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Protein release from physically crosslinked hydrogels of the PLA/PEO/PLA triblock copolymer-type.

机译:从物理交联的PLA / PEO / PLA三嵌段共聚物型水凝胶中释放蛋白质。

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A series of PLA/PEO/PLA triblock copolymers was prepared by ring opening polymerization of rac-lactide in the presence of various di-hydroxyl poly (ethylene glycol)s, using CaH2 as a biocompatible initiator. Hydrogels were prepared by a phase separation method consisting of introducing small amounts of water over solutions of the copolymers in a biocompatible organic solvent, namely tetraglycol [poly(ethylene glycol monotetrahydrofurfuryl ether)]. The resulting hydrogels appeared much more hydrophilic than the rather tough hydrogels formed by swelling of dry tablets or films processed from the same copolymers. The phase separation-derived hydrogels were soft enough to be injected through a trochar. Two proteins, namely bovine serum albumine (BSA) and fibrinogen, were physically entrapped in these hydrogels by mixing with the polymer solutions before gel formation. This procedure appeared to be protein-respecting according to circular dichroism analysis on the released BSA. Dramatically different release profiles were obtained for the two proteins. In the case of BSA, the release depended on the quantity of protein incorporated in the hydrogel and presented a parabolic-type profile, in agreement with the behaviors of diffusion-controlled monolitic drug delivery devices. In contrast, almost linear release profiles were observed in the case of fibrinogen, the hydrogels behaving like a reservoir drug delivery system. These findings are tentatively interpreted in terms of gel-protein compatibility in the case of BSA and gel-protein incompatibility in the case of fibrinogen.
机译:使用CaH2作为生物相容性引发剂,在各种二羟基聚乙二醇的存在下,通过外消旋丙交酯的开环聚合反应,制备了一系列PLA / PEO / PLA三嵌段共聚物。通过相分离法制备水凝胶,该相分离法包括在生物相容性有机溶剂即四甘醇[聚(乙二醇单四氢糠基醚)]中的共聚物溶液中引入少量水。与由相同共聚物加工的干片剂或薄膜溶胀形成的相当坚韧的水凝胶相比,所得的水凝胶显得亲水得多。衍生自相分离的水凝胶足够柔软,可以通过套管针注入。通过在凝胶形成之前与聚合物溶液混合,将两种蛋白质,即牛血清白蛋白(BSA)和纤维蛋白原,物理捕获在这些水凝胶中。根据对释放的BSA的圆二色性分析,该程序似乎符合蛋白质要求。两种蛋白质的释放曲线截然不同。在BSA的情况下,释放取决于掺入水凝胶中的蛋白质的数量,并呈现抛物线型分布,与扩散控制的单分子药物递送装置的行为一致。相反,在纤维蛋白原的情况下,观察到几乎线性的释放曲线,水凝胶的行为类似于储库药物递送系统。这些发现暂时被解释为BSA的凝胶-蛋白质相容性和纤维蛋白原的凝胶-蛋白质不相容性。

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