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Critical role of surface chemical modifications induced by length shortening on multi-walled carbon nanotubes-induced toxicity

机译:长度缩短引起的表面化学修饰在多壁碳纳米管诱导的毒性中的关键作用

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摘要

Given the increasing use of carbon nanotubes (CNT) in composite materials and their possible expansion to new areas such as nanomedicine which will both lead to higher human exposure, a better understanding of their potential to cause adverse effects on human health is needed. Like other nanomaterials, the biological reactivity and toxicity of CNT were shown to depend on various physicochemical characteristics, and length has been suggested to play a critical role. We therefore designed a comprehensive study that aimed at comparing the effects on murine macrophages of two samples of multi-walled CNT (MWCNT) specifically synthesized following a similar production process (aerosol-assisted CVD), and used a soft ultrasonic treatment in water to modify the length of one of them. We showed that modification of the length of MWCNT leads, unavoidably, to accompanying structural (i.e. defects) and chemical (i.e. oxidation) modifications that affect both surface and residual catalyst iron nanoparticle content of CNT. The biological response of murine macrophages to the two different MWCNT samples was evaluated in terms of cell viability, pro-inflammatory cytokines secretion and oxidative stress. We showed that structural defects and oxidation both induced by the length reduction process are at least as responsible as the length reduction itself for the enhanced pro-inflammatory and pro-oxidative response observed with short (oxidized) compared to long (pristine) MWCNT. In conclusion, our results stress that surface properties should be considered, alongside the length, as essential parameters in CNT-induced inflammation, especially when dealing with a safe design of CNT, for application in nanomedicine for example.
机译:鉴于碳纳米管(CNT)在复合材料中的使用越来越多,并且它们有可能扩展到诸如纳米医学的新领域,这都将导致人类更多的接触,因此需要对它们可能对人类健康造成不利影响的潜力有更好的了解。像其他纳米材料一样,碳纳米管的生物反应性和毒性也取决于各种理化特性,并且长度被认为是至关重要的。因此,我们设计了一项综合研究,旨在比较按照相似的生产工艺(气溶胶辅助CVD)专门合成的两个多壁CNT(MWCNT)样品对鼠巨噬细胞的影响,并在水中进行软超声处理以改性其中之一的长度。我们表明,MWCNT长度的改变不可避免地导致伴随的结构(即缺陷)和化学(即氧化)修饰,这些修饰影响了CNT的表面和残余催化剂铁纳米颗粒含量。根据细胞活力,促炎性细胞因子分泌和氧化应激评估了鼠巨噬细胞对两种不同的MWCNT样品的生物学反应。我们表明,与长(原始)MWCNT相比,短(氧化)时观察到的增强的促炎和促氧化反应,由长度减少过程引起的结构缺陷和氧化至少与长度减少本身一样重要。总之,我们的结果强调,应将表面性质以及长度作为碳纳米管诱发炎症的基本参数,特别是在处理纳米碳管的安全设计时,例如在纳米药物中。

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