microRNAs(miRNAs)是一类小RNA分子,在植物和动物的基因表达调控中发挥着重要作用,miRNAs不参与蛋白质的直接合成,而是转录后基因表达的重要调控因子。它们不仅在身体发育中起着关键作用,也是细胞周期、凋亡和分化的关键调节因子。成熟m...microRNAs(miRNAs)是一类小RNA分子,在植物和动物的基因表达调控中发挥着重要作用,miRNAs不参与蛋白质的直接合成,而是转录后基因表达的重要调控因子。它们不仅在身体发育中起着关键作用,也是细胞周期、凋亡和分化的关键调节因子。成熟miRNAs的产生需要几个关键步骤。首先,在细胞核中经由RNA polymerase II(PolII)转录完成聚腺苷酸化和封顶产生primary mi RNAs(Pri-miRNAs)。Pri-miRNAs通过Drosha/DGCR8复合物进一步加工合成hairpin precursor mi RNAs(pre-miRNAs)。Pre-miRNAs通过输出蛋白5(XPO5)输出到细胞质中,并被Dicer切割,在这一过程进行末端环的切割后形成成熟的miRNAs。miRNAs以互补序列结合靶mRNA,发挥调控作用。研究表明,超过30%的蛋白质编码基因受miRNAs调控。miRNAs的失调和功能障碍与人类疾病有关,miRNAs的异常表达被认为是癌症发生的重要过程。本文就microRNAs在妇科肿瘤发生发展中的研究现状进行综述。展开更多
Bladder cancer(BC)is the tenth most prevalent malignancy globally,presenting significant clinical and societal challenges because of its high incidence,rapid progression,and frequent recurrence.Presently,cystoscopy an...Bladder cancer(BC)is the tenth most prevalent malignancy globally,presenting significant clinical and societal challenges because of its high incidence,rapid progression,and frequent recurrence.Presently,cystoscopy and urine cytology serve as the established diagnostic methods for BC.However,their efficacy is limited by their invasive nature and low sensitivity.Therefore,the development of highly specific biomarkers and effective noninvasive detection strategies is imperative for achieving a precise and timely diagnosis of BC,as well as for facilitating an optimal tumor treatment and an improved prognosis.microRNAs(miRNAs),short noncoding RNA molecules spanning around 20–25 nucleotides,are implicated in the regulation of diverse carcinogenic pathways.Substantially altered miRNAs form robust functional regulatory networks that exert a notable influence on the tumorigenesis and progression of BC.Investigations into aberrant miRNAs derived from blood,urine,or extracellular vesicles indicate their potential roles as diagnostic biomarkers and prognostic indicators in BC,enabling miRNAs to monitor the progression and predict the recurrence of the disease.Simultaneously,the investigation centered on miRNA as a potential therapeutic agent presents a novel approach for the treatment of BC.This review comprehensively analyzes biological roles of miRNAs in tumorigenesis and progression,and systematically summarizes their potential as diagnostic and prognostic biomarkers,as well as therapeutic targets for BC.Additionally,we evaluate the progress made in laboratory techniques within this field and discuss the prospects.展开更多
In this editorial we comment on the review by Wang et al published in the recent issue of the World Journal of Gastroenterology in 2023.Small extracellular vesicles(exosomes)play important roles in the tumor microenvi...In this editorial we comment on the review by Wang et al published in the recent issue of the World Journal of Gastroenterology in 2023.Small extracellular vesicles(exosomes)play important roles in the tumor microenvironment.In this review,the authors introduce the following points:(1)The composition and function of exosomal microRNAs(miRNAs)of different cell origins in hepatocellular carcinoma(HCC);(2)the crosstalk between exosomal miRNAs from stromal cells and immune cells in the tumor microenvironment and the progression of HCC;and(3)the potential applicability of exosomal miRNAs derived from mesenchymal stem cells in the treatment of HCC.In addition,the potential applicability of exosomal miRNAs derived from mesenchymal stem cells in the treatment of HCC was introduced.In this review,the authors give us an overview of the exosomal RNA and summarize the function of exosomal RNA in HCC,which provides a deeper understanding of exosomal miRNAs to the readers.展开更多
MicroRNAs(miRNAs)are recognized for their involvement in the regulation of gene expression and exhibit significant potential in both the prognostic assessment and treatment of hepatocellular carcinoma(HCC).HCC,like ot...MicroRNAs(miRNAs)are recognized for their involvement in the regulation of gene expression and exhibit significant potential in both the prognostic assessment and treatment of hepatocellular carcinoma(HCC).HCC,like other tumors,seldom occurs in isolation;instead,it evolves within a microenvironment featuring oncogenic and tumor-suppressive elements.When combined with suitable delivery vehicles,miRNA technology provides the capability to directly engage with these elements,thereby hindering tumor formation and progression.Ongoing research in this domain holds the promise of enabling a more efficacious and multi-modal treatment approach for HCC in the near future.展开更多
Chara cterized by positive symptoms(such as changes in behavior or thoughts,including delusions and hallu cinations),negative symptoms(such as apathy,anhedonia,and social withdrawal),and cognitive impairments,schizoph...Chara cterized by positive symptoms(such as changes in behavior or thoughts,including delusions and hallu cinations),negative symptoms(such as apathy,anhedonia,and social withdrawal),and cognitive impairments,schizophrenia is a chro nic,severe,and disabling mental disorder with late adolescence or early adulthood onset,Antipsychotics are the most commonly used drugs to treat schizophrenia,but those currently in use do not fully reverse all three types of symptoms characte rizing this condition.Schizophrenia is frequently misdiagnosed,resulting in a delay of or inappropriate treatment.Abnormal expression of microRNAs is connected to brain development and disease and could provide novel biomarkers for the diagnosis and prognosis of schizophrenia.The recent studies reviewed included microRNA profiling in blood-and urine-based materials and nervous tissue mate rials.From the studies that had validated the preliminary findings,potential candidate biomarkers for schizophrenia in adults could be miR-22-3p,-30e-5p,-92a-3p,-148b-5p,-181a-3p,-181a-5p,-181b-5p,-199 b-5p,-137 in whole blood,and miR-130b,-193a-3p in blood plasma.Antipsychotic treatment of schizophrenia patients was found to modulate the expression of certain microRNAs including miR-130b,-193a-3p,-132,-195,-30e,-432 in blood plasma.Further studies are warranted with adolescents and young adults having schizophrenia and consideration should be given to using animal models of the disorder to investigate the effect of suppressing or overexpressing specific microRNAs.展开更多
脑出血后所释放的大量内源性物质和血液中的毒性成分可加剧炎性反应和神经缺损,严重影响脑出血患者预后。microRNAs水平在脑出血后发生变化,可通过多种机制调控神经炎症的功能。文章综述归纳总结了microRNAs对脑出血后神经炎症影响的研...脑出血后所释放的大量内源性物质和血液中的毒性成分可加剧炎性反应和神经缺损,严重影响脑出血患者预后。microRNAs水平在脑出血后发生变化,可通过多种机制调控神经炎症的功能。文章综述归纳总结了microRNAs对脑出血后神经炎症影响的研究进展,旨在为出血性中风患者发现更有效的治疗方法。A large number of endogenous substances and toxic components in blood released after intracerebral hemorrhage can aggravate inflammatory reaction and neurological damage, which seriously affect the prognosis of patients with intracerebral hemorrhage. The level of microRNAs changes after intracerebral hemorrhage, which can regulate the function of neuroinflammation through various mechanisms. This review summarizes the research progress of the effect of microRNAs on neuroinflammation after intracerebral hemorrhage in order to find more effective treatment methods for patients with hemorrhagic stroke.展开更多
目的通过microRNAs差异分析、网络药理学及分子对接技术,探讨益母草治疗宫腔粘连(intrauterine adhesion,IUA)的潜在作用靶点及相关机制。方法基于GEO(gene expression omnibus)数据库筛选IUA与健康者的差异miRNA,经multiMiR进行靶基因...目的通过microRNAs差异分析、网络药理学及分子对接技术,探讨益母草治疗宫腔粘连(intrauterine adhesion,IUA)的潜在作用靶点及相关机制。方法基于GEO(gene expression omnibus)数据库筛选IUA与健康者的差异miRNA,经multiMiR进行靶基因预测。通过TCMSP(traditional Chinese medicine systems pharmacology)数据库检索益母草有效活性成分及相关靶点,并与miRNA靶基因取交集。利用String平台进行蛋白质互作分析,利用cytoNCA筛选关键靶点。基于R语言进行基因本体(gene ontology,GO)和基因组百科全书(kyoto encyclopedia of genes and genomes,KEGG)富集分析。利用CB-dock2对关键靶点和活性成分进行分子对接。结果共筛选出与IUA相关的差异miRNA 43个,经靶基因预测后与IUA共有13个交集靶点,GO及KEGG富集分析结果显示,益母草治疗IUA作用机制主要与细胞衰老、丝裂原活化蛋白激酶(mitogen-activated protein kinase,MAPK)信号通路、PI3K-Akt信号通路等有关。益母草3个特征性活性成分是花生四烯酸、山奈酚、槲皮素,可与蛋白互作网络中相对应的靶点蛋白细胞周期蛋白依赖性激酶4(cyclin-dependent kinase 4,CDK4)、芳香烃受体(aryl hydrocarbon receptor,AHR)、原癌基因c-myc编码转录因子、血管内皮生长因子(vascular endothelial growth factor,VEGF)进行分子对接,主要活性成分能够与核心靶点结合,并展现出较好的亲和力。结论益母草治疗IUA是多成分、多靶点、多通路相互作用的结果,进一步证实了益母草治疗IUA的科学性及有效性,为后续实验提供了研究思路。展开更多
Hearing loss is the third leading cause of human disability.Age-related hearing loss,one type of acquired sensorineural hearing loss,is largely responsible for this escalating global health burden.Noise-induced,ototox...Hearing loss is the third leading cause of human disability.Age-related hearing loss,one type of acquired sensorineural hearing loss,is largely responsible for this escalating global health burden.Noise-induced,ototoxic,and idiopathic sudden sensorineural are other less common types of acquired hearing loss.The etiology of these conditions is complex and multi-fa ctorial involving an interplay of genetic and environmental factors.Oxidative stress has recently been proposed as a likely linking cause in most types of acquired sensorineural hearing loss.Short non-coding RNA sequences known as microRNAs(miRNAs)have increasingly been shown to play a role in cellular hypoxia and oxidative stress responses including promoting an apoptotic response.Sensory hair cell death is a central histopathological finding in sensorineural hearing loss.As these cells do not regenerate in humans,it underlies the irreversibility of human age-related hearing loss.Ovid EMBASE,Ovid MEDLINE,Web of Science Core Collection,and ClinicalTrials.gov databases over the period August 1,2018 to July 31,2023 were searched with"hearing loss,""hypoxamiRs,""hypoxia,""microRNAs,""ischemia,"and"oxidative stress"text words for English language primary study publications or registered clinical trials.Registe red clinical trials known to the senior author we re also assessed.A total of 222studies were thus identified.After excluding duplicates,editorials,retra ctions,secondary research studies,and non-English language articles,39 primary studies and clinical trials underwent full-text screening.This resulted in 11 animal,in vitro,and/or human subject journal articles and 8 registered clinical trial database entries which form the basis of this narrative review.MiRNAs miR-34a and miR-29b levels increase with age in mice.These miRNAs were demonstrated in human neuroblastoma and murine cochlear cell lines to target Sirtuin 1/peroxisome proliferato r-activated receptor gamma coactivator-1-alpha(SIRT1/P GC-1α),SIRT1p53,and SIRT1/hypoxia-inducible factor 1-alpha signaling pathways resulting in increased apoptosis.Furthermore,hypoxia and oxidative stress had a similar adve rse apoptotic effect,which was inhibited by resve ratrol and a myocardial inhibitorassociated transcript,a miR-29b competing endogenous mRNA.Gentamicin reduced miR-182-5p levels and increased cochlear oxidative stress and cell death in mice-an effect that was corrected by inner ear stem cell-derived exosomes.There is ongoing work seeking to determine if these findings can be effectively translated to humans.展开更多
Tongue squamous cell carcinoma (TSCC) is the most invasive type of oral malignant tumor, posing a serious threat to human life and health. Its pathogenesis is complex and has a high degree of malignancy. Recurrence an...Tongue squamous cell carcinoma (TSCC) is the most invasive type of oral malignant tumor, posing a serious threat to human life and health. Its pathogenesis is complex and has a high degree of malignancy. Recurrence and metastasis often lead to poor prognosis. MicroRNAs are a type of single stranded small molecule RNA with only 18 - 25 nucleotides, which can regulate the expression of various genes and participate in the occurrence and development of tumors. Studies have found that microRNA expression profiling can serve as a reliable and stable biological indicator for early diagnosis and prognosis of tumors. This article provides a review of the research status of MicroRNAs in squamous cell carcinoma of the tongue.展开更多
Ranaviruses are harmful viruses that infect amphibians, fish, and reptiles, and have caused particularly devastating declines in amphibian populations. One particular type of ranavirus, called Frog Virus 3 (FV3), has ...Ranaviruses are harmful viruses that infect amphibians, fish, and reptiles, and have caused particularly devastating declines in amphibian populations. One particular type of ranavirus, called Frog Virus 3 (FV3), has been extensively studied due to its prevalence and impact on amphibians. Previous research has primarily focused on the virus’s genes, but little attention has been given to the non-coding regions of its genome. This article reviews recent studies that reveal the ability of ranaviruses, including FV3, to encode microRNA (miRNA), a type of regulatory RNA. These viral miRNAs play a crucial role in suppressing frog immune genes, modulating the virus-host interaction, and promoting viral infection. Understanding how ranaviruses use miRNAs to control disease progression is essential for addressing the health threat they pose to wildlife and ecosystems.展开更多
Exosomes,the smallest extracellular vesicles,have gained significant attention as key mediators in intercellular communication,influencing both physiological and pathological processes,particularly in cancer progressi...Exosomes,the smallest extracellular vesicles,have gained significant attention as key mediators in intercellular communication,influencing both physiological and pathological processes,particularly in cancer progression.A recent review article by Wang et al was published in a timely manner to stimulate future research and facilitate practical developments for targeted treatment of hepatocellular carcinoma using exosomes,with a focus on the origin from which exosomes derive.If information about the mechanisms for delivering exosomes to specific cells is incorporated,the concept of targeted therapy for hepatocellular carcinoma using exosomes could be more comprehensively understood.展开更多
文摘microRNAs(miRNAs)是一类小RNA分子,在植物和动物的基因表达调控中发挥着重要作用,miRNAs不参与蛋白质的直接合成,而是转录后基因表达的重要调控因子。它们不仅在身体发育中起着关键作用,也是细胞周期、凋亡和分化的关键调节因子。成熟miRNAs的产生需要几个关键步骤。首先,在细胞核中经由RNA polymerase II(PolII)转录完成聚腺苷酸化和封顶产生primary mi RNAs(Pri-miRNAs)。Pri-miRNAs通过Drosha/DGCR8复合物进一步加工合成hairpin precursor mi RNAs(pre-miRNAs)。Pre-miRNAs通过输出蛋白5(XPO5)输出到细胞质中,并被Dicer切割,在这一过程进行末端环的切割后形成成熟的miRNAs。miRNAs以互补序列结合靶mRNA,发挥调控作用。研究表明,超过30%的蛋白质编码基因受miRNAs调控。miRNAs的失调和功能障碍与人类疾病有关,miRNAs的异常表达被认为是癌症发生的重要过程。本文就microRNAs在妇科肿瘤发生发展中的研究现状进行综述。
基金supported by the China Postdoctoral Science Foundation(Grant No.2022M721404)the Natural Science Foundation of Jiangsu Province(Grant No.BK20220737)+1 种基金the Social Development Foundation of Clinical Frontier Technology of Jiangsu Province(Grant No.BE2017763)the Medical Research Project of Jiangsu Province Health Committee(Grant No.K2019020).
文摘Bladder cancer(BC)is the tenth most prevalent malignancy globally,presenting significant clinical and societal challenges because of its high incidence,rapid progression,and frequent recurrence.Presently,cystoscopy and urine cytology serve as the established diagnostic methods for BC.However,their efficacy is limited by their invasive nature and low sensitivity.Therefore,the development of highly specific biomarkers and effective noninvasive detection strategies is imperative for achieving a precise and timely diagnosis of BC,as well as for facilitating an optimal tumor treatment and an improved prognosis.microRNAs(miRNAs),short noncoding RNA molecules spanning around 20–25 nucleotides,are implicated in the regulation of diverse carcinogenic pathways.Substantially altered miRNAs form robust functional regulatory networks that exert a notable influence on the tumorigenesis and progression of BC.Investigations into aberrant miRNAs derived from blood,urine,or extracellular vesicles indicate their potential roles as diagnostic biomarkers and prognostic indicators in BC,enabling miRNAs to monitor the progression and predict the recurrence of the disease.Simultaneously,the investigation centered on miRNA as a potential therapeutic agent presents a novel approach for the treatment of BC.This review comprehensively analyzes biological roles of miRNAs in tumorigenesis and progression,and systematically summarizes their potential as diagnostic and prognostic biomarkers,as well as therapeutic targets for BC.Additionally,we evaluate the progress made in laboratory techniques within this field and discuss the prospects.
基金Supported by the National Natural Science Foundation of China,No.82303441Natural Science Foundation of Shanghai Municipality,No.21ZR1459100 and No.22ZR1457900+1 种基金Science and Technology Commission of Shanghai Municipality,No.20DZ2254500Shanghai Anticancer Association EYAS Project.
文摘In this editorial we comment on the review by Wang et al published in the recent issue of the World Journal of Gastroenterology in 2023.Small extracellular vesicles(exosomes)play important roles in the tumor microenvironment.In this review,the authors introduce the following points:(1)The composition and function of exosomal microRNAs(miRNAs)of different cell origins in hepatocellular carcinoma(HCC);(2)the crosstalk between exosomal miRNAs from stromal cells and immune cells in the tumor microenvironment and the progression of HCC;and(3)the potential applicability of exosomal miRNAs derived from mesenchymal stem cells in the treatment of HCC.In addition,the potential applicability of exosomal miRNAs derived from mesenchymal stem cells in the treatment of HCC was introduced.In this review,the authors give us an overview of the exosomal RNA and summarize the function of exosomal RNA in HCC,which provides a deeper understanding of exosomal miRNAs to the readers.
文摘MicroRNAs(miRNAs)are recognized for their involvement in the regulation of gene expression and exhibit significant potential in both the prognostic assessment and treatment of hepatocellular carcinoma(HCC).HCC,like other tumors,seldom occurs in isolation;instead,it evolves within a microenvironment featuring oncogenic and tumor-suppressive elements.When combined with suitable delivery vehicles,miRNA technology provides the capability to directly engage with these elements,thereby hindering tumor formation and progression.Ongoing research in this domain holds the promise of enabling a more efficacious and multi-modal treatment approach for HCC in the near future.
文摘Chara cterized by positive symptoms(such as changes in behavior or thoughts,including delusions and hallu cinations),negative symptoms(such as apathy,anhedonia,and social withdrawal),and cognitive impairments,schizophrenia is a chro nic,severe,and disabling mental disorder with late adolescence or early adulthood onset,Antipsychotics are the most commonly used drugs to treat schizophrenia,but those currently in use do not fully reverse all three types of symptoms characte rizing this condition.Schizophrenia is frequently misdiagnosed,resulting in a delay of or inappropriate treatment.Abnormal expression of microRNAs is connected to brain development and disease and could provide novel biomarkers for the diagnosis and prognosis of schizophrenia.The recent studies reviewed included microRNA profiling in blood-and urine-based materials and nervous tissue mate rials.From the studies that had validated the preliminary findings,potential candidate biomarkers for schizophrenia in adults could be miR-22-3p,-30e-5p,-92a-3p,-148b-5p,-181a-3p,-181a-5p,-181b-5p,-199 b-5p,-137 in whole blood,and miR-130b,-193a-3p in blood plasma.Antipsychotic treatment of schizophrenia patients was found to modulate the expression of certain microRNAs including miR-130b,-193a-3p,-132,-195,-30e,-432 in blood plasma.Further studies are warranted with adolescents and young adults having schizophrenia and consideration should be given to using animal models of the disorder to investigate the effect of suppressing or overexpressing specific microRNAs.
文摘脑出血后所释放的大量内源性物质和血液中的毒性成分可加剧炎性反应和神经缺损,严重影响脑出血患者预后。microRNAs水平在脑出血后发生变化,可通过多种机制调控神经炎症的功能。文章综述归纳总结了microRNAs对脑出血后神经炎症影响的研究进展,旨在为出血性中风患者发现更有效的治疗方法。A large number of endogenous substances and toxic components in blood released after intracerebral hemorrhage can aggravate inflammatory reaction and neurological damage, which seriously affect the prognosis of patients with intracerebral hemorrhage. The level of microRNAs changes after intracerebral hemorrhage, which can regulate the function of neuroinflammation through various mechanisms. This review summarizes the research progress of the effect of microRNAs on neuroinflammation after intracerebral hemorrhage in order to find more effective treatment methods for patients with hemorrhagic stroke.
文摘目的通过microRNAs差异分析、网络药理学及分子对接技术,探讨益母草治疗宫腔粘连(intrauterine adhesion,IUA)的潜在作用靶点及相关机制。方法基于GEO(gene expression omnibus)数据库筛选IUA与健康者的差异miRNA,经multiMiR进行靶基因预测。通过TCMSP(traditional Chinese medicine systems pharmacology)数据库检索益母草有效活性成分及相关靶点,并与miRNA靶基因取交集。利用String平台进行蛋白质互作分析,利用cytoNCA筛选关键靶点。基于R语言进行基因本体(gene ontology,GO)和基因组百科全书(kyoto encyclopedia of genes and genomes,KEGG)富集分析。利用CB-dock2对关键靶点和活性成分进行分子对接。结果共筛选出与IUA相关的差异miRNA 43个,经靶基因预测后与IUA共有13个交集靶点,GO及KEGG富集分析结果显示,益母草治疗IUA作用机制主要与细胞衰老、丝裂原活化蛋白激酶(mitogen-activated protein kinase,MAPK)信号通路、PI3K-Akt信号通路等有关。益母草3个特征性活性成分是花生四烯酸、山奈酚、槲皮素,可与蛋白互作网络中相对应的靶点蛋白细胞周期蛋白依赖性激酶4(cyclin-dependent kinase 4,CDK4)、芳香烃受体(aryl hydrocarbon receptor,AHR)、原癌基因c-myc编码转录因子、血管内皮生长因子(vascular endothelial growth factor,VEGF)进行分子对接,主要活性成分能够与核心靶点结合,并展现出较好的亲和力。结论益母草治疗IUA是多成分、多靶点、多通路相互作用的结果,进一步证实了益母草治疗IUA的科学性及有效性,为后续实验提供了研究思路。
文摘Hearing loss is the third leading cause of human disability.Age-related hearing loss,one type of acquired sensorineural hearing loss,is largely responsible for this escalating global health burden.Noise-induced,ototoxic,and idiopathic sudden sensorineural are other less common types of acquired hearing loss.The etiology of these conditions is complex and multi-fa ctorial involving an interplay of genetic and environmental factors.Oxidative stress has recently been proposed as a likely linking cause in most types of acquired sensorineural hearing loss.Short non-coding RNA sequences known as microRNAs(miRNAs)have increasingly been shown to play a role in cellular hypoxia and oxidative stress responses including promoting an apoptotic response.Sensory hair cell death is a central histopathological finding in sensorineural hearing loss.As these cells do not regenerate in humans,it underlies the irreversibility of human age-related hearing loss.Ovid EMBASE,Ovid MEDLINE,Web of Science Core Collection,and ClinicalTrials.gov databases over the period August 1,2018 to July 31,2023 were searched with"hearing loss,""hypoxamiRs,""hypoxia,""microRNAs,""ischemia,"and"oxidative stress"text words for English language primary study publications or registered clinical trials.Registe red clinical trials known to the senior author we re also assessed.A total of 222studies were thus identified.After excluding duplicates,editorials,retra ctions,secondary research studies,and non-English language articles,39 primary studies and clinical trials underwent full-text screening.This resulted in 11 animal,in vitro,and/or human subject journal articles and 8 registered clinical trial database entries which form the basis of this narrative review.MiRNAs miR-34a and miR-29b levels increase with age in mice.These miRNAs were demonstrated in human neuroblastoma and murine cochlear cell lines to target Sirtuin 1/peroxisome proliferato r-activated receptor gamma coactivator-1-alpha(SIRT1/P GC-1α),SIRT1p53,and SIRT1/hypoxia-inducible factor 1-alpha signaling pathways resulting in increased apoptosis.Furthermore,hypoxia and oxidative stress had a similar adve rse apoptotic effect,which was inhibited by resve ratrol and a myocardial inhibitorassociated transcript,a miR-29b competing endogenous mRNA.Gentamicin reduced miR-182-5p levels and increased cochlear oxidative stress and cell death in mice-an effect that was corrected by inner ear stem cell-derived exosomes.There is ongoing work seeking to determine if these findings can be effectively translated to humans.
文摘Tongue squamous cell carcinoma (TSCC) is the most invasive type of oral malignant tumor, posing a serious threat to human life and health. Its pathogenesis is complex and has a high degree of malignancy. Recurrence and metastasis often lead to poor prognosis. MicroRNAs are a type of single stranded small molecule RNA with only 18 - 25 nucleotides, which can regulate the expression of various genes and participate in the occurrence and development of tumors. Studies have found that microRNA expression profiling can serve as a reliable and stable biological indicator for early diagnosis and prognosis of tumors. This article provides a review of the research status of MicroRNAs in squamous cell carcinoma of the tongue.
文摘Ranaviruses are harmful viruses that infect amphibians, fish, and reptiles, and have caused particularly devastating declines in amphibian populations. One particular type of ranavirus, called Frog Virus 3 (FV3), has been extensively studied due to its prevalence and impact on amphibians. Previous research has primarily focused on the virus’s genes, but little attention has been given to the non-coding regions of its genome. This article reviews recent studies that reveal the ability of ranaviruses, including FV3, to encode microRNA (miRNA), a type of regulatory RNA. These viral miRNAs play a crucial role in suppressing frog immune genes, modulating the virus-host interaction, and promoting viral infection. Understanding how ranaviruses use miRNAs to control disease progression is essential for addressing the health threat they pose to wildlife and ecosystems.
文摘Exosomes,the smallest extracellular vesicles,have gained significant attention as key mediators in intercellular communication,influencing both physiological and pathological processes,particularly in cancer progression.A recent review article by Wang et al was published in a timely manner to stimulate future research and facilitate practical developments for targeted treatment of hepatocellular carcinoma using exosomes,with a focus on the origin from which exosomes derive.If information about the mechanisms for delivering exosomes to specific cells is incorporated,the concept of targeted therapy for hepatocellular carcinoma using exosomes could be more comprehensively understood.