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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Development of innovative medical devices by dispersing fatty acid eutectic blend on gauzes using supercritical particle generation processes
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Development of innovative medical devices by dispersing fatty acid eutectic blend on gauzes using supercritical particle generation processes

机译:利用超临界颗粒生成过程分散脂肪酸共晶混合来开发创新的医疗装置

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In order to limit bacterial infections during wound treatment, it is interesting to consider the concept of loading medical devices with antibacterial agents. With this in mind, an innovative system with thermosensitive properties was produced: loading a commercially available gauze with a fatty acid eutectic blend based on lauric acid (LA) and myristic acid (MA). This eutectic blend presents a melting point near physiological temperature, which together with its antibacterial properties make an appealing alternative in biomedical applications. At room temperature, the properties and the efficacy of the eutectic blend loaded onto gauzes are preserved, whereas at physiological temperature the eutectic blend undergoes a phase change that facilitates its diffusion from the gauze. The loading of the eutectic blend onto gauzes was performed using two different supercritical fluid technologies, namely, particle from gas saturated solutions (PGSS) and a derived version of rapid expansion of supercritical solution (D-RESS). The PGSS led to a heterogeneous dispersion of the eutectic blend in the gauze, whereas the D-RESS process led to the formation of a homogeneous dispersion along the surface of the gauze. Additionally, with D-RESS no phase separation of the eutectic blend occurred and the cytotoxicity was greatly improved compared with PGSS without compromising the antibacterial properties of the fatty acid eutectic blend. Hence, the present study highlights the potential use of the flexible D-RESS process to load the fatty acid eutectic blend with antibacterial properties onto medical devices in a controllable way. Overall, the effects produced by the loaded gauzes suggest the enormous potential of the developed technology in health-related areas.
机译:为了限制伤口治疗期间的细菌感染,需要考虑用抗菌剂加载医疗器械的概念是有趣的。考虑到这一点,制备了一种具有热敏性质的创新系统:用基于月桂酸(LA)和肉豆蔻酸(MA)加载具有脂肪酸共晶混合物的市售纱布。该共晶混合物呈现出近生理温度附近的熔点,其与其抗菌性质一起在生物医学应用中进行吸引力的替代品。在室温下,保存了加载到大石上的共晶混合物的性质和疗效,而在生理温度下,共晶体混合物经历了促进其从纱布扩散的相变。使用两种不同的超临界流体技术,即来自气体饱和溶液(PGSS)的颗粒和超临界解决方案的快速膨胀的衍生形式进行对纱丝的加载到大型中。 PGSS导致纱布中的共晶混合物的异质分散,而D-RESS过程导致沿纱布表面形成均匀的分散体。另外,通过D-ROSS没有发生共晶混合物的相分离,与PGSS相比,细胞毒性大大提高,而不会损害脂肪酸共晶混合物的抗菌性质。因此,本研究突出了柔性D-RES型工艺的潜在用途,以可控方式将脂肪酸共晶混合物与抗菌性能一起加载到医用装置上。总的来说,由装载胶质区产生的效果表明了与健康相关领域开发技术的巨大潜力。

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