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The preventive and therapeutic effects of AAV1‐KLF4‐shRNA in cigarette smoke‐induced pulmonary hypertension

机译:AAV1-KLF4-shRNA在香烟烟雾诱导的肺动脉高压中的预防和治疗作用

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摘要

We found previously that KLF4 expression was up‐regulated in cultured rat and human pulmonary artery smooth muscle cells (PASMCs) exposed to cigarette smoke (CS) extract and in pulmonary artery from rats with pulmonary hypertension induced by CS. Here, we aim to investigate whether CS‐induced pulmonary hypertension (PH) is prevented and ameliorated by targeted pulmonary vascular gene knockdown of KLF4 via adeno‐associated virus 1 (AAV1)‐KLF4‐shRNA in vivo in rat model. The preventive and therapeutic effects were observed according to the different time‐point of AAV1‐KLF4‐shRNA intratracheal administration. We tested haemodynamic measurements of systemic and pulmonary circulations and observed the degree of pulmonary vascular remodelling. In the preventive experiment, KLF4 expression and some pulmonary circulation hemodynamic measurements such as right ventricular systolic pressure (RVSP), mean right ventricular pressure (mRVP), peak RV pressure rate of rise (dP/dt max) and right ventricle (RV) contractility index were increased significantly in the CS‐induced PH model. While in the prevention group (AAV1‐KLF4‐shRNA group), RVSP, mRVP, dP/dt max and RV contractility index which are associated with systolic function of right ventricle decreased and the degree of pulmonary vascular remodelling relieved. In the therapeutic experiment, we observed a similar trend. Our findings emphasize the feasibility of sustained pulmonary vascular KLF4 gene knockdown using intratracheal delivery of AAV1 in an animal model of cigarette smoke‐induced PH and determined gene transfer of KLF4‐shRNA could prevent and ameliorate the progression of PH.
机译:我们以前发现在培养的大鼠和人的肺动脉平滑肌细胞(PASMC)上被抑制,暴露于香烟烟雾(CS)提取物和CS肺动脉高血压大鼠的肺动脉的患者肺动脉平滑肌细胞(PASMC)上调。在这里,我们的目的是通过在大鼠模型中通过腺相关病毒1(AAV1)-KLF4-ShRNA的靶向肺血管基因敲低,通过在大鼠模型中通过腺相关病毒1(AAV1)-KLF4-shRNA来研究是否通过靶向肺血管基因敲低来预防和改善。根据AAV1-KLF4-shRNA内腹腔内给药的不同时间点观察预防和治疗效果。我们测试了系统性和肺循环的血液动力学测量,并观察到肺血管重塑程度。在预防实验中,KLF4表达和一些肺循环血液动力学测量如右心室收缩压(RVSP),平均右心室压(MRVP),峰值RV压力率(DP / DT MAX)和右心室(RV)收缩性CS诱导的pH模型中指数显着增加。在预防组(AAV1-KLF4-SHRNA组),RVSP,MRVP,DP / DT MAX和RV收缩性指数与右心室的收缩功能相关,减少了肺血管重塑程度。在治疗实验中,我们观察了类似的趋势。我们的研究结果强调了使用AAV1在香烟冒烟诱导的pH的动物模型中使用AAV1的持续肺血管KLF4基因敲低的可行性,并且确定的KLF4-shRNA的基因转移可以预防和改善pH的进展。

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