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研究功能化碳纳米管对黑腹果蝇和 CD-1 小鼠生殖发育的影响。

Investigating the effects of functionalized carbon nanotubes on reproduction and development in Drosophila melanogaster and CD-1 mice.

机构信息

School of Environmental Studies, Biosciences Complex, Queen's University, 116 Barrie Street, Kingston, Ontario, Canada.

出版信息

Reprod Toxicol. 2011 Dec;32(4):442-8. doi: 10.1016/j.reprotox.2011.09.002. Epub 2011 Sep 24.

Abstract

Despite numerous applications for functionalized carbon nanotubes (fCNTs) in consumer products, such as electronics, and food packaging, as well as their development as drug delivery vehicles, the consequence of their uptake by living systems has been understudied. In particular, the impact of fCNTs on early development of different species is largely unknown. Here we investigated the effect of ingested hydroxyl-fCNTs on reproduction and development in two model organisms: Drosophila and CD-1 mice. While fCNTs had no measurable impact on Drosophila, a single oral dose of fCNTs (10mg/kg) administered to pregnant CD-1 dams during organogenesis significantly increased the number of resorptions and resulted in fetal morphological and skeletal abnormalities. The observed difference between the responses of these two models likely reflects their physiology and/or differences in administration. This research underscores the need to examine the effects of fCNTs on reproductive health and development before the opportunities for maternal exposure by fCNTs increase further.

摘要

尽管功能化碳纳米管(fCNTs)在电子产品、食品包装等消费品以及药物输送载体方面有许多应用,但它们被生物系统吸收的后果仍研究不足。特别是,fCNTs 对不同物种早期发育的影响在很大程度上尚不清楚。在这里,我们研究了摄入羟基化 fCNTs 对两种模式生物:果蝇和 CD-1 小鼠的繁殖和发育的影响。虽然 fCNTs 对果蝇没有可测量的影响,但在器官发生期间,给怀孕的 CD-1 母鼠单次口服 fCNTs(10mg/kg)显著增加了吸收胎的数量,并导致胎儿形态和骨骼异常。这两种模型反应的差异可能反映了它们的生理学和/或给药方式的差异。这项研究强调,在 fCNTs 进一步增加母体暴露机会之前,有必要研究 fCNTs 对生殖健康和发育的影响。

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