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一氧化氮释放大分子表现出广谱抗真菌活性,并可用作治疗浅表真菌感染的局部治疗药物。

Nitric Oxide-Releasing Macromolecule Exhibits Broad-Spectrum Antifungal Activity and Utility as a Topical Treatment for Superficial Fungal Infections.

机构信息

Novan, Inc., Morrisville, North Carolina, USA

Novan, Inc., Morrisville, North Carolina, USA.

出版信息

Antimicrob Agents Chemother. 2018 Jun 26;62(7). doi: 10.1128/AAC.01026-17. Print 2018 Jul.

DOI:10.1128/AAC.01026-17
PMID:29760128
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6021618/
Abstract

Cutaneous and superficial fungal infections affecting the skin, nails, and hair of humans are caused primarily by dermatophytes of the genera and or by yeasts of the genera and Onychomycosis is a common fungal infection of the nail that frequently coexists with tinea pedis, the most prevalent mycotic skin infection. Efficacy rates for current topical onychomycosis therapies are hampered by low drug penetration across the nail plate, which is theoretically obviated with nitric oxide (NO)-based topical therapies. The Nitricil technology platform is comprised of polysiloxane-based macromolecules that stably release therapeutic levels of NO. In the reported studies, NVN1000, the lead candidate of the platform, was assessed for its spectrum of activity against a broad range of filamentous fungi and yeast species commonly associated with cutaneous fungal infections. Time-kill assays demonstrated that NVN1000 exhibited fungicidal activity as early as 4 h. Additionally, the penetration of several unique NVN1000 NO-releasing drug product formulations (gel, cream, and lacquer) was evaluated following a single topical application in an infected human nail assay, with all formulations showing similar inhibition of fungal growth. Repeated topical application in this model demonstrated that a lower-strength dose of NO could achieve the same efficacy as a higher-strength dose after 7 days. Together, these results demonstrate that NO-releasing treatments rapidly penetrate the nail plate and eradicate the fungal infection, representing promising novel topical therapies for the treatment of onychomycosis and other cutaneous fungal infections.

摘要

皮肤和浅表真菌感染影响人类的皮肤、指甲和头发,主要由 和 属的皮肤癣菌或 和 属的酵母菌引起。甲真菌病是指甲的常见真菌感染,常与足癣共存,足癣是最常见的真菌性皮肤感染。目前局部治疗甲真菌病的疗效受到药物在指甲板中穿透率低的限制,而基于一氧化氮(NO)的局部治疗理论上可以避免这种情况。Nitricil 技术平台由基于聚硅氧烷的大分子组成,可稳定释放治疗水平的 NO。在报告的研究中,评估了平台的领先候选药物 NVN1000 对与皮肤真菌感染相关的广泛丝状真菌和酵母物种的 活性谱。时间杀伤试验表明,NVN1000 早在 4 小时就表现出杀菌活性。此外,在 感染的人指甲模型中,单次局部应用后,评估了几种独特的 NVN1000 释放 NO 的药物产品制剂(凝胶、乳膏和指甲油)的渗透情况,所有制剂均显示出对真菌生长的相似抑制作用。在该模型中重复局部应用表明,较低强度剂量的 NO 在 7 天后可达到与较高强度剂量相同的疗效。总之,这些 结果表明,NO 释放治疗可迅速穿透指甲板并根除真菌感染,为治疗甲真菌病和其他皮肤真菌感染提供了有前途的新型局部治疗方法。

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