Universidade Federal do Rio Grande do Sul, Brazil.
The Laboratory of Nanoradiopharmaceuticals, Instituto de Energia Nuclear, Rio de Janeiro, Brazil.
Eur J Pharm Biopharm. 2014 Feb;86(2):292-300. doi: 10.1016/j.ejpb.2013.10.011. Epub 2013 Nov 7.
The use of drug-loaded nanoparticles and microparticles has been increasing, especially for cosmetic and drug delivery purposes. In this work, a new microparticle formulation was developed for use in the healing process of skin burns in a composition of Aloe vera/vitamin E/chitosan. In order to observe the morphological properties, Raman and atomic force microscopy evaluation were performed. The biodistribution studies were analyzed by using a nuclear methodology, labeling the microparticles with Technetium-99m and in vivo test was procedure to analyzed the cicatrization process. The results of AFM analysis show the formation and the adherence property of the microparticles. Raman analyses show the distribution of each component in the microparticle. The nuclear method used shows that the biodistribution of the microparticles remained in the skin. The in vivo cicatrization test showed that the poloxamer gel containing the microparticles make a better cicatrization in relation to the other formulations tested.
载药纳米粒子和微粒子的使用越来越多,特别是在化妆品和药物输送方面。在这项工作中,开发了一种新的微粒子配方,用于含有芦荟/维生素 E/壳聚糖的皮肤烧伤愈合过程。为了观察形态特性,进行了拉曼和原子力显微镜评估。通过核方法分析了生物分布研究,用锝-99m 标记微粒子,并进行体内试验分析愈合过程。原子力显微镜分析的结果表明了微粒子的形成和附着特性。拉曼分析表明了微粒子中每个成分的分布。所使用的核方法表明,微粒子的生物分布仍然在皮肤中。体内愈合试验表明,含有微粒子的泊洛沙姆凝胶在与其他测试配方相比,具有更好的愈合效果。