Restoring cortical disinhibition improves Huntington’s disease phenotypes

Восстановление кортикальной дизинибирования улучшает фенотипы болезни Хантингтона
Rüdiger Klein, Takaki Komiyama, Sonja Blumenstock, David Arakelyan, Nicholas Del Grosso, Sonja Schneider, Yufeng Shao, Enida Gjoni, Irina Dudanova
2026-07-01

R6/2 and zQ175DN mouse modelscortical disinhibitioncorticostriatal projection neuronsoptogenetic activationvasoactive intestinal peptide interneurons
Abstract Huntington’s disease (HD) is a devastating movement disorder without a cure at present 1 . Although the monogenic basis of HD is well defined 2 , the complex downstream effects that underlie behavioural symptoms are poorly understood. These effects include cortical dysfunction 3,4 , yet the roles of specific cortical neuronal subtypes in HD symptoms remain largely unexplored. Here we used longitudinal in vivo two-photon calcium imaging to examine the activity of three cortical inhibitory neuron (IN) subtypes and excitatory corticostriatal (CStr) projection neurons in the motor cortex of the transgenic R6/2 HD mouse model throughout disease progression. We found that motor deficits in R6/2 mice were accompanied by neuron subtype-specific abnormalities in movement-related activity. This included marked hypoactivity of vasoactive intestinal peptide (VIP)-INs and CStr neurons, which was also observed in the knock-in zQ175DN HD mouse model. Optogenetic activation of VIP-INs in R6/2 mice restored healthy levels of activity in VIP-INs and their downstream CStr neurons and ameliorated motor deficits in R6/2 mice; behavioural improvements persisted for days after stimulation. Our findings highlight cortical INs as a potential therapeutic target for HD.
1
Activation of VIP-INs ameliorated motor deficits in R6/2 mice, with behavioral improvements persisting for days after stimulation.
2
Cortical inhibitory interneurons are highlighted as a potential therapeutic target for Huntington’s disease.
3
Longitudinal in vivo two-photon calcium imaging revealed neuron subtype-specific abnormalities in movement-related activity in motor cortex of R6/2 HD mice.
4
Optogenetic activation of VIP-INs in R6/2 mice restored normal activity levels in VIP-INs and their downstream CStr neurons.
5
Similar hypoactivity of VIP-INs and CStr neurons was observed in the knock-in zQ175DN HD mouse model, indicating replication across models.
6
VIP inhibitory interneurons (VIP-INs) and corticostriatal (CStr) projection neurons exhibited marked hypoactivity during disease progression in R6/2 mice.

Cortical inhibitory neuron subtypes (VIP-INs, other INs) and excitatory corticostriatal (CStr) projection neurons in the motor cortex of Huntington’s disease mouse models (R6/2 and zQ175DN)

Subtype-specific activity changes and cortical disinhibition affecting movement-related neuronal activity, and the rescue of VIP-IN and downstream CStr neuron activity and motor deficits via optogenetic activation

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2026-07-01
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Rüdiger Klein
Takaki Komiyama
Sonja Blumenstock
David Arakelyan
Nicholas Del Grosso
Sonja Schneider
Yufeng Shao
Enida Gjoni
Irina Dudanova
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