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鉴定具有增强抗流感病毒保护作用的新型乳酸菌。

Identification of novel lactic acid bacteria with enhanced protective effects against influenza virus.

机构信息

Niigata Research Laboratory, Mitsubishi Gas Chemical Company, Inc., Niigata, Japan.

出版信息

PLoS One. 2023 Aug 9;18(8):e0273604. doi: 10.1371/journal.pone.0273604. eCollection 2023.

Abstract

Lactic acid bacteria (LAB) exert health-beneficial effects by regulating innate immunity in the intestinal tract. Due to growing health awareness, the demand for LAB and studies have focused on identifying beneficial LAB strains is increasing, especially those that stimulate innate immunity. In this study, the LAB strain D279 (NITE_BP-03645, Latilactobacillus sakei) was isolated from among 741 LAB strains that were analyzed for their ability to induce interleukin 12 (IL-12) production and was subsequently characterized. D279 induced the highest expression of IL-12 among the screened LABs. Furthermore, D279 significantly activated antiviral genes and preferentially induced interferon (IFN)λ expression in vitro, which plays a critical role in the epithelial tissue, thereby conferring strong anti-influenza potency without inflammation. However, it decreased the IFNα levels. The administration of pasteurized D279 to mice resulted in strong anti-influenza potency, with higher natural killer (NK) cell activity and a lower viral load in the lung than in the control. Importantly, none of the D279-administered mice were sacrificed during the viral infection tests. These results suggest that D279 administration confers beneficial effects by regulating innate immunity and that it may be relevant for commercial use in the future.

摘要

乳酸菌(LAB)通过调节肠道内的先天免疫来发挥有益健康的作用。由于健康意识的不断提高,对 LAB 的需求以及研究重点都集中在鉴定有益的 LAB 菌株上,特别是那些能刺激先天免疫的菌株。在本研究中,从 741 株 LAB 菌株中分离出了 LAB 菌株 D279(NITE_BP-03645,Latilactobacillus sakei),该菌株能够诱导白细胞介素 12(IL-12)的产生,并对其进行了鉴定。D279 在筛选出的 LAB 中诱导产生了最高水平的 IL-12。此外,D279 在体外显著激活抗病毒基因,并优先诱导干扰素(IFN)λ的表达,IFNλ 在上皮组织中发挥着关键作用,从而在没有炎症的情况下赋予了强大的抗流感能力。然而,它降低了 IFNα 的水平。对小鼠进行巴氏灭菌 D279 的处理后,其表现出了强大的抗流感能力,与对照组相比,肺部的自然杀伤(NK)细胞活性更高,病毒载量更低。重要的是,在病毒感染试验中,没有一只接受 D279 处理的小鼠死亡。这些结果表明,D279 的给药通过调节先天免疫发挥有益作用,并且可能在未来具有商业应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da8b/10411811/9ffc7e4f7bfb/pone.0273604.g001.jpg

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