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Preparation of a novel composite nanofiber gel-encapsulated human placental extract through layer-by-layer self-assembly

机译:通过层层自组装制备新型复合纳米纤维凝胶包裹的人胎盘提取物

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摘要

Aqueous human placenta extract (HPE) has been previously used to treat chronic soft tissue ulcer; however, the optimal dosage of HPE has yet to be elucidated. The present study investigated a novel nanofiber gel composed through layer-by-layer (LbL) self-assembly, in which HPE was encapsulated. IKVAV, RGD, RAD16 and FGL-PA were screened and combined to produce an optimal vehicle nanofiber gel through LbL assembly. Subsequently, the aqueous HPE was encapsulated into this nanofiber at the appropriate concentration, and the morphology, particle size, drug loading efficacy, encapsulation rate, release efficiency and structure validation were detected. The encapsulation efficiency of all three HPE samples was >90%, the nanofiber gel exhibited a slow releasing profile, and the structure of HPE encapsulated in the nanofiber gel was unvaried. In conclusion, this type of novel composite nanocapsules may offer a promising delivery system for HPE.
机译:人胎盘水提取物(HPE)先前已用于治疗慢性软组织溃疡。但是,HPE的最佳剂量尚未阐明。本研究研究了一种新型的纳米纤维凝胶,该凝胶通过逐层(LbL)自组装组成,其中封装了HPE。筛选并结合IKVAV,RGD,RAD16和FGL-PA,以通过LbL组装产生最佳的载体纳米纤维凝胶。随后,将水性HPE以适当的浓度封装到该纳米纤维中,并检测其形态,粒径,载药效率,封装速率,释放效率和结构验证。所有三个HPE样品的包封效率均> 90%,纳米纤维凝胶表现出缓慢的释放特性,并且包裹在纳米纤维凝胶中的HPE的结构不变。总之,这种新型的复合纳米胶囊可以为HPE提供有希望的递送系统。

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