The effect of microbial metabolites from colonic protein fermentation on bacteria-induced cytokine production in dendritic cells

IF 5 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
BioFactors Pub Date : 2025-02-24 DOI:10.1002/biof.70007
Zhuqing Xie, Danny Blichfeldt Eriksen, Peter Riber Johnsen, Dennis Sandris Nielsen, Hanne Frøkiær
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引用次数: 0

Abstract

Compared to the well-defined immune-modulating effect of butyrate, the understanding of the effect of other protein fermentation metabolites is limited. This study aimed to investigate the impact of protein-derived metabolites (valerate, branched-chain fatty acids, ammonium, phenol, p-Cresol, indole, and hydrogen sulfide) on cytokine production in murine bone marrow-derived dendritic cells (BMDCs) stimulated with lipopolysaccharides (LPS), Lactobacillus acidophilus NCFM, or Staphylococcus aureus USA300. Some of the metabolites, but not the short-chain fatty acids (SCFAs), strongly affected cell viability. After short-term treatment and depending on the microbial stimulus, SCFAs affected the cytokine profile similarly but weaker than butyrate, as reflected by inhibition of IL-12p70 and IL-10 but enhanced IL-23 (LPS and S. aureus USA300) and IL-1β production. Compared to butyrate, valerate exhibited a weaker and slower effect on cytokine expression. Two-day treatment with valerate and butyrate resulted in similar effects, that is, LPS-induced IL-12 abrogation and IL-10 enhancement, increased aryl hydrocarbon receptor (Ahr) expression, and after LPS stimulation, increased expression of dual specificity phosphatase 1 (Dusp1). In conclusion, SCFAs exhibited low toxicity and modulated microbially stimulated BMDCs. Valerate and butyrate showed the strongest effect, which was dependent on the specific microbial stimulation and the course of the SCFA treatment. Our work adds knowledge regarding the role of protein-derived metabolites from gut bacterial fermentation on the immune system.

Abstract Image

结肠蛋白发酵微生物代谢产物对树突状细胞细菌诱导的细胞因子产生的影响
与丁酸盐明确的免疫调节作用相比,对其他蛋白质发酵代谢物的作用了解有限。本研究旨在研究蛋白质衍生代谢物(戊酸盐、支链脂肪酸、铵、酚、对甲酚、吲哚和硫化氢)对脂多糖(LPS)、嗜酸乳杆菌NCFM或金黄色葡萄球菌USA300刺激小鼠骨髓源树突状细胞(bmdc)细胞因子产生的影响。一些代谢物,但不是短链脂肪酸(SCFAs),强烈影响细胞活力。短期治疗后,依赖于微生物刺激,SCFAs对细胞因子谱的影响与丁酸盐相似,但弱于丁酸盐,这反映在抑制IL-12p70和IL-10,但增强IL-23 (LPS和金黄色葡萄球菌USA300)和IL-1β的产生。与丁酸盐相比,戊酸盐对细胞因子表达的影响更弱、更慢。用戊酸盐和丁酸盐处理2天的效果相似,即LPS诱导IL-12消失和IL-10增强,芳烃受体(Ahr)表达增加,LPS刺激后双特异性磷酸酶1 (Dusp1)表达增加。综上所述,scfa具有低毒性和可调节微生物刺激的BMDCs。戊酸盐和丁酸盐的效果最强,这取决于特定的微生物刺激和SCFA处理的过程。我们的工作增加了关于肠道细菌发酵的蛋白质衍生代谢物对免疫系统的作用的知识。
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来源期刊
BioFactors
BioFactors 生物-内分泌学与代谢
CiteScore
11.50
自引率
3.30%
发文量
96
审稿时长
6-12 weeks
期刊介绍: BioFactors, a journal of the International Union of Biochemistry and Molecular Biology, is devoted to the rapid publication of highly significant original research articles and reviews in experimental biology in health and disease. The word “biofactors” refers to the many compounds that regulate biological functions. Biological factors comprise many molecules produced or modified by living organisms, and present in many essential systems like the blood, the nervous or immunological systems. A non-exhaustive list of biological factors includes neurotransmitters, cytokines, chemokines, hormones, coagulation factors, transcription factors, signaling molecules, receptor ligands and many more. In the group of biofactors we can accommodate several classical molecules not synthetized in the body such as vitamins, micronutrients or essential trace elements. In keeping with this unified view of biochemistry, BioFactors publishes research dealing with the identification of new substances and the elucidation of their functions at the biophysical, biochemical, cellular and human level as well as studies revealing novel functions of already known biofactors. The journal encourages the submission of studies that use biochemistry, biophysics, cell and molecular biology and/or cell signaling approaches.
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