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The Mosaic Theory Revisited: Common Molecular Mechanisms Coordinating Diverse Organ and Cellular Events in Hypertension

机译:马赛克理论重新判断:常见的分子机制协调高血压中不同器官和细胞事件的常见分子机制

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摘要

Over 60 years ago, Dr. Irvine Page proposed the Mosaic Theory of hypertension, which states that many factors, including genetics, environment, adaptive, neural, mechanical and hormonal perturbations interdigitate to raise blood pressure. In the past two decades, it has become clear that common molecular and cellular events in various organs underlie many features of the Mosaic Theory. Two of these are the production of reactive oxygen species (ROS) and inflammation. These factors increase neuronal firing in specific brain centers, increase sympathetic outflow, alter vascular tone and morphology and promote sodium retention in the kidney. Moreover, factors such as genetics and environment contribute to oxidant generation and inflammation. Other common cellular signals, including calcium signaling and endoplasmic reticulum stress are similarly perturbed in different cells in hypertension and contribute to components of Dr. Page’s theory. Thus, Dr. Page’s Mosaic Theory formed a framework for future studies of molecular and cellular signals in the context of hypertension, and has greatly aided our understanding of this complex disease.
机译:六十多年前,欧文·佩奇(Irvine Page)提出了高血压的镶嵌理论,该理论指出,遗传,环境,适应性,神经,机械和荷尔蒙摄动等许多因素相互交织在一起,从而导致血压升高。在过去的二十年中,很明显,各种器官中常见的分子和细胞事件是镶嵌理论的许多特征的基础。其中两个是活性氧(ROS)的产生和炎症。这些因素会增加特定大脑中枢的神经元放电,增加交感神经流出,改变血管张力和形态并促进钠在肾脏中的滞留。此外,诸如遗传和环境之类的因素也有助于氧化剂的产生和炎症。其他常见的细胞信号,包括钙信号和内质网应激,在高血压的不同细胞中也受到类似的干扰,并构成了Page博士的理论的组成部分。因此,佩奇博士的“镶嵌理论”为今后在高血压情况下分子和细胞信号的研究奠定了基础,极大地帮助了我们对这种复杂疾病的理解。

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