Lactobacillus johnsonii JERA01 upregulates the production of Th1 cytokines and modulates dendritic cells-mediated immune response.

IF 1.6 4区 医学 Q3 PHARMACOLOGY & PHARMACY Korean Journal of Physiology & Pharmacology Pub Date : 2024-11-14 DOI:10.4196/kjpp.24.205
Si-Yeon Kim, Hong-Gu Joo
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引用次数: 0

Abstract

Lactic acid bacteria are known to have various effects on the immune system. The type and extent of the effect differ, depending on the type of lactic acid bacteria. This study aimed to investigate the effects of Lactobacillus johnsonii bacterin on mouse-derived immune cells. Treating splenocytes with L. johnsonii bacterin slightly increased the metabolic activity. Additionally, the expression of the activation marker CD25 and production of the Th1-type inflammatory cytokine interferon (IFN)- gamma increased. We confirmed that the increase in IFN-gamma production due to L. johnsonii stimulation was mainly due to T and B cells among splenocytes. Treating dendritic cells (DCs) with L. johnsonii bacterin at concentrations of 106 and 107 cfu/ ml significantly increased tumor necrosis factor-alpha, a pro-inflammatory cytokine, and interleukin-12, a cell-mediated immunity cytokine. Additionally, the expression of surface markers increased. Allogeneic mixed lymphocyte reactions showed that L. johnsonii reduced the antigen-presenting ability of DCs. In cocultures of DCs and splenocytes, L. johnsonii decreased cellular metabolic activity and increased cell death. L. johnsonii upregulated the expression of programmed death ligand 1 on DCs. The findings of this study indicate that L. johnsonii bacterin has immunomodulatory and immunostimulatory effects. While L. johnsonii increased the expression of cytokines and surface markers of immune cells, it modulated DC-mediated immune response. Further studies are needed to determine the effects of L. johnsonii bacterin on DCs and related immune cells.

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约翰逊乳杆菌 JERA01 能上调 Th1 细胞因子的产生并调节树突状细胞介导的免疫反应。
众所周知,乳酸菌对免疫系统有各种影响。影响的类型和程度因乳酸菌的类型而异。本研究旨在探讨约翰逊乳杆菌细菌素对小鼠衍生免疫细胞的影响。用约翰逊乳杆菌细菌素处理脾细胞可轻微提高代谢活性。此外,活化标记 CD25 的表达和 Th1 型炎症细胞因子干扰素(IFN)- γ 的产生也有所增加。我们证实,由于约翰逊酵母菌的刺激,IFN-γ的产生增加主要是由于脾细胞中的T细胞和B细胞。用浓度为 106 和 107 cfu/ ml 的约翰逊酵母菌菌素处理树突状细胞(DCs)会显著增加肿瘤坏死因子-α(一种促炎细胞因子)和白细胞介素-12(一种细胞介导免疫细胞因子)。此外,表面标志物的表达也有所增加。异体混合淋巴细胞反应表明,约翰逊酵母菌降低了直流细胞的抗原递呈能力。在直流细胞和脾细胞的共培养物中,约翰逊菌降低了细胞的代谢活性,增加了细胞死亡。约翰逊鹅膏菌上调了DC上程序性死亡配体1的表达。本研究结果表明,约翰逊酵母菌素具有免疫调节和免疫刺激作用。约翰逊鹅膏菌增加了细胞因子和免疫细胞表面标志物的表达,调节了直流介导的免疫反应。要确定约翰逊鹅膏菌细菌素对直流电和相关免疫细胞的影响,还需要进一步的研究。
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来源期刊
Korean Journal of Physiology & Pharmacology
Korean Journal of Physiology & Pharmacology PHARMACOLOGY & PHARMACY-PHYSIOLOGY
CiteScore
3.20
自引率
5.00%
发文量
53
审稿时长
6-12 weeks
期刊介绍: The Korean Journal of Physiology & Pharmacology (Korean J. Physiol. Pharmacol., KJPP) is the official journal of both the Korean Physiological Society (KPS) and the Korean Society of Pharmacology (KSP). The journal launched in 1997 and is published bi-monthly in English. KJPP publishes original, peer-reviewed, scientific research-based articles that report successful advances in physiology and pharmacology. KJPP welcomes the submission of all original research articles in the field of physiology and pharmacology, especially the new and innovative findings. The scope of researches includes the action mechanism, pharmacological effect, utilization, and interaction of chemicals with biological system as well as the development of new drug targets. Theoretical articles that use computational models for further understanding of the physiological or pharmacological processes are also welcomed. Investigative translational research articles on human disease with an emphasis on physiology or pharmacology are also invited. KJPP does not publish work on the actions of crude biological extracts of either unknown chemical composition (e.g. unpurified and unvalidated) or unknown concentration. Reviews are normally commissioned, but consideration will be given to unsolicited contributions. All papers accepted for publication in KJPP will appear simultaneously in the printed Journal and online.
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