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分离能降低环境中烷基和脂肪酸氢过氧化物的乳酸菌,以及口服这些乳酸菌对氧化应激线虫和大鼠的影响。

Isolation of lactic acid bacteria capable of reducing environmental alkyl and fatty acid hydroperoxides, and the effect of their oral administration on oxidative-stressed nematodes and rats.

机构信息

Department of Bio-Science, Tokyo University of Agriculture, Setagaya-ku, Tokyo, Japan.

TAIYO Corporation, Laboratory, Higashiyodogawa-ku, Osaka, Japan.

出版信息

PLoS One. 2020 Feb 27;15(2):e0215113. doi: 10.1371/journal.pone.0215113. eCollection 2020.

Abstract

Reinforcement of the hydroperoxide-eliminating activity in the small and large intestines should prevent associated diseases. We previously isolated a lactic acid bacterium, Pediococcus pentosaceus Be1 that facilitates a 2-electron reduction of hydrogen peroxide to water. In this study, we successfully isolated an alternative lactic acid bacterium, Lactobacillus plantarum P1-2, that can efficiently reduce environmental alkyl hydroperoxides and fatty acid hydroperoxides to their corresponding hydroxyl derivatives through a 2-electron reduction. Each strain exhibited a wide concentration range with regard to the environmental reducing activity for each hydroperoxide. Given this, the two lactic acid bacteria were orally administered to an oxygen-sensitive short-lived nematode mutant, and this resulted in a significant expansion of its lifespan. This observation suggests that P. pentosaceus Be1 and L. plantarum P1-2 inhibit internal oxidative stress. To determine the specific organs involved in this response, we performed a similar experiment in rats, involving induced lipid peroxidation by iron-overloading. We observed that only L. plantarum P1-2 inhibited colonic mucosa lipid peroxidation in rats with induced oxidative stress.

摘要

增强小肠和大肠中的过氧化物消除活性应该可以预防相关疾病。我们之前分离到一种能促进过氧化氢两电子还原为水的乳酸细菌,戊糖片球菌 Be1。在这项研究中,我们成功分离到另一种乳酸细菌,植物乳杆菌 P1-2,它可以通过两电子还原有效地将环境中的烷基过氧化物和脂肪酸过氧化物还原为相应的羟基衍生物。每种菌株对每种过氧化物的环境还原活性都表现出较宽的浓度范围。鉴于此,将这两种乳酸菌经口施用于对氧敏感的短寿命线虫突变体,结果显著延长了其寿命。这一观察结果表明,戊糖片球菌 Be1 和植物乳杆菌 P1-2 抑制了内部氧化应激。为了确定这种反应涉及的特定器官,我们在大鼠中进行了类似的实验,涉及通过铁过载诱导脂质过氧化。我们观察到,只有植物乳杆菌 P1-2 能抑制诱导氧化应激大鼠的结肠黏膜脂质过氧化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7797/7046221/3c509a5b8250/pone.0215113.g001.jpg

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