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Neurons in the rat ventral lateral preoptic area are essential for the warm‐evoked inhibition of brown adipose tissue and shivering thermogenesis
Author(s) -
Conceição Ellen P. S.,
Madden Christopher J.,
Morrison Shaun F.
Publication year - 2019
Publication title -
acta physiologica
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.591
H-Index - 116
eISSN - 1748-1716
pISSN - 1748-1708
DOI - 10.1111/apha.13213
Subject(s) - cnqx , shivering , thermogenesis , preoptic area , brown adipose tissue , median preoptic nucleus , medicine , biology , endocrinology , chemistry , glutamate receptor , hypothalamus , adipose tissue , ampa receptor , physiology , receptor , renin–angiotensin system , subfornical organ , blood pressure
Aim To determine the role of neurons in the ventral part of the lateral preoptic area (vLPO) in CNS thermoregulation. Methods In vivo electrophysiological and neuropharmacological were used to evaluate the contribution of neurons in the vLPO to the regulation of brown adipose tissue (BAT) thermogenesis and muscle shivering in urethane/chloralose‐anaesthetized rats. Results Nanoinjections of NMDA targeting the medial preoptic area (MPA) and the vLPO suppressed the cold‐evoked BAT sympathetic activity (SNA), reduced the BAT temperature (T BAT ), expired CO 2 , mean arterial pressure (MAP), and heart rate. Inhibition of vLPO neurons with muscimol or AP5/CNQX elicited increases in BAT SNA, T BAT , tachycardia, and small elevations in MAP. The BAT thermogenesis evoked by AP5/CNQX in vLPO was inhibited by the activation of MPA neurons. The inhibition of BAT SNA by vLPO neurons does not require a GABAergic input to dorsomedial hypothalamus (DMH), but MPA provides a GABAergic input to DMH. The activation of vLPO neurons inhibits the BAT thermogenesis evoked by NMDA in the rostral raphe pallidus (rRPa), but not that after bicuculline in rRPa. The BAT thermogenesis elicited by vLPO inhibition is dependent on glutamatergic inputs to DMH and rRPa, but these excitatory inputs do not arise from MnPO neurons. The activation of neurons in the vLPO also inhibits cold‐ and prostaglandin‐evoked muscle shivering, and vLPO inhibition is sufficient to evoke shivering. Conclusion The vLPO contains neurons that are required for the warm ambient‐evoked inhibition of muscle shivering and of BAT thermogenesis, mediated through a direct or indirect GABAergic input to rRPa from vLPO.

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