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Toxicity Studies on Graphene-Based Nanomaterials in Aquatic Organisms: Current Understanding

机译:水生生物中石墨烯纳米材料的毒性研究:目前的理解

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摘要

Graphene and its oxide are nanomaterials considered currently to be very promising because of their great potential applications in various industries. The exceptional physiochemical properties of graphene, particularly thermal conductivity, electron mobility, high surface area, and mechanical strength, promise development of novel or enhanced technologies in industries. The diverse applications of graphene and graphene oxide (GO) include energy storage, sensors, generators, light processing, electronics, and targeted drug delivery. However, the extensive use and exposure to graphene and GO might pose a great threat to living organisms and ultimately to human health. The toxicity data of graphene and GO is still insufficient to point out its side effects to different living organisms. Their accumulation in the aquatic environment might create complex problems in aquatic food chains and aquatic habitats leading to debilitating health effects in humans. The potential toxic effects of graphene and GO are not fully understood. However, they have been reported to cause agglomeration, long-term persistence, and toxic effects penetrating cell membrane and interacting with cellular components. In this review paper, we have primarily focused on the toxic effects of graphene and GO caused on aquatic invertebrates and fish (cell line and organisms). Here, we aim to point out the current understanding and knowledge gaps of graphene and GO toxicity.
机译:石墨烯及其氧化物是纳米材料目前认为是非常有前途的,因为它们在各种行业中的巨大潜在应用。石墨烯的特殊物理化学性质,特别是导热系数,电子迁移率,高表面积和机械强度,承诺发展新颖或增强的行业技术。石墨烯和石墨烯氧化物(GO)的多样化应用包括储能,传感器,发电机,轻加工,电子产品和靶向药物递送。然而,广泛的使用和暴露于石墨烯,并可能对生物体构成巨大威胁,最终对人类健康构成。石墨烯的毒性数据仍然不足以指出其对不同生物体的副作用。它们在水生环境中的积累可能会在水生食品链和水生栖息地中产生复杂的问题,导致人类的衰弱的健康影响。石墨烯和去的潜在毒性作用并不完全理解。然而,据报道,它们引起聚集,长期持久性和毒性效果穿透细胞膜并与细胞组分相互作用。在本文中,我们主要专注于石墨烯的毒性作用,并在水生无脊椎动物和鱼类(细胞系和生物)上引起的。在这里,我们的目标是指出石墨烯目前的理解和知识差距并进行毒性。

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