Biotechnology Research Center, Tehran University of Medical Sciences, 1417614411, Tehran, Iran.
Department of Pharmaceutical Biotechnology, Faculty of Pharmacy & Biotechnology Research Center, Tehran University of Medical Sciences, Tehran, Iran.
Probiotics Antimicrob Proteins. 2021 Dec;13(6):1539-1545. doi: 10.1007/s12602-021-09785-5. Epub 2021 Apr 11.
Regulation of immune responses is among the beneficial effects of probiotic bacteria on human health. In this study, we aim to investigate the effect of normal and heat-shocked Lactobacillus plantarum PTCC 1058 cell lysate on cytokine expression by human PBMCs. The mid-exponential phase L. plantarum (10 CFU/mL) were used to prepare cell lysate. Isolated PBMCs were stimulated with 100 µg/mL of each normal and heat-shocked L. plantarum cell lysate for 72 h. Non-stimulated PBMCs were also evaluated as negative control. The mRNA expression of IL-6, IL-10, IFN-ɣ, TNF-α, and TGF-β genes was determined by quantitative RT-PCR amplification of total RNA extracted from PBMCs. Both types of cell lysate were able to increase pro-inflammatory cytokines and decrease anti-inflammatory cytokines. However, this effect was significantly stronger in heat-shocked cell lysate-treated PBMCs. Moreover, comparison of IFN-ɣ/IL-10, IFN-ɣ/TGF-β, IL-6/IL-10, IL-6/TGF-β, and TNF-α/IL-10 ratios in both conditions demonstrated that in the heat-shocked group, all of the above ratios were significantly higher than normal lysate treatment (p˂0.001), suggesting that heat-shocked probiotics are a potent inducer of the immune system in comparison to intact probiotics. Regarding these results, it may be possible to develop a new postbiotic product for the stimulation of immune responses of cancer patients or individuals who suffer from an immune defect.
免疫反应的调节是益生菌对人类健康有益的影响之一。在这项研究中,我们旨在研究正常和热休克植物乳杆菌 PTCC 1058 细胞裂解物对人 PBMCs 细胞因子表达的影响。使用对数中期的 L. plantarum(10 CFU/mL)来制备细胞裂解物。将分离的 PBMCs 用 100 µg/mL 的每种正常和热休克 L. plantarum 细胞裂解物刺激 72 小时。未刺激的 PBMCs 也作为阴性对照进行评估。通过定量 RT-PCR 扩增从 PBMCs 提取的总 RNA 来确定 IL-6、IL-10、IFN-ɣ、TNF-α 和 TGF-β 基因的 mRNA 表达。两种类型的细胞裂解物均能增加促炎细胞因子并减少抗炎细胞因子。然而,在热休克细胞裂解物处理的 PBMCs 中,这种作用明显更强。此外,比较两种条件下 IFN-ɣ/IL-10、IFN-ɣ/TGF-β、IL-6/IL-10、IL-6/TGF-β 和 TNF-α/IL-10 比值表明,在热休克组中,所有上述比值均明显高于正常裂解物处理(p˂0.001),这表明与完整益生菌相比,热休克益生菌是免疫系统的有力诱导剂。鉴于这些结果,可能有可能开发出一种新的后生菌产品,用于刺激癌症患者或免疫缺陷个体的免疫反应。