A'/> Design of multi-functional cotton gauze with antimicrobial and drug delivery properties
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Design of multi-functional cotton gauze with antimicrobial and drug delivery properties

机译:用抗微生物和药物递送性能设计多功能棉纱布

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Abstract The ideal biomedical fiber/fabric materials can both promote the drug delivery properties and prevent microbial infection. Herein we present an innovation-based strategy for fabrication of biomedical cotton gauze which concomitantly displays antimicrobial and drug delivery performance properties. The innovative strategy involved three distinct steps: (1) Cationization of cotton gauze by reacting it with 3-chloro-2-hydroxypropyl trimethyl ammonium chloride [Quat-188] or anionization of cotton gauze through partial carboxymethylation. (2) Thus modified samples of cotton gauze along with unmodified blank samples were submitted to in situ formation of silver nanoparticles (AgNPs) using trisodium citrate (TSC) which has three-fold functions: (a) reducing agent for conversion of Ag+ to Ago (atom), (b) stabilizing agent to prevent aggregation of AgNPs and, (c) linker for fixation of AgNPs on the surfaces of the cotton gauze. (3) All the modified and unmodified cotton gauze samples were loaded with oxytetracyline hydrochloride drug. To this end, characterization of the modified and unmodified cotton samples before and after being loaded with drug using state-of-the-art facilities was undertaken. These facilities comprised UV–vis spectroscopy, energy dispersive X-ray, scanning electron microscope and Infrared Spectroscopy by Attenuated total Reflectance (ATR/IR). Evaluation of the antimicrobial and drug release properties of the cotton gauze samples in question was conducting. Results obtained signified that the modified cotton gauze can be used in the area of biomedical textiles particularly
机译:<![cdata [ 抽象 理想的生物医学纤维/织物材料可以促进药物递送性能并防止微生物感染。在此,我们提出了一种基于创新的制造生物医学棉纱布的战略,该棉纱布伴随着抗微生物和药物递送性能性能。创新策略涉及三个不同的步骤:(1)通过用3-氯-2-羟丙基三甲基氯化铵[QUAT-188]反应,通过部分羧基化反应棉花纱布或棉纱的阴离子。 (2)因此,使用三氢钠(TSC)的棉纱布和未修饰的空白样品以及具有三倍的功能的棉纳米颗粒(AgNP)的原位形成,其具有三倍的功能:(a)用于转化的AG + to ag o (原子),(b)稳定剂,以防止agnps的聚集, (c)用于固定棉花纱布表面上AgNP的接头。 (3)所有改性和未经修饰的棉纱样品用盐酸氧化镍药物加载。为此,在使用最先进的设施中,在装载用药物装载用药物之前和之后的改性和未改性棉样品的表征。这些设施包括UV-Vis光谱,能量分散X射线,扫描电子显微镜和红外光谱通过减弱的总反射率(ATR / IR)。棉纱样品的抗微生物和药物释放性能的评价正在进行中。得到的结果意味着改性的棉花纱布可以特别用于生物医学纺织品领域

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