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Integrated metabolic models for xenobiotic induced mitochondrial toxicity in skeletal muscle

机译:异种生物诱导骨骼肌线粒体毒性的综合代谢模型

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摘要

There is a need for robust in vitro models to sensitively capture skeletal muscle adverse toxicities early in the research and development of novel xenobiotics. To this end, an in vitro rat skeletal muscle model (L6) was used to study the translation of transcriptomics data generated from an in vivo rat model. Novel sulfonyl isoxazoline herbicides were associated with skeletal muscle toxicity in an in vivo rat model. Gene expression pathway analysis on skeletal muscle tissues taken from in vivo repeat dose studies identified enriched pathways associated with mitochondrial dysfunction, oxidative stress, energy metabolism, protein regulation and cell cycle. Mitochondrial dysfunction and oxidative stress were further explored using in vitro L6 metabolic models. These models demonstrated that the sulfonyl isoxazoline compounds induced mitochondrial dysfunction, mitochondrial superoxide production and apoptosis. These in vitro findings accurately concurred with the in vivo transcriptomics data, thereby confirming the ability of the L6 skeletal muscle models to identify relevant in vivo mechanisms of xenobiotic-induced toxicity. Moreover, these results highlight the sensitivity of the L6 galactose media model to study mitochondrial perturbation associated with skeletal muscle toxicity; this model may be utilised to rank the potency of novel xenobiotics upon further validation.
机译:在新型异生物素的研究和开发过程中,早期就需要强大的体外模型来敏感地捕获骨骼肌的不良毒性。为此,体外大鼠骨骼肌模型(L6)用于研究从体内大鼠模型产生的转录组学数据的翻译。在体内大鼠模型中,新型磺酰基异恶唑啉除草剂与骨骼肌毒性有关。对来自体内重复剂量研究的骨骼肌组织进行的基因表达途径分析确定了与线粒体功能障碍,氧化应激,能量代谢,蛋白质调节和细胞周期相关的丰富途径。使用体外L6代谢模型进一步探讨线粒体功能障碍和氧化应激。这些模型表明,磺酰基异恶唑啉化合物可诱导线粒体功能障碍,线粒体超氧化物生成和细胞凋亡。这些体外发现准确地与体内转录组学数据相吻合,从而证实了L6骨骼肌模型识别异种生物诱导的毒性的相关体内机制的能力。此外,这些结果突出了L6半乳糖培养基模型对研究与骨骼肌毒性有关的线粒体摄动的敏感性。在进一步验证后,该模型可用于对新型异生素的效力进行排名。

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