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Toxicity evaluation of boron nitride nanospheres and water-soluble boron nitride in Caenorhabditis elegans

机译:秀丽隐杆线虫的氮化硼纳米球和水溶性氮化硼的毒性评估

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摘要

Boron nitride (BN) nanomaterials have been increasingly explored for potential biological applications. However, their toxicity remains poorly understood. Using Caenorhabditis elegans as a whole-animal model for toxicity analysis of two representative types of BN nanomaterials – BN nanospheres (BNNSs) and highly water-soluble BN nanomaterial (named BN-800-2) – we found that BNNSs overall toxicity was less than soluble BN-800-2 with irregular shapes. The concentration thresholds for BNNSs and BN-800-2 were 100 µg·mL−1 and 10 µg·mL−1, respectively. Above this concentration, both delayed growth, decreased life span, reduced progeny, retarded locomotion behavior, and changed the expression of phenotype-related genes to various extents. BNNSs and BN-800-2 increased oxidative stress levels in C. elegans by promoting reactive oxygen species production. Our results further showed that oxidative stress response and MAPK signaling-related genes, such as GAS1, SOD2, SOD3, MEK1, and PMK1, might be key factors for reactive oxygen species production and toxic responses to BNNSs and BN-800-2 exposure. Together, our results suggest that when concentrations are lower than 10 µg·mL−1, BNNSs are more biocompatible than BN-800-2 and are potentially biocompatible material.
机译:氮化硼(BN)纳米材料已被越来越多地用于潜在的生物学应用。然而,它们的毒性仍然知之甚少。使用秀丽隐杆线虫作为全动物模型对两种代表性类型的BN纳米材料-BN纳米球(BNNSs)和高水溶性BN纳米材料(命名为BN-800-2)进行毒性分析,我们发现BNNS的总体毒性小于具有不规则形状的可溶BN-800-2。 BNNSs和BN-800-2的浓度阈值分别为100 µg·mL -1 和10 µg·mL -1 。高于此浓度,会延迟生长,缩短寿命,减少后代,延缓运动行为,并在不同程度上改变表型相关基因的表达。 BNNS和BN-800-2通过促进活性氧的产生增加线虫的氧化应激水平。我们的结果进一步表明,氧化应激反应和MAPK信号传导相关基因,例如GAS1,SOD2,SOD3,MEK1和PMK1,可能是活性氧产生以及对BNNSs和BN-800-2暴露的毒性反应的关键因素。总之,我们的结果表明,当浓度低于10 µg·mL -1 时,BNNS比BN-800-2具有更高的生物相容性,并且是潜在的生物相容性材料。

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