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二氧化碳增强新型隐球菌对氟胞嘧啶的敏感性。

Carbon Dioxide Potentiates Flucytosine Susceptibility in Cryptococcus neoformans.

作者信息

Jezewski Andrew J, Ristow Laura C, Krysan Damian J

机构信息

Department of Pediatrics, Carver College of Medicine, University of Iowa, Iowa City, Iowa, USA.

Department of Microbiology and Immunology, Carver College of Medicine, University of Iowa, Iowa City, Iowa, USA.

出版信息

Microbiol Spectr. 2023 Jan 31;11(2):e0478322. doi: 10.1128/spectrum.04783-22.

Abstract

Cryptococcal meningoencephalitis remains a global health threat with limited treatment options. Currently, the most effective treatment regimens are based on a combination therapy of flucytosine with either amphotericin B or fluconazole. Slow but steady progress is being made toward universal access to flucytosine-based therapies. The broadening access to flucytosine combination therapies will be accompanied by the need for microbiological methods that reliably determine strain susceptibility. This is especially true considering that flucytosine susceptibility can vary widely across clinical isolates. Identifying culture conditions that best represent the host environment are likely optimal and may even be required for accurately determining flucytosine susceptibility. Here, we report that culture conditions incorporating host-like concentrations of carbon dioxide (CO) potentiated flucytosine susceptibilities across clinical isolates (10 of 11) that exhibited a range of MIC values under ambient growth conditions (2 to 8 μg/mL) by standard Clinical and Laboratory Standards Institute susceptibility testing. CO induced a dose-dependent increase in flucytosine susceptibility between 2- and 8-fold over standard conditions. The CO-dependent increase in flucytosine susceptibility did not correspond to an increase in fluorouracil susceptibility, indicating a central role for flucytosine uptake through the cytosine permease in the presence of host-like CO concentrations. Indeed, the expression of the cytosine permease gene () was induced 18- to 60-fold in the mouse lung environment. Therefore, the activity of flucytosine is likely to be very dependent upon host environment and may not be well represented by standard susceptibility testing. Cryptococcus neoformans causes life-threatening infections of the brain. The most effective treatment regimens are based on flucytosine-based combination therapy, which has led to increasingly successful broadening of access to flucytosine globally. Wider use of flucytosine-based therapies for cryptococcal infections will require the ability to reliably determine clinical isolate susceptibilities. We showed that host-like carbon dioxide stress affected flucytosine susceptibility, and this likely occurred through flucytosine uptake. We further showed that the gene encoding the permease, , and that is responsible for flucytosine uptake was strongly induced during cryptococcal infection. Our data provide insights into the distinctions between the activity of flucytosine in the host environment and during susceptibility testing.

摘要

隐球菌性脑膜脑炎仍然是一个全球性的健康威胁,治疗选择有限。目前,最有效的治疗方案是基于氟胞嘧啶与两性霉素B或氟康唑的联合治疗。在普及基于氟胞嘧啶的治疗方法方面正在取得缓慢但稳定的进展。扩大氟胞嘧啶联合治疗的可及性将伴随着对能够可靠确定菌株敏感性的微生物学方法的需求。考虑到不同临床分离株对氟胞嘧啶的敏感性差异很大,情况尤其如此。确定最能代表宿主环境的培养条件可能是最佳选择,甚至可能是准确测定氟胞嘧啶敏感性所必需的。在此,我们报告称,通过标准的临床和实验室标准协会药敏试验,在含有类似宿主浓度二氧化碳(CO)的培养条件下,11株临床分离株中有10株(在环境生长条件下MIC值范围为2至8μg/mL)的氟胞嘧啶敏感性增强。与标准条件相比,CO诱导氟胞嘧啶敏感性呈2至8倍的剂量依赖性增加。氟胞嘧啶敏感性的CO依赖性增加与氟尿嘧啶敏感性的增加不相关,这表明在类似宿主CO浓度存在的情况下,通过胞嘧啶通透酶摄取氟胞嘧啶起着核心作用。事实上,在小鼠肺环境中,胞嘧啶通透酶基因()的表达被诱导了18至60倍。因此,氟胞嘧啶的活性可能非常依赖于宿主环境,标准药敏试验可能无法很好地体现这一点。新型隐球菌可引发危及生命的脑部感染。最有效的治疗方案基于以氟胞嘧啶为基础的联合治疗,这使得全球范围内获得氟胞嘧啶的机会越来越成功地扩大。更广泛地使用基于氟胞嘧啶的疗法治疗隐球菌感染将需要可靠地确定临床分离株敏感性的能力。我们表明,类似宿主的二氧化碳应激影响氟胞嘧啶敏感性,这可能是通过氟胞嘧啶摄取发生的。我们进一步表明,编码负责氟胞嘧啶摄取的通透酶的基因在隐球菌感染期间被强烈诱导。我们的数据为深入了解氟胞嘧啶在宿主环境中的活性与药敏试验期间的活性之间的差异提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd35/10101005/11c4db9297bd/spectrum.04783-22-f001.jpg

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