Mitophagy, a selective autophagy of mitochondria, clears up damaged mitochondria to maintain cell homeostasis. We performed high-content analysis (HCA) to detect the increase of PINK1, an essential protein controlling mitophagy, in hepatic cells treated with several nanoparticles (NPs). PINK1 immunofluorescence-based HCA was more sensitive than assays and detections for cell viability and mitochondrial functions. Of which, superparamagnetic iron oxide (SPIO)-NPs or graphene oxide-quantum dots (GO-QDs) was selected as representatives for positive or negative inducer of mitophagy. SPIO-NPs, but not GO-QDs, activated PINK1-dependent mitophagy as demonstrated by recruitment of PARKIN to mitochondria and degradation of injured mitochondria. SPIO-NPs caused the loss of mitochondrial membrane potential, decrease in ATP, and increase in mitochondrial reactive oxide species and Ca(2+). Blocking mitophagy with PARKIN siRNA aggravated the cytotoxicity of SPIO-NPs. Taken together, PINK1 immunofluorescence-based HCA is considered to be an early, sensitive, and reliable approach to evaluate the bioimpacts of NPs.
High-content analysis for mitophagy response to nanoparticles: A potential sensitive biomarker for nanosafety assessment.
利用高内涵分析检测线粒体自噬对纳米颗粒的反应:一种潜在的敏感纳米安全评估生物标志物
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作者:He Chengyong, Jiang Shengwei, Yao Huan, Zhang Liyin, Yang Chuanli, Jiang Shan, Ruan Fengkai, Zhan Denglin, Liu Gang, Lin Zhongning, Lin Yuchun, Chen Xiaoyuan
| 期刊: | Nanomedicine | 影响因子: | 3.900 |
| 时间: | 2019 | 起止号: | 2019 Jan;15(1):59-69 |
| doi: | 10.1016/j.nano.2018.09.003 | ||
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