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In situ gel forming stereocomplex composed of four-arm PEG-PDLA and PEG-PLLA block copolymers

机译:由四臂PEG-PDLA和PEG-PLLA嵌段共聚物组成的原位形成凝胶的立体复合物

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Injectable hydrogels are quite promising materials due to their potential to minimize invasive implantation and this provides versatile fitness irrespective of the damaged regions and facilitates the incorporation of bioactive agents or cells.In situ gel formation through stereocomplex formation is a promising candidate for injectable hydrogels. In this paper, a new series of enantiomeric, four-arm, PEG-PLA block copolymers and their stereocomplexed hydrogels were prepared by bulk ring-opening polymerization of D-lactide and L-lactide, respectively, with stannous octoate as a catalyst. The prepared polymers were characterized by1H nuclear magnetic resonance (NMR) spectroscopy, Fourier-transform infrared (FT IR) spectroscopy, gel permeation chromatography (GPC) and thermal gravitational analysis (TGA), confirming the tailored structure and chain lengths. The swelling and degradation behavior of the hydrogels formed from a selected copolymer series were observed in different concentrations. The degradation rate decreased with increasing polymer content in the solution. The rheological behavior indicated that the prepared hydrogel underwentin situ gelation and had favorable mechanical strength. In addition, its feasibility as an injectable scaffold was evaluated using a media dependence test for cell culture. A Tris solution was more favorable forin situ gel formation than PBS and DMEM solutions were. These results demonstrated thein situ formation of hydrogel through the construction of a stereocomplex with enantiomeric, 4-arm, PEG-PLA copolymers. Overall, enantiomeric, 4-arm, PEG-PLA copolymers are a new species of stereocomplexed hydrogels that are suitable for further research into injectable hydrogels.
机译:可注射的水凝胶是一种很有前途的材料,因为它们具有最大程度地减少侵入性植入的潜力,并且无论受损区域如何,都可以提供多种适应性,并有助于生物活性剂或细胞的掺入。本文以辛酸亚锡为催化剂,分别通过D-丙交酯和L-丙交酯的本体开环聚合反应,制备了一系列新的对映体,四臂,PEG-PLA嵌段共聚物及其立体复合水凝胶。通过1 H核磁共振波谱,傅立叶变换红外光谱,凝胶渗透色谱和热重分析,对所制备的聚合物进行表征,确定了定制的结构和链长。 。在不同浓度下观察到由选定的共聚物系列形成的水凝胶的溶胀和降解行为。降解速率随着溶液中聚合物含量的增加而降低。流变行为表明所制备的水凝胶在温汀原位凝胶作用下具有良好的机械强度。另外,使用用于细胞培养的培养基依赖性测试评价了其作为可注射支架的可行性。 Tris溶液比PBS和DMEM溶液更有利于原位凝胶形成。这些结果证明了通过与对映体,4-臂,PEG-PLA共聚物的立体复合物的构建来原位形成水凝胶。总体而言,对映体,4-臂,PEG-PLA共聚物是新型的立体复合水凝胶,适合进一步研究可注射水凝胶。

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