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Two-photon Imaging of Intracellular Ca2+ Handling and Nitric Oxide Production in Endothelial and Smooth Muscle Cells of an Isolated Rat Aorta.大鼠离体主动脉内皮细胞和平滑肌细胞内钙离子处理及一氧化氮生成的双光子成像
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人类基因分型和实验模型揭示 NPR-C 可能是主动脉缩窄发病机制的一个潜在贡献者。

Human genotyping and an experimental model reveal NPR-C as a possible contributor to morbidity in coarctation of the aorta.

机构信息

Department of Biomedical Engineering, Marquette University and the Medical College of Wisconsin , Milwaukee, Wisconsin.

Department of Medicine, Division of Cardiovascular Medicine; Medical College of Wisconsin , Milwaukee, Wisconsin.

出版信息

Physiol Genomics. 2019 Jun 1;51(6):177-185. doi: 10.1152/physiolgenomics.00049.2018. Epub 2019 Apr 19.

DOI:10.1152/physiolgenomics.00049.2018
PMID:31002586
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6620646/
Abstract

Coarctation of the aorta (CoA) is a common congenital cardiovascular (CV) defect characterized by a stenosis of the descending thoracic aorta. Treatment exists, but many patients develop hypertension (HTN). Identifying the cause of HTN is challenging because of patient variability (e.g., age, follow-up duration, severity) and concurrent CV abnormalities. Our objective was to conduct RNA sequencing of aortic tissue from humans with CoA to identify a candidate gene for mechanistic studies of arterial dysfunction in a rabbit model of CoA devoid of the variability seen with humans. We present the first known evidence of natriuretic peptide receptor C (; aka ) downregulation in human aortic sections subjected to high blood pressure (BP) from CoA versus normal BP regions (validated to PCR). These changes in , a gene associated with BP and proliferation, were replicated in the rabbit model of CoA. Artery segments from this model were used with human aortic endothelial cells to reveal the functional relevance of altered NPR-C activity. Results showed decreased intracellular calcium ([Ca]) activity to C-type natriuretic peptide (CNP). Normal relaxation induced by CNP and atrial natriuretic peptide was impaired for aortic segments exposed to elevated BP from CoA. Inhibition of NPR-C (M372049) also impaired aortic relaxation and [Ca] activity. Genotyping of variants predicted to be damaging revealed that rs146301345 was enriched in our CoA patients, but sample size limited association with HTN. These results may ultimately be used to tailor treatment for CoA based on mechanical stimuli, genotyping, and/or changes in arterial function.

摘要

主动脉缩窄(CoA)是一种常见的先天性心血管(CV)缺陷,其特征是降主动脉狭窄。存在治疗方法,但许多患者会发展为高血压(HTN)。由于患者的变异性(例如年龄、随访时间、严重程度)和并发的 CV 异常,确定 HTN 的原因具有挑战性。我们的目标是对患有 CoA 的人类主动脉组织进行 RNA 测序,以鉴定一个候选基因,用于研究兔模型中 CoA 导致的动脉功能障碍的机制,该模型没有人类中所见的变异性。我们首次提供了已知的证据,表明在 CoA 引起的高血压(BP)与正常 BP 区域的人类主动脉切片中,利钠肽受体 C(;又名)下调(通过 PCR 验证)。与 BP 和增殖相关的基因中的这些变化在 CoA 的兔模型中得到了复制。该模型的动脉段与人类主动脉内皮细胞一起使用,以揭示改变的 NPR-C 活性的功能相关性。结果显示,细胞内钙([Ca])活性对 C 型利钠肽(CNP)降低。对 CoA 引起的 BP 升高的主动脉段,CNP 和心钠肽诱导的正常舒张受损。NPR-C 抑制剂(M372049)也会损害主动脉舒张和[Ca]活性。预测为有害的变体的基因分型显示,rs146301345 在我们的 CoA 患者中富集,但样本量限制了与 HTN 的关联。这些结果最终可能用于根据机械刺激、基因分型和/或动脉功能变化来定制 CoA 的治疗方法。