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经血管液体交换对肿瘤压力-血流关系的影响:一种肿瘤血流异质性的潜在机制。

Effect of transvascular fluid exchange on pressure-flow relationship in tumors: a proposed mechanism for tumor blood flow heterogeneity.

作者信息

Netti P A, Roberge S, Boucher Y, Baxter L T, Jain R K

机构信息

Department of Radiation Oncology, Massachusetts General Hospital, Boston, USA.

出版信息

Microvasc Res. 1996 Jul;52(1):27-46. doi: 10.1006/mvre.1996.0041.

Abstract

Tumor blood flow (TBF) is characterized by spatial and temporal heterogeneities. Despite the crucial role of TBF in tumor growth, metastasis, and therapy, the mechanisms underlying these heterogeneities are not fully understood. Tumor vessels are, in general, more leaky than normal vessels and this may enhance the efficiency of fluid exchange between the vascular and the interstitial space. The coupling between transvascular fluid exchange and hemodynamics in tumors has not been explored previously. To investigate the role of transvascular fluid exchange on afferent and efferent blood flow, we modeled the tumor vasculature as an equivalent single vessel which is permeable and deformable and embedded in a fluid medium with uniform pressure. Simulations were carried out to examine the effects of vessel leakiness, vessel compliance, and interstitial fluid pressure on (a) pressure-flow relationship, (b) arterial-venous pressure relationship, and (c) pressure profile along the vessel. Experiments suggested by model simulations required an independent control of arterial and venous pressure and tumor blood flow. To this end, we perfused tissue-isolated tumors ex vivo and obtained data on perfusate flow rate vs arterial and venous pressures. The simulations predicted the following trends as a result of an enhanced fluid filtration across the vessel wall: (a) for a fixed arterial-venous pressure difference, efferent flow decreases with increasing venous pressure, (b) changes in venous pressure are not completely transmitted to the arterial side, and (c) the pressure profile along the vessel becomes less steep. The experimental results confirmed these trends and indicated that vascular and interstitial flow are coupled in isolated tumors. The implications of this coupling for the spatial and temporal heterogeneity in TBF are discussed.

摘要

肿瘤血流(TBF)具有空间和时间上的异质性。尽管TBF在肿瘤生长、转移和治疗中起着关键作用,但其异质性背后的机制尚未完全了解。一般来说,肿瘤血管比正常血管更易渗漏,这可能会提高血管与间质空间之间液体交换的效率。肿瘤中跨血管液体交换与血流动力学之间的耦合关系此前尚未得到研究。为了研究跨血管液体交换对入流和出流血流的作用,我们将肿瘤脉管系统建模为一个等效的单血管,该血管具有渗透性和可变形性,并嵌入到具有均匀压力的流体介质中。进行模拟以研究血管渗漏、血管顺应性和间质液压力对(a)压力-流量关系、(b)动静脉压力关系以及(c)沿血管的压力分布的影响。模型模拟提出的实验需要独立控制动脉和静脉压力以及肿瘤血流。为此,我们对离体的组织分离肿瘤进行灌注,并获得了灌注液流速与动脉和静脉压力的数据。模拟预测了由于血管壁上液体滤过增强而产生的以下趋势:(a)在固定的动静脉压力差下,出流血流随静脉压力升高而降低;(b)静脉压力的变化不会完全传递到动脉侧;(c)沿血管的压力分布变得不那么陡峭。实验结果证实了这些趋势,并表明在分离的肿瘤中血管和间质血流是耦合的。讨论了这种耦合对TBF空间和时间异质性的影响。

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