1.Establishment of the method of nucleic acids amplification test for HCV/HZV-1 ofpooled source plasma
Jianshi BAI ; Wei WANG ; Wensi ZHU
Chinese Journal of Blood Transfusion 2002;0(05):-
Objective To construct the method of nucleic acids amplification test(NAT) for transfusion-transmitted viruses of source plasma.Methods Domestic fluorescence PCR kits for HCV RNA and HIV1 RNA amplification were implemented to assay of sensitivity,reproducibility and robustness of WHO international standards,and then 19196 ELISA negative plasma samples collected from four manufacturers of plasma derivatived were tested for HIV RNA and HCV RNA by NAT.Results The amplification system which had been constructed could assure the detection limits for high copies (200 IU/ml) of nucleic acids from WHO international standard ,and the detection limits for lower than 100 IU/ml of nucleic acids gradually reduced.None of HCV-RNA and HIV/1-RNA was detected in these samples.Conclusion The system of nucleic acids amplification test could be used fuo screening of transfusion-transmitted viruses in source plasma
2.MicroRNA-1 and-16 inhibit cardiomyocyte hypertrophy by targeting cyclins/Rb pathway
Zhixin SHAN ; Jiening ZHU ; Chunmei TANG ; Wensi ZHU ; Qiuxiong LIN ; Zhiqin HU ; Yongheng FU ; Mengzhen ZHANG
Chinese Journal of Pathophysiology 2016;32(8):1496-1496
AIM:MicroRNAs ( miRNAs) were recognized to play significant roles in cardiac hypertrophy .But, it remains unknown whether cyclin/Rb pathway is modulated by miRNAs during cardiac hypertrophy .This study investigates the potential roles of microRNA-1 (miR-1) and microRNA-16 (miR-16) in modulating cyclin/Rb pathway during cardiomyocyte hypertrophy .METHODS:An animal model of hypertrophy was established in a rat with abdominal aortic constriction (AAC).In addition, a cell model of hypertrophy was also achieved based on PE-promoted neonatal rat ventricular cardiomyocyte .RESULTS:miR-1 and-16 expression were markedly de-creased in hypertrophic myocardium and hypertrophic cardiomyocytes in rats .Overexpression of miR-1 and -16 suppressed rat cardiac hypertrophy and hypertrophic phenotype of cultured cardiomyocytes .Expression of cyclins D1, D2 and E1, CDK6 and phosphorylated pRb was increased in hypertrophic myocardium and hypertrophic cardiomyocytes , but could be reversed by enforced expression of miR-1 and -16.CDK6 was validated to be modulated post-transcriptionally by miR-1, and cyclins D1, D2 and E1 were further validated to be modulated post-transcriptionally by miR-16.CONCLUSION: Attenuations of miR-1 and -16 provoke cardiomyocyte hypertrophy via derepressing the cyclins D1, D2, E1 and CDK6, and activating cyclin/Rb pathway.
3.MEF2C mediates the effect of microRNA-214 on inhibiting cardiomyocyte hypertrophy
Chunmei TANG ; Jiening ZHU ; Wensi ZHU ; Qiuxiong LIN ; Zhiqin HU ; Yongheng FU ; Mengzhen ZHANG ; Zhixin SHAN
Chinese Journal of Pathophysiology 2016;32(8):1496-1497
AIM:To investigate the effect of miR-214 on cardiomyocyte hypertrophy and the expression of the potential target genes . METHODS:A cell model of hypertrophy was established based on angiotensin-Ⅱ( Ang-Ⅱ)-induced neonatal mouse ventricular car-diomyocytes (NMVCs).Dual luciferase reporter assay was performed to verify the interaction between miR-214 and the 3’ UTR of MEF2C.The expression of MEF2C and hypertrophy-related genes at mRNA and protein levels was determined by RT-qPCR and Wes-tern blotting, respectively.RESULTS:The expression of ANP, ACTA1,β-MHC and miR-214 was markedly increased in Ang-Ⅱ-in-duced hypertrophic cardiomyocytes .Dual luciferase reporter assay revealed that miR-214 interacted with the 3’ UTR of MEF2C, and miR-214 was verified to inhibit MEF2C expression at the transcriptional level .The protein expression of MEF2C was markedly in-creased in the hypertrophic cardiomyocytes .Moreover, miR-214 mimic, in parallel to MEF2C siRNA, inhibited the expression of hy-pertrophy-related genes in Ang-Ⅱ-induced NMVCs.CONCLUSION:MEF2C is a target gene of miR-214, which mediates the effect of miR-214 on attenuating cardiomyocyte hypertrophy .
4.Effect of circRNA_000203 on fibrotic phenotypes in mouse cardiac fibro-blasts
Wensi ZHU ; Chunmei TANG ; Jiening ZHU ; Qiuxiong LIN ; Yongheng FU ; Chunyu DENG ; Hui YANG ; Fang RAO ; Shulin WU ; Zhixin SHAN
Chinese Journal of Pathophysiology 2016;32(8):1351-1356
AIM:To determine circular RNA (circRNA) profiles in the diabetic mouse myocardium , and to investigate the effect of circRNA_000203 on fibrotic phenotypes in cardiac fibroblasts .METHODS:Masson trichrome stai-ning was performed on the myocardium of the diabetic db /db mice and the non diabetic db/m control mice .circRNA ex-pression profile in the diabetic myocardium was detected by circRNAs microarray .The expression of circRNA_000203 was determined by real time fluorescence quantitative PCR ( RT-qPCR ) .Recombinant circRNA_000203 adenovirus was pre-pared for enforced the expression of circRNA_000203 in mouse cardiac fibroblasts.The expression of Col1a2, Col3a1andα-SMA was determined in circRNA_000203-modified cardiac fibroblasts , respectively .RESULTS:Masson trichrome stai-ning showed that fibrosis was increased in the diabetic mouse myocardium .The results of circRNA array detection revealed that circRNAs were dysregulated in the diabetic myocardium .circRNA_000203 was up-regulated in the diabetic myocardi-um.Significant over-expression of circRNA_000203 was achieved in the cardiac fibroblasts after infection with the recombi-nant circRNA_000203 adenovirus.The mRNA and protein expression of Col1a2, Col3a1 and α-SMA was significantly in-creased in the cardiac fibroblasts with over-expression of circRNA_000203.CONCLUSION:circRNA_000203 is up-regu-lated in the diabetic mouse myocardium .It has pro-fibrotic effect on the cardiac fibroblasts .
5.MEF2C mediates inhibitory effect of microRNA-214 on cardiomyocyte hypertrophy
Chunmei TANG ; Jiening ZHU ; Wensi ZHU ; Qiuxiong LIN ; Zhiqin HU ; Yongheng FU ; Mengzhen ZHANG ; Chunyu DENG ; Honghong TAN ; Shulin WU ; Zhixin SHAN
Chinese Journal of Pathophysiology 2016;32(8):1345-1350
AIM:To investigate the effect of microRNA-214 ( miR-214) on cardiomyocyte hypertrophy and the expression of the potential target genes .METHODS:A cell model of hypertrophy was established based on angiotensin-Ⅱ( Ang-Ⅱ)-induced neonatal mouse ventricular cardiomyocytes ( NMVCs) .Dual luciferase reporter assay was performed to verify the interaction between miR-214 and the 3’ UTR of MEF2C.The expression of MEF2C and hypertrophy-related genes at mRNA and protein levels was determined by RT-qPCR and Western blot , respectively .RESULTS:The expression of ANP, ACTA1,β-MHC and miR-214 was markedly increased in Ang-Ⅱ-induced hypertrophic cardiomyocytes .Dual lu-ciferase reporter assay revealed that miR-214 interacted with the 3’ UTR of MEF2C, and miR-214 was verified to inhibit MEF2C expression at the transcriptional level .The protein expression of MEF2C was markedly increased in the hypertro-phic cardiomyocytes .Moreover, miR-214 mimic, in parallel to MEF2C siRNA, inhibited the expression of hypertrophy-re-lated genes in Ang-Ⅱ-induced NMVCs.CONCLUSION:MEF2C is a target gene of miR-214, which mediates the effect of miR-214 on attenuating cardiomyocyte hypertrophy .
6.Impact of the CD4~+CD25~(nt/hi)CD127~(lo) regulatory T cells on the immune status and disease progression in HIV-1 infected individuals
Mingkui ZHOU ; Yile XUE ; Juli GONG ; Leiming ZHOU ; Xiaohong ZHENG ; Jing GAI ; Fangwei SHEN ; Wei ZHANG ; Zhen NING ; Qing YUE ; Wei LU ; Qichao PAN ; Laiyi KANG ; Ping ZHONG ; Wensi ZHU ; Ying WANG
Chinese Journal of Immunology 1999;0(12):-
Objective:To investigate the impact of the CD4+CD25nt/hiCD127lo regulatory T cell subset frequency on the immune status and disease progression of Chinese HIV-1 infected individuals.Methods:83 untreated HIV-infected individuals and 312 healthy control individuals of four distinct age groups were enrolled in the research. The CD4+ T cell absolute counts, phenotypes and frequency determination of CD4+CD25nt/hiCD127lo Regulatory T cell subsets was performed on freshly obtained whole blood samples by 3-color immune staining flow cytometry. The HIV-1 specific cellular immune function was test at single cell level by ELISpot. The corresponding plasma viral load was determined by NASBA.Results:The frequency of peripheral CD4+CD25nt/hiCD127lo regulatory T cells of HIV infected individuals in distinct disease progression status was dissimilar in China , and significantly increased in contrast to the healthy controls(P
7.MicroRNA-199a-3p enhances expressions of fibrosis-associated genes through targeting Smad1 in mouse cardiac fibroblasts.
Jingnan LIANG ; Wensi ZHU ; Zhuo ZHANG ; Jiening ZHU ; Yongheng FU ; Qiuxiong LIN ; Sujuan KUANG ; Mengzhen ZHANG ; Zhixin SHAN
Journal of Southern Medical University 2018;38(10):1203-1208
OBJECTIVETo investigate the role of miR-199a-3p in cardiac fibrosis and the potential target of miR-199a-3p.
METHODSCardiac fibroblasts were isolated from C57BL/6 mice and cultured. The miR-199a-3p mimic and Smad1 siRNA were transiently transfected into the cardiac fibroblasts via liposome. Dual luciferase reporter assay was performed to confirm the interaction between miR-199a-3p and the 3'-UTR of Smad1. The expressions of Smad1 and fibrosis-related genes at the mRNA and protein levels in the cells after miR-199a-3p mimic transfection were determined using RT-qPCR and Western blotting, respectively. The expressions of Smad1, Smad3 and fibrosis-related genes at the protein level in cells transfected with miR-199a-3p mimic and Smad1 siRNA were detected using Western blotting.
RESULTSOver-expression of miR-199a-3p significantly increased the expression of cardiac fibrosis-related genes in cultured mouse cardiac fibroblasts. Dual luciferase reporter assay revealed the interaction of miR-199a-3p with the 3'-UTR of Smad1. The results of RT-qPCR and Western blotting confirmed that miR-199a-3p inhibited Smad1 expression at the post- transcriptional level. Transfection with miR-199a-3p mimic and siRNA-mediated Smad1 silencing consistently activated the Smad3 signaling pathway and enhanced the expressions of cardiac fibrosis-related genes in the cardiac fibroblasts.
CONCLUSIONSAs the target gene of miR-199a-3p, Smad1 mediates the pro-fibrotic effect of miR-199a-3p by activating the Smad3 signaling in cultured mouse cardiac fibroblasts.