Department of Food Technology, Universitat Politècnica de València. Camino de Vera s/n, 46022 Valencia, Spain.
Department of Food Technology, Universitat Politècnica de València. Camino de Vera s/n, 46022 Valencia, Spain.
Ecotoxicol Environ Saf. 2022 Jun 15;238:113601. doi: 10.1016/j.ecoenv.2022.113601. Epub 2022 May 6.
The toxicological properties of different silica particles functionalised with essential oil components (EOCs) were herein assessed using the in vivo model C. elegans. In particular, the effects of the acute and long-term exposure to three silica particle types (SAS, MCM-41 micro, MCM-41 nano), either bare or functionalised with eugenol or vanillin, were evaluated on different biological parameters of nematodes. Acute exposure to the different particles did not reduce nematodes survival, brood growth or locomotion, but reproduction was impaired by all the materials, except for vanillin-functionalised MCM-41 nano. Moreover, long-term exposure to particles led to strongly inhibited nematodes growth and reproduction. The eugenol-functionalised particles exhibited higher functionalisation yields and had the strongest effects during acute and long-term exposures. Overall, the vanillin-functionalised particles displayed milder acute toxic effects on reproduction than pristine materials, but severer toxicological responses for the 96-hour exposure assays. Our findings suggest that the EOC type anchored to silica surfaces and functionalisation yield are crucial for determining the toxicological effects of particles on C. elegans. The results obtained with this alternative in vivo model can help to anticipate potential toxic responses to these new materials for human health and the environment.
本文采用活体模型秀丽隐杆线虫(C. elegans)评估了用精油成分(EOCs)功能化的不同二氧化硅颗粒的毒理学特性。具体而言,评估了三种二氧化硅颗粒(SAS、MCM-41 微、MCM-41 纳米),无论是裸露的还是用丁香酚或香草醛功能化的,在不同的生物参数对线虫的急性和长期暴露的影响。不同颗粒的急性暴露不会降低线虫的存活率、繁殖或运动能力,但除了香草醛功能化的 MCM-41 纳米外,所有材料都损害了生殖能力。此外,长期暴露于颗粒会强烈抑制线虫的生长和繁殖。丁香酚功能化的颗粒表现出更高的功能化产率,并且在急性和长期暴露期间具有更强的作用。总的来说,与原始材料相比,香草醛功能化的颗粒在急性毒性对生殖的影响较小,但在 96 小时暴露试验中,毒性反应更严重。我们的研究结果表明,固定在二氧化硅表面的 EOC 类型和功能化产率是决定颗粒对 C. elegans 毒理学影响的关键因素。使用这种替代活体模型获得的结果可以帮助预测这些新材料对人类健康和环境的潜在毒性反应。