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首页> 外文期刊>Biomaterials >Chemically crosslinkable thermosensitive polyphosphazene gels as injectable materials for biomedical applications.
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Chemically crosslinkable thermosensitive polyphosphazene gels as injectable materials for biomedical applications.

机译:化学可交联的热敏聚磷腈凝胶,可作为生物医学应用的注射材料。

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Chemically crosslinkable and thermosensitive poly(organophosphazenes) containing multiple thiol (-SH) groups along with hydrophobic isoleucine ethyl ester and hydrophilic alpha-amino-omega-methoxy-poly(ethylene glycol) of the molecular weight 550 have been synthesized and characterized as an injectable biomaterial. The aqueous solutions of these polymers were transformed into hydrogel with desired gel strength at body temperature via hydrophobic interactions, and the gel strength was further improved by the cross-linking of thiol groups with crosslinkers, divinyl sulfone (VS) and PEG divinyl sulfone (PEGVS) under physiological conditions. The kinetics of cross-linking behavior of polymer thiol groups with crosslinkers was studied in both in vitro and in vivo conditions. Field Emission-Scanning Electron Microscopy (FE-SEM), swelling experiments, and rheology study of present polymers revealed that the inner three-dimensional hydrogel networks depended on the degree of thiol units in the polymer network. From the in vivo (in mice) degradation studies, the dual cross-linked gels showed to have a controlled degradation. These results demonstrate that the inner network of the hydrogels can be tuned, gel strength and degradation rate can be controlled, and the chemically crosslinkable and thermosensitive poly(organophosphazenes) hold promises for uses as injectable systems for biomedical applications including tissue engineering and protein delivery.
机译:合成了具有多个硫醇(-SH)基团以及分子量为550的疏水异亮氨酸乙酯和亲水性α-氨基-ω-甲氧基-聚(乙二醇)的化学可交联且热敏的聚有机膦腈,并将其表征为可注射的生物材料。这些聚合物的水溶液通过疏水相互作用在人体温度下转化为具有所需凝胶强度的水凝胶,并通过巯基与交联剂,二乙烯基砜(VS)和PEG二乙烯基砜(PEGVS)的交联进一步提高了凝胶强度。 )在生理条件下。在体外和体内条件下都研究了聚合物硫醇基团与交联剂的交联动力学。场发射扫描电子显微镜(FE-SEM),溶胀实验和本聚合物的流变学研究表明,内部三维水凝胶网络取决于聚合物网络中硫醇单元的程度。从体内(小鼠)降解研究来看,双交联凝胶显示出可控的降解。这些结果表明,可以调节水凝胶的内部网络,可以控制凝胶强度和降解速率,并且化学可交联的和热敏性的聚有机磷腈有希望用作生物医学应用的可注射系统,包括组织工程和蛋白质递送。

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