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氟奋乃静抑制钙调蛋白对卡泊芬净耐药光滑念珠菌易感性、生物膜形成和致病性的影响。

Impact of calmodulin inhibition by fluphenazine on susceptibility, biofilm formation and pathogenicity of caspofungin-resistant Candida glabrata.

机构信息

Unidad de Proteómica y Micosis Humanas, Grupo de Enfermedades Infecciosas Departamento de Microbiología, Facultad de Ciencias, Pontificia Universidad Javeriana, Bogotá D.C., Colombia.

Department of Parasitology and Medical Mycology, University of Nantes, Nantes Atlantique Universities, Faculty of Pharmacy, Nantes, France.

出版信息

J Antimicrob Chemother. 2020 May 1;75(5):1187-1193. doi: 10.1093/jac/dkz565.

Abstract

BACKGROUND

In recent decades, Candida glabrata has emerged as a frequent cause of life-threatening fungal infection. In C. glabrata, echinocandin resistance is associated with mutations in FKS1/FKS2 (β-1,3-glucan synthase). The calmodulin/calcineurin pathway is implicated in response to antifungal stress and calcineurin gene disruption specifically reverses Fks2-mediated resistance of clinical isolates.

OBJECTIVES

We evaluated the impact of calmodulin inhibition by fluphenazine in two caspofungin-resistant C. glabrata isolates.

METHODS

C. glabrata isolates were identified by ITS1/ITS4 (where ITS stands for internal transcribed spacer) sequencing and the echinocandin target FKS1/FKS2 genes were sequenced. Susceptibility testing of caspofungin in the presence of fluphenazine was performed by a modified CLSI microbroth dilution method. The effect of the fluphenazine/caspofungin combination on heat stress (37°C or 40°C), oxidative stress (0.2 and 0.4 mM menadione) and biofilm formation (polyurethane catheter) was analysed. A Galleria mellonella model using blastospores (1 × 109 cfu/mL) was developed to evaluate the impact of this combination on larval survival.

RESULTS

F659del was found in the FKS2 gene of both resistant strains. In these clinical isolates, fluphenazine increased susceptibility to caspofungin and reduced their thermotolerance. Furthermore, the fluphenazine/caspofungin combination significantly impaired biofilm formation in an in vitro polyurethane catheter model. All these features participated in the increasing survival of infected G. mellonella after combination treatment in comparison with caspofungin alone.

CONCLUSIONS

In a repurposing strategy, our findings confirm that calmodulin could provide a relevant target in life-threatening fungal infectious diseases.

摘要

背景

近几十年来,光滑念珠菌已成为危及生命的真菌感染的常见原因。在光滑念珠菌中,棘白菌素耐药与 FKS1/FKS2(β-1,3-葡聚糖合酶)突变有关。钙调蛋白/钙调神经磷酸酶途径与对抗真菌应激的反应有关,而钙调神经磷酸酶基因的破坏特异性地逆转了临床分离株中 Fks2 介导的耐药性。

目的

我们评估了氟奋乃静对两种卡泊芬净耐药光滑念珠菌分离株的钙调蛋白抑制作用。

方法

通过 ITS1/ITS4(ITS 代表内部转录间隔区)测序鉴定光滑念珠菌分离株,并对棘白菌素靶标 FKS1/FKS2 基因进行测序。通过改良的 CLSI 微量肉汤稀释法测定氟奋乃静存在时卡泊芬净的药敏性。分析氟奋乃静/卡泊芬净联合用药对热应激(37°C 或 40°C)、氧化应激(0.2 和 0.4 mM 亚甲二氧基苯并蒽)和生物膜形成(聚氨酯导管)的影响。使用 1 × 109 cfu/mL 的芽生孢子建立了一个大蜡螟幼虫模型,以评估该联合用药对幼虫存活率的影响。

结果

在两个耐药株的 FKS2 基因中均发现 F659del。在这些临床分离株中,氟奋乃静增加了对卡泊芬净的敏感性并降低了其耐热性。此外,氟奋乃静/卡泊芬净联合用药显著降低了体外聚氨酯导管模型中生物膜的形成。与单独使用卡泊芬净相比,联合治疗后感染大蜡螟幼虫的存活率增加,这与所有这些特征有关。

结论

在重新利用策略中,我们的发现证实钙调蛋白可作为危及生命的真菌感染性疾病的一个相关靶点。

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