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线粒体形态的定量评估,与细胞健康和环境毒性研究相关。

Quantitative assessment of mitochondrial morphology relevant for studies on cellular health and environmental toxicity.

作者信息

Charrasse Sophie, Poquillon Titouan, Saint-Omer Charlotte, Pastore Manuela, Bordignon Benoit, Frye Richard E, Reynes Christelle, Racine Victor, Aouacheria Abdel

机构信息

Institut des Sciences de l'Evolution de Montpellier (ISEM, UMR 5554, CNRS/UM/IRD/EPHE), Université de Montpellier, Montpellier, France.

QuantaCell SAS, Hôpital Saint Eloi, IRMB, 80 avenue Augustin Fliche, 34090 Montpellier, France.

出版信息

Comput Struct Biotechnol J. 2023 Nov 10;21:5609-5619. doi: 10.1016/j.csbj.2023.11.015. eCollection 2023.

Abstract

Mitochondria are essential organelles that play crucial roles in cellular energy metabolism, calcium signaling and apoptosis. Their importance in tissue homeostasis and stress responses, combined to their ability to transition between various structural and functional states, make them excellent organelles for monitoring cellular health. Quantitative assessment of mitochondrial morphology can therefore provide valuable insights into environmentally-induced cell damage. High-content screening (HCS) provides a powerful tool for analyzing organelles and cellular substructures. We developed a fully automated and miniaturized HCS wet-plus-dry pipeline (MITOMATICS) exploiting mitochondrial morphology as a marker for monitoring cellular health or damage. MITOMATICS uses an in-house, proprietary software (MitoRadar) to enable fast, exhaustive and cost-effective analysis of mitochondrial morphology and its inherent diversity in live cells. We applied our pipeline and big data analytics software to assess the mitotoxicity of selected chemicals, using the mitochondrial uncoupler CCCP as an internal control. Six different pesticides (inhibiting complexes I, II and III of the mitochondrial respiratory chain) were tested as individual compounds and five other pesticides present locally in Occitanie (Southern France) were assessed in combination to determine acute mitotoxicity. Our results show that the assayed pesticides exhibit specific signatures when used as single compounds or chemical mixtures and that they function synergistically to impact mitochondrial architecture. Study of environment-induced mitochondrial damage has the potential to open new fields in mechanistic toxicology, currently underexplored by regulatory toxicology and exposome research. Such exploration could inform health policy guidelines and foster pharmacological intervention, water, air and soil pollution control and food safety.

摘要

线粒体是重要的细胞器,在细胞能量代谢、钙信号传导和细胞凋亡中发挥关键作用。它们在组织稳态和应激反应中的重要性,以及在各种结构和功能状态之间转换的能力,使其成为监测细胞健康的理想细胞器。因此,线粒体形态的定量评估可为环境诱导的细胞损伤提供有价值的见解。高内涵筛选(HCS)为分析细胞器和细胞亚结构提供了强大工具。我们开发了一种全自动、小型化的HCS湿加干流程(MITOMATICS),利用线粒体形态作为监测细胞健康或损伤的标志物。MITOMATICS使用内部专有软件(MitoRadar),能够对活细胞中线粒体形态及其内在多样性进行快速、全面且经济高效的分析。我们应用该流程和大数据分析软件,以线粒体解偶联剂CCCP作为内部对照,评估选定化学物质的线粒体毒性。测试了六种不同的农药(抑制线粒体呼吸链的复合物I、II和III)作为单一化合物,并对法国南部奥克西塔尼地区本地存在的其他五种农药进行了组合评估,以确定急性线粒体毒性。我们的结果表明,所检测的农药作为单一化合物或化学混合物使用时表现出特定特征,并且它们协同作用影响线粒体结构。对环境诱导的线粒体损伤的研究有可能在机制毒理学领域开辟新的方向,而目前监管毒理学和暴露组研究对此探索不足。这种探索可为健康政策指南提供信息,并促进药物干预、水、空气和土壤污染控制以及食品安全。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/221f/10690410/2d68aa3e6cda/ga1.jpg

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