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Copyright (c) 2023 Xinyuan Yu, Xiaojun Liu, Xiujuan Mi, Zhiyun Lian, Jun Tang, Guixue Wang
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
The undersigned hereby assign all rights, included but not limited to copyright, for this manuscript to CMB Association upon its submission for consideration to publication on Cellular and Molecular Biology. The rights assigned include, but are not limited to, the sole and exclusive rights to license, sell, subsequently assign, derive, distribute, display and reproduce this manuscript, in whole or in part, in any format, electronic or otherwise, including those in existence at the time this agreement was signed. The authors hereby warrant that they have not granted or assigned, and shall not grant or assign, the aforementioned rights to any other person, firm, organization, or other entity. All rights are automatically restored to authors if this manuscript is not accepted for publication.Jionoside A1 alleviates ischemic stroke ischemia/reperfusion injury by promoting Nix-mediated mitophagy
Corresponding Author(s) : Jun Tang
Cellular and Molecular Biology,
Vol. 69 No. 8: Issue 8
Abstract
In ischemia-reperfusion injury in ischemic stroke, mitophagy, which can remove damaged mitochondria, reduce cytotoxic damage, and enhance neurological recovery, is crucial. Jionoside A1 is a substance found in the traditional Chinese herb Rehmannia glutinosa, which may have neuroprotective effects. The fundamental objective of this work was to find out Jionoside A1's contribution to ischemia/reperfusion injury in ischemic stroke. The oxygen-glucose deprivation/reperfusion (OGD-Rep) model and the right transient middle cerebral artery occlusion (tMCAO) model were established. Jionoside A1 was used for treatment. We utilized a tiny interfering RNA (siRNA) to lower Nix expression. The results suggest that Jionoside A1 may reduce ischemic stroke. By lowering the consequences of ischemia/reperfusion injury, Rehmannia glutinosa can be utilized to treat ischemic stroke. These discoveries provide fresh experimental information for the investigation of ischemic stroke ischemia/reperfusion injury and provide some theoretical justification for their application.
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