a Universidade Tiradentes - UNIT , Aracaju , Brazil.
b Instituto de Tecnologia e Pesquisa Laboratório de Nanotecnologia e Nanomedicina (LNMed) Av. Murilo Dantas , Aracaju , Brazil.
J Dermatolog Treat. 2019 Sep;30(6):617-626. doi: 10.1080/09546634.2018.1479726. Epub 2019 Apr 16.
Nanomedicine manipulates materials at atomic, molecular, and supramolecular scale, with at least one dimension within the nanometer range, for biomedical applications. The resulting nanoparticles have been consistently shown beneficial effects for antifungal drugs delivery, overcoming the problems of low bioavailability and high toxicity of these drugs. Due to their unique features, namely the small mean particle size, nanoparticles contribute to the enhanced drug absorption and uptake by the target cells, potentiating the therapeutic drug effect. The topical route is desirable due to the adverse effects arising from oral administration. This review provides a comprehensive analysis of the use of nano compounds for the current treatment of topical fungal infections. A special emphasis is given to the employment of lipid nanoparticles, due to their recognized efficacy, versatility, and biocompatibility, attracting the major attention as novel topical nanocompounds used for the administration of antifungal drugs.
纳米医学利用材料在原子、分子和超分子尺度上进行操作,至少有一个维度在纳米范围内,用于生物医学应用。由此产生的纳米颗粒一直被证明对抗真菌药物的输送具有有益的效果,克服了这些药物生物利用度低和毒性高的问题。由于其独特的特性,即平均粒径小,纳米颗粒有助于增强目标细胞对药物的吸收和摄取,增强治疗药物的效果。由于口服给药会产生不良反应,因此局部给药是可取的。本综述全面分析了纳米化合物在治疗局部真菌感染中的应用。特别强调了使用脂质纳米颗粒,因为它们的疗效、多功能性和生物相容性已得到认可,作为新型局部纳米化合物,吸引了人们的主要关注,用于抗真菌药物的管理。