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Updated: May 27, 2026

Isolation of Targeted Hypothalamic Neurons for Studies of Hormonal, Metabolic, and Electrical Regulation
Published on: August 4, 2023
Endocrine orchestration of cardiovascular, gastrointestinal and hypothalamic control
T Angelone1, A M Quintieri, N Amodio
1Department of Cell Biology, University of Calabria, Arcavata di Rende, Italy. t.angelone@unical.it
Insights
Humoral peptides significantly influence heart and gut functions, impacting appetite and potentially leading to cardiovascular and digestive diseases. Understanding these peptide pathways is key to restoring homeostasis.
Area of Science:
- Neuroendocrinology
- Cardiovascular Physiology
- Gastroenterology
Background:
- The heart's neuroendocrine control involves autonomic nerves and humoral peptides.
- These peptides, like natriuretic peptides, affect multiple organ systems, including the gastrointestinal tract.
- Central actions of peptides link cardiac and gastrointestinal functions to feeding patterns.
Purpose of the Study:
- To explore the complex interplay of signaling peptides in cardiovascular, gastrointestinal, and nutritional regulation.
- To highlight the integration of feeding-stimulatory peptides with other neuroendocrine systems.
Main Methods:
- Review of existing literature on neuroendocrine peptide signaling.
- Analysis of peptide interactions in cardiovascular and gastrointestinal systems.
- Focus on examples illustrating multilevel signaling circuits.
Main Results:
- Humoral peptides are crucial for heart function and influence gastrointestinal motility and secretion.
- Peptide pathways regulate appetite and satiety, linking cardiac and gut functions.
- Dysregulation of these pathways can cause cardiovascular and alimentary disorders, such as obesity.
Conclusions:
- Signaling peptides are vital for maintaining cardiac, gastrointestinal, and nutritional homeostasis.
- Their complex interactions offer potential targets for therapeutic interventions.
- Understanding these integrated networks is essential for managing related diseases.
Abstract:
The richly structured neuroendocrine control of the heart in health and disease requires, in addition to the autonomic nervous outflow, the essential contribute of various and often interacting humoral peptides (e.g. natriuretic peptides, Chromogranin-A-derived fragments, etc). In many cases, these molecules also influence the activity of other organ systems, including the gastrointestinal apparatus, in which they control mucosal function as well as motility and secretion. Interestingly, by acting centrally, some of these peptides also regulate satiety and appetite, thus forming an interesting link between cardiac and gastrointestinal function, and the feeding pattern. Prolonged inhibition and/or activation of these peptide pathways frequently results in severe and long-lasting dysfunctions, including cardiovascular diseases associated to alimentary disorders (e.g. obesity). Notably, their multifarious actions and mutual interactions make them excellent candidates for long-term resetting of both cardiac, gastrointestinal and nutrition homeostasis. Here we will provide only few examples taken from the quickly evolving scenario, with the purpose to provide indications concerning the complex circuits generated by multilevel signalling peptides, which contributes to orchestrate the association between cardiovascular, gastrointestinal and alimentary functions. This will highlight not only the complexity of the cardiovascular and GI regulatory networks, but also aspects of integration between feeding stimulating peptides and the other neuroendocrine systems affecting the heart and the GI tract.
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