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DNA damage in different Eisenia andrei coelomocytes sub-populations after in vitro exposure to hydrogen peroxide

机译:体外暴露于过氧化氢后,不同赤子爱胜蚓体细胞亚群的DNa损伤

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摘要

Earthworms play an essential role in providing soil fertility and may represent an important soil contamination bio-indicator. They are able to ingest soil particles, adsorb substances throughout the intestinal epithelium into the coelomic cavity, where chemicals can come in direct contact with coelomic fluid. Earthworm coelomic fluid shelters leucocytes (coelomocytes) that differ significantly both structurally and functionally. Cellular variability could lead to different susceptibility towards contaminants possibly present in soil ecosystem. In order to define population specific dose response to chemicals and to identify a homogeneous cell population to be used as a relevant biomarker, we investigated different coelomocytes subpopulation, obtained by Percoll density gradient centrifugation (5–35 %), exposed ex vivo to H2O2 in the range of concentration 15–120 µM. DNA damage levels were assessed by the comet assay on unseparated coelomocytes and on three enriched cellular fractions (light, medium and heavy density subpopulations). All tested samples showed a dose–response genotoxic effect following H2O2 exposure. Moreover, light density sub-population appeared more susceptible to oxidative insult highlighted by a significant increase in DNA damage indexes at lower concentrations of H2O2. Present data suggested that in these experimental condition coelomocytes light fraction may represent a more sensitive biomarker of genotoxic insult.
机译:in在提供土壤肥力方面起着至关重要的作用,并且可能代表着重要的土壤污染生物指标。他们能够摄取土壤颗粒,将整个肠上皮中的物质吸收到腔腔中,在腔腔中化学物质可以直接与腔液接触。 co腔液掩盖了结构和功能上明显不同的白细胞(粒细胞)。细胞变异性可能导致对土壤生态系统中可能存在的污染物的敏感性不同。为了定义对化学物质的特定剂量反应并确定用作相关生物标志物的同质细胞群,我们研究了通过Percoll密度梯度离心法(5-35%)获得的不同的脐血亚群,该亚群在体外暴露于H2O2浓度范围15–120 µM。通过彗星试验对未分离的内皮细胞和三个富集的细胞部分(轻,中和重密度亚群)评估DNA损伤水平。所有测试样品在暴露于H2O2后均显示出剂量反应的遗传毒性作用。此外,在较低浓度的H2O2下,DNA损伤指数显着增加,表明光密度亚群更容易受到氧化损伤。目前的数据表明,在这些实验条件下,粒细胞轻组分可能代表遗传毒性损伤的更敏感的生物标记。

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