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Razenberg, L. J. A. M.

Publications and source records attributed to Razenberg, L. J. A. M..

2 recordsLinked to original sources

The anterior cingulate cortex drives lateralized age-dependent modulation of claustrum circuits

The anterior cingulate cortex (ACC) sends top-down inputs to the claustrum during sensory, motor, and cognitive processing. This ACC input is thought to drive the activation of claustrum neurons which in turn project back to the cortex to help orchestrate cortical networks during demanding cognitive states such as attention. However, the circuit mechanisms underlying ACC-claustrum signaling are not fully understood. Using in vivo single neuron recordings in mice, we show that ACC neuron activation drives a lateralized modulation of claustrum excitability that changes as a function of postnatal age. In adulthood, ACC activation evoked feed-forward inhibition of ipsilateral excitatory claustrum neurons and activation of contralateral excitatory claustrum neurons. Chemogenetic manipulation in adult mice revealed that ipsilateral claustrum inhibition by the ACC was due to feed-forward activation of claustrum parvalbumin inhibitory neurons. However, in neonatal mice, which lack mature parvalbumin interneurons, ACC inputs evoked claustrum excitation. In juvenile mice, the developmental switch from ACC-evoked claustrum excitation to inhibition occurred in parallel with the maturation of claustrum parvalbumin interneurons, thus corroborating the chemogenetic findings. Therefore, this work provides a novel mechanism of cortical control over claustrum activity that is refined during early postnatal life.

neuroscience↗

Integration of cortical inputs in the lateral hypothalamus is dominated by the medial prefrontal cortex

The lateral hypothalamus (LH) is a critical brain region orchestrating survival behaviours including feeding. Its sparse intrinsic synaptic connectivity allows long-range projections to modulate its activity. Some of these projections arise from the cerebral cortex, which is known to influence feeding. However, the functional and anatomical organization of cortico-hypothalamic pathways have remained poorly studied. We used anatomical and optogenetic mapping to show that the medial prefrontal cortex (mPFC) is the strongest cortical input source to the LH, followed by a lateral associative region including the insular cortex (IC), and the ventral subiculum. Input from the mPFC and IC had markedly different synaptic dynamics and were integrated supralinearly. IC input surpassed that of the mPFC in a subpopulation of highly excitable dorsal LH neurons which had a strong h-current. Input from the mPFC showed selective targeting to LH neurons which project back to the mPFC, suggesting the existence of a direct feedback loop. Overall, these results identify a direct prefrontal hypothalamic pathway which is poised to dominate rapid cortical control of hypothalamic activity.

neuroscience↗