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益生菌无细胞上清液和维生素D影响白细胞介素-6的产生,并减轻口腔牙周病原体诱导的FaDu细胞的细胞毒性。

probiotic cell-free supernatants and vitamin D influence interleukin-6 production and mitigate oral periodontopathogens-induced cytotoxicity in FaDu cells.

作者信息

Zanetta Paola, De Giorgis Veronica, Barberis Elettra, Manfredi Marcello, Amoruso Angela, Pane Marco, Azzimonti Barbara

机构信息

Laboratory of Applied Microbiology, Department of Health Sciences (DiSS), Center for Translational Research on Allergic and Autoimmune Diseases (CAAD), School of Medicine, Università del Piemonte Orientale (UPO), Novara, Italy.

Laboratory of Biological Mass Spectrometry, Department of Translational Medicine (DiMeT), Center for Translational Research on Allergic and Autoimmune Diseases (CAAD), School of Medicine, Università del Piemonte Orientale (UPO), Novara, Italy.

出版信息

Front Microbiol. 2025 Apr 25;16:1578267. doi: 10.3389/fmicb.2025.1578267. eCollection 2025.

Abstract

Oral eubiosis is of utmost importance for local and systemic health. Consolidated habits, as excessive alcohol consumption, smoke, inappropriate oral hygiene, and western diet, exert detrimental effects on oral microbiota composition and function. This leads to caries, gingivitis, and periodontitis, also increasing the risk of preterm births, inflammation, and cancer. Thus, effective tools to contain pathobiont overgrowth and virulence and restore oral eubiosis are needed. Therefore, the effects of LRE11, LR04, LC04, and their co-culture cell-free supernatants (CFSs), produced in both conventional MRS medium and a novel animal derivative-free medium named TIL, along with vitamin D, were assessed on the viability and interleukin (IL)-6 production of oral epithelial FaDu cells infected with , , and . The CFS proteomic, short chain fatty acid, and lactic acid contents were also investigated. Interestingly, probiotic CFSs and vitamin D differentially reduced the infected cell IL-6 production and counteracted the infection-induced cytotoxicity. Taken together, these results suggest that probiotics and vitamin D can reverse pathogen-induced cell damage. Since probiotic CFS effect is both strain and growth medium composition dependent, further experiments are required to deepen the probiotic and vitamin D synergic activity in this context.

摘要

口腔微生态平衡对局部和全身健康至关重要。长期养成的习惯,如过量饮酒、吸烟、口腔卫生不当以及西式饮食,会对口腔微生物群的组成和功能产生有害影响。这会导致龋齿、牙龈炎和牙周炎,还会增加早产、炎症和癌症的风险。因此,需要有效的工具来抑制致病共生菌的过度生长和毒力,并恢复口腔微生态平衡。因此,评估了在传统MRS培养基和一种名为TIL的新型无动物衍生培养基中产生的LRE11、LR04、LC04及其共培养无细胞上清液(CFSs)以及维生素D对感染了 、 和 的口腔上皮FaDu细胞活力和白细胞介素(IL)-6产生的影响。还研究了CFS的蛋白质组学、短链脂肪酸和乳酸含量。有趣的是,益生菌CFSs和维生素D不同程度地降低了感染细胞的IL-6产生,并抵消了感染诱导的细胞毒性。综上所述,这些结果表明益生菌和维生素D可以逆转病原体诱导的细胞损伤。由于益生菌CFS的效果取决于菌株和生长培养基的组成,因此需要进一步的实验来深入研究在这种情况下益生菌和维生素D的协同活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4def/12063358/6d3341cbb2f4/fmicb-16-1578267-g001.jpg

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