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Computational study of LDL mass transport in the artery wall

机译:LDL物质在动脉壁中传输的计算研究

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摘要

A two-dimensional (2D) numerical simulation of convective–diffusive transport of LDL in the artery wall, coupled with the wall shear stress gradient (WSSG)-dependent LDL consumption of smooth muscle cells (SMCs) is presented. SMCs are modeled as an array of solid cylindrical pillars embedded in a continuous porous media which represents the interstitial proteoglycan and collagen fiber matrix. The internal elastic lamina (IEL), which separates the artery media from the intima, is modeled as an impermeable barrier to both water and LDL except for the fenestral pores that are assumed to be uniformly distributed over the IEL. The predictions demonstrate a range of interesting features of LDL transport and uptake in the media. For cells immediately below the fenestral pores, LDL uptake of SMCs is highly dependent on WSSG. Moreover, the rate of LDL consumption by SMCs is also affected by the diameter of the fenestral pore. This will be helpful in understanding the involvement of transmural transport processes in the initiation and development of atherosclerosis.
机译:LDL在动脉壁中的对流扩散扩散的二维(2D)数值模拟,以及依赖壁剪切应力梯度(WSSG)的平滑肌细胞(SMCs)的LDL消耗,均已提出。 SMC被建模为嵌入在代表多孔蛋白聚糖和胶原纤维基质的连续多孔介质中的实心圆柱状柱体的阵列。将内部动脉膜与内膜分开的内部弹性薄片(IEL),被建模为对水和LDL的不可渗透的屏障,但假定股骨孔均匀分布在IEL上。这些预测说明了LDL在媒体中的运输和吸收的一系列有趣特征。对于紧邻股骨孔下方的细胞,SMCs的LDL摄取高度依赖于WSSG。而且,SMCs消耗LDL的速率也受股骨孔直径的影响。这将有助于理解透壁运输过程在动脉粥样硬化的发生和发展中的参与。

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