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A process-based review of mouse models of pulmonary hypertension

机译:基于过程的肺动脉高压小鼠模型综述

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摘要

Genetically modified mouse models have unparalleled power to determine the mechanisms behind different processes involved in the molecular and physiologic etiology of various classes of human pulmonary hypertension (PH). Processes known to be involved in PH for which there are extensive mouse models available include the following: (1) Regulation of vascular tone through secreted vasoactive factors; (2) regulation of vascular tone through potassium and calcium channels; (3) regulation of vascular remodeling through alteration in metabolic processes, either through alteration in substrate usage or through circulating factors; (4) spontaneous vascular remodeling either before or after development of elevated pulmonary pressures; and (5) models in which changes in tone and remodeling are primarily driven by inflammation. PH development in mice is of necessity faster and with different physiologic ramifications than found in human disease, and so mice make poor models of natural history of PH. However, transgenic mouse models are a perfect tool for studying the processes involved in pulmonary vascular function and disease, and can effectively be used to test interventions designed against particular molecular pathways and processes involved in disease.
机译:转基因小鼠模型具有无与伦比的能力,可以确定涉及人类肺动脉高压(PH)各种类别的分子和生理病因的不同过程背后的机制。有广泛的小鼠模型可用的已知与PH有关的过程包括:(1)通过分泌的血管活性因子调节血管紧张度; (2)通过钾和钙通道调节血管张力; (3)通过改变代谢过程,通过改变底物的使用或通过循环因素来调节血管重塑; (4)在出现肺动脉高压之前或之后自发的血管重塑; (5)色调和重塑变化主要由炎症驱动的模型。与人类疾病相比,小鼠体内PH的发展必须更快,并且具有不同的生理影响,因此小鼠对PH的自然病史做出了较差的模型。但是,转基因小鼠模型是研究涉及肺血管功能和疾病的过程的理想工具,并且可以有效地用于测试针对疾病所涉及的特定分子途径和过程而设计的干预措施。

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