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Laboratory Scale Microbial Food Chain To Study Bioaccumulation, Biomagnification, and Ecotoxicity of Cadmium Telluride Quantum Dots

机译:实验室规模的微生物食物链,研究碲化镉量子点的生物累积,生物放大和生态毒性

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摘要

The increasing applications of engineered nanomaterials (ENMs) in consumer products warrant a careful evaluation of their trophic transfer and consequent ecological impact. In the present study, a laboratory scale aquatic microbial food chain was established using bacteria (Escherichia coli (E. coli)) as a prey and ciliated protozoan (Paramecium caudatum) as a predator organism to detemine the impact of cadmium telluride quantum dots (CdTe QDs). We observed that 29% of bacterivory potential of paramecium was lost, including an h delay in doubling time on exposure to 25 mg/L CdTe QD nm) as compared to control. The fluorescence based stoichiometric analysis revealed that 65% of the QDs bioaccumulated when paramecia were exposed to 25 mg/L QDs at 24 h. There was a significant (p < 0.05) increase in cellular cadmium (Cd) concentration at 24 h (306 ± 192 mg/L) as compared to 1 h (152 ± 50 mg/L). Moreover, the accumulation of Cd in Em coli (147 ± 25 mg/L) at 1 h of exposure to 25 mg/L QDs transferred 1.4 times higher Cd (207 ± 24 mg/L; biomagnification factor = 1.4) to its predator, paramecium.
机译:工程纳米材料(ENM)在消费产品中的越来越多的应用,需要对其营养传递和随之产生的生态影响进行仔细评估。在本研究中,建立了实验室规模的水生微生物食物链,使用细菌(大肠埃希氏菌(E. coli))作为食肉动物,并以纤毛原生动物(尾毛虫)作为食肉动物生物来确定碲化镉量子点(CdTe)的影响。 QDs)。我们观察到,与对照组相比,草履虫的杀菌潜能损失了29%,包括在暴露于25 mg / L CdTe QD nm时延迟一倍的时间。基于荧光的化学计量分析表明,当草履虫在24 h暴露于25 mg / L QD时,QD的生物累积率为65%。与1小时(152±50 mg / L)相比,24小时(306±192 mg / L)的细胞镉(Cd)浓度显着增加(p <0.05)。此外,暴露于25 mg / L量子点1小时后,大肠杆菌中镉的累积量(147±25 mg / L)将高出1.4倍的镉(207±24 mg / L;生物放大系数= 1.4)转移到捕食者身上,草履虫。

著录项

  • 来源
    《Environmental Science & Technology》 |2017年第3期|1695-1706|共12页
  • 作者单位

    Division of Biological & Life Sciences, School of Arts & Sciences (Formerly, Institute of Life Sciences), Ahmedabad University, University Road, Navrangpura, Ahmedabad 380009, Gujarat, India,Nanotherapeutics & Nanomaterial Toxicology Group, CSIR-Indian Institute of Toxicology Research (CSIR-IITR), Vishvigyan Bhawan, 31 Mahatma Gandhi Marg, P. O. Box 80, Lucknow 226001, Uttar Pradesh, India;

    Division of Biological & Life Sciences, School of Arts & Sciences (Formerly, Institute of Life Sciences), Ahmedabad University, University Road, Navrangpura, Ahmedabad 380009, Gujarat, India;

    Division of Biological & Life Sciences, School of Arts & Sciences (Formerly, Institute of Life Sciences), Ahmedabad University, University Road, Navrangpura, Ahmedabad 380009, Gujarat, India;

    Nanotherapeutics & Nanomaterial Toxicology Group, CSIR-Indian Institute of Toxicology Research (CSIR-IITR), Vishvigyan Bhawan, 31 Mahatma Gandhi Marg, P. O. Box 80, Lucknow 226001, Uttar Pradesh, India;

    Division of Biological & Life Sciences, School of Arts & Sciences (Formerly, Institute of Life Sciences), Ahmedabad University, University Road, Navrangpura, Ahmedabad 380009, Gujarat, India;

    Nanotherapeutics & Nanomaterial Toxicology Group, CSIR-Indian Institute of Toxicology Research (CSIR-IITR), Vishvigyan Bhawan, 31 Mahatma Gandhi Marg, P. O. Box 80, Lucknow 226001, Uttar Pradesh, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-17 13:57:30

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