Enhancing KCC2 function reduces interictal activity and prevents seizures in temporal lobe epilepsy

F Florian Donneger (Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270) A Adrien Zanin (Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270) J Jeremy Besson (Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270) D Delphine Roussel (Sorbonne Université, Institut du Cerveau Paris Brain Institute - ICM, Inserm, CNRS, Assistance Publique - Hôpitaux de Paris (AP-HP), Hôpital de la Pitié Salpêtrière) Y Yoness Kadiri (Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270) C Carla Pagan (Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270) M Manisha Sinha (Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270) N Nicolas David (Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270) M Marion Russeau (Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270) F Franck Bielle B Bertrand Devaux (Department of Neurosurgery, Sainte-Anne Hospital) B Bertrand Mathon V Vincent Navarro (Sorbonne Université, Institut du Cerveau Paris Brain Institute - ICM, Inserm, CNRS, Assistance Publique - Hôpitaux de Paris (AP-HP), Hôpital de la Pitié Salpêtrière) F Francine Chassoux (Department of Neurosurgery, Sainte-Anne Hospital) J Jean Christophe Poncer (Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270)

Abstract

The neuronal K/Cl cotransporter KCC2 regulates the transmembrane chloride gradient, which controls the efficacy of GABAergic signaling. In mesial temporal lobe epilepsy (mTLE) and other neurological disorders, reduced KCC2 expression or function can result in depolarizing GABA signaling, which is thought to contribute to pathological activity and seizures. Therefore, restoring chloride homeostasis represents a promising therapeutic strategy. We investigated the mechanisms and antiseizure effects of two small molecules, prochlorperazine (PCPZ) and CLP-257, that have been identified as potential KCC2 enhancers. We found that both compounds enhance KCC2 function and clustering in cortical neurons while reducing its membrane diffusion, without altering canonical regulatory phosphorylation. CLP-257 also selectively increased extrasynaptic, but not synaptic, GABA A receptor-mediated currents. Using in vitro recordings from resected brain tissue of patients with drug-resistant mTLE and in vivo recordings from a mouse model, we show that PCPZ and CLP-257 (or its prodrug CLP-290) effectively suppressed spontaneous epileptiform activity in both models. These findings reveal that PCPZ and CLP-257 act as genuine KCC2 enhancers and provide experimental evidence of the therapeutic potential of such compounds for treating drug-resistant mTLE.

Article Details

Volume / Issue Vol. 123, Issue 10
Published March 10, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (15)

F

Florian Donneger

Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270

A

Adrien Zanin

Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270

J

Jeremy Besson

Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270

D

Delphine Roussel

Sorbonne Université, Institut du Cerveau Paris Brain Institute - ICM, Inserm, CNRS, Assistance Publique - Hôpitaux de Paris (AP-HP), Hôpital de la Pitié Salpêtrière

Y

Yoness Kadiri

Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270

C

Carla Pagan

Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270

M

Manisha Sinha

Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270

N

Nicolas David

Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270

M

Marion Russeau

Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270

F

Franck Bielle

B

Bertrand Devaux

Department of Neurosurgery, Sainte-Anne Hospital

B

Bertrand Mathon

V

Vincent Navarro

Sorbonne Université, Institut du Cerveau Paris Brain Institute - ICM, Inserm, CNRS, Assistance Publique - Hôpitaux de Paris (AP-HP), Hôpital de la Pitié Salpêtrière

F

Francine Chassoux

Department of Neurosurgery, Sainte-Anne Hospital

J

Jean Christophe Poncer

Institut du Fer à Moulin, Inserm, Sorbonne Université, UMR-S 1270