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洛伐他汀对接合菌有显著活性,并与伏立康唑具有协同作用。

Lovastatin has significant activity against zygomycetes and interacts synergistically with voriconazole.

作者信息

Chamilos Georgios, Lewis Russell E, Kontoyiannis Dimitrios P

机构信息

Department of Infectious Diseases, Infection Control, and Employee Health, Unit 402, The University of Texas M. D. Anderson Cancer Center, 1515 Holcombe Blvd., Houston, Texas 77030, USA.

出版信息

Antimicrob Agents Chemother. 2006 Jan;50(1):96-103. doi: 10.1128/AAC.50.1.96-103.2006.

Abstract

Zygomycetes are emerging opportunistic molds resistant to most conventional antifungals. We evaluated the in vitro activity of lovastatin (LOV), a 3-hydroxy-3-methylglutaryl-coenzyme A reductase inhibitor, against seven clinical isolates of Zygomycetes by using standard microdilution methods in three different media, disk diffusion testing, and viability dye staining. To further study the in vivo efficacy of LOV against zygomycetes, we developed a Drosophila melanogaster model of zygomycosis. In different experiments, groups of Toll-deficient (Tl) flies fed LOV-containing food were subsequently injected with two representative Zygomycetes isolates (Mucor and Rhizopus spp.). Finally, we examined the effects of LOV on voriconazole (VRC) activity against zygomycetes in vitro by checkerboard dilution, Epsilometer test-based methods, and bis-(1,3-dibutylbarbituric acid) trimethine oxonol staining and in vivo in Tl flies fed food containing LOV plus VRC and infected with zygomycetes. LOV exhibited significant, medium, and strain-independent fungicidal activity against all Zygomycetes isolates in vitro by all testing methods (MIC50, 48.0 microg/ml; 50% minimal fungicidal concentration, 56.0 microg/ml; 50% effective concentration, 29.4 microg/ml [6.6 to 38.9 microg/ml]). Tl flies fed LOV-containing food and infected with Mucor had a significantly better 6-day survival rate than did infected Tl flies fed regular food (P = 0.0005). LOV displayed in vitro synergy with VRC against all Zygomycetes isolates (fractional inhibitory concentration index, 0.104 to 0.290) by all methods used. LOV also displayed synergy with VRC in the Drosophila model of zygomycosis (P < 0.01). LOV is significantly active against zygomycetes and synergizes with triazoles inherently resistant to them, such as VRC. The clinical significance of these findings needs to be further explored.

摘要

接合菌是对大多数传统抗真菌药物具有抗性的新兴机会致病性霉菌。我们采用标准微量稀释法在三种不同培养基中、纸片扩散试验和活力染料染色,评估了3-羟基-3-甲基戊二酰辅酶A还原酶抑制剂洛伐他汀(LOV)对七株临床分离接合菌的体外活性。为进一步研究LOV抗接合菌的体内疗效,我们建立了黑腹果蝇接合菌病模型。在不同实验中,给喂食含LOV食物的Toll缺陷(Tl)果蝇组随后注射两种代表性接合菌分离株(毛霉属和根霉属)。最后,我们通过棋盘稀释法、基于Epsilometer试验的方法以及双(1,3-二丁基巴比妥酸)三甲川氧杂羰花青染色,在体外研究了LOV对伏立康唑(VRC)抗接合菌活性的影响,并在喂食含LOV加VRC食物且感染接合菌的Tl果蝇体内进行了研究。通过所有检测方法,LOV在体外对所有接合菌分离株均表现出显著、中等且不依赖菌株的杀真菌活性(MIC50为48.0微克/毫升;50%最低杀菌浓度为56.0微克/毫升;50%有效浓度为29.4微克/毫升[6.6至38.9微克/毫升])。喂食含LOV食物且感染毛霉的Tl果蝇6天存活率显著高于喂食普通食物的感染Tl果蝇(P = 0.0005)。通过所有使用的方法,LOV在体外与VRC对所有接合菌分离株均表现出协同作用(部分抑菌浓度指数为0.104至0.290)。在接合菌病果蝇模型中,LOV也与VRC表现出协同作用(P < 0.01)。LOV对接合菌具有显著活性,并与对其固有耐药的三唑类药物如VRC具有协同作用。这些发现的临床意义有待进一步探索。

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