Hypothermic Conditions Impair GnRH Pulse Generator Activity and Gametogenesis
Hypothermia, rather than just low metabolism, significantly suppresses the activity of kisspeptin neurons, which could impair reproductive function.
Where it sits
this study against the rest of the kisspeptin (kp-10) corpusSummary and findings
The study measured the activity of arcuate kisspeptin neurons in adult mice under various energy-saving conditions. It found that synchronized episodes of kisspeptin neuron activity were markedly suppressed during fasting-induced torpor and pharmacologically induced hypothermia. Warming the body temperature during hypothermia fully restored kisspeptin neuron activity.
Abstract
Mammalian reproductive function is driven by arcuate kisspeptin neurons, pacemakers of gonadotropin secretion. During energy shortages, animals reallocate resources from reproduction to survival; however, the underlying neural mechanisms remain elusive. Here we used fiber photometry to chronically monitor synchronized episodes of arcuate kisspeptin neuron activity (SEskiss) in adult mice under various energy-saving conditions. In both sexes, SEskiss frequency was markedly suppressed during fasting-induced torpor and pharmacologically induced hypothermia, whereas hypometabolism alone had no discernible effect. A Q neuron-induced hypothermic state (QIH) robustly suppressed SEskiss, leading to impaired gamete maturation, whereas warming the body temperature during QIH fully restored SEskiss frequency. These findings demonstrate that hypothermia, rather than hypometabolism, is the primary driver of suppression of the hypothalamic reproductive axis during energy-saving conditions. This study provides insights into how thermal signals act as critical gatekeepers in the mammalian reproductive system.