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首页> 外文期刊>PLoS One >CNP mediated selective toxicity on melanoma cells is accompanied by mitochondrial dysfunction
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CNP mediated selective toxicity on melanoma cells is accompanied by mitochondrial dysfunction

机译:CNP介导对黑色素瘤细胞的选择性毒性伴有线粒体功能障碍

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Cerium (Ce) oxide nanoparticles (CNP; nanoceria) are reported to have cytotoxic effects on certain cancerous cell lines, while at the same concentration they show no cytotoxicity on normal (healthy) cells. Redox-active CNP exhibit both selective prooxidative as well as antioxidative properties. The former is proposed to be responsible for impairment of tumor growth and invasion and the latter for rescuing normal cells from reactive oxygen species (ROS)-induced damage. Here we address possible underlying mechanisms of prooxidative effects of CNP in a metastatic human melanoma cell line. Malignant melanoma is the most aggressive form of skin cancer, and once it becomes metastatic the prognosis is very poor. We have shown earlier that CNP selectively kill A375 melanoma cells by increasing intracellular ROS levels, whose basic amount is significantly higher than in the normal (healthy) counterpart, the melanocytes. Here we show that CNP initiate a mitochondrial increase of ROS levels accompanied by an increase in mitochondrial thiol oxidation. Furthermore, we observed CNP-induced changes in mitochondrial bioenergetics, dynamics, and cristae morphology demonstrating mitochondrial dysfunction which finally led to tumor cell death. CNP-induced cell death is abolished by administration of PEG-conjugated catalase. Overall, we propose that cerium oxide nanoparticles mediate cell death via hydrogen peroxide production linked to mitochondrial dysfunction.
机译:据报道铈(Ce)氧化物纳米颗粒(CNP;纳米纳米)对某些癌细胞系具有细胞毒性作用,而在相同的浓度下它们在正常(健康)细胞上没有表现出细胞毒性。氧化还原活性CNP表现出选择性引导性以及抗氧化性能。前者旨在负责肿瘤生长和侵袭的损害以及后者从反应性氧(ROS)诱导的损伤中抵抗正常细胞。在这里,我们解决了CNP在转移性人黑色素瘤细胞系中可能的潜在机制。恶性黑色素瘤是最具侵略性的皮肤癌形式,一旦它变成转移性,预后很差。我们之前表明CNP通过增加细胞内ROS水平,CNP选择性地杀死A375黑素瘤细胞,其基本量显着高于正常(健康)对应物,黑色素细胞。在这里,我们表明CNP引发了ROS水平的线粒体增加,伴随着线粒体硫醇氧化的增加。此外,我们观察到CNP诱导的线粒体生物植物,动力学和嵴形态的变化,证明了最终导致肿瘤细胞死亡的线粒体功能障碍。通过施用PEG缀合的过氧化氢酶消除了CNP诱导的细胞死亡。总的来说,我们提出氧化铈纳米颗粒通过与线粒体功能障碍连接的过氧化氢产生介导细胞死亡。

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