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本土益生菌 Lactobacillus 菌株降低镉生物可利用性的功效 - 一种体外消化模型。

Efficacy of indigenous probiotic Lactobacillus strains to reduce cadmium bioaccessibility - An in vitro digestion model.

机构信息

Synbiotic Functional Foods Laboratory, Dairy Microbiology Division, ICAR-National Dairy Research Institute, Karnal, Haryana, 132001, India.

RK University, Bhavnagar Highway, Kasturbadham Rajkot, Gujarat, 360020, India.

出版信息

Environ Sci Pollut Res Int. 2017 Jan;24(2):1241-1250. doi: 10.1007/s11356-016-7779-6. Epub 2016 Oct 21.

Abstract

The toxic heavy metal cadmium (Cd) appears as one of the major global threats to human and animal health. Human being and aquatic life are exposed to Cd by breathing, eating, or drinking when industrial effluents released into environment. The study was aimed to identify cadmium-binding Lactobacillus strain to reduce its bioaccessibility in in vitro digestion model. In this context, forty-eight lactobacilli strains isolated and characterized from fermented dairy products and human origin were screened for their Cd biosorption potential using Flame Atomic Absorption Spectroscopy (FAAS). The present study revealed that Cd biosorption potential of 48 lactobacilli strains ranged from 1.0832 ± 0.012 to 3.562 ± 0.03 mg Cd g of cells from initial 10 mg L cadmium chloride (CdCl) aqueous solution. Lactobacillus plantarum strain HD 48 demonstrated highest biosorption of 3.562 ± 0.03 mg Cd g of cells. Lactobacilli-Cd complex stability indicated its strong stability as even after three washes with Milli-Q water metal desorption was nonsignificant (p < 0.05) and further studies to delineate the influence of Cd (100 mg L CdCl) on their growth. Moreover, these strains were able to reduce Cd bioaccessibility in the in vitro digestion model in the range of 24.71 to 41.62 %. Transmission electron microscopy (TEM) investigations on Cd bioadsorption also revealed its surface associated bioadsorption phenomenon. These findings depicted that probiotic strain L. plantarum HD 48 was found to be endowed with remarkable Cd biosorption ability as well as reduction in its bioaccessibility. These results suggest that probiotic strain L. plantarum HD 48 has immense potential to sequester Cd from aqueous solution which could be further explored as a potent source to diminish body Cd burden.

摘要

有毒重金属镉(Cd)是对人类和动物健康的主要全球性威胁之一。当工业废水排放到环境中时,人类和水生生物通过呼吸、饮食或饮水而接触到镉。本研究旨在鉴定具有结合镉能力的乳酸杆菌菌株,以降低其在体外消化模型中的生物可利用性。在这种情况下,使用火焰原子吸收光谱法(FAAS)从发酵乳制品和人体来源中分离和表征了 48 株乳酸杆菌菌株,以筛选其对 Cd 的生物吸附潜力。本研究表明,48 株乳酸杆菌菌株对初始浓度为 10mg/L 的氯化镉(CdCl)水溶液中 Cd 的生物吸附能力范围为 1.0832±0.012 至 3.562±0.03mg Cd g 细胞。植物乳杆菌菌株 HD 48 表现出最高的生物吸附能力,为 3.562±0.03mg Cd g 细胞。乳酸杆菌-Cd 复合物的稳定性表明其稳定性很强,即使经过三次用 Milli-Q 水冲洗,金属解吸也不显著(p<0.05),并进一步研究了 Cd(100mg/L CdCl)对其生长的影响。此外,这些菌株能够在体外消化模型中将 Cd 的生物可利用性降低 24.71%至 41.62%。Cd 生物吸附的透射电子显微镜(TEM)研究也揭示了其表面相关的生物吸附现象。这些发现表明,益生菌菌株 L. plantarum HD 48 具有显著的 Cd 生物吸附能力,并且能够降低其生物可利用性。这些结果表明,益生菌菌株 L. plantarum HD 48 具有从水溶液中螯合 Cd 的巨大潜力,可以进一步探索作为减少体内 Cd 负担的有效来源。

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