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Mathematical models of lipoprotein metabolism and kinetics: Current status and future perspective

机译:脂蛋白代谢和动力学的数学模型:现状和未来展望

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摘要

Lipoprotein metabolism and kinetics comprises the time-dependent processes of synthesis, transformation and clearance of lipids, apolipoproteins and their assembled particles. By integrating and explaining the wealth of in vitro and clinical data available on lipoprotein metabolism and kinetics, mathematical models can provide novel insights into the underlying pathophysiology of lipid disorders, as well as quantify the effects of drugs intended for their treatment. In this article, we first discuss some basic principles of mathematical modeling in biology and drug development, and then review a number of recent publications in which different types of mathematical models have been used to investigate lipoprotein metabolism and kinetics. We conclude by posing a set of ten fundamental questions in this field that we believe mathematical modeling can potentially address, in the effort to develop novel and effective therapies for patients with high cardiovascular risk.
机译:脂蛋白的代谢和动力学包括脂质,载脂蛋白及其组装颗粒的合成,转化和清除的时间依赖性过程。通过整合和解释有关脂蛋白代谢和动力学的大量体外和临床数据,数学模型可以提供对脂质疾病潜在病理生理学的新颖见解,并量化用于治疗的药物的作用。在本文中,我们首先讨论生物学和药物开发中数学建模的一些基本原理,然后回顾许多最近的出版物,其中使用了不同类型的数学模型来研究脂蛋白的代谢和动力学。最后,我们提出了该领域的十个基本问题,我们相信数学模型可以潜在地解决这一问题,从而为心血管风险高的患者开发新颖有效的疗法。

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