Sun Jiayu, Lo Hiu Tung Jessica, Fan Lei, Yiu Tsz Lam, Shakoor Adnan, Li Gang, Lee Wayne Y W, Sun Dong
Department of Biomedical Engineering, City University of Hong Kong, Hong Kong, Hong Kong SAR, China.
Department of Orthopaedics and Traumatology, Faculty of Medicine, The Chinese University of Hong Kong, Prince of Wales Hospital, Shatin, Hong Kong SAR, China.
Sci Adv. 2022 Aug 19;8(33):eabp9245. doi: 10.1126/sciadv.abp9245. Epub 2022 Aug 17.
Mitochondrial transfer is a spontaneous process to restore damaged cells in various pathological conditions. The transfer of mitochondria to cell therapy products before their administration can enhance therapeutic outcomes. However, the low efficiency of previously reported methods limits their clinical application. Here, we developed a droplet microfluidics-based mitochondrial transfer technique that can achieve high-efficiency and high-throughput quantitative mitochondrial transfer to single cells. Because mitochondria are essential for muscles, myoblast cells and a muscle injury model were used as a proof-of-concept model to evaluate the proposed technique. In vitro and in vivo experiments demonstrated that C2C12 cells with 31 transferred mitochondria had significant improvements in cellular functions compared to those with 0, 8, and 14 transferred mitochondria and also had better therapeutic effects on muscle regeneration. The proposed technique can considerably promote the clinical application of mitochondrial transfer, with optimized cell function improvements, for the cell therapy of mitochondria-related diseases.
线粒体转移是在各种病理条件下恢复受损细胞的自发过程。在细胞治疗产品给药前将线粒体转移至其中可提高治疗效果。然而,先前报道方法的低效率限制了它们的临床应用。在此,我们开发了一种基于微滴微流控技术的线粒体转移技术,该技术可实现对单细胞的高效、高通量定量线粒体转移。由于线粒体对肌肉至关重要,因此使用成肌细胞和肌肉损伤模型作为概念验证模型来评估所提出的技术。体外和体内实验表明,与转移0、8和14个线粒体的C2C12细胞相比,转移31个线粒体的C2C12细胞在细胞功能方面有显著改善,并且对肌肉再生也具有更好的治疗效果。所提出的技术可极大地促进线粒体转移的临床应用,并通过优化细胞功能改善来治疗线粒体相关疾病。