TY - JOUR
T1 - Thyroid hormones maintain parvalbumin neuron functions in the mouse neocortex
AU - Ren, Juan
AU - Markossian, Suzy
AU - Guyot, Romain
AU - Aubert, Denise
AU - Riet, Fabrice
AU - Brocard, Jacques
AU - Descamps, Alice
AU - Wong, Jiemin
AU - Li, Dongdong
AU - Cauli, Bruno
AU - Gallopin, Thierry
AU - Flamant, Frédéric
AU - Richard, Sabine
N1 - Publisher Copyright:
© 2026 The Authors
PY - 2026/6/19
Y1 - 2026/6/19
N2 - Parvalbumin-expressing GABAergic interneurons are crucial for maintaining excitation/inhibition balance in the neocortex. The postnatal maturation of parvalbumin neurons is highly sensitive to thyroid hormone deficiency. The present study addressed the role of thyroid hormones in mature parvalbumin neurons. Using genetically modified mouse models, we selectively disrupted thyroid hormone signaling in parvalbumin neurons after the onset of parvalbumin expression. Genomic, histological, electrophysiological, sleep, and behavioral analyses were conducted. Mutant mice showed reduced expression of perineuronal net components, decreased neuron excitability, altered gamma oscillations, behavioral hyperactivity, increased wakefulness, delayed sleep onset, and greater susceptibility to seizures. These results demonstrate that thyroid hormones are essential not only for the maturation but also for the maintenance of cortical parvalbumin neuron function after the onset of parvalbumin expression. Disruption of thyroid hormone signaling, during development or adulthood, may thus contribute to neurological and psychiatric disorders involving impaired cortical oscillations.
AB - Parvalbumin-expressing GABAergic interneurons are crucial for maintaining excitation/inhibition balance in the neocortex. The postnatal maturation of parvalbumin neurons is highly sensitive to thyroid hormone deficiency. The present study addressed the role of thyroid hormones in mature parvalbumin neurons. Using genetically modified mouse models, we selectively disrupted thyroid hormone signaling in parvalbumin neurons after the onset of parvalbumin expression. Genomic, histological, electrophysiological, sleep, and behavioral analyses were conducted. Mutant mice showed reduced expression of perineuronal net components, decreased neuron excitability, altered gamma oscillations, behavioral hyperactivity, increased wakefulness, delayed sleep onset, and greater susceptibility to seizures. These results demonstrate that thyroid hormones are essential not only for the maturation but also for the maintenance of cortical parvalbumin neuron function after the onset of parvalbumin expression. Disruption of thyroid hormone signaling, during development or adulthood, may thus contribute to neurological and psychiatric disorders involving impaired cortical oscillations.
KW - Health sciences
UR - https://www.scopus.com/pages/publications/105039995171
U2 - 10.1016/j.isci.2026.115970
DO - 10.1016/j.isci.2026.115970
M3 - 文章
AN - SCOPUS:105039995171
SN - 2589-0042
VL - 29
JO - iScience
JF - iScience
IS - 6
M1 - 115970
ER -