Corticosterone-linked microglial activity underpins sexually dimorphic neuroplasticity after ketamine anesthesia

Venturino A, Alam A, Negrello T, Jin K, van Velthoven CTJ, Cubero RJ, Yeung J, Koppensteiner P, Tasic B, Siegert S. 2026. Corticosterone-linked microglial activity underpins sexually dimorphic neuroplasticity after ketamine anesthesia. Science Advances. 12(31), eadz6517.

Download
OA 2026_ScienceAdv_Venturino.pdf 4.56 MB [Published Version]

Journal Article | Published | English

Scopus indexed

Corresponding author has ISTA affiliation

Abstract
Anesthesia recovery is critical for resuming normal physiological and neuronal functions; however, the mechanisms involved remain elusive. Here, we identify a female-selective corticosterone-mediated microglia-neuron interaction during ketamine anesthesia recovery, absent in males. This microglia-neuron interaction induces plastic and functional neuronal changes, as evidenced by increased mEPSC frequency, which was occluded upon microglia depletion. We showed that this process is driven through up-regulation of the stress-responsive co-chaperone Fkbp5 mRNA and its protein, Fkbp51, in female microglia. Fkbp5/Fkbp51 is a key intermediary in a corticosteroid-induced stress response, and its involvement points toward a critical interface between endocrine signaling and microglia. To counteract the observed ketamine anesthesia-mediated increase in blood corticosterone during recovery, we removed the primary source of corticosterone by adrenalectomy. Close microglia-neuron interaction was reduced and increased again following corticosterone injection. Our findings identify a sex-specific microglia-mediated mechanism of neuronal plasticity during anesthesia recovery, driven by corticosterone, thereby enhancing our understanding of sex differences in brain function.
Publishing Year
Date Published
2026-07-01
Journal Title
Science Advances
Publisher
AAAS
Acknowledgement
We thank the scientific service units at ISTA, especially the imaging optic facility (IOF), the machine shop (Miba), specifically T. Asenov, the preclinical facility (PCF), specifically M. Schunn and S. Haslinger, C. Jansen for bioinformatic support, and the laboratory support facility (LSF). We also thank M. Benevento for supporting the design and partial performance of electrophysiology and fluorescence in situ hybridization experiments and for extensive discussions about the manuscript draft, R. Schulz and G. Colombo for advice on morphological reconstruction, M. Schmidt for valuable discussions about Fkbp5, and all Siegert team members for constant feedback on the project and manuscript. Grammarly was used to assist with grammatical revisions. We specifically acknowledge the following experimental contributions: R.J.A.C. (Multiome quality control), P.K. (electrophysiology), B.T., C.T.J.V., K.J. (multiome), J.Y. (KXA estimates), M.A. and T.N. (morphOMICs). A.V., M.A., T.N., R.J.A.C., J.Y., P.K., and S.S. were supported by the Institute of Science and Technology Austria. C.T.J.V., K.J., and B.T. were supported by the Allen Institute.
Volume
12
Issue
31
Article Number
eadz6517
eISSN
IST-REx-ID

Cite this

Venturino A, Alam A, Negrello T, et al. Corticosterone-linked microglial activity underpins sexually dimorphic neuroplasticity after ketamine anesthesia. Science Advances. 2026;12(31). doi:10.1126/sciadv.adz6517
Venturino, A., Alam, A., Negrello, T., Jin, K., van Velthoven, C. T. J., Cubero, R. J., … Siegert, S. (2026). Corticosterone-linked microglial activity underpins sexually dimorphic neuroplasticity after ketamine anesthesia. Science Advances. AAAS. https://doi.org/10.1126/sciadv.adz6517
Venturino, Alessandro, Amin Alam, Thomas Negrello, Kelly Jin, Cindy T. J. van Velthoven, Ryan J Cubero, Jake Yeung, Peter Koppensteiner, Bosiljka Tasic, and Sandra Siegert. “Corticosterone-Linked Microglial Activity Underpins Sexually Dimorphic Neuroplasticity after Ketamine Anesthesia.” Science Advances. AAAS, 2026. https://doi.org/10.1126/sciadv.adz6517.
A. Venturino et al., “Corticosterone-linked microglial activity underpins sexually dimorphic neuroplasticity after ketamine anesthesia,” Science Advances, vol. 12, no. 31. AAAS, 2026.
Venturino A, Alam A, Negrello T, Jin K, van Velthoven CTJ, Cubero RJ, Yeung J, Koppensteiner P, Tasic B, Siegert S. 2026. Corticosterone-linked microglial activity underpins sexually dimorphic neuroplasticity after ketamine anesthesia. Science Advances. 12(31), eadz6517.
Venturino, Alessandro, et al. “Corticosterone-Linked Microglial Activity Underpins Sexually Dimorphic Neuroplasticity after Ketamine Anesthesia.” Science Advances, vol. 12, no. 31, eadz6517, AAAS, 2026, doi:10.1126/sciadv.adz6517.
All files available under the following license(s):
Creative Commons Attribution 4.0 International Public License (CC-BY 4.0):
Main File(s)
Access Level
OA Open Access
Date Uploaded
2026-09-22
MD5 Checksum
715a1f35a0805be85ef90556205a2cbc


Export

Marked Publications

Metadata Export

Sources

PMID: 42536755
PubMed | Europe PMC

Search this title in

Google Scholar