Interfering with the ferroptosis pathway is a new strategy for the treatment of spinal cord injury.Fibroblast growth factor 21 can inhibit ferro ptosis and promote neurofunctional recovery,while heme oxygenase-1 is a ...Interfering with the ferroptosis pathway is a new strategy for the treatment of spinal cord injury.Fibroblast growth factor 21 can inhibit ferro ptosis and promote neurofunctional recovery,while heme oxygenase-1 is a regulator of iron and reactive oxygen species homeostasis.The relationship between heme oxygenase-1and ferroptosis remains controve rsial.In this study,we used a spinal co rd injury rat model to show that the levels of fibroblast growth factor 21 in spinal co rd tissue decreased after spinal cord injury.In addition,there was a significant aggravation of ferroptosis and a rapid increase in heme oxygenase-1 expression after spinal cord injury.Furthe r,heme oxygenase-1 aggravated fe rroptosis after spinal cord injury,while fibroblast growth factor 21 inhibited fe rroptosis by downregulating heme oxygenase-1.Thus,the activation of fibroblast growth factor 21 may provide a potential treatment for spinal co rd injury.These findings could provide a new potential mechanistic explanation for fibroblast growth factor 21 in the treatment of spinal cord injury.展开更多
BACKGROUND Fibroblast growth factor 21(FGF21),primarily secreted by the pancreas,liver,and adipose tissues,plays a pivotal role in regulating glucose and lipid metabolism.Acute pancreatitis(AP)is a common inflammatory...BACKGROUND Fibroblast growth factor 21(FGF21),primarily secreted by the pancreas,liver,and adipose tissues,plays a pivotal role in regulating glucose and lipid metabolism.Acute pancreatitis(AP)is a common inflammatory disease with specific clinical manifestations.Many patients with diabetes present with concurrent inflammatory symptoms.Diabetes exacerbates intestinal permeability and intestinal inflammation,thus leading to the progression to AP.Our previous study indicated that FGF21 significantly attenuated susceptibility to AP in mice.AIM To investigate the potential protective role of FGF21 against AP in diabetic mice.METHODS In the present study,a mouse model of AP was established in diabetic(db)/db diabetic mice through ceruletide injections.Thereafter,the protective effects of recombinant FGF21 protein against AP were evaluated,with an emphasis on examining serum amylase(AMS)levels and pancreatic and intestinal inflammatory cytokines[interleukin(IL)-6,tumor necrosis factor-alpha(TNF-),and intestinal IL-1β].Additionally,the impact of this treatment on the histopathologic changes of the pancreas and small intestinal was examined to elucidate the role of FGF21 in diabetic mice with AP.An antibiotic(Abx)cocktail was administered in combination with FGF21 therapy to investigate whether the effect of FGF21 on AP in diabetic mice with AP was mediated through the modulation of the gut microbiota. Subsequently, thePhylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt), a bioinformaticssoftware package, was used to predict different pathways between the groups and to explore the potentialmechanisms by which the gut microbiota influenced the protective effect of FGF21.RESULTSThe results indicated that FGF21 notably diminished the levels of serum AMS (944.5 ± 15.9 vs 1732 ± 83.9, P < 0.01)and inflammatory factors including IL-6 (0.2400 ± 0.55 vs 1.233 ± 0.053, P < 0.01), TNF- (0.7067 ± 0.22 vs 1.433 ±0.051, P < 0.01), and IL-1β (1.377 ± 0.069 vs 0.3328 ± 0.02542, P < 0.01) in diabetic mice with AP. Moreover, notablesigns of recovery were observed in the pancreatic structure of the mice. The histologic evidence of inflammation inthe small intestine, including edema and villous damage, was significantly alleviated. FGF21 also significantlyaltered the composition of the gut microbiota, reestablishing the Bacteroidetes/Firmicutes ratio. Upon treatment withan Abx cocktail to deplete the gut microbiota, the FGF21 + Abx group showed lower levels of serum AMS (0.9328 ±0.075 vs 0.2249 ± 0.023, P < 0.01) and inflammatory factors (1.083 ± 0.12 vs 0.2799 ± 0.032, p < 0.01) than the FGF21group. Furthermore, the FGF21 + Abx group exhibited diminished injury to the pancreatic and small intestinaltissues, accompanied by a significant decrease in blood glucose levels (17.50 ± 1.1 vs 9.817 ± 0.69 mmol/L, P <0.001). These findings underscored the superior protective effects of the combination therapy involving an Abxcocktail with FGF21 over the FGF21 treatment alone in diabetic mice with AP. The gut microbiota compositionacross different groups was further characterized, and a differential expression analysis of gene functions wasundertaken using the PICRUSt2 prediction method. These findings suggested that FGF21 could potentially confertherapeutic effects on diabetic mice with AP by modulating the sulfate reduction I pathway and the superpathwayof n-acetylceramide degradation in the gut microbiota.CONCLUSION This study reveals the potential of FGF21 in improving pancreatic and intestinal damage recovery, reducing bloodglucose levels, and reshaping gut microbiota composition in diabetic mice with AP. Notably, the protective effectsof FGF21 are augmented when combined with the Abx cocktail.展开更多
The present study explored the distribution and localization of fibroblast growth factor-8 and its potential receptor, fibroblast growth factor receptor-3, in adult rat brain in vivo and in nerve cells during differen...The present study explored the distribution and localization of fibroblast growth factor-8 and its potential receptor, fibroblast growth factor receptor-3, in adult rat brain in vivo and in nerve cells during differentiation of neural stem/progenitor cells in vitro. Immunohistochemistry was used to examine the distribution of fibroblast growth factor-8 in adult rat brain in vivo. Localization of fibroblast growth factor-8 and fibroblast growth factor receptor-3 in cells during neural stem/progenitor cell differentiation in vitro was detected by immunofluorescence. Flow cytometry and immunofluorescence were used to evaluate the effect of an anti-fibroblast growth factor-8 antibody on neural stem/progenitor cell differentiation and expansion in vitro. Results from this study confirmed that fibroblast growth factor-8 was mainly distributed in adult midbrain, namely the substantia nigra, compact part, dorsal tier, substantia nigra and reticular part, but was not detected in the forebrain comprising the caudate putamen and striatum. Unusual results were obtained in retrosplenial locations of adult rat brain. We found that fibroblast growth factor-8 and fibroblast growth factor receptor-3 were distributed on the cell membrane and in the cytoplasm of nerve cells using immunohistochemistry and immunofluorescence analyses. We considered that the distribution of fibroblast growth factor-8 and fibroblast growth factor receptor-3 in neural cells corresponded to the characteristics of fibroblast growth factor-8, a secretory factor. Addition of an anti-fibroblast growth factor-8 antibody to cultures significantly affected the rate of expansion and differentiation of neural stem/progenitor cells. In contrast, addition of recombinant fibroblast growth factor-8 to differentiation medium promoted neural stem/progenitor cell differentiation and increased the final yields of dopaminergic neurons and total neurons. Our study may help delineate the important roles of fibroblast growth factor-8 in brain activities and neural stem/progenitor cell differentiation.展开更多
Tumor-induced osteomalacia (TIO) is a rare paraneoplastic syndrome in which ectopic production of fibroblast growth factor 23 (FGF23) by non-malignant mesenchymal tumors causes phosphate wasting and bone fractures...Tumor-induced osteomalacia (TIO) is a rare paraneoplastic syndrome in which ectopic production of fibroblast growth factor 23 (FGF23) by non-malignant mesenchymal tumors causes phosphate wasting and bone fractures. Recent studies have implicated the hypoxia-inducible factor-la (HIF-la) in other phosphate wasting disorders caused by elevated FGF23, including X-linked hypophosphatemic rickets and autosomal dominant hypophosphatemia. Here we provide evidence that HIF-la mediates aberrant FGF23 in TIO by transcriptionally activating its promoter. Immunohistochemical studies in phosphaturic mesenchymal tumors resected from patients with documented TIO showed that HIF-la and FGF23 were co-localized in spindle- shaped cells adjacent to blood vessels. Cultured tumor tissue produced high levels of intact FGF23 and demonstrated increased expression of HIF-la protein. Transfection of MC3T3-E1 and Saos-2 cells with a HIF-la expression construct induced the activity of a FGF23 reporter construct. Prior treatment of tumor organ cultures with HIF-la inhibitors decreased HIF-la and FGF23 protein accumulation and inhibited HIF-la-induced luciferase reporter activity in transfected cells. Chromatin immunoprecipitation assays confirmed binding to a HIF-la consensus sequence within the proximal FGF23 promoter, which was eliminated by treatment with a HIF-la inhibitor. These results show for the first time that HIF-la is a direct transcriptional activator of FGF23 and suggest that upregulation of HIF-la activity in TIO contributes to the aberrant FGF23 production in these patients.展开更多
Alternatively activated macrophages (M2 macrophages) promote central nervous system regeneration. Our previous study demonstrated that treatment with peripheral nerve grafts and fibroblast growth factor-1 recruited ...Alternatively activated macrophages (M2 macrophages) promote central nervous system regeneration. Our previous study demonstrated that treatment with peripheral nerve grafts and fibroblast growth factor-1 recruited more M2 macrophages and improved partial functional recovery in spinal cord transected rats. The migration of macrophages is matrix metalloproteinase (MMP) dependent. We used a general inhibitor of MMPs to influence macrophage migration, and we examined the migration of macrophage populations and changes in spinal function. Rat spinal cords were completely transected at Ts, and 5 mm of spinal cord was removed (group T). In group R, spinal cord-transected rats received treatment with fibroblast grow th factor- 1 and peripheral nerve grafts. In group RG, rats received the same treatment as group R with the addition of 200 μM GM6001 (an MMP inhibitor) to the fibrin mix. We found that MMP-9, but not MMP- 2, was upregulated in the graft area of rats in group R. Local application of the MMP inhibitor resulted in a reduction in the ratio of arginase-1 (M2 macrophage subset)/inducible nitric oxide synthase-postive cells. When the MMP inhibitor was applied at 8 weeks postoperation, the partial functional recovery observed in group R was lost. This effect was accompanied by a decrease in brain-derived neurotrophic factor levels in the nerve graft. These results suggested that the arginase-1 positive population in spinal cord transected rats is a migratory cell population rather than the phenotypic conversion of early iNOS^+ cells and that the migration of the arginase-1^+ population could be regulated locally. Simultaneous application of MMP in- hibitors or promotion of MMP activity for spinal cord injury needs to be considered if the coadministered treatment involves M2 recruitment.展开更多
BACKGROUND The incidence and prevalence of atrial fibrillation are increasing each year,and this condition is one of the most common clinical arrhythmias.AIM To investigate the levels and significance of serum fibrobl...BACKGROUND The incidence and prevalence of atrial fibrillation are increasing each year,and this condition is one of the most common clinical arrhythmias.AIM To investigate the levels and significance of serum fibroblast growth factor 23(FGF-23)and miR-208 b in patients with atrial fibrillation and their relationship with prognosis.METHODS From May 2018 to October 2019,240 patients with atrial fibrillation were selected as an observation group,including 134 with paroxysmal atrial fibrillation and 106 with persistent atrial fibrillation;150 patients with healthy sinus rhythm were selected as a control group.The serum levels of FGF-23 and miR-208 b in the two groups were measured.In the observation group,cardiac parameters were determined by echocardiography.RESULTS The serum levels of FGF-23 and miR-208 b in the observation group were 210.20±89.60 ng/mL and 5.30±1.22 ng/mL,which were significantly higher than the corresponding values in the control group(P<0.05).In the observation group,the serum levels of FGF-23 and miR-208 b in patients with persistent atrial fibrillation were 234.22±70.05 ng/mL and 5.83±1.00 ng/mL,which were significantly higher than the corresponding values in patients with paroxysmal atrial fibrillation(P<0.05).The left atrial dimension(LAD)of patients with persistent atrial fibrillation was 38.81±5.11 mm,which was significantly higher than that of patients with paroxysmal atrial fibrillation(P>0.05).The serum levels of FGF-23and miR-208 b were positively correlated with the LAD(r=0.411 and 0.382,P<0.05).In the observation group,the serum levels of FGF-23 and miR-208 b in patients with a major cardiovascular event(MACE)were 243.30±72.29 ng/mL and 6.12±1.12 ng/mL,which were significantly higher than the corresponding values in patients without a MACE(P<0.05).CONCLUSION The serum levels of FGF-23 and miR-208 b are increased in patients with atrial fibrillation and are related to the type of disease,cardiac parameters,and prognosis.展开更多
Fibroblast growth factor 21(FGF21)has been identified as an important regulator of carbohydrate and lipid metabolism,which plays an important role for metabolic regulation,particularly under conditions of energy depri...Fibroblast growth factor 21(FGF21)has been identified as an important regulator of carbohydrate and lipid metabolism,which plays an important role for metabolic regulation,particularly under conditions of energy deprivation or stress conditions.Dairy cows are subjected to a negative energy balance and various kinds of stress particularly during the periparturient phase and during early lactation.It has been shown that the plasma concentration of FGF21 in dairy cows is dramatically increased at parturition and remains high during the first weeks of lactation.This finding suggests that FGF21 might exert similar functions in dairy cows than in other species,such as mice or humans.However,the role of FGF21 in dairy cows has been less investigated so far.Following a brief summary of the previous findings about the function of FGF21 in humans and mice,the present review aims to present the current state of knowledge about the role of FGF21 in dairy cows.The first part of the review deals with the tissue localization of FGF21 and with conditions leading to an upregulation of FGF21 expression in the liver of dairy cows.In the second part,the influence of nutrition on FGF21 expression and the role of FGF21 for metabolic diseases in dairy cows is addressed.In the third part,findings of exogenous FGF21 application on metabolism in dairy cows are reported.Finally,the potential relevance of FGF21 in dairy cows is discussed.It is concluded that FGF21 might be of great importance for metabolic adaptation to negative energy balance and stress conditions in dairy cows.However,further studies are needed for a better understanding of the functions of FGF21 in dairy cows.展开更多
基金supported by grants from Jiangsu Commission of Health,No.Z2021086(to XL)Science and Technology Program of Suzhou,Nos.SYSD2020008(to XL),SKYD2022012(to XL)+1 种基金Suzhou Municipal Health Commission,No.KJXW2020058(to XL)Science and Technology Program of Zhangjiagang,No.ZKS2018(to XL)。
文摘Interfering with the ferroptosis pathway is a new strategy for the treatment of spinal cord injury.Fibroblast growth factor 21 can inhibit ferro ptosis and promote neurofunctional recovery,while heme oxygenase-1 is a regulator of iron and reactive oxygen species homeostasis.The relationship between heme oxygenase-1and ferroptosis remains controve rsial.In this study,we used a spinal co rd injury rat model to show that the levels of fibroblast growth factor 21 in spinal co rd tissue decreased after spinal cord injury.In addition,there was a significant aggravation of ferroptosis and a rapid increase in heme oxygenase-1 expression after spinal cord injury.Furthe r,heme oxygenase-1 aggravated fe rroptosis after spinal cord injury,while fibroblast growth factor 21 inhibited fe rroptosis by downregulating heme oxygenase-1.Thus,the activation of fibroblast growth factor 21 may provide a potential treatment for spinal co rd injury.These findings could provide a new potential mechanistic explanation for fibroblast growth factor 21 in the treatment of spinal cord injury.
基金the 2022 Zhejiang Provincial Health Science and Technology Plan,No.2022KY1216.
文摘BACKGROUND Fibroblast growth factor 21(FGF21),primarily secreted by the pancreas,liver,and adipose tissues,plays a pivotal role in regulating glucose and lipid metabolism.Acute pancreatitis(AP)is a common inflammatory disease with specific clinical manifestations.Many patients with diabetes present with concurrent inflammatory symptoms.Diabetes exacerbates intestinal permeability and intestinal inflammation,thus leading to the progression to AP.Our previous study indicated that FGF21 significantly attenuated susceptibility to AP in mice.AIM To investigate the potential protective role of FGF21 against AP in diabetic mice.METHODS In the present study,a mouse model of AP was established in diabetic(db)/db diabetic mice through ceruletide injections.Thereafter,the protective effects of recombinant FGF21 protein against AP were evaluated,with an emphasis on examining serum amylase(AMS)levels and pancreatic and intestinal inflammatory cytokines[interleukin(IL)-6,tumor necrosis factor-alpha(TNF-),and intestinal IL-1β].Additionally,the impact of this treatment on the histopathologic changes of the pancreas and small intestinal was examined to elucidate the role of FGF21 in diabetic mice with AP.An antibiotic(Abx)cocktail was administered in combination with FGF21 therapy to investigate whether the effect of FGF21 on AP in diabetic mice with AP was mediated through the modulation of the gut microbiota. Subsequently, thePhylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt), a bioinformaticssoftware package, was used to predict different pathways between the groups and to explore the potentialmechanisms by which the gut microbiota influenced the protective effect of FGF21.RESULTSThe results indicated that FGF21 notably diminished the levels of serum AMS (944.5 ± 15.9 vs 1732 ± 83.9, P < 0.01)and inflammatory factors including IL-6 (0.2400 ± 0.55 vs 1.233 ± 0.053, P < 0.01), TNF- (0.7067 ± 0.22 vs 1.433 ±0.051, P < 0.01), and IL-1β (1.377 ± 0.069 vs 0.3328 ± 0.02542, P < 0.01) in diabetic mice with AP. Moreover, notablesigns of recovery were observed in the pancreatic structure of the mice. The histologic evidence of inflammation inthe small intestine, including edema and villous damage, was significantly alleviated. FGF21 also significantlyaltered the composition of the gut microbiota, reestablishing the Bacteroidetes/Firmicutes ratio. Upon treatment withan Abx cocktail to deplete the gut microbiota, the FGF21 + Abx group showed lower levels of serum AMS (0.9328 ±0.075 vs 0.2249 ± 0.023, P < 0.01) and inflammatory factors (1.083 ± 0.12 vs 0.2799 ± 0.032, p < 0.01) than the FGF21group. Furthermore, the FGF21 + Abx group exhibited diminished injury to the pancreatic and small intestinaltissues, accompanied by a significant decrease in blood glucose levels (17.50 ± 1.1 vs 9.817 ± 0.69 mmol/L, P <0.001). These findings underscored the superior protective effects of the combination therapy involving an Abxcocktail with FGF21 over the FGF21 treatment alone in diabetic mice with AP. The gut microbiota compositionacross different groups was further characterized, and a differential expression analysis of gene functions wasundertaken using the PICRUSt2 prediction method. These findings suggested that FGF21 could potentially confertherapeutic effects on diabetic mice with AP by modulating the sulfate reduction I pathway and the superpathwayof n-acetylceramide degradation in the gut microbiota.CONCLUSION This study reveals the potential of FGF21 in improving pancreatic and intestinal damage recovery, reducing bloodglucose levels, and reshaping gut microbiota composition in diabetic mice with AP. Notably, the protective effectsof FGF21 are augmented when combined with the Abx cocktail.
基金supported by the National Natural Science Foundation of China,No.81070614the Key Project of the Natural Science Foundation of Hubei Province of China,No. 2008CDA044the Natural Science Foundation of Hubei University of Medicine,No.2011QDZR-2
文摘The present study explored the distribution and localization of fibroblast growth factor-8 and its potential receptor, fibroblast growth factor receptor-3, in adult rat brain in vivo and in nerve cells during differentiation of neural stem/progenitor cells in vitro. Immunohistochemistry was used to examine the distribution of fibroblast growth factor-8 in adult rat brain in vivo. Localization of fibroblast growth factor-8 and fibroblast growth factor receptor-3 in cells during neural stem/progenitor cell differentiation in vitro was detected by immunofluorescence. Flow cytometry and immunofluorescence were used to evaluate the effect of an anti-fibroblast growth factor-8 antibody on neural stem/progenitor cell differentiation and expansion in vitro. Results from this study confirmed that fibroblast growth factor-8 was mainly distributed in adult midbrain, namely the substantia nigra, compact part, dorsal tier, substantia nigra and reticular part, but was not detected in the forebrain comprising the caudate putamen and striatum. Unusual results were obtained in retrosplenial locations of adult rat brain. We found that fibroblast growth factor-8 and fibroblast growth factor receptor-3 were distributed on the cell membrane and in the cytoplasm of nerve cells using immunohistochemistry and immunofluorescence analyses. We considered that the distribution of fibroblast growth factor-8 and fibroblast growth factor receptor-3 in neural cells corresponded to the characteristics of fibroblast growth factor-8, a secretory factor. Addition of an anti-fibroblast growth factor-8 antibody to cultures significantly affected the rate of expansion and differentiation of neural stem/progenitor cells. In contrast, addition of recombinant fibroblast growth factor-8 to differentiation medium promoted neural stem/progenitor cell differentiation and increased the final yields of dopaminergic neurons and total neurons. Our study may help delineate the important roles of fibroblast growth factor-8 in brain activities and neural stem/progenitor cell differentiation.
基金supported by NIH grants AR049510 (TLC) and AR045955 (LDQ)
文摘Tumor-induced osteomalacia (TIO) is a rare paraneoplastic syndrome in which ectopic production of fibroblast growth factor 23 (FGF23) by non-malignant mesenchymal tumors causes phosphate wasting and bone fractures. Recent studies have implicated the hypoxia-inducible factor-la (HIF-la) in other phosphate wasting disorders caused by elevated FGF23, including X-linked hypophosphatemic rickets and autosomal dominant hypophosphatemia. Here we provide evidence that HIF-la mediates aberrant FGF23 in TIO by transcriptionally activating its promoter. Immunohistochemical studies in phosphaturic mesenchymal tumors resected from patients with documented TIO showed that HIF-la and FGF23 were co-localized in spindle- shaped cells adjacent to blood vessels. Cultured tumor tissue produced high levels of intact FGF23 and demonstrated increased expression of HIF-la protein. Transfection of MC3T3-E1 and Saos-2 cells with a HIF-la expression construct induced the activity of a FGF23 reporter construct. Prior treatment of tumor organ cultures with HIF-la inhibitors decreased HIF-la and FGF23 protein accumulation and inhibited HIF-la-induced luciferase reporter activity in transfected cells. Chromatin immunoprecipitation assays confirmed binding to a HIF-la consensus sequence within the proximal FGF23 promoter, which was eliminated by treatment with a HIF-la inhibitor. These results show for the first time that HIF-la is a direct transcriptional activator of FGF23 and suggest that upregulation of HIF-la activity in TIO contributes to the aberrant FGF23 production in these patients.
基金supported by the National Science Council(102-2320-B-324-001),Chinaupported by grants from Taipei Veterans General Hospital(V103E6-001&V104E6-001)by grants(MOST 104-2314-B-010-012-MY3,MOST 105-2314-B-010-013-MY2 and MOST 106-2632-B-324-001)from the Ministry of Science and Technology in Taiwan,China
文摘Alternatively activated macrophages (M2 macrophages) promote central nervous system regeneration. Our previous study demonstrated that treatment with peripheral nerve grafts and fibroblast growth factor-1 recruited more M2 macrophages and improved partial functional recovery in spinal cord transected rats. The migration of macrophages is matrix metalloproteinase (MMP) dependent. We used a general inhibitor of MMPs to influence macrophage migration, and we examined the migration of macrophage populations and changes in spinal function. Rat spinal cords were completely transected at Ts, and 5 mm of spinal cord was removed (group T). In group R, spinal cord-transected rats received treatment with fibroblast grow th factor- 1 and peripheral nerve grafts. In group RG, rats received the same treatment as group R with the addition of 200 μM GM6001 (an MMP inhibitor) to the fibrin mix. We found that MMP-9, but not MMP- 2, was upregulated in the graft area of rats in group R. Local application of the MMP inhibitor resulted in a reduction in the ratio of arginase-1 (M2 macrophage subset)/inducible nitric oxide synthase-postive cells. When the MMP inhibitor was applied at 8 weeks postoperation, the partial functional recovery observed in group R was lost. This effect was accompanied by a decrease in brain-derived neurotrophic factor levels in the nerve graft. These results suggested that the arginase-1 positive population in spinal cord transected rats is a migratory cell population rather than the phenotypic conversion of early iNOS^+ cells and that the migration of the arginase-1^+ population could be regulated locally. Simultaneous application of MMP in- hibitors or promotion of MMP activity for spinal cord injury needs to be considered if the coadministered treatment involves M2 recruitment.
文摘BACKGROUND The incidence and prevalence of atrial fibrillation are increasing each year,and this condition is one of the most common clinical arrhythmias.AIM To investigate the levels and significance of serum fibroblast growth factor 23(FGF-23)and miR-208 b in patients with atrial fibrillation and their relationship with prognosis.METHODS From May 2018 to October 2019,240 patients with atrial fibrillation were selected as an observation group,including 134 with paroxysmal atrial fibrillation and 106 with persistent atrial fibrillation;150 patients with healthy sinus rhythm were selected as a control group.The serum levels of FGF-23 and miR-208 b in the two groups were measured.In the observation group,cardiac parameters were determined by echocardiography.RESULTS The serum levels of FGF-23 and miR-208 b in the observation group were 210.20±89.60 ng/mL and 5.30±1.22 ng/mL,which were significantly higher than the corresponding values in the control group(P<0.05).In the observation group,the serum levels of FGF-23 and miR-208 b in patients with persistent atrial fibrillation were 234.22±70.05 ng/mL and 5.83±1.00 ng/mL,which were significantly higher than the corresponding values in patients with paroxysmal atrial fibrillation(P<0.05).The left atrial dimension(LAD)of patients with persistent atrial fibrillation was 38.81±5.11 mm,which was significantly higher than that of patients with paroxysmal atrial fibrillation(P>0.05).The serum levels of FGF-23and miR-208 b were positively correlated with the LAD(r=0.411 and 0.382,P<0.05).In the observation group,the serum levels of FGF-23 and miR-208 b in patients with a major cardiovascular event(MACE)were 243.30±72.29 ng/mL and 6.12±1.12 ng/mL,which were significantly higher than the corresponding values in patients without a MACE(P<0.05).CONCLUSION The serum levels of FGF-23 and miR-208 b are increased in patients with atrial fibrillation and are related to the type of disease,cardiac parameters,and prognosis.
文摘Fibroblast growth factor 21(FGF21)has been identified as an important regulator of carbohydrate and lipid metabolism,which plays an important role for metabolic regulation,particularly under conditions of energy deprivation or stress conditions.Dairy cows are subjected to a negative energy balance and various kinds of stress particularly during the periparturient phase and during early lactation.It has been shown that the plasma concentration of FGF21 in dairy cows is dramatically increased at parturition and remains high during the first weeks of lactation.This finding suggests that FGF21 might exert similar functions in dairy cows than in other species,such as mice or humans.However,the role of FGF21 in dairy cows has been less investigated so far.Following a brief summary of the previous findings about the function of FGF21 in humans and mice,the present review aims to present the current state of knowledge about the role of FGF21 in dairy cows.The first part of the review deals with the tissue localization of FGF21 and with conditions leading to an upregulation of FGF21 expression in the liver of dairy cows.In the second part,the influence of nutrition on FGF21 expression and the role of FGF21 for metabolic diseases in dairy cows is addressed.In the third part,findings of exogenous FGF21 application on metabolism in dairy cows are reported.Finally,the potential relevance of FGF21 in dairy cows is discussed.It is concluded that FGF21 might be of great importance for metabolic adaptation to negative energy balance and stress conditions in dairy cows.However,further studies are needed for a better understanding of the functions of FGF21 in dairy cows.