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有机硒对新型隐球菌具有强烈的抑菌作用,并抑制其毒力因子。

Organoselenium Has a Potent Fungicidal Effect on Cryptococcus neoformans and Inhibits the Virulence Factors.

机构信息

Institute of Biomedical Sciences, University of São Paulo (USP), São Paulo, Brazil.

School of Pharmaceutical Sciences, University of São Paulo (USP), São Paulo, Brazil.

出版信息

Antimicrob Agents Chemother. 2023 Mar 16;67(3):e0075922. doi: 10.1128/aac.00759-22. Epub 2023 Feb 23.

Abstract

Cryptococcosis therapy is often limited by toxicity problems, antifungal tolerance, and high costs. Studies approaching chalcogen compounds, especially those containing selenium, have shown promising antifungal activity against pathogenic species. This work aimed to evaluate the and antifungal potential of organoselenium compounds against Cryptococcus neoformans. The lead compound LQA_78 had an inhibitory effect on C. neoformans planktonic cells and dispersed cells from mature biofilms at similar concentrations. The fungal growth inhibition led to an increase in budding cells arrested in the G/M phase, but the compound did not significantly affect structural cell wall components or chitinase activity, an enzyme that regulates the dynamics of the cell wall. The compound also inhibited titan cell (Tc) and enlarged capsule yeast (NcC) growth and reduced the body diameter and capsule thickness associated with increased capsular permeability of both virulent morphotypes. LQA_78 also reduced fungal melanization through laccase activity inhibition. The fungicidal activity was observed at higher concentrations (16 to 64 μg/mL) and may be associated with augmented plasma membrane permeability, ROS production, and loss of mitochondrial membrane potential. While LQA_78 is a nonhemolytic compound, its cytotoxic effects were cell type dependent, exhibiting no toxicity on Galleria mellonella larvae at a dose ≤46.5 mg/kg. LQA_78 treatment of larvae infected with C. neoformans effectively reduced the fungal burden and inhibited virulent morphotype formation. To conclude, LQA_78 displays fungicidal action and inhibits virulence factors of C. neoformans. Our results highlight the potential use of LQA_78 as a lead molecule for developing novel pharmaceuticals for treating cryptococcosis.

摘要

隐球菌病的治疗常常受到毒性问题、抗真菌药物耐受性和高成本的限制。研究含硒的硫属化合物,尤其是那些含有硒的化合物,已显示出对致病性物种具有有希望的抗真菌活性。本工作旨在评估有机硒化合物对新生隐球菌的抗真菌潜力。先导化合物 LQA_78 对新生隐球菌浮游细胞和成熟生物膜分散细胞具有相似浓度的抑制作用。真菌生长抑制导致处于 G/M 期停滞的出芽细胞增加,但该化合物对结构细胞壁成分或几丁质酶活性没有显著影响,几丁质酶是一种调节细胞壁动态的酶。该化合物还抑制钛细胞(Tc)和扩大胶囊酵母(NcC)的生长,降低与两种毒力形态的囊泡通透性增加相关的菌体直径和囊泡厚度。LQA_78 还通过抑制漆酶活性来抑制真菌黑色素形成。杀菌活性在较高浓度(16 至 64μg/ml)下观察到,可能与增强质膜通透性、ROS 产生和线粒体膜电位丧失有关。虽然 LQA_78 是非溶血化合物,但它的细胞毒性作用取决于细胞类型,在≤46.5mg/kg 的剂量下对美洲大蠊幼虫没有毒性。LQA_78 处理感染新生隐球菌的幼虫可有效降低真菌负荷并抑制毒力形态形成。总之,LQA_78 具有杀菌作用,并抑制新生隐球菌的毒力因子。我们的结果强调了 LQA_78 作为开发治疗隐球菌病的新型药物的先导分子的潜在用途。

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