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QUANTUM DOT NANOPARTICLES AFFECT THE REPRODUCTIVE SYSTEM OF CAENORHABDITIS ELEGANS

机译:量子点纳米粒子影响线虫的生殖系统

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Quantum dots (QDs) are an increasingly important class of nanoparticle, but little ecotoxicological data for QDs has been published to date. The effects of mercaptosuccinic acid (MSA)-capped QDs (QDs-MSA) and equivalent concentrations of cadmium (Cd) from cadmium chloride on growth and reproduction of the nematode Caenorhabditis elegans (Rhabditidae) were assessed in laboratory experiments. Growth from larvae to adults of C. elegans was unaffected by exposure to 1 μM fluorescent QDs-MSA, but adults produced more embryos and laid them prematurely. Furthermore, C. elegans exposed to QDs-MSA (1 μM) showed a high percentage of embryo mortality (19.2 ±0.5, p< 0.001, percentage ± standard deviation) compared with unexposed nematodes (11.6 ±0.4). An egg-laying defect phenotype was also observed at high frequency in response to 1 μM QDs-MSA exposure (38.3±3.6%, p<0.01; control 10.0±2.2%). This resulted in a reduced mean life span (20.5± 1.1 d, p<0.05) compared with the control (24.6 ±1.0 d). Cadmium also caused reduced life span in C. elegans, but a low incidence of egg-laying defects was observed, suggesting that Cd and QDs-MSA affected C. elegans by different mechanisms. Furthermore, egg-laying defects caused by QDs-MSA responded to the addition of the anticonvulsant ethosuximide and to a lesser extent to the neurotransmitter serotonin, suggesting that QDs-MSA might have disrupted motor neurons during the reproduction process.
机译:量子点(QDs)是一类越来越重要的纳米粒子,但迄今为止,有关QDs的生态毒理学数据很少。在实验室实验中评估了巯基琥珀酸(MSA)封端的量子点(QDs-MSA)和当量浓度的氯化镉中的镉(Cd)对线虫秀丽隐杆线虫(Rhabditidae)生长和繁殖的影响。从线虫的幼虫到成虫的生长不受暴露于1μM荧光QDs-MSA的影响,但成虫产生更多的胚胎并过早地将其放置。此外,与未暴露线虫(11.6±0.4)相比,暴露于QDs-MSA(1μM)的秀丽隐杆线虫显示出较高的胚胎死亡率百分比(19.2±0.5,p <0.001,百分比±标准偏差)。响应于1μMQDs-MSA暴露,高频观察到产蛋缺陷表型(38.3±3.6%,p <0.01;对照10.0±2.2%)。与对照组(24.6±1.0 d)相比,这导致平均寿命缩短(20.5±1.1 d,p <0.05)。镉还导致秀丽隐杆线虫寿命缩短,但是观察到产卵缺陷的发生率很低,这表明镉和QDs-MSA通过不同的机制影响秀丽隐杆线虫。此外,由QDs-MSA引起的产蛋缺陷对抗惊厥药乙硫酰亚胺的响应较小,而对神经递质5-羟色胺的响应较小,这表明QDs-MSA可能在繁殖过程中破坏了运动神经元。

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