-mesenchymal transition
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Mechanism of ELL-associated factor 2 and vasohibin 1 regulating invasion,migration,and angiogenesis in colorectal cancer
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作者 Ming-Liang Feng Ming-Jun Sun +3 位作者 Bo-Yang Xu Meng-Yuan Liu Hui-Jing Zhang Can Wu 《World Journal of Gastroenterology》 SCIE CAS 2023年第24期3770-3792,共23页
BACKGROUND As a novel endogenous anti-angiogenic molecule, vasohibin 1(VASH1) is not only expressed in tumor stroma, but also in tumor tissue. Moreover, studies have shown that VASH1 may be a prognostic marker in colo... BACKGROUND As a novel endogenous anti-angiogenic molecule, vasohibin 1(VASH1) is not only expressed in tumor stroma, but also in tumor tissue. Moreover, studies have shown that VASH1 may be a prognostic marker in colorectal cancer(CRC). Knockdown of VASH1 enhanced transforming growth factor-β1(TGF-β1)/Smad3 pathway activity and type Ⅰ/Ⅲ collagen production. Our previous findings suggest that ELL-associated factor 2(EAF2) may play a tumor suppressor and protective role in the development and progression of CRC by regulating signal transducer and activator of transcription 3(STAT3)/TGF-β1 signaling pathway. However, the functional role and mechanism of VASH1-mediated TGF-β1 related pathway in CRC has not been elucidated.AIM To investigate the expression of VASH1 in CRC and its correlation with the expression of EAF2. Furthermore, we studied the functional role and mechanism of VASH1 involved in the regulation and protection of EAF2 in CRC cells in vitro.METHODS We collected colorectal adenocarcinoma and corresponding adjacent tissues to investigate the clinical expression of EAF2 protein and VASH1 protein in patients with advanced CRC. Following, we investigated the effect and mechanism of EAF2 and VASH1 on the invasion, migration and angiogenesis of CRC cells in vitro using plasmid transfection.RESULTS Our findings indicated that EAF2 was down-regulated and VASH1 was upregulated in advanced CRC tissue compared to normal colorectal tissue. KaplanMeier survival analysis showed that the higher EAF2 Level group and the lower VASH1 Level group had a higher survival rate. Overexpression of EAF2 might inhibit the activity of STAT3/TGF-β1 pathway by up-regulating the expression of VASH1, and then weaken the invasion, migration and angiogenesis of CRC cells.CONCLUSION This study suggests that EAF2 and VASH1 may serve as new diagnostic and prognostic markers for CRC, and provide a clinical basis for exploring new biomarkers for CRC. This study complements the mechanism of EAF2 in CRC cells, enriches the role and mechanism of CRC cellderived VASH1, and provides a new possible subtype of CRC as a therapeutic target of STAT3/TGF-β1 pathway. 展开更多
关键词 ELL-associated factor 2 Vasohibin 1 transforming growth factor-β1 Signal transducer and activator of transcription 3 Colorectal cancer ANGIOGENESIS
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Effectiveness of conjunctival bleb scarring by knockdown of heat shock protein 47 in rat model
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作者 Wei-Wei Wang Hai-Yan Li Huan-Huan Yan 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2023年第10期1589-1594,共6页
AIM:To evaluate the effectiveness of knock-down of heat shock protein 47(HSP47)on conjunctival bleb scarring in a rat model and its possible mechanism.METHODS:Male Sprague–Dawley rats were used for glaucoma filtratio... AIM:To evaluate the effectiveness of knock-down of heat shock protein 47(HSP47)on conjunctival bleb scarring in a rat model and its possible mechanism.METHODS:Male Sprague–Dawley rats were used for glaucoma filtration surgery(GFS)and were treated with either phosphate buffered solution,shControl,mitomycin C,or sh-HSP47 using a microsyringe immediately after GFS.The morphology of filtering blebs was observed postoperatively.The levels of HSP47 were analyzed at 2,5,8,and 11d after GFS via real‑time quantitative polymerase chain reaction(PCR)and Western blot.The silencing effect of HSP47,the expression of collagen I and III,and the potential signaling pathways of HSP47 during scarification were explored 11d post GFS.The protein levels of transforming growth factor-β1(TGF-β1),phospho-Smad2(pSmad2),phospho-Smad3(p-Smad3),and phospho-p38(p-p38)were also analyzed using Western blot.RESULTS:Sh-HSP47 treatment significantly prolonged the functional filtration bleb retention.The levels of HSP47 were increased significantly at 5,8,and 11d postoperatively compared to the control group(P<0.05,P<0.01,and P<0.001).The levels of HSP47 protein at day 11 postoperatively were significantly down-regulated after HSP47 silencing using sh-HSP47 adenovirus transfection(P<0.01).Expression levels of collagen I and III within the blebs were significantly reduced in the absence of HSP47(P<0.01).Moreover,the protein levels of TGF-β1,p-Smad2/3,and p-p38 were dramatically inhibited after treatment with sh-HSP47(P<0.01).CONCLUSION:The inhibitory effects of HSP47 knockdown on scarring after GFS have the potential to be an efficacious therapeutic option for the treatment of conjunctival bleb scarring. 展开更多
关键词 heat shock protein 47 filtration surgery conjunctival bleb SCAR transforming growth factor-β1
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In vitro protective effect of recombinant prominin-1 combined with microRNA-29b on N-methyl-D-aspartateinduced excitotoxicity in retinal ganglion cells
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作者 Jun-Hua Li Guan-Shun Yu +1 位作者 Yu-Da Wang Tian-Kun Li 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2023年第11期1746-1755,共10页
AIM:To determine the in vitro protective effect of recombinant prominin-1(Prominin-1)+microRNA-29b(P1M29)on N-methyl-D-aspartate(NMDA)-induced excitotoxicity in retinal ganglion cells(RGCs).METHODS:RGC-5 cells were cu... AIM:To determine the in vitro protective effect of recombinant prominin-1(Prominin-1)+microRNA-29b(P1M29)on N-methyl-D-aspartate(NMDA)-induced excitotoxicity in retinal ganglion cells(RGCs).METHODS:RGC-5 cells were cultured,and NMDAinduced excitotoxicity at the range of 100–800μmol/L was assessed using the MTT assay.NMDA(800μmol/L)was selected as the appropriate concentration for preparing the cell model.To evaluate the protective effect of P1M29 on the cell model,Prominin-1 was added at the concentration of 1–6 ng/mL for 48h,and the cell survival was investigated with/without microRNA-29b.After obtaining the appropriate concentration and time of P1M29 at 48h,real-time polymerase chain reaction(PCR)was utilized to detect the relative mRNA expression of vascular endothelial growth factor(VEGF)and transforming growth factor(TGF)-β2.Western blot detection was applied to measure the phosphorylation levels of protein kinase B(AKT)and extracellular regulated protein kinases(ERK)in RGC-5 cells after treatment with Prominin-1.Apoptosis study of the cell model was conducted by flow cytometry for estimating the anti-apoptotic effect of P1M29.Immunofluorescence analysis was used to analyze the expression levels of VEGF and TGF-β2.RESULTS:MTT cytotoxicity assays demonstrated that P1M29 group had significantly higher cell survival rate than Prominin-1 group(P<0.05).Real-time PCR data indicated that the expression levels of VEGF were significantly increased in both Prominin-1 and P1M29 groups compared NMDA and microRNA-29b group(P<0.05),while TGF-β2 were significantly decreased in both microRNA-29b and P1M29 groups compared NMDA and Prominin-1 group(P<0.05).Western blot results showed that both Prominin-1 and P1M29 groups significantly increased the phosphorylation levels of AKT and ERK compared to NMDA and microRNA-29b groups(P<0.05).Flow cytometry analysis revealed that P1M29 could prevent RGC-5 cell apoptosis in the early stage of apoptosis,while immunofluorescence results showed that P1M29 group had higher expression of VEGF and lower expression of TGF-β2 with a stronger green fluorescence than NMDA group.CONCLUSION:Prominin-1 combined with microRNA-29b can provide a suitable therapeutic option for ameliorating NMDA-induced excitotoxicity in RGC-5 cells. 展开更多
关键词 Prominin-1 microRNA-29b vascular endothelial growth factor transforming growth factor-β2
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