首页> 外文期刊>International journal of biomedical nanoscience and nanotechnology >Nickel contamination on MWCNT is related to particle bioactivity but not toxicity in the THP-1 transformed macrophage model
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Nickel contamination on MWCNT is related to particle bioactivity but not toxicity in the THP-1 transformed macrophage model

机译:在THP-1转化的巨噬细胞模型中,MWCNT上的镍污染与颗粒生物活性有关,但与毒性无关

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The potential pathogenic effects from exposure to various MWCNT have not been adequately determined. One potential contributing factor to MWCNT bioactivity could be metal contamination that occurs during production. This study examined the toxicity and bioactivity (NLRP3 inflammasome activation), of 24 commercially available MWCNT in a macrophage-like differentiated THP-1 cell line. Inflammasome activation, via IL-1 p release, was highly correlated to Ni content. Soluble NiCl2 and insoluble Ni nanopowder were tested in the same model at varying concentrations with no inflammasome activation. Ni-decorated MWCNT were also tested in the THP-1 model and the results also correlated with Ni content. These results demonstrated that Ni content correlated to NLRP3 inflammasome activation, but not toxicity. Taken together, the results suggest that Ni, when fixed to MWCNT, is highly bioactive and potentially proinflammatory. The related mechanism probably involves lysosomal rupture, release of cathepsin B, and NLRP3 activation.
机译:尚未充分确定暴露于各种MWCNT的潜在致病作用。导致MWCNT生物活性的一个潜在因素可能是生产过程中发生的金属污染。这项研究检查了巨噬细胞样分化的THP-1细胞系中24种市售MWCNT的毒性和生物活性(NLRP3炎性体激活)。通过IL-1p释放的炎性体激活与镍含量高度相关。在同一模型中以不同浓度测试了可溶性NiCl2和不溶性Ni纳米粉,没有炎性体活化。在THP-1模型中还测试了Ni装饰的MWCNT,其结果也与Ni含量相关。这些结果表明,Ni含量与NLRP3炎性体活化有关,但与毒性无关。两者合计,结果表明,当镍固定在MWCNT上时,具有很高的生物活性,并且可能具有促炎作用。相关机制可能涉及溶酶体破裂,组织蛋白酶B释放和NLRP3激活。

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