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乳酸菌菌株可降低肠道黏膜的体外汞毒性。

Lactic acid bacteria strains reduce in vitro mercury toxicity on the intestinal mucosa.

机构信息

Instituto de Agroquímica y Tecnología de Alimentos (IATA-CSIC), Agustín Escardino 7, 46980, Paterna, Valencia, Spain.

出版信息

Food Chem Toxicol. 2023 Mar;173:113631. doi: 10.1016/j.fct.2023.113631. Epub 2023 Jan 21.

Abstract

A bicameral model consisting of Caco-2 and HT29-MTX intestinal epithelial cells and THP-1-derived macrophages has been used to test the ability of two strains of Lactobacillus to protect from damage caused by mercury. Exposure to 1 mg/ml mercury [Hg(II) or methyl-Hg] for seven days in this model resulted in an inflammatory and pro-oxidant response mainly driven by macrophages. This led to an impairment in the intestinal barrier, defective tight-junctions, increased permeability and mucus hypersecretion. In addition, the wound-healing capacity of the epithelial monolayer was also diminished. However, the presence of heat-killed Lactobacillus intestinalis or Lactobacillus johnsonii cells during Hg exposure reverted these effects, and most of the parameters recovered values similar to control cells. Both lactobacilli showed the capacity to bind Hg(II) and methyl-Hg under the cell culture conditions. This points to Hg sequestration as a likely mechanism that counteracted Hg toxicity. However, differences in the Hg binding capacity and in the effects between both strains suggest that other probiotic-mediated mechanisms may play a role in the alleviation of the damage elicited by Hg. These results show the potential of the bicameral intestinal epithelial model for screening of effective strains for their use in later in vivo studies.

摘要

已经使用由 Caco-2 和 HT29-MTX 肠上皮细胞和 THP-1 衍生的巨噬细胞组成的双室模型来测试两种乳杆菌菌株防止汞造成损害的能力。在该模型中,暴露于 1 mg/ml 汞[Hg(II)或甲基汞]七天会引起主要由巨噬细胞驱动的炎症和促氧化反应。这导致肠道屏障受损,紧密连接缺陷,通透性增加和粘液过度分泌。此外,上皮单层的愈合能力也降低了。但是,在存在热灭活的乳杆菌或约翰逊乳杆菌细胞的情况下暴露于 Hg 时,这些作用会逆转,并且大多数参数恢复到与对照细胞相似的值。两种乳杆菌在细胞培养条件下均显示出结合 Hg(II)和甲基汞的能力。这表明Hg 螯合可能是一种对抗 Hg 毒性的机制。但是,两种菌株之间在 Hg 结合能力和作用方面的差异表明,其他益生菌介导的机制可能在减轻 Hg 引起的损伤中发挥作用。这些结果表明,双室肠上皮模型具有筛选有效菌株的潜力,可用于以后的体内研究。

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