a Department of Pharmacy, School of Applied Sciences , University of Huddersfield , Huddersfield , UK.
J Microencapsul. 2018 Nov-Dec;35(7-8):695-704. doi: 10.1080/02652048.2019.1576796. Epub 2019 Feb 20.
Healthcare-associated infections (HAIs) are a concern for health service providers, exacerbated by poor delivery of antimicrobials to target sites within the skin. The dermal route is attractive for local and systemic delivery of drugs, however; permeation, penetration, and access to deeper skin layers are restricted due to the barrier function of the stratum corneum (SC). Solid lipid nanoparticles present several benefits for topical delivery for therapeutic applications, especially via the follicular route. Hair follicles, surrounded by a close network of blood capillaries and dendritic cells, are an important target for delivery of antimicrobials and present a unique microbial nidus for endogenous infections in situations where the barrier is disrupted, such as after surgery, for example, triclosan, a broad-spectrum antimicrobial agent, was encapsulated into nanoparticles using glyceryl behenate and glyceryl palmitostearate (GP) solid lipids, and incorporating Transcutol P, a known permeation enhancer at different ratios. Optimised formulation was stable over 90 d and in vitro permeation studies using full thickness porcine ear skin showed that the lipid-based nanoparticles enhanced delivery of triclosan into the skin and could direct the agent towards hair follicles, indicating their potential as a carrier system for antiseptic dermal delivery.
医疗保健相关感染(HAIs)是医疗服务提供者关注的问题,由于未能将抗生素递送到皮肤内的目标部位,情况更加恶化。然而,皮肤途径对于局部和全身递药具有吸引力;由于角质层(SC)的屏障功能,渗透、穿透和进入更深的皮肤层受到限制。固体脂质纳米粒在治疗应用的局部递药方面具有许多优势,特别是通过毛囊途径。毛囊被密集的毛细血管和树突状细胞网络包围,是递抗生素的重要靶标,并且在屏障被破坏的情况下,例如手术后,是内源性感染的独特微生物病灶,例如三氯生,一种广谱抗菌剂,被包裹在纳米粒中使用山嵛酸甘油酯和甘油棕榈硬脂酸酯(GP)固体脂质,并加入 Transcutol P,这是一种已知的不同比例的渗透增强剂。优化的配方在 90 天内稳定,并且使用全厚猪耳皮进行的体外渗透研究表明,基于脂质的纳米粒增强了三氯生向皮肤的递送,并可以将药物引导至毛囊,表明它们有潜力作为抗菌皮肤递药的载体系统。