ORIGINAL RESEARCH article

Front. Mol. Neurosci.

Sec. Brain Disease Mechanisms

Additive protection of transcranial direct current stimulation and mitochondrial transplantation on ischemic stroke via inducing A2 astrocytes

  • Air Force Medical University, Xi'an, China

The final, formatted version of the article will be published soon.

Abstract

Introduction: Therapeutic options for the acute phase of ischemic stroke remain limited. Transcranial direct current stimulation (tDCS) and mitochondrial transplantation have emerged as promising neuroprotective approaches, but their individual efficacy is variable. We hypothesized that combining these two therapies would produce additive benefits for post-stroke recovery. Methods: Focal cortical ischemia was induced in mice using photothrombotic technique. Mice were randomly assigned to receive sham treatment, tDCS, mitochondrial transplantation, or combined treatment. Grid-walking, cylinder tests and 2,3,5-triphenyltetrazolium chloride staining were used to assess motor recovery and infarct volume, respectively. Immunofluorescence staining, and western blotting were performed to determine mitochondrial internalization and polarization of astrocytes in vivo and in vitro. Results: Combining tDCS with mitochondrial transplantation resulted in a significantly greater reduction in infarct volume and improvement in locomotor function compared to either treatment alone. Interestingly, tDCS specifically enhanced the uptake of exogenous mitochondria by astrocytes. This was associated with a significant increase in beneficial A2 astrocytes and decrease in detrimental A1 astrocytes. Mechanistically, the combined treatment led to a marked upregulation of CD38 in astrocytes, suggesting their involvement in the tDCS-facilitated mitochondrial endocytosis. Suppression of CD38 expression by short interfering RNA attenuated astrocyte mitochondrial endocytosis and A2 phenotype induced by tDCS. Conclusion: Our findings demonstrate that combining tDCS with mitochondrial transplantation conferred superior neuroprotection against ischemic brain damage than either treatment alone, and may represent a promising strategy for ischemic stroke treatment.

Summary

Keywords

Astrocytes, Endocytosis, ischemic stroke, Mitochondria, tDCS, Transplantation

Received

14 April 2026

Accepted

04 August 2026

Copyright

© 2026 Wang, Guo, Kang, Li, Wang, Sun, Jiang and Li. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.

*Correspondence: Yazhou Wang; Wen Jiang; Jiang Li

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