Department of Traditional Chinese Medicine, Chang Gung Memorial Hospital, Keelung 204, Taiwan.
School of Traditional Chinese Medicine, Chang Gung University, Kweishan, Taoyuan 333, Taiwan.
Molecules. 2021 Oct 22;26(21):6392. doi: 10.3390/molecules26216392.
Biofilm formation is an important virulence factor for the opportunistic microorganisms that elicit skin infections. The recalcitrant feature of biofilms and their antibiotic tolerance impose a great challenge on the use of conventional therapies. Most antibacterial agents have difficulty penetrating the matrix produced by a biofilm. One novel approach to address these concerns is to prevent or inhibit the formation of biofilms using nanoparticles. The advantages of using nanosystems for antibiofilm applications include high drug loading efficiency, sustained or prolonged drug release, increased drug stability, improved bioavailability, close contact with bacteria, and enhanced accumulation or targeting to biomasses. Topically applied nanoparticles can act as a strategy for enhancing antibiotic delivery into the skin. Various types of nanoparticles, including metal oxide nanoparticles, polymeric nanoparticles, liposomes, and lipid-based nanoparticles, have been employed for topical delivery to treat biofilm infections on the skin. Moreover, nanoparticles can be designed to combine with external stimuli to produce magnetic, photothermal, or photodynamic effects to ablate the biofilm matrix. This study focuses on advanced antibiofilm approaches based on nanomedicine for treating skin infections. We provide in-depth descriptions on how the nanoparticles could effectively eliminate biofilms and any pathogens inside them. We then describe cases of using nanoparticles for antibiofilm treatment of the skin. Most of the studies included in this review were supported by in vivo animal infection models. This article offers an overview of the benefits of nanosystems for treating biofilms grown on the skin.
生物膜的形成是引发皮肤感染的机会性微生物的重要毒力因子。生物膜的顽固性及其对抗生素的耐受性给传统疗法的应用带来了巨大挑战。大多数抗菌药物很难穿透生物膜产生的基质。一种解决这些问题的新方法是使用纳米粒子来预防或抑制生物膜的形成。使用纳米系统进行抗生物膜应用的优点包括高药物负载效率、持续或延长的药物释放、增加药物稳定性、提高生物利用度、与细菌紧密接触以及增强对生物量的积累或靶向。局部应用的纳米粒子可以作为增强抗生素递送到皮肤中的策略。已经使用了各种类型的纳米粒子,包括金属氧化物纳米粒子、聚合物纳米粒子、脂质体和基于脂质的纳米粒子,用于局部递送来治疗皮肤上的生物膜感染。此外,纳米粒子可以设计为与外部刺激结合,产生磁、光热或光动力效应来消融生物膜基质。本研究专注于基于纳米医学的先进抗生物膜方法,用于治疗皮肤感染。我们深入描述了纳米粒子如何有效地消除生物膜及其内部的任何病原体。然后,我们描述了使用纳米粒子治疗皮肤生物膜的情况。本综述中包含的大多数研究都得到了体内动物感染模型的支持。本文概述了纳米系统治疗皮肤生物膜的益处。