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Shankhatheertha, A.

Publications and source records attributed to Shankhatheertha, A..

2 recordsLinked to original sources

Anorectic and anxiogenic actions of cocaine- and amphetamine-regulated transcript in the lateral septum

Cocaine-and amphetamine-regulated transcript (CART) is produced in several brain regions including the hypothalamus where it is made in cells that also produce melanin-concentrating hormone (MCH). MCH+CART cells densely innervate the lateral septum (LS), which integrates food- and mood-related behaviours. However, while MCH typically promotes feeding and anxiolysis, CART suppresses feeding and promotes anxiogenesis. The LS is a target site of the orexigenic actions of MCH, but it is not known if the actions of CART converge or oppose that of MCH in the LS. We implanted a bilateral cannula over the lateral or central LS of male and female wildtype mice and infused vehicle, CART55-102, or co-infused CART and MCH. CART did not alter chow intake but suppressed the intake of a palatable high sugar diet in male and female mice, especially when delivered in the medial LS. Furthermore, CART also prevented the orexigenic effect of MCH on palatable feeding intake when infused in the medial LS. We then assessed if CART regulated anxiety-like behaviour via the LS and found that intra-LS CART infusion reduced time spent in the center of an open field in male but not female mice. Our findings indicated that CART elicited anorectic and anxiogenic actions and may function in opposition to or independently of MCH in the LS. These outcomes suggested that putative CART and MCH co-release from MCH neurons may provide biphasic regulation of feeding and anxiety via the LS.

neuroscience↗

Melanin-concentrating hormone promotes feeding through the lateral septum

Feeding is necessary for survival but can be hindered by anxiety or fear, thus neural systems that can regulate anxiety states are key to elucidating the expression of food-related behaviors. Melanin-concentrating hormone (MCH) is a neuropeptide produced in the lateral hypothalamus that promotes feeding and anxiogenesis. The orexigenic actions of MCH that prolong ongoing homeostatic or hedonic feeding are context-dependent and more prominent in male than female rodents, but it is not clear where MCH acts to initiate feeding. The lateral septum (LS) promotes feeding and suppresses anxiogenesis when inhibited, and it comprises the densest projections from MCH neurons. However, it is not known whether the LS is a major contributor to MCH-mediated feeding. As MCH inhibits LS cells by MCH receptor (MCHR1) activation, MCH may promote feeding via the LS. We bilaterally infused MCH into the LS and found that MCH elicited a rapid and long-lasting increase in the consumption of standard chow and a palatable, high sugar diet in male and female mice; these MCH effects were blocked by the co-administration of a MCHR1 antagonist TC-MCH 7c. Interestingly, the orexigenic effect of MCH was abolished in a novel, anxiogenic environment even when presented with a food reward, but MCH did not induce anxiety-like behaviors. These findings indicated the LS as a novel region underlying orexigenic MCH actions, which stimulated and enhanced feeding in both sexes in a context -dependent manner that was most prominent in the homecage.

neuroscience↗