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皮肤癣菌性甲感染体外模型中的抗真菌药物反应

Antifungal drug response in an in vitro model of dermatophyte nail infection.

作者信息

Osborne C S, Leitner I, Favre B, Ryder N S

机构信息

Infectious Diseases Department, Novartis Research Institute, Vienna, Austria.

出版信息

Med Mycol. 2004 Apr;42(2):159-63. doi: 10.1080/13693780310001656803.

Abstract

Despite terbinafine being fungicidal against Trichophyton rubrum in standard NCCLS assays and rapidly accumulating in nails in vivo, onychomycosis patients require prolonged terbinafine treatment to be cured. To investigate this, we developed a more clinically relevant onychomycosis in vitro test model. Human nail powder inoculated with T. rubrum and incubated in liquid RPMI 1640 salt medium, which did not support growth alone, developed extensive and invasive mycelial growth. Antifungal drugs were added at different concentrations and cultures incubated for 1 to 4 weeks. Fungal survival was determined by spreading cultures on PDA plates without drug and measuring CFU after 1 to 4 weeks incubation. Drug activity was expressed as the nail minimum fungicidal concentration (Nail-MFC) required for 99.9% elimination of viable fungus. Terbinafine Nail-MFC was 4 microg/ml after 1 week exposure, decreasing to 1 microg/ml after 4 weeks exposure, much higher than MFCs < or = 0.03 microg/ml determined in standard NCCLS MIC assays. In contrast, other clinically used drugs were unable to kill T. rubrum after 4 weeks incubation in this model. Invasive mycelial growth on nail appears to protect T. rubrum from the cidal action of systemic drugs, thus providing a rationale for the long treatment periods in onychomycosis.

摘要

尽管在标准的美国国家临床实验室标准化委员会(NCCLS)检测中特比萘芬对红色毛癣菌具有杀菌作用,且在体内能迅速在指甲中蓄积,但甲癣患者仍需要长期使用特比萘芬治疗才能治愈。为了对此进行研究,我们建立了一种更具临床相关性的甲癣体外测试模型。将接种了红色毛癣菌的人指甲粉在液体RPMI 1640盐培养基中孵育,该培养基单独使用时不支持真菌生长,但却出现了广泛且侵袭性的菌丝生长。加入不同浓度的抗真菌药物,培养1至4周。通过将培养物接种在不含药物的马铃薯葡萄糖琼脂(PDA)平板上并在孵育1至4周后测量菌落形成单位(CFU)来确定真菌的存活率。药物活性以消除99.9%活真菌所需的指甲最低杀菌浓度(Nail-MFC)表示。暴露1周后特比萘芬的Nail-MFC为4微克/毫升,暴露4周后降至1微克/毫升,远高于在标准NCCLS微量肉汤稀释法测定中确定的≤0.03微克/毫升的最低抑菌浓度(MFC)。相比之下,在该模型中,其他临床使用的药物在孵育4周后无法杀死红色毛癣菌。指甲上的侵袭性菌丝生长似乎保护红色毛癣菌免受全身用药的杀菌作用,从而为甲癣的长疗程治疗提供了理论依据。

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