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Purification and sidewall functionalization of multiwalled carbon nanotubes and resulting bioactivity in two macrophage models

机译:多壁碳纳米管的纯化和侧壁官能化两种巨噬细胞模型中的生物活性

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摘要

This study examined the consequences of surface carboxylation of multiwalled carbon nanotubes (MWCNT) on bioactivity. Since commercial raw MWCNT contain impurities that may affect their bioactivity, HCl refluxing was exploited to purify raw “as-received” MWCNT by removing the amorphous carbon layer on the MWCNT surface and reducing the metal impurities (e.g. Ni). The removal of amorphous carbon layer was confirmed by Raman spectroscopy and thermogravimetric analysis. Furthermore, the HCl-purified MWCNT provided more available reaction sites, leading to enhanced sidewall functionalization. The sidewall of HCl-purified MWCNT was further functionalized with the −COOH moiety by HNO3 oxidation. This process resulted in four distinct MWCNT: raw, purified, −COOH-terminated raw MWCNT, and −COOH-terminated purified MWCNT. Freshly isolated alveolar macrophages from C57Bl/6 mice were exposed to these nanomaterials to determine the effects of the surface chemistry on the bioactivity in terms of cell viability and inflammasome activation. Inflammasome activation was confirmed using inhibitors of cathepsin B and Caspase-1. Purification reduced the cell toxicity and inflammasome activation slightly compared to raw MWCNT. In contrast, functionalization of MWCNT with the −COOH group dramatically reduced the cytotoxicity and inflammasome activation. Similar results were seen using THP-1 cells supporting their potential use for high-throughput screening. This study demonstrated that the toxicity and bioactivity of MWCNT were diminished by removal of the Ni contamination and/or addition of −COOH groups to the sidewalls.
机译:这项研究检查了多壁碳纳米管(MWCNT)表面羧化对生物活性的影响。由于市售的原始MWCNT包含可能影响其生物活性的杂质,因此利用HCl回流通过去除MWCNT表面上的非晶碳层并减少金属杂质(例如Ni)来纯化“按原样”处理的MWCNT。通过拉曼光谱和热重分析证实了无定形碳层的去除。此外,HCl纯化的MWCNT提供了更多可用的反应位点,从而增强了侧壁的功能性。 HCl纯化的MWCNT的侧壁通过HNO3氧化进一步被-COOH部分官能化。该过程产生了四个不同的MWCNT:原始的,纯化的,-COOH末端的原始MWCNT和-COOH末端的纯化的MWCNT。将来自C57Bl / 6小鼠的新鲜分离的肺泡巨噬细胞暴露于这些纳米材料,以根据细胞活力和炎性体活化来确定表面化学对生物活性的影响。使用组织蛋白酶B和Caspase-1抑制剂确认了炎性体激活。与原始的MWCNT相比,纯化可以稍微降低细胞毒性和炎症小体活化。相比之下,具有-COOH基团的MWCNT的功能化大大降低了细胞毒性和炎症小体的活化。使用THP-1细胞可观察到相似的结果,支持它们潜在地用于高通量筛选。这项研究表明,通过去除Ni污染和/或向侧壁添加-COOH基团可以降低MWCNT的毒性和生物活性。

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