BACKGROUND Gastric cancer(GC)is a common type of digestive cancer with high morbidity and mortality rates worldwide.Considerable effort has been expended in understanding the mechanism of GC development and metastasis...BACKGROUND Gastric cancer(GC)is a common type of digestive cancer with high morbidity and mortality rates worldwide.Considerable effort has been expended in understanding the mechanism of GC development and metastasis.The current study therefore explores the involvement of microRNAs in the regulation of GC progression.AIM To explore the expression and function of miR-30e-3p in GC development.METHODS MiR-30e-3p was found to be downregulated in GC,with low levels thereof predicting poor outcomes among patients with GC.Functionally,we revealed that miR-30e-3p suppressed cell growth and metastatic behaviors of GC cells.Bioinformatics analysis predicted that THO complex 2(THOC2)was a direct target of miR-30e-3p,and the interaction between miR-30e-3p and THOC2 was further validated by a luciferase reporter assay.RESULTS Our findings revealed that knockdown of THOC2 inhibited the growth and metastatic behaviors of GC cells.After investigating signaling pathways involved in miR-30e-3p regulation,we found that the miR-30e-3p/THOC2 axis regulated the PI3K/AKT/mTOR pathway in GC.CONCLUSION Our findings suggest the novel functional axis miR-30e-3p/THOC2 is involved in GC development and progression.The miR-30e-3p/THOC2 axis could be utilized to develop new therapies against GC.展开更多
Background:Mesenchymal stem cell(MSC)-derived exosomes are closely related to pyroptosis in diabetic nephropathy(DN).This study aimed to explore the protective effect of exosomal miR-30a-5p on podocyte pyroptosis in D...Background:Mesenchymal stem cell(MSC)-derived exosomes are closely related to pyroptosis in diabetic nephropathy(DN).This study aimed to explore the protective effect of exosomal miR-30a-5p on podocyte pyroptosis in DN.Methods:Streptozotocin was used to establish the mouse model of DN.Human bone marrow MSC-derived exosomes were extracted and identified via transmission electron microscopy,nanoparticle tracking analysis,and western blotting.MiR-30a-5p mimics and non-control(NC)mimics were transfected into MSCs and podocytes,and exosomes were isolated from the MSCs.High glucose(HG)-induced podocyte model was established to determine the effect of exosomal miR-30a-5p on pyroptosis and inflammation in vitro.Results:MiR-30a-5p was expressed at low levels in DN models,while NLR family pyrin domain containing 3(NLRP3),caspase-1,gasdermin-N(GSDMD-N),and pro-inflammatory factors(tumor necrosis factor-alpha,interleukin(IL)-1beta,and IL-18)were augmented.In vitro,miR-30a-5p expression in the HG-damaged podocytes was down-regulated,while NLRP3 was up-regulated.Interestingly,miR-30a-5p overexpression diminished HG-induced podocyte injury,as proven by increased activity and decreased pyroptosis of podocytes.Concurrently,the up-regulation of miR-30a-5p could inhibit the expression of pro-inflammatory factors,caspase-1,GSDMD-N,and NLRP3 in HG-induced podocytes.MSC-derived exosomal miR-30a-5p treatment of HG-damaged cells has similar effects to miR-30a-5p mimics treatment.Overexpression of NLRP3 reversed the effect of miR-30a-5p mimics on HG-induced podocytes.Conclusion:This research confirmed that exosomal miR-30a-5p regulates pyroptosis via mediating NLRP3 in DN.展开更多
基金Supported by National Natural Science Foundation of China,No.81860442Ningxia Natural Science Foundation Project,No.2022AAC03525.
文摘BACKGROUND Gastric cancer(GC)is a common type of digestive cancer with high morbidity and mortality rates worldwide.Considerable effort has been expended in understanding the mechanism of GC development and metastasis.The current study therefore explores the involvement of microRNAs in the regulation of GC progression.AIM To explore the expression and function of miR-30e-3p in GC development.METHODS MiR-30e-3p was found to be downregulated in GC,with low levels thereof predicting poor outcomes among patients with GC.Functionally,we revealed that miR-30e-3p suppressed cell growth and metastatic behaviors of GC cells.Bioinformatics analysis predicted that THO complex 2(THOC2)was a direct target of miR-30e-3p,and the interaction between miR-30e-3p and THOC2 was further validated by a luciferase reporter assay.RESULTS Our findings revealed that knockdown of THOC2 inhibited the growth and metastatic behaviors of GC cells.After investigating signaling pathways involved in miR-30e-3p regulation,we found that the miR-30e-3p/THOC2 axis regulated the PI3K/AKT/mTOR pathway in GC.CONCLUSION Our findings suggest the novel functional axis miR-30e-3p/THOC2 is involved in GC development and progression.The miR-30e-3p/THOC2 axis could be utilized to develop new therapies against GC.
文摘Background:Mesenchymal stem cell(MSC)-derived exosomes are closely related to pyroptosis in diabetic nephropathy(DN).This study aimed to explore the protective effect of exosomal miR-30a-5p on podocyte pyroptosis in DN.Methods:Streptozotocin was used to establish the mouse model of DN.Human bone marrow MSC-derived exosomes were extracted and identified via transmission electron microscopy,nanoparticle tracking analysis,and western blotting.MiR-30a-5p mimics and non-control(NC)mimics were transfected into MSCs and podocytes,and exosomes were isolated from the MSCs.High glucose(HG)-induced podocyte model was established to determine the effect of exosomal miR-30a-5p on pyroptosis and inflammation in vitro.Results:MiR-30a-5p was expressed at low levels in DN models,while NLR family pyrin domain containing 3(NLRP3),caspase-1,gasdermin-N(GSDMD-N),and pro-inflammatory factors(tumor necrosis factor-alpha,interleukin(IL)-1beta,and IL-18)were augmented.In vitro,miR-30a-5p expression in the HG-damaged podocytes was down-regulated,while NLRP3 was up-regulated.Interestingly,miR-30a-5p overexpression diminished HG-induced podocyte injury,as proven by increased activity and decreased pyroptosis of podocytes.Concurrently,the up-regulation of miR-30a-5p could inhibit the expression of pro-inflammatory factors,caspase-1,GSDMD-N,and NLRP3 in HG-induced podocytes.MSC-derived exosomal miR-30a-5p treatment of HG-damaged cells has similar effects to miR-30a-5p mimics treatment.Overexpression of NLRP3 reversed the effect of miR-30a-5p mimics on HG-induced podocytes.Conclusion:This research confirmed that exosomal miR-30a-5p regulates pyroptosis via mediating NLRP3 in DN.