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Analysis of Thickness and Roughness Effects of Artificial Basement Membranes on Endothelial Cell Functions

机译:人工基底膜对内皮细胞功能的厚度和粗糙度效应分析

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Various cells and tissues are highly organized?in vivo?by basement membranes (BMs) and thus promising artificial BMs (A-BMs) constructed by electrospinning and layer-by-layer (LbL) assembly have recently attracted much attention in the tissue engineering field.However, control of cell adhesion, morphology, and migration of the attached cells on the A-BMs has not been reported yet.In this study, we investigated both thickness and roughness-dependent effects of A-BMs on the functions of endothelial cells (ECs), which resulted from different assembly concentrations.The results indicated that the roughness of A-BMs increased gradually with the increase of nanofilm thickness.EC adhesion, spreading and proliferation were inhibited on thicker A-BM surfaces with larger roughness, while interendothelial junctions and the barrier effect of confluent EC monolayers on thicker A-BM surfaces were compensated by increasing seeding cell number and expanding culture time.Our study highlights the influence of LbL assembly conditions on endothelial functions, which offers a new criterion for the design of A-BMs in well-organized 3D tissues.
机译:各种细胞和组织是高度组织的?在体内?通过基底膜(BMS)并因此承诺通过静电纺丝和逐层(LBL)组件构成的人造BMS(A-BMS)最近在组织工程领域引起了很多关注。无论何种,尚未报道对A-BMS上附着细胞的细胞粘附,形态和迁移的控制。在本研究中,我们研究了A-BMS对内皮细胞功能的厚度和粗糙度依赖性影响(ECS)由不同的组装浓度导致。结果表明,随着纳米丝厚度的增加,A-BMS的粗糙度逐渐增加.EC粘附,扩散和增殖在较大的A-BM表面上抑制,粗糙度较大,而间接均匀通过增加播种细胞数和扩张培养时间来补偿汇合EC单层对厚A-BM表面上的交叉路口和屏障效应。研究突出了潮流LBL组装条件对内皮函数的条件,它为井组织3D组织中的A-BMS设计提供了一种新标准。

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