本研究旨在深度剖析长链非编码RNA P53和P21在大鼠动脉粥样硬化模型中的作用及应用潜能。择取60只大鼠,随机平均划分为正常组与粥样硬化组,借由构建大鼠动脉粥样硬化模型,综合运用多种实验技术(如免疫组织化学染色、实时荧光定量PCR、...本研究旨在深度剖析长链非编码RNA P53和P21在大鼠动脉粥样硬化模型中的作用及应用潜能。择取60只大鼠,随机平均划分为正常组与粥样硬化组,借由构建大鼠动脉粥样硬化模型,综合运用多种实验技术(如免疫组织化学染色、实时荧光定量PCR、蛋白质印迹法、酶联免疫分析等)及仪器(如彩色多普勒超声诊断仪),对两组中P53和P21的表达状况、调控机制及其与疾病演进的关联予以系统性且全方位的解析。研究成果有望为动脉粥样硬化的诊断与治疗提供新颖且极具价值的靶点与策略。This study aims to deeply analyze the role and application potential of long non-coding RNA P53 and P21 in rat atherosclerosis model. 60 rats were selected and randomly divided into normal group and atherosclerosis group. By constructing rat atherosclerosis model, a variety of experimental techniques (such as immunohistochemistry staining, real-time fluorescence quantitative PCR, protein blotting, enzyme-linked immunosorbent assay, etc.) and instruments (such as color Doppler ultrasound diagnostic instrument) were used to systematically and comprehensively analyze the expression status, regulatory mechanism and relationship between P53 and P21 and disease progression in the two groups. The research results are expected to provide novel and valuable targets and strategies for the diagnosis and treatment of atherosclerosis.展开更多
Diabetic kidney disease (DKD)is a microvascular complication of type 2 diabetes.The study of DKD mechanisms is the most important target for the prevention of DKD.Renal senescence is one of the important pathogeneses ...Diabetic kidney disease (DKD)is a microvascular complication of type 2 diabetes.The study of DKD mechanisms is the most important target for the prevention of DKD.Renal senescence is one of the important pathogeneses for DKD,but the mechanism of renal and cellular senescence is unclear.Decreased expression of circulating miR-126 is associated with the development of DKD and may be a promising blood-based biomarker for DKD.This study is to probe the effect and mechanism of miR-126 on the aging of human glomerular mesangial cells (HGMCs)induced by high glucose.HGMCs were cultured with Roswell Park Memorial Institute (RPMI-1640)in vitro.The effect of high glucose on morphology of HGMCs was observed 72h after intervention.The cell cycle was examined by flow cytometry.The telomere length was measured by Southern blotting.The expression levels of p53,p21 and Rb proteins in p53-p21-Rb signaling pathway and p-statl,p-stat3 in JAK/STAT signaling pathway were detected by Western blotting respectively.The expression of miR-126 was examined by qRT-PCR.MiR-126 mimics was transfected into HGMCs.The effects of miR-126 mimics transfection on cell morphology,cell cycle,telomere length,p53,p21,Rb,p-stat1 and p-stat3 were observed. The results showed that high glucose not only arrested the cell cycle in G1phase but also shortened the telomere length.High glucose led to high expression of p53,p21,Rb,p-statl and p-stat3 and premature senescence of HGMCs by activating the telomere-p53-p21-Rb and JAK/STAT signaling pathways.Moreover,the miR-126 was decreased in HGMCs induced by high glucose.It was suggested that the transfection of miR-126 mimics could inhibit the telomere-p53-p21-Rb and JAK/STAT signaling pathway activity in vitro and delay the senescence of HGMCs.The results may serve as a new strategy for the treatment of DKD.展开更多
文摘本研究旨在深度剖析长链非编码RNA P53和P21在大鼠动脉粥样硬化模型中的作用及应用潜能。择取60只大鼠,随机平均划分为正常组与粥样硬化组,借由构建大鼠动脉粥样硬化模型,综合运用多种实验技术(如免疫组织化学染色、实时荧光定量PCR、蛋白质印迹法、酶联免疫分析等)及仪器(如彩色多普勒超声诊断仪),对两组中P53和P21的表达状况、调控机制及其与疾病演进的关联予以系统性且全方位的解析。研究成果有望为动脉粥样硬化的诊断与治疗提供新颖且极具价值的靶点与策略。This study aims to deeply analyze the role and application potential of long non-coding RNA P53 and P21 in rat atherosclerosis model. 60 rats were selected and randomly divided into normal group and atherosclerosis group. By constructing rat atherosclerosis model, a variety of experimental techniques (such as immunohistochemistry staining, real-time fluorescence quantitative PCR, protein blotting, enzyme-linked immunosorbent assay, etc.) and instruments (such as color Doppler ultrasound diagnostic instrument) were used to systematically and comprehensively analyze the expression status, regulatory mechanism and relationship between P53 and P21 and disease progression in the two groups. The research results are expected to provide novel and valuable targets and strategies for the diagnosis and treatment of atherosclerosis.
基金This project was supported by grants from the Key Science and Technology Development Program of Nanjing City of the People's Republic of China (No. YKK15057 and No.YKK16097)and the National Natural Science Foundation of China (No.81473684).
文摘Diabetic kidney disease (DKD)is a microvascular complication of type 2 diabetes.The study of DKD mechanisms is the most important target for the prevention of DKD.Renal senescence is one of the important pathogeneses for DKD,but the mechanism of renal and cellular senescence is unclear.Decreased expression of circulating miR-126 is associated with the development of DKD and may be a promising blood-based biomarker for DKD.This study is to probe the effect and mechanism of miR-126 on the aging of human glomerular mesangial cells (HGMCs)induced by high glucose.HGMCs were cultured with Roswell Park Memorial Institute (RPMI-1640)in vitro.The effect of high glucose on morphology of HGMCs was observed 72h after intervention.The cell cycle was examined by flow cytometry.The telomere length was measured by Southern blotting.The expression levels of p53,p21 and Rb proteins in p53-p21-Rb signaling pathway and p-statl,p-stat3 in JAK/STAT signaling pathway were detected by Western blotting respectively.The expression of miR-126 was examined by qRT-PCR.MiR-126 mimics was transfected into HGMCs.The effects of miR-126 mimics transfection on cell morphology,cell cycle,telomere length,p53,p21,Rb,p-stat1 and p-stat3 were observed. The results showed that high glucose not only arrested the cell cycle in G1phase but also shortened the telomere length.High glucose led to high expression of p53,p21,Rb,p-statl and p-stat3 and premature senescence of HGMCs by activating the telomere-p53-p21-Rb and JAK/STAT signaling pathways.Moreover,the miR-126 was decreased in HGMCs induced by high glucose.It was suggested that the transfection of miR-126 mimics could inhibit the telomere-p53-p21-Rb and JAK/STAT signaling pathway activity in vitro and delay the senescence of HGMCs.The results may serve as a new strategy for the treatment of DKD.