Miralles Francisco Javier, Prijoles Keiko Lynne, Winter Ashtyn, Levitt Michael R, Sancak Yasemin, Walker Melanie
Department of Pharmacology, University of Washington School of Medicine, Seattle, WA, USA.
Department of Neurological Surgery, University of Washington School of Medicine, Seattle, WA, USA.
J Cereb Blood Flow Metab. 2025 May 14:271678X251340232. doi: 10.1177/0271678X251340232.
Mitochondrial transplantation is an emerging therapeutic approach for ischemia-reperfusion injury, offering the potential to restore cellular function through the engraftment of extracellular mitochondria. The successful clinical application of this strategy depends on the delivery of metabolically active mitochondria, yet the impact of circulating therapeutic agents on mitochondrial viability remains poorly understood. This study evaluates the effects of five clinically relevant agents commonly used during endovascular treatment of ischemic stroke-alteplase, cefazolin, lidocaine, phenylephrine, and heparinized saline-on extracellular mitochondria using an model. Mitochondria were isolated from human skeletal muscle and mouse liver and exposed to these agents at clinically relevant and supra-physiological concentrations. Metabolic activity was assessed using a resazurin reduction assay as an indicator of mitochondrial viability. Even at concentrations up to 8-fold above clinical exposure, none of the agents significantly impaired mitochondrial function. These findings provide critical toxicological data demonstrating the compatibility of commonly used therapeutics with mitochondrial transplantation, supporting the development of safer and more optimized clinical protocols.
线粒体移植是一种针对缺血再灌注损伤的新兴治疗方法,有望通过细胞外线粒体的植入来恢复细胞功能。该策略的成功临床应用取决于代谢活性线粒体的递送,但循环治疗药物对线粒体活力的影响仍知之甚少。本研究使用一个模型评估了在缺血性脑卒中血管内治疗期间常用的五种临床相关药物(阿替普酶、头孢唑林、利多卡因、去氧肾上腺素和肝素盐水)对细胞外线粒体的影响。线粒体从人类骨骼肌和小鼠肝脏中分离出来,并在临床相关浓度和超生理浓度下暴露于这些药物。使用刃天青还原试验评估代谢活性,作为线粒体活力的指标。即使在浓度高达临床暴露水平8倍的情况下,这些药物也没有显著损害线粒体功能。这些发现提供了关键的毒理学数据,证明了常用治疗药物与线粒体移植的兼容性,支持了更安全、更优化的临床方案的开发。