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首页> 外文期刊>Environmental toxicology >Pesticide Induced Alterations in Marrow Physiology and Depletion of Stem and Stromal Progenitor Population: An Experimental Model to Study the Toxic Effects of Pesticide
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Pesticide Induced Alterations in Marrow Physiology and Depletion of Stem and Stromal Progenitor Population: An Experimental Model to Study the Toxic Effects of Pesticide

机译:农药诱导的骨髓生理变化以及茎干和基质干祖细胞的耗竭:研究农药毒性作用的实验模型

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摘要

Long-term exposure of agriculturally used organochloride and organophosphate pesticides have been shown to cause long-lasting hematotoxicity and increased incidence of aplastic anemia in humans. The mechanisms involved in pesticide induced hematotoxicity and the features of toxicity that may play a major role in bone marrow suppression are not known. The aim of the present study was to investigate the hematological consequences of pesticide exposure in swiss albino mice exposed to aqueous mixture of common agriculturally used pesticides for 6 h/day, 5 days/week for 13 weeks. After the end of last exposure, without a recovery period, the strong hematotoxic effect of pesticide was assessed in mice with long-term bone marrow explant culture (LTBMC-Ex) system and cell colony forming assays. Bone marrow explant culture from the pesticide exposed group of mice failed to generate a supportive stromal matrix and did not produce adequate number of hematopoietic cells and found to contain largely the adipogenic precursors. The decreased cell colony numbers in the pesticide exposed group indicated defective maturational and functional status of different marrow cell lineages. As a whole, exposure of mice to the mixture of pesticides reduced the total number of bone marrow cells (granulocytes are the major targets of pesticide toxicity), hematopoietic, and non-hematopoietic progenitor cells and most of the hematological parameters. Replication of primitive stem/progenitor cells in the marrow was decreased following pesticide exposure with G0/G1 -phase arrest of most of the cells. The progenitor cells showed decreased percentage of cells in S/G2/M-phase. The increased apoptosis profile of the marrow progenitors (Increased CD95 expression) and primitive stem cells (High Annexin-V positivity on Scal + cells) with an elevated intracellular cleaved caspase-3 level on the Scal + bone marrow cells provided the base necessary for explaining the deranged bone marrow microenvironmental structure which was evident from scanning electron micrographs. These results clearly indicate a strong, long lasting toxic effect of pesticides on the bone marrow microenvironment and different microenvironmental components which ultimately leads to the formation of a degenerative disease like aplastic anemia.
机译:长期接触农业使用的有机氯化物和有机磷酸酯农药已被证明会引起长期的血液毒性,并增加人类再生障碍性贫血的发生率。农药引起的血液毒性涉及的机制以及可能在骨髓抑制中起主要作用的毒性特征尚不清楚。本研究的目的是调查暴露于常见农用农药的水混合物中6小时/天,5天/周,持续13周的瑞士白化病小鼠中农药暴露的血液学后果。最后一次接触结束后,没有恢复期,使用长期骨髓外植体培养(LTBMC-Ex)系统和细胞集落形成测定法评估了农药的强烈血液毒性作用。来自暴露于杀虫剂的小鼠组的骨髓外植体培养物未能产生支持性基质基质,并且未产生足够数量的造血细胞,并发现主要含有成脂前体。暴露于农药的组中细胞集落数量的减少表明不同骨髓细胞谱系的成熟和功能状态存在缺陷。总体而言,将小鼠暴露于农药混合物可减少骨髓细胞(粒细胞是农药毒性的主要靶标),造血和非造血祖细胞以及大多数血液学参数的总数。暴露于农药后,骨髓中原始干/祖细胞的复制减少,大多数细胞处于G0 / G1期停滞。祖细胞显示出S / G2 / M期的细胞百分比降低。骨髓祖细胞(CD95表达增加)和原始干细胞(Scal +细胞上的Annexin-V阳性率高)以及Scal +骨髓细胞上胞内裂解的caspase-3水平升高,导致凋亡谱增加,这为解释这一现象提供了必要的基础。从扫描电子显微镜照片可以明显看出,骨髓的微环境结构混乱。这些结果清楚地表明了农药对骨髓微环境和不同微环境成分的强烈,持久的毒性作用,最终导致变性疾病如再生障碍性贫血的形成。

著录项

  • 来源
    《Environmental toxicology》 |2014年第2期|84-97|共14页
  • 作者单位

    Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, Calcutta-700073, India;

    Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, Calcutta-700073, India;

    Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, Calcutta-700073, India;

    Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, Calcutta-700073, India;

    Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, Calcutta-700073, India;

    Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, Calcutta-700073, India;

    Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, Calcutta-700073, India;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    pesticide; bone marrow; toxicity stem cell; stromal cell; aplastic anemia;

    机译:农药;骨髓毒性干细胞基质细胞再生障碍性贫血;

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