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1
Immobilization of Saccharomyces cerevisiae on Perlite Beads for the Decontamination of Aflatoxin M1 in Milk.膨胀珍珠岩固定化酿酒酵母去除牛奶中黄曲霉毒素 M1。
J Food Sci. 2018 Jul;83(7):2008-2013. doi: 10.1111/1750-3841.14100. Epub 2018 May 26.
2
A comparative study of procedures for binding of aflatoxin M1 to Lactobacillus rhamnosus GG.黄曲霉毒素M1与鼠李糖乳杆菌GG结合程序的比较研究。
Braz J Microbiol. 2018 Jan-Mar;49(1):120-127. doi: 10.1016/j.bjm.2017.05.003. Epub 2017 Aug 6.
3
Design and validation of an orally administrated active L. fermentum-L. acidophilus probiotic formulation using colorectal cancer Apc mouse model.使用结直肠癌Apc小鼠模型设计并验证口服活性发酵乳杆菌-嗜酸乳杆菌益生菌制剂
Appl Microbiol Biotechnol. 2017 Mar;101(5):1999-2019. doi: 10.1007/s00253-016-7885-x. Epub 2016 Nov 11.
4
In vitro ability of beer fermentation residue and yeast-based products to bind aflatoxin B1.啤酒发酵残渣和酵母基产品结合黄曲霉毒素B1的体外能力。
Braz J Microbiol. 2015 Jun 1;46(2):577-81. doi: 10.1590/S1517-838246220130400. eCollection 2015 Jun.
5
Reduction of aflatoxins (B₁, B₂, G₁, and G₂) in soybean-based model systems.降低基于大豆的模型体系中的黄曲霉毒素(B₁、B₂、G₁ 和 G₂)。
Food Chem. 2015 Dec 15;189:45-51. doi: 10.1016/j.foodchem.2015.02.013. Epub 2015 Feb 10.
6
Biotechnological advances for combating Aspergillus flavus and aflatoxin contamination in crops.生物技术在防治作物黄曲霉和黄曲霉毒素污染中的应用进展。
Plant Sci. 2015 May;234:119-32. doi: 10.1016/j.plantsci.2015.02.009. Epub 2015 Feb 25.
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Detoxification of mycotoxins by probiotic preparation for broiler chickens.益生菌制剂对肉鸡霉菌毒素的解毒作用。
Mycotoxin Res. 2006 Dec;22(4):230-5. doi: 10.1007/BF02946747.
8
Ability of Lactobacillus rhamnosus GAF01 to remove AFM1 in vitro and to counteract AFM1 immunotoxicity in vivo.鼠李糖乳杆菌 GAF01 体外去除 AFM1 的能力及其体内拮抗 AFM1 免疫毒性的作用。
J Immunotoxicol. 2013 Jul-Sep;10(3):279-86. doi: 10.3109/1547691X.2012.718810. Epub 2012 Oct 3.
9
Assessment of aflatoxin M1 contamination in pasteurized and UHT milk marketed in central part of Iran.评估伊朗中部市售巴氏杀菌奶和超高温灭菌奶中的黄曲霉毒素 M1 污染情况。
Food Chem Toxicol. 2010 Mar;48(3):988-91. doi: 10.1016/j.fct.2010.01.014. Epub 2010 Jan 18.
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Key role of teichoic acids on aflatoxin B binding by probiotic bacteria.厚壁菌酸在益生菌结合黄曲霉毒素 B 中的关键作用。
J Appl Microbiol. 2009 Aug;107(2):395-403. doi: 10.1111/j.1365-2672.2009.04217.x. Epub 2009 May 26.

某些生物物理因素处理的实验性污染牛奶中所选乳酸菌菌株和布拉氏酵母菌的黄曲霉毒素M1结合能力

Aflatoxin M1-Binding Ability of Selected Lactic Acid Bacteria Strains and Saccharomyces boulardii in the Experimentally Contaminated Milk Treated with Some Biophysical Factors.

作者信息

Khadivi R, Razavilar V, Anvar A, Akbari Adreghani B

机构信息

Department of Food Hygiene, Science and Research Branch, Islamic Azad University, Tehran, Iran.

Food and Drug Laboratory Research Center, Food and Drug Organization, Ministry of Health and Medical Education, Tehran, Iran.

出版信息

Arch Razi Inst. 2020 Mar;75(1):63-73. doi: 10.22092/ari.2019.123985.1265. Epub 2020 Mar 1.

DOI:10.22092/ari.2019.123985.1265
PMID:32292004
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8410163/
Abstract

There is a growing concern regarding the recurrent observation of aflatoxins (AFs) in the milk of lactating animals. Regarding this, the present study was conducted to assess the aflatoxin M1 (AFM1)-binding ability of three species, namely Lactobacillus rhamnosus, L. plantarum, and Saccharomyces boulardii, inAFM1-contaminatedmilk. The mentioned species were administeredatthe concentrations of107 and 109 CFU/mLto skimmed milk contaminated with 0.5 and 0.75 ng/mL AFM1 within the incubation times of 30 and 90 min at 4°C and 37°C. Lactobacillus rhamnosus was found to have the best binding ability at the concentrations of 107 and 109 (CFU/ml), rendering 82% and 90% removal in the milk samples with 0.5 and 0.75 ng/ml AFM1, respectively. Accordingly, this value at 107 and 109 CFU/ml of L. plantarum was obtained 89% and 82% with 0.75 ng/ml of AFM1, respectively. For S. boulardii at 107 and 109 CFU/ml, the rates were respectively estimated at 75% and 90% with 0.75 ng/ml of AFM1. The best AFM1-binding levels for L. rhamnosus, L. plantarum, and S. boulardii were 91.82±10.9%, 89.33±0.58%, and 93.20±10.9, respectively, at the concentrations of 1×109, 1×107, and 1×107 CFU/ml at 37, 4, and 37°C, respectively. In this study, the maximum AFM1 binding (100.0±0.58) occurred while a combination of the aforementioned probiotics was employed at a concentration of 1×107 CFU/ml at 37°C with 0.5 ng/ml AFM1, followed by the combination of L. rhamnosus and L. plantarum (95.86±10.9) at a concentration of 1×109 CFU/ml at the same temperature with 0.75 ng/ml AFM1. It was concluded that the use of S. boulardii in combination with Lactobacillus rhamnosus and L. plantarum, which bind AFM1 in milk, can decrease the risk of AFM1 in dairy products.

摘要

人们越来越关注在泌乳动物乳汁中反复检测到黄曲霉毒素(AFs)的问题。鉴于此,本研究旨在评估三种菌株,即鼠李糖乳杆菌、植物乳杆菌和布拉酵母菌,在被黄曲霉毒素M1(AFM1)污染的牛奶中对AFM1的结合能力。将上述菌株分别以10⁷和10⁹CFU/mL的浓度加入到含有0.5和0.75 ng/mL AFM1的脱脂牛奶中,在4℃和37℃下分别孵育30分钟和90分钟。结果发现,鼠李糖乳杆菌在10⁷和10⁹(CFU/ml)浓度下具有最佳结合能力,在含有0.5和0.75 ng/ml AFM1的牛奶样品中分别去除了82%和90%。相应地,植物乳杆菌在10⁷和10⁹CFU/ml浓度下,对于含有0.75 ng/ml AFM1的牛奶,去除率分别为89%和82%。对于布拉酵母菌,在10⁷和10⁹CFU/ml浓度下,对于含有0.75 ng/ml AFM1的牛奶,去除率分别估计为75%和90%。鼠李糖乳杆菌、植物乳杆菌和布拉酵母菌在1×10⁹、1×10⁷和1×10⁷CFU/ml浓度下,在37℃、4℃和37℃时,最佳AFM1结合水平分别为91.82±10.9%、89.33±0.58%和93.20±10.9%。在本研究中,当上述益生菌组合以1×10⁷CFU/ml的浓度在37℃下与0.5 ng/ml AFM1一起使用时,出现了最大的AFM1结合率(100.0±0.58),其次是鼠李糖乳杆菌和植物乳杆菌的组合(95.86±10.9),在相同温度下以1×10⁹CFU/ml的浓度与0.75 ng/ml AFM1一起使用。得出的结论是,将布拉酵母菌与能结合牛奶中AFM1的鼠李糖乳杆菌和植物乳杆菌联合使用,可以降低乳制品中AFM1的风险。