首页> 外文期刊>Tissue engineering, Part A >Arrangement of type IV collagen and laminin on substrates with controlled density of -OH groups.
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Arrangement of type IV collagen and laminin on substrates with controlled density of -OH groups.

机译:IV型胶原蛋白和层粘连蛋白的布置在具有受控密度的oH基团的基材上。

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摘要

Collagen IV (Col IV) and laminin (Lam) are the main structural components of the basement membrane where they form two overlapping polymeric networks. We studied the adsorption pattern of these proteins on five model surfaces with tailored density of -OH groups obtained by copolymerization of different ratios ethyl acrylate (EA) and hydroxyl EA (HEA): X(OH)=0, X(OH)=0.3, X(OH)=0.5, X(OH)=0.7, and X(OH)=1 (where X refers the ratio of HEA). Atomic force microscopy revealed substratum-specific adsorption patterns of Col IV and Lam, ranging from single molecules deposition on more hydrophilic substrata to the formation of complex networks on hydrophobic ones. Human umbilical endothelial cells were used to study the biological performance of adsorbed proteins, following the overall cell morphology, the quantities for cell adhesion and spreading, and the development of focal adhesion complexes and actin cytoskeleton. Surprisingly, two optima in the cellular interaction were observed-one on the most hydrophilic X(OH)=1 and other on the relatively hydrophobic X(OH)=0.3 substrate-valid for both Col IV and Lam. When the proteins were adsorbed consecutively, a hydrophobic shift to X(OH)=0 substratum was obtained. Collectively, these data suggest that varying with the density of -OH groups one can tailor the conformation and the functional activity of adsorbed basement membrane proteins.
机译:胶原蛋白IV(COL IV)和层内蛋白(LAM)是基底膜的主要结构部件,在那里它们形成两个重叠的聚合物网络。我们在五种模型表面上研究了这些蛋白质的吸附模式,具有通过不同比例的不同比例(EA)和羟基ea(Hea)(Hea)(Hea)的共聚而定制的-OH基团的定制密度:x(OH)= 0,x(OH)= 0.3 ,x(OH)= 0.5,x(OH)= 0.7,x(OH)= 1(其中x引用HEA的比率)。原子力显微镜显示Col IV和LAM的底层特异性吸附模式,从单分子沉积在更多的亲水性亚样中,以在疏水性上形成复杂网络的形成。在整体细胞形态之后,用于研究吸附蛋白质的生物学性能,对细胞粘附和扩散的量以及局灶性粘附复合物的发育和肌动蛋白细胞骨架的发展。令人惊讶的是,观察到细胞相互作用中的两个最佳液 - 一个在最亲水的X(OH)= 1上,在相对疏水的X(OH)= 0.3的底谱上,对于Col IV和LAM的相对型X(OH)= 0.3。当蛋白质连续吸附时,得到疏水移位至X(OH)= 0次次次碱基。总的来说,这些数据表明,对于-OH基团的密度,可以根据吸附的基底膜蛋白的密度变化。

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