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将碳纳米管上的聚合物涂层制成杜罗珠是一种保障人类环境安全的新策略。

Polymer coating on carbon nanotubes into Durobeads is a novel strategy for human environmental safety.

作者信息

Ito Fumiya, Hisashi Hideyuki, Toyokuni Shinya

机构信息

Department of Pathology and Biological Responses, Nagoya University Graduate School of Medicine, Nagoya 46, Japan.

Mitsubishi Corporation, 3-1 Marunouchi 2-chome, Chiyoda-ku, Tokyo, Japan.

出版信息

Nagoya J Med Sci. 2018 Nov;80(4):597-604. doi: 10.18999/nagjms.80.4.597.

Abstract

Carbon nanotubes (CNTs) have attracted much business interest in industrial applications due to their high electrical and heat conductivities while being both durable and versatile. However, multiwall CNTs (MWCNTs) of ~50 nm diameter (NT50) have been shown to cause mesothelioma in rodents after direct exposure to mesothelial cells, and thus were classified as a Group 2B carcinogen to humans, which requires considerable regulations for use. In contrast, tangled MWCNTs of ~15 nm diameter (NTtngl) are not carcinogenic to rats, indicating that the physical dimension linked with mesothelial cellular uptake is an important factor for human environmental risk. In the present study, hypothesizing that dustability is another distinct risk factor, for the first time, we evaluated the toxicity of CNT granules (Durobeads) that were generated with a polymer coating to mesothelial cells. Polymer coating induced prominent agglomeration and significantly suppressed the dustability of CNTs in a dose-dependent manner, with a 10% polymer coating resulting in 730 times less dustability. These CNT granules revealed significantly lower mesothelial uptake and cytotoxicity in comparison to NT50 in assays. Similarly, in analyses, CNT granules induced limited peritoneal inflammation 4 weeks after intraperitoneal injection, whereas NT50 caused severe fibrosing inflammation. Previously, we demonstrated that the severity of inflammation by intraperitoneal injection in the subacute studies are in agreement with the mesothelial carcinogenicity by CNTs. Therefore, we suggest that adding a polymer coating to CNTs provides another smart strategy for the safe use of CNTs.

摘要

碳纳米管(CNTs)因其高导电性和导热性,同时兼具耐用性和多功能性,在工业应用中引起了诸多商业关注。然而,直径约50纳米的多壁碳纳米管(MWCNTs,NT50)在直接接触间皮细胞后已被证明会在啮齿动物中引发间皮瘤,因此被归类为对人类的2B类致癌物,其使用需要相当严格的规定。相比之下,直径约15纳米的缠结多壁碳纳米管(NTtngl)对大鼠无致癌性,这表明与间皮细胞摄取相关的物理尺寸是人类环境风险的一个重要因素。在本研究中,假设可扬尘性是另一个明显的风险因素,我们首次评估了用聚合物涂层制备的碳纳米管颗粒(Durobeads)对间皮细胞的毒性。聚合物涂层导致显著团聚,并以剂量依赖的方式显著抑制了碳纳米管的可扬尘性,10%的聚合物涂层使可扬尘性降低了730倍。在实验中,这些碳纳米管颗粒与NT50相比,显示出明显更低的间皮摄取和细胞毒性。同样,在分析中,碳纳米管颗粒在腹腔注射4周后引起有限的腹膜炎症,而NT50则导致严重的纤维化炎症。此前,我们证明在亚急性研究中腹腔注射引起的炎症严重程度与碳纳米管的间皮致癌性一致。因此,我们建议给碳纳米管添加聚合物涂层为其安全使用提供了另一种明智策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59b9/6295439/749c7e2f6b54/2186-3326-80-0597-g001.jpg

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