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发芽血管生成:一种具有实验验证的数值方法。

Sprouting Angiogenesis: A Numerical Approach with Experimental Validation.

机构信息

Institute of Science and Innovation in Mechanical and Industrial Engineering (INEGI), Rua Dr. Roberto Frias, 400, 4200-465, Porto, Portugal.

Mechanical Engineering Department, School of Engineering, Polytechnic of Porto (ISEP), Rua Dr. António Bernardino de Almeida, 431, 4249-015, Porto, Portugal.

出版信息

Ann Biomed Eng. 2021 Feb;49(2):871-884. doi: 10.1007/s10439-020-02622-w. Epub 2020 Sep 24.

Abstract

A functional vascular network is essential to the correct wound healing. In sprouting angiogenesis, vascular endothelial growth factor (VEGF) regulates the formation of new capillaries from pre-existing vessels. This is a very complex process and mathematical formulation permits to study angiogenesis using less time-consuming, reproducible and cheaper methodologies. This study aimed to mimic the chemoattractant effect of VEGF in stimulating sprouting angiogenesis. We developed a numerical model in which endothelial cells migrate according to a diffusion-reaction equation for VEGF. A chick chorioallantoic membrane (CAM) bioassay was used to obtain some important parameters to implement in the model and also to validate the numerical results. We verified that endothelial cells migrate following the highest VEGF concentration. We compared the parameters-total branching number, total vessel length and branching angle-that were obtained in the in silico and the in vivo methodologies and similar results were achieved (p-value smaller than 0.5; n = 6). For the difference between the total capillary volume fractions assessed using both methodologies values smaller than 15% were obtained. In this study we simulated, for the first time, the capillary network obtained during the CAM assay with a realistic morphology and structure.

摘要

功能性血管网络对于正确的伤口愈合至关重要。在发芽血管生成中,血管内皮生长因子(VEGF)调节从现有血管形成新的毛细血管。这是一个非常复杂的过程,数学公式允许使用耗时更少、可重复且更便宜的方法来研究血管生成。本研究旨在模拟 VEGF 在刺激发芽血管生成中的趋化作用。我们开发了一个数值模型,其中内皮细胞根据 VEGF 的扩散-反应方程进行迁移。鸡胚绒毛尿囊膜(CAM)生物测定用于获得一些重要参数来实现模型并验证数值结果。我们验证了内皮细胞根据最高 VEGF 浓度迁移。我们比较了在计算机模拟和体内方法中获得的参数-总分支数、总血管长度和分支角度-并获得了相似的结果(p 值小于 0.5;n = 6)。对于使用两种方法评估的总毛细血管体积分数的差异,得到的值小于 15%。在这项研究中,我们首次模拟了 CAM 测定中获得的毛细血管网络,其具有真实的形态和结构。

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