植物乳杆菌CCFM8610对重金属镉的生物吸附机制及体内缓解镉毒性的作用机理

批准号:
31470161
项目类别:
面上项目
资助金额:
85.0 万元
负责人:
陈卫
依托单位:
学科分类:
C0103.微生物组学与代谢
结题年份:
2018
批准年份:
2014
项目状态:
已结题
项目参与者:
翟齐啸、于雷雷、殷瑞杰、张婷婷
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中文摘要
镉是一种具有肝、肾等多靶器官毒性的重金属,被列为IA级致癌物。环境镉暴露已成为影响健康的重要风险因素。前期研究表明植物乳杆菌CCFM8610能缓解镉暴露导致的毒性效应,然而相关保护机制尚不清楚。基于此,本项目拟通过体外吸附、细胞和动物模型研究植物乳杆菌CCFM8610镉生物吸附和缓解镉毒性的作用机制。利用体外模型研究植物乳杆菌CCFM8610吸附镉的规律,在细胞和分子水平阐明植物乳杆菌CCFM8610吸附镉的机制;通过细胞和动物模型研究植物乳杆菌CCFM8610摄入在生理生化与代谢标志物指标上对镉毒性的缓解作用,利用转录组和代谢组分析方法揭示植物乳杆菌CCFM8610缓解镉毒性的作用机制及涉及的相关代谢通路;利用宏基因组分析技术研究镉暴露对肠道微生态的影响及植物乳杆菌CCFM8610对肠道微生态的重建。研究在乳酸菌功能挖掘方面形成关于乳酸菌干预镉毒性的新认识,为相关研究与应用提供理论依据.
英文摘要
Cadmium (Cd) is a heavy metal which causes a broad range of adverse effects in humans. This non-essential metal is also classified as a human carcinogen. Cd exposure from environment and foods has become an important threat to food safety and human health. Our previous work had shown that a Lactobacillus plantarum CCFM8610 has the ability to alleviate Cd toxicity in mice, but the protective mechanism is not totally understood. Based on the results in the prophase, the objective of this study is to investigate the mechanisms of in vitro cadmium elimination and in vivo cadmium toxicity alleviation by Lactobacillus plantarum CCFM8610. The in vitro model of biosorption is established to study the Cd binding mechanism of Lactobacillus plantarum CCFM8610 with biochemical and genetical technology. Cell model is used to investigate the protective effects of lactobacillus plantarum CCFM8610 against Cd toxicity in cell. The protective mechanism is also evaluated in animal models with transcriptomic and metabolomic analysis, and the associated signal transduction pathways were studied. Differences of intestinal microflora between lactobacilli-treated mice and Cd-exposed mice are studied with metagenomic analysis to understand the restoration effects of Lactobacillus plantarum CCFM8610 on the damage of intestinal microecosystem induced by Cd exposure. Our study is aimed to explore a new function of probiotic lactobacilli for human health, and to develop a safe and efficacious nutritional supplement of diet to prevent and alleviate Cd toxicity.
镉暴露及镉中毒已成为严重的食品安全卫生问题,本项目选育得到具有生物减除镉功能的益生菌植物乳杆菌CCFM8610,通过吸附动力学及热力学分析分析确定植物乳杆菌对镉离子的吸附特性,利用组分剥离、蛋白质组学等手段从细胞生理及蛋白水平探索植物乳杆菌吸附镉离子的机制。同时利用HT-29肠细胞模型结合流式细胞术等技术研究植物乳杆菌对镉毒性的保护作用;利用小鼠、罗非鱼等动物模型研究植物乳杆菌在活体内降低镉含量、缓解镉诱导氧化应激及调节镉破坏肠道菌群的作用机制。项目的开展有助为针对镉中毒的膳食策略提供新的思路,同时为食品(如果蔬汁、大米等)中镉的减除提供新的微生物发酵策略。
期刊论文列表
专著列表
科研奖励列表
会议论文列表
专利列表
DOI:10.1021/acs.jafc.5b05332
发表时间:2016-03
期刊:Journal of agricultural and food chemistry
影响因子:6.1
作者:N. Zhao;Chuchu Zhang;Qin Yang;Zhuang Guo;Bo Yang;Wenwei Lu;Dongyao Li;F. Tian;Xiaoming Liu;Hao Zhang;Wei Chen
通讯作者:N. Zhao;Chuchu Zhang;Qin Yang;Zhuang Guo;Bo Yang;Wenwei Lu;Dongyao Li;F. Tian;Xiaoming Liu;Hao Zhang;Wei Chen
Protective effects of lactic acid bacteria-fermented soymilk against chronic cadmium toxicity in mice
乳酸菌发酵豆奶对小鼠慢性镉中毒的保护作用
DOI:10.1039/c4ra12865f
发表时间:2015
期刊:RSC ADVANCES
影响因子:3.9
作者:Zhai Qixiao;Xiao Yue;Tian Fengwei;Wang Gang;Zhao Jianxin;Liu Xiaoming;Chen Yong Q.;Zhang Hao;Chen Wei
通讯作者:Chen Wei
Metabolomics analysis reveals heavy metal copper-induced cytotoxicity in HT-29 human colon cancer cells
代谢组学分析揭示重金属铜诱导 HT-29 人结肠癌细胞的细胞毒性
DOI:10.1039/c6ra09320e
发表时间:2016
期刊:RSC ADVANCES
影响因子:3.9
作者:Xiao Yue;Zhai Qixiao;Wang Gang;Liu Xiaoming;Zhao Jianxin;Tian Fengwei;Zhang Hao;Chen Wei
通讯作者:Chen Wei
The cadmium binding characteristics of a lactic acid bacterium in aqueous solutions and its application for removal of cadmium from fruit and vegetable juices
乳酸菌在水溶液中的镉结合特性及其在果蔬汁中镉去除中的应用
DOI:10.1039/c5ra24843d
发表时间:2016
期刊:RSC ADVANCES
影响因子:3.9
作者:Zhai Qixiao;Tian Fengwei;Wang Gang;Zhao Jianxin;Liu Xiaoming;Cross Kathryn;Zhang Hao;Narbad Arjan;Chen Wei
通讯作者:Chen Wei
Lactobacillus plantarum CCFM639 Alleviate Trace Element Imbalance-Related Oxidative Stress in Liver and Kidney of Chronic Aluminum Exposure Mice
植物乳杆菌 CCFM639 缓解慢性铝暴露小鼠肝脏和肾脏中微量元素失衡相关的氧化应激
DOI:10.1007/s12011-016-0843-8
发表时间:2017-04
期刊:Biological Trace Element Research
影响因子:3.9
作者:Leilei Yu;Qixiao Zhai;Ruijie Yin;Peng Li;Fengwei Tian;Xiaoming Liu;Jianxin Zhao;Jianhua Gong;Hao Zhang;Wei Chen
通讯作者:Wei Chen
食品微生物功能解析与高效利用
- 批准号:--
- 项目类别:--
- 资助金额:1000万元
- 批准年份:2020
- 负责人:陈卫
- 依托单位:
益生菌对食品中有害重金属的生物减除机制
- 批准号:31530056
- 项目类别:重点项目
- 资助金额:282.0万元
- 批准年份:2015
- 负责人:陈卫
- 依托单位:
冷冻干燥胁迫条件下乳酸菌细胞生理分析及抗胁迫策略研究
- 批准号:30871952
- 项目类别:面上项目
- 资助金额:32.0万元
- 批准年份:2008
- 负责人:陈卫
- 依托单位:
食品级重组微生物表达系统构建与耐热乳糖酶的分泌表达
- 批准号:30670065
- 项目类别:面上项目
- 资助金额:30.0万元
- 批准年份:2006
- 负责人:陈卫
- 依托单位:
国内基金
海外基金
