Brestoff Jonathan R, Singh Keshav K, Aquilano Katia, Becker Lance B, Berridge Michael V, Boilard Eric, Caicedo Andrés, Crewe Clair, Enríquez José Antonio, Gao Jianqing, Gustafsson Åsa B, Hayakawa Kazuhide, Khoury Maroun, Lee Yun-Sil, Lettieri-Barbato Daniele, Luz-Crawford Patricia, McBride Heidi M, McCully James D, Nakai Ritsuko, Neuzil Jiri, Picard Martin, Rabchevsky Alexander G, Rodriguez Anne-Marie, Sengupta Shiladitya, Sercel Alexander J, Suda Toshio, Teitell Michael A, Thierry Alain R, Tian Rong, Walker Melanie, Zheng Minghao
Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, MO, USA.
Department of Genetics, I Heersink School of Medicine, University of Alabama at Birmhingham, Birmingham, AL, USA.
Nat Metab. 2025 Jan;7(1):53-67. doi: 10.1038/s42255-024-01200-x. Epub 2025 Jan 16.
Intercellular mitochondria transfer is an evolutionarily conserved process in which one cell delivers some of their mitochondria to another cell in the absence of cell division. This process has diverse functions depending on the cell types involved and physiological or disease context. Although mitochondria transfer was first shown to provide metabolic support to acceptor cells, recent studies have revealed diverse functions of mitochondria transfer, including, but not limited to, the maintenance of mitochondria quality of the donor cell and the regulation of tissue homeostasis and remodelling. Many mitochondria-transfer mechanisms have been described using a variety of names, generating confusion about mitochondria transfer biology. Furthermore, several therapeutic approaches involving mitochondria-transfer biology have emerged, including mitochondria transplantation and cellular engineering using isolated mitochondria. In this Consensus Statement, we define relevant terminology and propose a nomenclature framework to describe mitochondria transfer and transplantation as a foundation for further development by the community as this dynamic field of research continues to evolve.
细胞间线粒体转移是一个进化上保守的过程,即一个细胞在不进行细胞分裂的情况下将其部分线粒体传递给另一个细胞。根据所涉及的细胞类型以及生理或疾病背景,这一过程具有多种功能。尽管线粒体转移最初被证明可为受体细胞提供代谢支持,但最近的研究揭示了线粒体转移的多种功能,包括但不限于维持供体细胞的线粒体质量以及调节组织稳态和重塑。许多线粒体转移机制已被用各种名称描述,这给线粒体转移生物学带来了混乱。此外,已经出现了几种涉及线粒体转移生物学的治疗方法,包括线粒体移植和使用分离线粒体的细胞工程。在本共识声明中,我们定义了相关术语,并提出了一个命名框架来描述线粒体转移和移植,作为该动态研究领域不断发展时社区进一步发展的基础。