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首页> 外文期刊>MATEC Web of Conferences >Antibacterial Effect of Ginseng/polyaniline Encapsulated in Poly(Lactic- co-glycolic Acid) Microcapsules Coating on Stainless Steel 316L
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Antibacterial Effect of Ginseng/polyaniline Encapsulated in Poly(Lactic- co-glycolic Acid) Microcapsules Coating on Stainless Steel 316L

机译:人参/聚苯胺在聚乳酸- co <​​/ italic>-乙醇酸微胶囊中的包裹作用对不锈钢316L的抗菌作用

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摘要

Implant infection is one the current complications of implant restoration. Incorporation of a material that possesses antibacterial property is crucial in combating implant infection. In this study, polyaniline (PANI) is incorporated in ginseng encapsulated poly (lactic- co -glycolic acid) (PLGA) microcapsules to equip the microcapsules with an antibacterial effect. The microcapsules are intended for drug delivery purpose as the ginseng is comprised of abundant therapeutic values and the PLGA is known for its degradation property. The microcapsules were coated on stainless steel 316L using an electro-deposition technique. The chemical composition, morphology and antibacterial activity of the samples were analyzed through ATR-FTIR, SEM and bacterial count test. A greater volume of microcapsules was coated on the stainless steel 316L with the addition of PANI through the appearance of intense ginseng (O–H and C=C bands) and PLGA (C=O) peaks on the ATR-FTIR spectra and through the visualization of spherical morphology of microcapsules on the pre-treated metal. The incorporation of PANI also has induced the antibacterial efficacy of the microcapsules to 87.64%. Therefore, PANI has served as an antibacterial agent that could be useful in the development of implant coating materials while driving the formation of ginseng encapsulated PLGA microcapsules.
机译:植入物感染是植入物修复的当前并发症之一。掺入具有抗菌性能的材料对于抵抗植入物感染至关重要。在这项研究中,聚苯胺(PANI)被掺入人参封装的聚乳酸-乙醇酸(PLGA)微囊中,以使微囊具有抗菌作用。微胶囊旨在用于药物输送,因为人参具有丰富的治疗价值,而PLGA因其降解特性而闻名。使用电沉积技术将微胶囊涂覆在316L不锈钢上。通过ATR-FTIR,SEM和细菌计数试验分析了样品的化学组成,形态和抗菌活性。通过在ATR-FTIR光谱上通过强力人参(OH和C = C谱带)和PLGA(C = O)峰出现,在PLA 316上涂覆了更大体积的微胶囊。可视化的预处理金属微胶囊的球形形态。 PANI的掺入还诱导了微胶囊的抗菌效力至87.64%。因此,PANI可用作抗菌剂,可用于开发植入物涂层材料,同时驱动人参封装的PLGA微胶囊的形成。

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