A simple model of filtration and macromolecule transport through microvascular walls

L. Facchini, A. Bellin, E. Toro
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Abstract

Multiple Sclerosis (MS) is a disorder that usually appears in adults in their thirties. It has a prevalence that ranges between 2 and 150 per 100 000. Epidemiological studies of MS have provided hints on possible causes for the disease ranging from genetic, environmental and infectious factors to other factors of vascular origin. Despite the tremendous effort spent in the last few years, none of the hypotheses formulated so far has gained wide acceptance and the causes of the disease remain unknown. From a clinical point of view, a high correlation has been recently observed between MS and Chronic Cerebro-Spinal Venous Insufficiency (CCSVI) in a statistically significant number of patients. In this pathological situation CCSVI may induce alterations of blood pressure in brain microvessels, thereby perturbing the exchange of small hydrophilic molecules between the blood and the external cells. In the presence of large pressure alterations it cannot be excluded also the leakage of macromolecules that otherwise would not cross the vessel wall. All these disorders may trigger immune defenses with the destruction of myelin as a side effect. In the present work we investigate the role of perturbed blood pressure in brain microvessels as driving force for an altered exchange of small hydrophilic solutes and leakage of macromolecules into the interstitial fluid. With a simplified, yet realistic, model we obtain closed-form steady-state solutions for fluid flow and solute transport across the microvessel wall. Finally, we use these results (i) to interpret experimental data available in the literature and (ii) to carry out a preliminary analysis of the disorder in the exchange processes triggered by an increase of blood pressure, thereby relating our preliminary results to the hypothesised vascular connection to MS.
微血管壁过滤和大分子运输的简单模型
多发性硬化症(MS)是一种通常出现在30多岁的成年人身上的疾病。它的流行率在每10万人中2至150人之间。MS的流行病学研究为该病的可能病因提供了线索,从遗传、环境和感染因素到血管起源的其他因素。尽管在过去几年中付出了巨大的努力,但迄今为止提出的所有假设都没有得到广泛接受,而且这种疾病的病因仍然未知。从临床角度来看,最近观察到MS与慢性脑脊髓静脉功能不全(CCSVI)之间存在高度相关性,且有统计学意义。在这种病理情况下,CCSVI可能会引起脑微血管血压的改变,从而扰乱血液和外部细胞之间小亲水分子的交换。在存在较大压力变化的情况下,也不能排除大分子的泄漏,否则这些大分子不会穿过血管壁。所有这些疾病都可能引发免疫防御,其副作用是破坏髓磷脂。在目前的工作中,我们研究了脑微血管中血压紊乱作为驱动小亲水性溶质交换改变和大分子渗漏到间质液中的作用。通过一个简化但现实的模型,我们获得了流体流动和溶质在微血管壁上传输的封闭稳态解。最后,我们使用这些结果(i)解释文献中可用的实验数据,(ii)对血压升高引发的交换过程中的紊乱进行初步分析,从而将我们的初步结果与假设的血管与MS的联系联系起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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