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Nanoparticles as multifunctional devices for the topical treatment of cutaneous leishmaniasis

机译:纳米粒子作为多功能器件,用于皮肤厕所的局部处理

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摘要

Introduction: Cutaneous and mucocutaneous leishmaniasis are major tropical skin diseases. Topical treatment is currently limited to the least severe forms of cutaneous leishmaniasis (CL) without risk of dissemination. It is also recommended in combination with systemic therapy for more severe forms. Progresses in this modality of treatment are hindered by the heterogeneity of the disease and shortcomings in the clinical trials. Areas covered: This review overlooks three major modalities of topical therapies in use or under investigation against CL: chemotherapy, photodynamic therapy and immunotherapy; either with older compounds such as paramomycin or more recent nitric oxide donors, antimicrobial peptides or silver derivatives. The advantages and limitations of their administration with newer formulation strategies such as nanoparticles (NPs) are discussed. Expert opinion: The efficacy of a topical treatment against CL depends not only on the intrinsic antileishmanial activity of the drug but also on the amount of drug available in the dermis. NPs as sustained release systems and permeation enhancers could favour the creation of a drug reservoir in the dermis. Additionally, certain NPs have immunomodulatory properties or wound healing capabilities of benefit in CL treatment. Pending task is the selective delivery of active compounds to intracellular amastigotes, because even small NPs are unable to penetrate deeply into the skin to encounter infected macrophages (except in ulcerative lesions).
机译:介绍:皮肤和粘膜皮肤杀死是主要的热带皮肤病。局部治疗目前仅限于无危险的皮肤LeishManiaisis(CL)的最小形式,而不会传播风险。还建议使用全身疗法以获得更严重的形式。这种治疗方式的进展是受到疾病的异质性和临床试验中的缺点的阻碍。所涵盖的地区:此评价俯瞰着在使用或对CL:化疗,光动力治疗和免疫疗法的使用中的三种主要局部疗法模式;与较少化合物如较较常规的化合物或最近的一氧化氮供体,抗微生物肽或银衍生物。讨论了其纳米颗粒(NPS)诸如纳米颗粒(NPS)的新制剂策略的优点和局限性。专家意见:外用治疗对CL的疗效不仅取决于药物的内在抗碱活动,还取决于皮肤中可用的药物量。 NPS作为持续的释放系统和渗透增强剂可以赞成在真皮中创建药物储存器。此外,某些NPS具有CL处理中的免疫调节性质或伤口愈合能力。待决任务是选择性化合物对细胞内amastigotes的选择性化合物,因为即使小的NPS也无法深入渗透到皮肤中以遇到感染的巨噬细胞(除溃疡性病变外)。

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