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基于生物的可生物降解和生物相容的超支化聚氨酯:用于组织工程的支架。

Bio-based biodegradable and biocompatible hyperbranched polyurethane: a scaffold for tissue engineering.

机构信息

Advanced Polymer & Nanomaterial Laboratory, Department of Chemical Sciences, Tezpur University, Tezpur 784028, India.

出版信息

Macromol Biosci. 2013 Jan;13(1):126-39. doi: 10.1002/mabi.201200244. Epub 2012 Dec 4.

Abstract

Hyperbranched polyurethanes are synthesized using TDI, PCL diol, butanediol, and pentaerythritol (1-5 wt%) as the B(4) reactant with and without the monoglyceride of sunflower oil. The biodegradation, physico-mechanical, and thermal properties are found to be tailored by varying the percentage weight of the branching unit. An MTT/hemolytic assay and subcutaneous implantation in Wistar rats followed by cytokine/ALP assay and histopathology studies confirm a better biocompatibility of HBPU with MG than without MG. HBPU supports the proliferation of dermatocytes with no toxic effect in major organs, in addition the in vitro degraded products are non-toxic. Cell adherence and proliferation endorse the bio-based HBPU as a prospective scaffold material in the niche of tissue engineering.

摘要

超支化聚氨酯是用 TDI、PCL 二醇、丁二醇和季戊四醇(1-5wt%)作为 B(4)反应物合成的,反应物中含有或不含有葵花油的单甘油脂。通过改变支化单元的重量百分比,可以调整其生物降解、物理机械和热性能。MTT/溶血试验和 Wistar 大鼠皮下植入,然后进行细胞因子/碱性磷酸酶测定和组织病理学研究,证实了 HBPU 与 MG 比与 MG 没有更好的生物相容性。HBPU 支持角质形成细胞的增殖,对主要器官没有毒性作用,此外,体外降解产物也没有毒性。细胞黏附和增殖使基于生物的 HBPU 成为组织工程领域有前景的支架材料。

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