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Cyclophilin D-induced mitochondrial impairment confers axonal injury after intracerebral hemorrhage in mice

Authors :
Yang Yang
Kai-Yuan Zhang
Xue-Zhu Chen
Chuan-Yan Yang
Ju Wang
Xue-Jiao Lei
Yu-Lian Quan
Wei-Xiang Chen
Heng-Li Zhao
Li-Kun Yang
Yu-Hai Wang
Yu-Jie Chen
Hua Feng
Source :
Neural Regeneration Research, Vol 18, Iss 4, Pp 849-855 (2023)
Publication Year :
2023
Publisher :
Wolters Kluwer Medknow Publications, 2023.

Abstract

The mitochondrial permeability transition pore is a nonspecific transmembrane channel. Inhibition of mitochondrial permeability transition pore opening has been shown to alleviate mitochondrial swelling, calcium overload, and axonal degeneration. Cyclophilin D is an important component of the mitochondrial permeability transition pore. Whether cyclophilin D participates in mitochondrial impairment and axonal injury after intracerebral hemorrhage is not clear. In this study, we established mouse models of intracerebral hemorrhage in vivo by injection of autologous blood and oxyhemoglobin into the striatum in Thy1-YFP mice, in which pyramidal neurons and axons express yellow fluorescent protein. We also simulated intracerebral hemorrhage in vitro in PC12 cells using oxyhemoglobin. We found that axonal degeneration in the early stage of intracerebral hemorrhage depended on mitochondrial swelling induced by cyclophilin D activation and mitochondrial permeability transition pore opening. We further investigated the mechanism underlying the role of cyclophilin D in mouse models and PC12 cell models of intracerebral hemorrhage. We found that both cyclosporin A inhibition and short hairpin RNA interference of cyclophilin D reduced mitochondrial permeability transition pore opening and mitochondrial injury. In addition, inhibition of cyclophilin D and mitochondrial permeability transition pore opening protected corticospinal tract integrity and alleviated motor dysfunction caused by intracerebral hemorrhage. Our findings suggest that cyclophilin D is used as a key mediator of axonal degeneration after intracerebral hemorrhage; inhibition of cyclophilin D expression can protect mitochondrial structure and function and further alleviate corticospinal tract injury and motor dysfunction after intracerebral hemorrhage. Our findings provide a therapeutic target for preventing axonal degeneration of white matter injury and subsequent functional impairment in central nervous diseases.

Details

Language :
English
ISSN :
16735374 and 97429295
Volume :
18
Issue :
4
Database :
Directory of Open Access Journals
Journal :
Neural Regeneration Research
Publication Type :
Academic Journal
Accession number :
edsdoj.0d2acab39f97429295ed704e4e067263
Document Type :
article
Full Text :
https://doi.org/10.4103/1673-5374.353495