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对人类角质形成细胞与……相互作用的综合分析。 (原文中“and”后面缺少具体内容)

Comprehensive analysis of human keratinocyte interactions with and .

作者信息

Novák Ádám, Zajta Erik, Csikós Máté, Halmos Emese, Horváth Márton, Tildy Orsolya, Szekeres András, Svorenj Gergő, Gémes Nikolett, Szebeni Gábor J, Tóth Renáta, Gácser Attila

机构信息

Department of Biotechnology and Microbiology, University of Szeged, Szeged, Hungary.

Laboratory of Functional Genomics, Core Facility, HUN-REN Biological Research Centre, Szeged, Hungary.

出版信息

Virulence. 2025 Dec;16(1):2532815. doi: 10.1080/21505594.2025.2532815. Epub 2025 Aug 3.

Abstract

In recent years, microbiome studies have revealed that species are common colonizers of the human skin. The distribution of species, however, varies greatly. Although is more likely to resemble skin commensals, opinions are divided, and discrepancies are present regarding that is also often associated with cutaneous candidiasis. Therefore, we aimed to thoroughly assess the nature of skin epithelial cell - interactions. To study species-specific host responses, we examined internalization, cytokine and metabolic responses in different keratinocytes (HaCaT, HPV-KER) along with host cell damage following fungal stimuli. To rigorously examine yeast-keratinocyte interactions, we applied two distinct isolates of both (SC5314, WO-1) and (GA1, CLIB214). Comparison of the two fungi's virulence revealed that while effectively adheres to human keratinocytes and causes subsequent damage, is unable to establish lasting physical contact and causes less harm. In terms of keratinocyte response, both cell lines showed significantly enhanced cellular (internalization), humoral (IL-6, IL-8) and metabolic responses (2-ketoglutaric acid, citric acid, threorine, hypotaurine) to strains, while those towards remained relatively low or similar to the control condition. Under certain conditions strain preference was also detected. Of the two cell lines, HPV-KER was more sensitive, as besides interspecies differences, intraspecies differences were also measurable. These results suggest that triggers an enhanced antifungal response, thus does not closely resemble skin commensals, like . Furthermore, HPV-KER might serve as a more applicable tool for studying keratinocyte antifungal responses.

摘要

近年来,微生物组研究表明,某些物种是人类皮肤的常见定植菌。然而,这些物种的分布差异很大。尽管某物种更可能类似于皮肤共生菌,但对此观点存在分歧,并且对于同样常与皮肤念珠菌病相关的另一物种,也存在差异。因此,我们旨在全面评估皮肤上皮细胞与该物种的相互作用本质。为了研究物种特异性的宿主反应,我们检测了不同角质形成细胞(HaCaT、HPV-KER)中的内化、细胞因子和代谢反应,以及真菌刺激后的宿主细胞损伤。为了严格检测酵母菌与角质形成细胞的相互作用,我们应用了两种不同的某真菌(SC5314、WO-1)和另一真菌(GA1、CLIB214)的分离株。对这两种真菌毒力的比较表明,虽然某真菌能有效粘附于人类角质形成细胞并导致后续损伤,但另一真菌无法建立持久的物理接触且造成的损害较小。就角质形成细胞反应而言,两种细胞系对某真菌菌株均表现出显著增强的细胞(内化)、体液(IL-6、IL-8)和代谢反应(2-酮戊二酸、柠檬酸、苏氨酸、亚牛磺酸),而对另一真菌的反应则相对较低或与对照条件相似。在某些条件下还检测到了菌株偏好。在这两种细胞系中,HPV-KER更敏感,因为除了种间差异外,种内差异也可测量。这些结果表明,某真菌引发了增强的抗真菌反应,因此与另一真菌不同,它与皮肤共生菌不太相似。此外,HPV-KER可能是研究角质形成细胞抗真菌反应更适用的工具。

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