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元素硫增强鼠李糖乳杆菌 Lcr35 的抗真菌作用。

Elemental sulfur enhances the anti-fungal effect of Lacticaseibacillus rhamnosus Lcr35.

机构信息

NEXBIOME Therapeutics, 22 Allée Alan Turing, 63000 Clermont-Ferrand, France; Université Clermont Auvergne, CNRS, LMGE, F-63000 Clermont-Ferrand, France.

Université Clermont Auvergne, CNRS, LMGE, F-63000 Clermont-Ferrand, France.

出版信息

Microbes Infect. 2024 Mar-Apr;26(3):105286. doi: 10.1016/j.micinf.2023.105286. Epub 2023 Dec 30.

Abstract

Lacticaseibacillus rhamnosus Lcr35 is a well-known bacterial strain whose efficiency in preventing recurrent vulvovaginal candidiasis has been largely demonstrated in clinical trials. The presence of sodium thiosulfate (STS) has been shown to enhance its ability to inhibit the growth of Candida albicans strains. In this study, we confirmed that Lcr35 has a fungicidal effect not only on the planktonic form of C. albicans but also on other life forms such as hypha and biofilm. Transcriptomic analysis showed that the presence of C. albicans induced a metabolic adaptation of Lcr35 potentially associated with a competitive advantage over yeast cells. However, STS alone had no impact on the global gene expression of Lcr35, which is not in favor of the involvement of an enzymatic transformation of STS. Comparative HPLC and gas chromatography-mass spectrometry analysis of the organic phase from cell-free supernatant (CFS) fractions obtained from Lcr35 cultures performed in the presence and absence of STS identified elemental sulfur (S) in the samples initially containing STS. In addition, the anti-Candida activity of CFS from STS-containing cultures was shown to be pH-dependent and occurred at acidic pH lower than 5. We next investigated the antifungal activity of lactic acid and acetic acid, the two main organic acids produced by lactobacilli. The two molecules affected the viability of C. albicans but only at pH 3.5 and in a dose-dependent manner, an antifungal effect that was enhanced in samples containing STS in which the thiosulfate was decomposed into S. In conclusion, the use of STS as an excipient in the manufacturing process of Lcr35 exerted a dual action since the production of organic acids by Lcr35 facilitates the decomposition of thiosulfate into S, thereby enhancing the bacteria's own anti-fungal effect.

摘要

鼠李糖乳杆菌 Lcr35 是一种众所周知的细菌菌株,其在预防复发性外阴阴道念珠菌病方面的功效已在临床试验中得到广泛证实。硫代硫酸钠(STS)的存在已被证明可以增强其抑制白色念珠菌菌株生长的能力。在这项研究中,我们证实 Lcr35 不仅对白色念珠菌的浮游形式具有杀菌作用,而且对其他生命形式,如菌丝和生物膜也具有杀菌作用。转录组分析表明,白色念珠菌的存在诱导了 Lcr35 的代谢适应,这可能与对酵母细胞的竞争优势有关。然而,STS 本身对 Lcr35 的全基因表达没有影响,这不利于 STS 的酶转化参与。对 Lcr35 培养物上清液(CFS)进行 HPLC 和气相色谱-质谱分析,发现 CFS 中存在元素硫(S),这些 CFS 是在含有或不含有 STS 的情况下获得的。此外,含有 STS 的培养物的 CFS 的抗真菌活性依赖于 pH 值,且在 pH 值低于 5 的酸性条件下发生。我们接下来研究了由乳酸菌产生的两种主要有机酸——乳酸和乙酸的抗真菌活性。这两种分子影响了白色念珠菌的活力,但仅在 pH 值为 3.5 且呈剂量依赖性时才会影响,且在含有 STS 的样品中,STS 被分解为 S 后,这种抗真菌作用会增强。总之,STS 作为 Lcr35 生产过程中的赋形剂使用具有双重作用,因为 Lcr35 产生的有机酸有助于 STS 分解为 S,从而增强细菌自身的抗真菌作用。

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