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Biodegradable hydrogels composed of oxime crosslinked poly(ethylene glycol), hyaluronic acid and collagen: a tunable platform for soft tissue engineering

机译:可生物降解的水凝胶由肟交联聚(乙二醇),透明质酸和胶原蛋白组成:软组织工程的可调平台

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摘要

In situ crosslinking hydrogels are attractive for application as injectable hydrogel-based tissue scaffolds that adapt to fill patient-specific cavities. Oxime click chemistry was used to crosslink hydrogels that were biodegradable, soft, and supportive of cell adhesion. Linear poly(ethylene glycol)s (PEGs, Mn 2 or 4 kDa) terminated at both ends with aminooxy moieties and hyaluronic acid (HA, Mn 2 MDa) derivatives displaying aldehydes were non-toxic towards primary Schwann cells. The PEG and HA derivatives form oxime crosslinked hydrogels with mechanical and swelling properties that were tunable based on the composition of the hydrogels to values analogous to soft tissues such as those found in the central or peripheral nervous system. Gels incorporating collagen-1 supported the adhesion of human mesenchymal stem cells (HMSCs). Such chemistry has the potential to generate clinically relevant injectable hydrogels for minimally invasive personalized medical procedures in the central or peripheral nervous systems.
机译:在原位交联水凝胶是吸引力的适用于可注射水凝胶的组织支架,其适应填充患者特定的腔。肟咔哒化学用于交联水凝胶,其可生物降解,柔软和支持细胞粘附性。用氨基氧基部分和透明质酸(HA,MN 2 MDA)衍生物终止于两端的线性聚(乙二醇,Mn 2或4kDa)呈显示醛的衍生物对原发性施曼细胞无毒。 PEG和HA衍生物形成具有机械和溶胀性质的肟交联的水凝胶,其基于水凝胶的组成可调谐,所述物凝胶与类似于软组织的值,例如中央或外周神经系统中的那些。包含胶原-1的凝胶支持人间充质干细胞(HMSCs)的粘附性。这种化学有可能在中央或外周神经系统中产生临床相关的可注射水凝胶以用于微创个性化医疗程序。

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