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Towards the production of natural rubber-calcium phosphate hybrid for applications as bioactive coatings

机译:致力于生产天然橡胶-磷酸钙杂化物作为生物活性涂料

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This paper assesses the morphological, structural and bio-physicochemical stability of natural rubber (NR) Hevea brasiliensis coatings incorporated with microparticles of calcium phosphate-based (CaP) bioactive ceramics. Optical and electronic spectroscopic imaging techniques were employed to successfully evaluate the NR encapsulation capability and the stability of the coating in a biologically relevant media for bio-related application, i.e., simulated body fluid (SBF). The chemical structure of the natural polymer, the microchemical environment at the NR-CaP interface and the morphology of the CaP clusters were fully characterized. Further, the response of the hybrid coating to SBF was evaluated by incubating the samples for 30 days. The hybrid coating formed on Si surface (inert substrate) exhibited both stability and biodegradability in different levels (time dependence), thus opening horizons for applications as coatings for both biomaterials and drug delivery systems.
机译:本文评估了掺有磷酸钙基(CaP)生物活性陶瓷微粒的天然橡胶(NR)巴西橡胶树涂料的形态,结构和生物物理化学稳定性。光学和电子光谱成像技术被用于成功评估NR包封能力和涂层在生物相关应用的生物相关介质即模拟体液(SBF)中的稳定性。充分表征了天然聚合物的化学结构,NR-CaP界面处的微化学环境以及CaP团簇的形态。此外,通过将样品孵育30天来评估杂化涂层对SBF的响应。在硅表面(惰性基材)上形成的杂化涂层在不同水平(时间依赖性)下均表现出稳定性和生物降解性,因此为生物材料和药物输送系统的涂层提供了广阔的应用前景。

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