首页> 外文期刊>Journal of biomedical materials research, Part A >Mechanical and cell viability properties of crosslinked low- And high-molecular weight poly(ethylene glycol) diacrylate blends
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Mechanical and cell viability properties of crosslinked low- And high-molecular weight poly(ethylene glycol) diacrylate blends

机译:交联的低分子量和高分子量聚(乙二醇)二丙烯酸酯共混物的机械和细胞生存力性能

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There is a strong need for tissue engineering scaffolds that are mechanically robust, exhibit good biocompatibility, and can be made from readily available materials. To this end, blends of commercially available poly(ethylene glycol) diacrylate (PEGDA) with molecular weights of 400 and 3400 were UV-crosslinked at total polymer concentrations that varied systematically from 20 to 40 wt %. The compressive strength and cell viability were determined for each PEGDA mixture. The compressive modulus of the blends was maximized when the weight percent ratio PEGDA3400/400 was about 40/60, with the compressive strength reaching 1.7 MPa. Cell viability results with a LIVE/DEAD fluorescence assay show an average viability of ~80% at a total PEGDA concentration of 20 wt % for all blends. Increasing the total polymer concentration increased the compressive modulus of a polymer, but adversely affected cell viability for all the PEGDA blend compositions. The blend composition affected the mechanical behavior of the discs, where a higher degree of crosslinking was achieved by increasing the concentration of shorter chained PEGDA400, whereas elasticity was gained by incorporating longer chained PEGDA3400 into the blends. These results can be exploited for use in tissue engineering applications, where a mechanically robust scaffold is advantageous.
机译:迫切需要机械坚固,表现出良好的生物相容性并且可以由容易获得的材料制成的组织工程支架。为此,将分子量为400和3400的市售聚(乙二醇)二丙烯酸酯(PEGDA)的共混物以总聚合物浓度系统性地从20至40wt%变化进行UV交联。测定每种PEGDA混合物的抗压强度和细胞活力。当PEGDA3400 / 400的重量百分比为约40/60时,共混物的压缩模量最大化,压缩强度达到1.7MPa。 LIVE / DEAD荧光测定法得出的细胞活力结果显示,所有掺混物的总PEGDA浓度为20 wt%时,平均活力约为〜80%。增加总聚合物浓度增加了聚合物的压缩模量,但对所有PEGDA共混物组合物的细胞存活率均产生不利影响。共混物的组成影响了圆盘的机械性能,其中通过增加较短链的PEGDA400的浓度获得更高的交联度,而通过将较长链的PEGDA3400掺入共混物中获得了弹性。这些结果可用于组织工程应用,其中机械坚固的支架是有利的。

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