首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Synthesis and gelation characteristics of photo-crosslinkable star Poly(ethylene oxide-co-lactide-glycolide acrylate) macromonomers
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Synthesis and gelation characteristics of photo-crosslinkable star Poly(ethylene oxide-co-lactide-glycolide acrylate) macromonomers

机译:光可交联星形聚环氧乙烷-丙交酯-乙交酯-丙烯酸交酯大分子单体的合成与胶凝特性

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摘要

Viability of encapsulated cells in situ crosslinkable macromonomers depends strongly on the minimum concentration of polymerization initiators and monomers required for gelation. Novel 4-arm poly(ethylene oxide-co-lactide-glycolide acrylate) (SPELGA) macromonomers were synthesized and characterized with respect to gelation, sol fraction, degradation, and swelling in aqueous solution. SPELGA macromonomers were crosslinked in the absence of N-vinyl-2-pyrrolidone (NVP) monomer to produce a hydrogel network with a shear modulus of 27 ± 4 kPa. The shear modulus of the gels increased by 170-fold as the macromonomer concentration was increased from 10 to 25 wt%. Sol fraction ranged between 8 and 18%. Addition of only 0.4 mol% NVP to the polymerization mixture increased modulus by 2.2-fold from 27 ± 4 (no NVP) to 60 ± 10 kPa. The higher modulus was attributed to the dilution effect of polymer chains in the sol, by delaying the onset of diffusion-controlled reaction, and cross-propagation of the growing chains with network-bound SPELGA acrylates. Degradation of SPELGA gels depended on water content and density of hydrolytically degradable ester groups.
机译:包封的细胞就地可交联的大分子单体的生存力在很大程度上取决于聚合引发剂和凝胶化所需的单体的最低浓度。合成了新型的4-臂聚(环氧乙烷-丙交酯-乙交酯丙烯酸酯)(SPELGA)大分子单体,并针对其凝胶化,溶胶分数,降解和水溶液溶胀进行了表征。在不存在N-乙烯基-2-吡咯烷酮(NVP)单体的情况下,将SPELGA大分子单体交联,以产生剪切模量为27±4 kPa的水凝胶网络。随着大分子单体浓度从10wt%增加到25wt%,凝胶的剪切模量增加了170倍。溶胶分数在8%和18%之间。仅将0.4mol%的NVP添加到聚合混合物中,使模量从27±4(无NVP)增加到2.2倍至60±10kPa。较高的模量归因于聚合物链在溶胶中的稀释作用,这是通过延迟扩散控制反应的开始以及生长链与网络结合的SPELGA丙烯酸酯的交叉传播而造成的。 SPELGA凝胶的降解取决于水含量和可水解降解酯基的密度。

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