Objective Little is known about the role of microRNA-29a-3p(miR-29a-3p)in inflammation-related pyroptosis,especially in drug-induced acute liver failure(DIALF).This study aimed to identify the relationship between miR...Objective Little is known about the role of microRNA-29a-3p(miR-29a-3p)in inflammation-related pyroptosis,especially in drug-induced acute liver failure(DIALF).This study aimed to identify the relationship between miR-29a-3p and inflammation-related pyroptosis in DIALF and confirm its underlying mechanisms.Methods Thioacetamide(TAA)-and acetaminophen(APAP)-induced ALF mouse models were established,and human samples were collected.The expression levels of miR-29a-3p and inflammation and pyroptosis markers were measured by quantitative real-time polymerase chain reaction(qRT-PCR),Western blotting,or immunochemical staining in miR-29a-3p knock-in transgenic mouse(MIR29A(KI/KI))DIALF models.In addition,RNA sequencing was conducted to explore the mechanisms.Results MiR-29a-3p levels were decreased in TAA-and APAP-induced DIALF models.MiR-29a-3p prevented DIALF caused by TAA and APAP.RNA sequencing and further experiments showed that the protective effect of miR-29a-3p on DIALF was mainly achieved through inhibition of inflammation-related pyroptosis,and the inhibition was dependent on activation of the PI3K/AKT pathway.In addition,miR-29a-3p levels were reduced,and pyroptosis was activated in both peripheral blood mononuclear cells and liver tissues of DIALF patients.Conclusion The study supports the idea that miR-29a-3p inhibits pyroptosis by activating the PI3K/AKT pathway to prevent DIALF.MiR-29a-3p may be a promising therapeutic target for DIALF.展开更多
Background:Renalfibrosis is an important process in the development of chronic kidney disease.Understanding the pathogenesis andfinding effective treatments for renalfibrosis is crucial.This study aims to investigate whe...Background:Renalfibrosis is an important process in the development of chronic kidney disease.Understanding the pathogenesis andfinding effective treatments for renalfibrosis is crucial.This study aims to investigate whether a newly discovered long non-coding RNA(lncRNA)called LOC103694972 could be a potential target for treatingfibrosis of NRK-49F cells.Methods:LncRNA Chip was used to identify differentially expressed lncRNAs between TGF-β1-induced NRK-49F cells and normal cells.The dual-luciferase assay confirmed the binding between miR-29c-3p and signal transducer and activator of transcription(STAT3),as well as between miR-29c-3p and lncRNA LOC103694972.Si-LOC103694972 and miR-29c-3p mimic were then transfected into TGF-β1-induced NRK-49F cells.Results:The study found that LOC103694972 was highly expressed in TGF-β1-induced NRK-49F cells.These cells exhibited increased cell length and activity compared to the control group.The expression levels of Collagen I,α-Smooth muscle actin(α-SMA),and tissue inhibitor of metalloproteinase(TIMP-1)were increased,while matrix Metalloproteinase 2(MMP2)and matrix Metalloproteinase 9(MMP9)expression was decreased.However,transfection with si-LOC103694972 and miR-29c-3p mimics restored cell morphology and reduced cell viability.This led to a decrease in the levels of Collagen I,α-SMA,and TIMP-1,as well as an increase in MMP2 and MMP9 expression.Additionally,TGF-β1-induced NRK-49F cells transfected with miR-29c-3p mimics activated the STAT3-Smad3/CTGF pathway.Conclusion:Based on thesefindings,lncRNA LOC103694972 shows promise as a target for treating renalfibrosis.It negatively regulates miR-29c-3p and activates the STAT3-Smad3/CTGF pathway.展开更多
基金This project was supported by grants from the National Science and Technology Major Project(No.2014ZX10005001 and No.2018ZX10302204-001)Chen Xiaoping Development Foundation(No.CXPJJH12000002-2020032).
文摘Objective Little is known about the role of microRNA-29a-3p(miR-29a-3p)in inflammation-related pyroptosis,especially in drug-induced acute liver failure(DIALF).This study aimed to identify the relationship between miR-29a-3p and inflammation-related pyroptosis in DIALF and confirm its underlying mechanisms.Methods Thioacetamide(TAA)-and acetaminophen(APAP)-induced ALF mouse models were established,and human samples were collected.The expression levels of miR-29a-3p and inflammation and pyroptosis markers were measured by quantitative real-time polymerase chain reaction(qRT-PCR),Western blotting,or immunochemical staining in miR-29a-3p knock-in transgenic mouse(MIR29A(KI/KI))DIALF models.In addition,RNA sequencing was conducted to explore the mechanisms.Results MiR-29a-3p levels were decreased in TAA-and APAP-induced DIALF models.MiR-29a-3p prevented DIALF caused by TAA and APAP.RNA sequencing and further experiments showed that the protective effect of miR-29a-3p on DIALF was mainly achieved through inhibition of inflammation-related pyroptosis,and the inhibition was dependent on activation of the PI3K/AKT pathway.In addition,miR-29a-3p levels were reduced,and pyroptosis was activated in both peripheral blood mononuclear cells and liver tissues of DIALF patients.Conclusion The study supports the idea that miR-29a-3p inhibits pyroptosis by activating the PI3K/AKT pathway to prevent DIALF.MiR-29a-3p may be a promising therapeutic target for DIALF.
基金This work was supported by the Hunan Provincial Education Department General Project Research Fund(No.20C1412)the Hunan Graduate Scientific Research Innovation Project(No.CX2018B474)the National Famous Elderly Chinese Medicine Experts Xinyu Chen Inheritance Workshop Construction Project(No.[2022]75).
文摘Background:Renalfibrosis is an important process in the development of chronic kidney disease.Understanding the pathogenesis andfinding effective treatments for renalfibrosis is crucial.This study aims to investigate whether a newly discovered long non-coding RNA(lncRNA)called LOC103694972 could be a potential target for treatingfibrosis of NRK-49F cells.Methods:LncRNA Chip was used to identify differentially expressed lncRNAs between TGF-β1-induced NRK-49F cells and normal cells.The dual-luciferase assay confirmed the binding between miR-29c-3p and signal transducer and activator of transcription(STAT3),as well as between miR-29c-3p and lncRNA LOC103694972.Si-LOC103694972 and miR-29c-3p mimic were then transfected into TGF-β1-induced NRK-49F cells.Results:The study found that LOC103694972 was highly expressed in TGF-β1-induced NRK-49F cells.These cells exhibited increased cell length and activity compared to the control group.The expression levels of Collagen I,α-Smooth muscle actin(α-SMA),and tissue inhibitor of metalloproteinase(TIMP-1)were increased,while matrix Metalloproteinase 2(MMP2)and matrix Metalloproteinase 9(MMP9)expression was decreased.However,transfection with si-LOC103694972 and miR-29c-3p mimics restored cell morphology and reduced cell viability.This led to a decrease in the levels of Collagen I,α-SMA,and TIMP-1,as well as an increase in MMP2 and MMP9 expression.Additionally,TGF-β1-induced NRK-49F cells transfected with miR-29c-3p mimics activated the STAT3-Smad3/CTGF pathway.Conclusion:Based on thesefindings,lncRNA LOC103694972 shows promise as a target for treating renalfibrosis.It negatively regulates miR-29c-3p and activates the STAT3-Smad3/CTGF pathway.