Maternal behavior emerges from neural circuits that integrate hormonal, metabolic, motivational, and sensory information. While the medial preoptic area (MPOA) is recognized as a key regulator of maternal responses, increasing evidence identifies the lateral hypothalamic area (LHA) may support successful caregiving. Through extensive connections with hypothalamic, mesolimbic, limbic, and brainstem networks, the LHA links internal physiological states to maternal behavioral output. Recent single-cell transcriptomic studies have revealed remarkable cellular and molecular diversity within the LHA, extending far beyond its traditional roles in feeding and arousal. These findings suggest that distinct LHA neuronal populations may integrate endocrine, metabolic, and social signals across pregnancy and lactation to influence maternal motivation, aggression, approach-withdrawal dynamics, and behavioral flexibility. Here, we review anatomical, functional, and transcriptomic evidence supporting a role for the LHA in maternal adaptation and propose that cell-type-specific remodeling contributes to postpartum behavioral plasticity. However, current evidence is disproportionately centered on MCH neurons, whereas the maternal functions of orexin neurons and other molecularly defined LHA populations remain largely unresolved. Moreover, whether MCH and orexin neurons exert distinct functions during early, established, and late lactation is unknown. Addressing these gaps will require temporally resolved recordings and causal manipulation of cell- and projection-defined LHA populations across postpartum stages.
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