Restoring cortical disinhibition improves Huntington’s disease phenotypes
Восстановление кортикальной дизинибирования улучшает фенотипы болезни Хантингтона
2026-07-01
SCID: 54.1/yatgjhk3
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R6/2 and zQ175DN mouse modelscortical disinhibitioncorticostriatal projection neuronsoptogenetic activationvasoactive intestinal peptide interneurons
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Abstract (AI)
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.
Key Findings
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.
Research Object
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)
Research Subject
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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