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首页> 外文期刊>Toxicology Research >Transgenerational safety of nitrogen-doped graphene quantum dots and the underlying cellular mechanism in Caenorhabditis elegans
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Transgenerational safety of nitrogen-doped graphene quantum dots and the underlying cellular mechanism in Caenorhabditis elegans

机译:秀丽隐杆线虫的氮掺杂石墨烯量子点的跨代安全性及其潜在的细胞机制

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摘要

Nitrogen-doped graphene quantum dots (N-GQDs) are of potential use for cellular imaging. We here employed the in vivo Caenorhabditis elegans assay system to investigate the transgenerational behavior of N-GQDs and the underlying cellular mechanism involved. Prolonged exposure to N-GQDs did not induce lethality, lifespan reduction, or change the functions of primary and secondary targeted organs in the wild-type nematode and in nematodes with mutations of the sod-2 or sod-3 genes that encode Mn-SODs. Moreover, no adverse effects were detected in progeny of N-GQD-exposed wild-type and mutant nematodes. N-GQDs were only distributed in the intestine of both wild-type and mutant nematodes. No N-GQD accumulation was observed in embryos and progeny of exposed nematodes. After N-GQD exposure, the normal biological state of the intestinal barrier and defecation behavior were maintained in the wild-type and mutant nematodes. We hypothesize that the physiological states of the intestinal barrier and defecation behavior may contribute greatly to the lack of translocation of N-GQDs into secondary targeted organs and progeny of exposed nematodes. Our data provide systematic in vivo evidence to indicate the transgenerational safety of N-GQDs and the underlying cellular mechanism.
机译:氮掺杂石墨烯量子点(N-GQD)可能用于细胞成像。我们在这里采用体内秀丽隐杆线虫测定系统来调查N-GQDs的跨代行为和涉及的潜在细胞机制。长时间暴露于N-GQD不会导致致死性,寿命缩短或改变野生型线虫以及编码Mn-SOD的sod-2或sod-3基因突变的线虫中主要和次要靶器官的功能。此外,在暴露于N-GQD的野生型和突变型线虫的后代中未检测到不良影响。 N-GQD仅分布在野生型和突变型线虫的肠道中。在暴露的线虫的胚胎和后代中未观察到N-GQD积累。 N-GQD暴露后,在野生型和突变型线虫中,肠道屏障的正常生物学状态和排便行为得以维持。我们假设肠道屏障的生理状态和排便行为可能是造成N-GQD易位到次级靶向器官和裸露线虫后代的主要原因。我们的数据提供了系统的体内证据,以表明N-GQD的跨代安全性和潜在的细胞机制。

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