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首页> 外文期刊>Journal of biomaterials science >Development of a Biocompatible PLGA Polymers Capable to Release Thrombolytic Enzyme Prourokinase
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Development of a Biocompatible PLGA Polymers Capable to Release Thrombolytic Enzyme Prourokinase

机译:一种能够释放溶栓酶普鲁昆酶的生物相容性PLGA聚合物的研制

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摘要

The novelty of the work lies in the creation and study of the physical and biological properties of biodegradable polymer coatings for stents based on poly(lactic-co-glycolic acid) (PLGA). Polymer coatings are capable of prolonged and directed release of molecules with a high molecular weight, in particular, protein molecules of prourokinase (m.w. 54 kDa). A technology has been developed to create coatings having a relative elongation of 40% to 165% and a tensile strength of 25-65 MPa. Coatings are biodegradable; the rate of degradation of the polymer in an isotonic solution varies in the range of 0.05%-1.0% per day. The created coatings are capable of controlled release of the protein of prourokinase, while about 90% of the molecules of prourokinase retain their enzymatic activity. The rate of release of prourokinase can vary from 0.01 to 0.08 mg/day/cm(2). Coatings do not have a short-term toxic effect on mammalian cells. The mitotic index of cells growing on coatings is approximately 1.5%. When implanting the developed polymers in animals in the postoperative period, there are no complications. Histological examination did not reveal pathological processes. When implanting individual polymers 60 days after surgery, only traces of PLGA are detected. Thus, a biodegradable composite mechanically resistant polymer capable of prolonged release of the high molecular weight prourokinase enzyme has been developed.
机译:该工作的新颖性在于基于聚(乳酸 - 共乙醇酸)(PLGA)的支架的可生物降解聚合物涂料的物理和生物学性质的创造和研究。聚合物涂层能够长时间地释放和定向释放具有高分子量的分子,特别是普鲁基酶(M.W. 54 KDA)的蛋白质分子。已经开发了一种技术,以产生具有40%至165%的相对伸长率和25-65MPa的拉伸强度的涂层。涂料是可生物降解的;在等渗溶液中聚合物的降解速率在每天0.05%-1.0%的范围内变化。所产生的涂层能够控制普鲁基酶的蛋白质的释放,而大约90%的普鲁基酶分子保留其酶活性。普鲁基酶释放速率可从0.01〜0.08mg /天/厘米(2)变化。涂料对哺乳动物细胞没有短期毒性作用。在涂层上生长的细胞的有丝分裂指数约为1.5%。当在术后期间植入动物的发育聚合物时,没有并发症。组织学检查没有揭示病理过程。在手术后60天植入单个聚合物时,只检测到PLGA的痕迹。因此,已经开发出能够长期释放高分子量普鲁基酶酶的可生物降解的复合机械抗性聚合物。

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