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Ghrelin controls hippocampal spine synapse density and memory performance

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TLDR
It is reported that circulating ghrelin enters the hippocampus and binds to neurons of the hippocampal formation, where it promotes dendritic spine synapse formation and generation of long-term potentiation.
Abstract
The gut hormone and neuropeptide ghrelin affects energy balance and growth hormone release through hypothalamic action that involves synaptic plasticity in the melanocortin system. Ghrelin binding is also present in other brain areas, including the telencephalon, where its function remains elusive. Here we report that circulating ghrelin enters the hippocampus and binds to neurons of the hippocampal formation, where it promotes dendritic spine synapse formation and generation of long-term potentiation. These ghrelin-induced synaptic changes are paralleled by enhanced spatial learning and memory. Targeted disruption of the gene that encodes ghrelin resulted in decreased numbers of spine synapses in the CA1 region and impaired performance of mice in behavioral memory testing, both of which were rapidly reversed by ghrelin administration. Our observations reveal an endogenous function of ghrelin that links metabolic control with higher brain functions and suggest novel therapeutic strategies to enhance learning and memory processes.

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Ghrelin modulates the activity and synaptic input organization of midbrain dopamine neurons while promoting appetite

TL;DR: It is shown that in mice and rats, ghrelin bound to neurons of the VTA, where it triggered increased dopamine neuronal activity, synapse formation, and dopamine turnover in the nucleus accumbens in a GHSR-dependent manner, suggesting that the mesolimbic reward circuitry is targeted by peripheral gh Relin to influence physiological mechanisms related to feeding.
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Mitochondrial ROS Signaling in Organismal Homeostasis

TL;DR: This work reviews mitochondrial ROS-mediated signaling pathways with an emphasis on how they are involved in various basal and adaptive physiological responses that control organismal homeostasis.
References
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Journal ArticleDOI

Ghrelin is a growth-hormone-releasing acylated peptide from stomach.

TL;DR: The occurrence of ghrelin in both rat and human indicates that GH release from the pituitary may be regulated not only by hypothalamic GHRH, but also by ghrelIn, a peptide specifically releases GH both in vivo and in vitro.
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Regional studies of catecholamines in the rat brain. I. The disposition of [3H]norepinephrine, [3H]dopamine and [3H]dopa in various regions of the brain.

TL;DR: It is revealed that norepinephrine and dopamine are specifically localized in complex systems of neurons in the brain, a finding which lends support to the hypothesis that both amines may be neurotransmitters in the central nervous system.
Journal Article

The structure and function

TL;DR: This stately book is to show how the various types of animals have solved the fundamental problems of life, and how their struc-ture is to be interpreted in terms of their functions and environment.
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Ghrelin induces adiposity in rodents.

TL;DR: It is proposed that ghrelin, in addition to its role in regulating GH secretion, signals the hypothalamus when an increase in metabolic efficiency is necessary, suggesting an involvement in regulation of energy balance.
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A Preprandial Rise in Plasma Ghrelin Levels Suggests a Role in Meal Initiation in Humans

TL;DR: The hypothesis that ghrelin plays a physiological role in meal initiation in humans is supported by the clear preprandials rise and postprandial fall in plasma ghrelIn levels.
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