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致病性毛霉目真菌:解析其细胞壁多糖组及免疫刺激潜力

Pathogenic mucorales: Deciphering their cell wall polysaccharidome and immunostimulatory potential.

作者信息

Lepas Mathieu, Marcondes Figueiredo Julia, Dellière Sarah, Sze Wah Wong Sarah, Garcia-Hermoso Dea, Duchateau Magalie, Matondo Mariette, Lanternier Fanny, Aimanianda Vishukumar

机构信息

Institut Pasteur, Université Paris Cité, Molecular Mycology Unit, UMR CNRS2000, Paris, France.

Institut Pasteur, Université Paris Cité, Immunobiology of Aspergillus, Paris, France.

出版信息

Virulence. 2025 Dec;16(1):2528079. doi: 10.1080/21505594.2025.2528079. Epub 2025 Jul 7.

DOI:10.1080/21505594.2025.2528079
PMID:40621682
Abstract

Mucormycosis is an emerging infection caused by pathogenic filamentous fungal species belonging to the Order Mucorales. Mortality associated with mucormycosis is significantly high in patients with compromised immunity. As cell wall is the first fungal component to interact with the host immune system, we characterized cell wall organization and composition of the three most prevalent pathogenic species of Mucorales, , and studied their immunomodulatory potential. Staining and lectin-/immunolabeling indicated that the spores and germ-tubes of these three Mucorales species have surface-exposed mannans, while germ-tubes showed distinctly distributed β-1,3-glucan. Gas chromatography analysis of the cell wall indicated that glucose polymer is the major fibrillar polysaccharide present in the three species, whereas amorphous components were species-dependent. Specific enzymatic digestion followed by chromatography analysis indicated that β-1,3-glucan, β-1,6-glucan, and amylase digestible glucan constitute firbrillar polysaccharides. Stimulation of human peripheral blood mononuclear cells or THP-1 (human leukemic monocytic) cells with spores or extracted cell wall polysaccharides resulted in the release of pro-inflammatory cytokines regardless of the Mucorales species. Together, the Mucorales species analyzed in this study show a common and species-specific cell wall composition. The cell wall polysaccharides are highly pro-inflammatory, suggesting that undue or excessive inflammation may contribute to the immunopathology of mucormycosis.

摘要

毛霉病是一种由毛霉目致病丝状真菌引起的新发感染。在免疫功能受损的患者中,与毛霉病相关的死亡率显著较高。由于细胞壁是真菌与宿主免疫系统相互作用的首个成分,我们对毛霉目中三种最常见的致病菌种的细胞壁结构和组成进行了表征,并研究了它们的免疫调节潜力。染色以及凝集素/免疫标记表明,这三种毛霉目菌种的孢子和芽管表面有暴露的甘露聚糖,而芽管显示出β-1,3-葡聚糖分布明显不同。细胞壁的气相色谱分析表明,葡萄糖聚合物是这三种菌种中主要的纤维状多糖,而非晶态成分则因菌种而异。特定的酶消化后进行色谱分析表明,β-1,3-葡聚糖、β-1,6-葡聚糖和淀粉酶可消化的葡聚糖构成了纤维状多糖。用孢子或提取的细胞壁多糖刺激人外周血单核细胞或THP-1(人白血病单核细胞)细胞,无论毛霉目菌种如何,都会导致促炎细胞因子的释放。总之,本研究中分析的毛霉目菌种显示出共同且特定于菌种的细胞壁组成。细胞壁多糖具有高度促炎作用,表明不适当或过度的炎症可能导致毛霉病的免疫病理。

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本文引用的文献

1
Complement, but Not Platelets, Plays a Pivotal Role in the Outcome of Mucormycosis In Vivo.补体而非血小板在体内毛霉菌病的转归中起关键作用。
J Fungi (Basel). 2023 Jan 25;9(2):162. doi: 10.3390/jof9020162.
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Parietal composition of Lichtheimia corymbifera: Differences between spore and germ tube stages and host-pathogen interactions.光枝镰孢的壁成分:孢子与芽管阶段的差异及宿主-病原体相互作用。
Med Mycol. 2022 Dec 29;61(1). doi: 10.1093/mmy/myac100.
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Architecture of the dynamic fungal cell wall.动态真菌细胞壁的结构
Nat Rev Microbiol. 2023 Apr;21(4):248-259. doi: 10.1038/s41579-022-00796-9. Epub 2022 Oct 20.
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Current treatments against mucormycosis and future directions.当前针对毛霉病的治疗方法和未来方向。
PLoS Pathog. 2022 Oct 13;18(10):e1010858. doi: 10.1371/journal.ppat.1010858. eCollection 2022 Oct.
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Nature of β-1,3-Glucan-Exposing Features on Candida albicans Cell Wall and Their Modulation.白色念珠菌细胞壁上β-1,3-葡聚糖暴露特征的性质及其调控。
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Cell compensatory responses of fungi to damage of the cell wall induced by Calcofluor White and Congo Red with emphasis on and . A review.真菌细胞壁损伤时的细胞补偿反应,包括 Calcofluor White 和 Congo Red 的诱导作用,重点介绍 和 。综述。
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Active Surveillance Program to Increase Awareness on Invasive Fungal Diseases: the French RESSIF Network (2012 to 2018).主动监测项目提高对侵袭性真菌感染的认识:法国 RESSIF 网络(2012 年至 2018 年)。
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The emergence of COVID-19 associated mucormycosis: a review of cases from 18 countries.COVID-19 相关毛霉病的出现:来自 18 个国家的病例回顾。
Lancet Microbe. 2022 Jul;3(7):e543-e552. doi: 10.1016/S2666-5247(21)00237-8. Epub 2022 Jan 25.
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Glucan and glycogen exist as a covalently linked macromolecular complex in the cell wall of and other species.葡聚糖和糖原以共价连接的大分子复合物形式存在于[具体物种1]和其他[具体物种2]物种的细胞壁中。
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10
Species-Specific Immunological Reactivities Depend on the Cell-Wall Organization of the Two , and .两种 和 的细胞壁结构决定了其种属特异性免疫反应性。
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