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SUN-266 Protein Induced Pancreatic Hormone Secretion Is Modulated by Vagal CaSR
The existence of a vago-vagal entero-pancreatic pathway, where sensory information from the gut can signal via vagal afferents to the brain to mediate changes in pancreatic function, has been recognised for over a century, and investigated extensively with regards to pancreatic exocrine secretions....
Autores principales: | , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7208669/ http://dx.doi.org/10.1210/jendso/bvaa046.1776 |
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author | Norton, Mariana Cork, Simon C Alonso, Aldara Martin Roberts, Anna G Patel, Yateen S Cheng, Sijing Hansford, Robert Cao, Ye Salem, Victoria Hanyaloglu, Aylin Carla Chang, Wenhan Murphy, Kevin Graeme |
author_facet | Norton, Mariana Cork, Simon C Alonso, Aldara Martin Roberts, Anna G Patel, Yateen S Cheng, Sijing Hansford, Robert Cao, Ye Salem, Victoria Hanyaloglu, Aylin Carla Chang, Wenhan Murphy, Kevin Graeme |
author_sort | Norton, Mariana |
collection | PubMed |
description | The existence of a vago-vagal entero-pancreatic pathway, where sensory information from the gut can signal via vagal afferents to the brain to mediate changes in pancreatic function, has been recognised for over a century, and investigated extensively with regards to pancreatic exocrine secretions. However, the role of such pathways in pancreatic endocrine secretions has received less attention. The secretion of insulin and glucagon in response to protein and amino acids is conserved across species. This effect is thought to promote amino acid uptake into tissues without concomitant hypoglycaemia. We found that the essential amino acid L-Phenylalanine potently stimulates glucagon secretion, even when administered directly into the gut at small doses unlikely to significantly raise systematic levels. Administration of L-Phenylalanine also increased neuronal activation in the rat and mouse dorsal vagal complex, the central nervous system region directly innervated by vagal afferents. L-Phenylalanine modulates the activity of the calcium sensing receptor (CaSR), a nutrient sensor more commonly known for its role in calcium homeostasis, but which is thought to also act as a sensor of aromatic amino acids. Interestingly, the CaSR is one of the few nutrient sensors expressed in vagal afferents and in vitro calcium imaging revealed CaSR synthetic agonists activate subpopulations of vagal afferents. The role of CaSR in vivo was investigated further by selectively knocking down the CaSR in vagal afferents. Briefly, CaSR floxed mice were bilaterally injected directly into the nodose ganglion, where the cell bodies of vagal afferents are located, with a cre expressing adeno-associated virus. CaSR knockdown did not interfere with normal food intake, nor the vagal-dependent anorectic effects of cholecystokinin, or of L-Phenylalanine. However, it did blunt protein-induced glucagon secretion, suggesting involvement of the CaSR in the vagus nerve in protein sensing and glucose homeostasis. Future studies are required to determine the importance of vagal CaSR in protein induced pancreatic endocrine secretions, and the possibility of exploiting this circuit to develop new anti-diabetic therapies. |
format | Online Article Text |
id | pubmed-7208669 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-72086692020-05-13 SUN-266 Protein Induced Pancreatic Hormone Secretion Is Modulated by Vagal CaSR Norton, Mariana Cork, Simon C Alonso, Aldara Martin Roberts, Anna G Patel, Yateen S Cheng, Sijing Hansford, Robert Cao, Ye Salem, Victoria Hanyaloglu, Aylin Carla Chang, Wenhan Murphy, Kevin Graeme J Endocr Soc Neuroendocrinology and Pituitary The existence of a vago-vagal entero-pancreatic pathway, where sensory information from the gut can signal via vagal afferents to the brain to mediate changes in pancreatic function, has been recognised for over a century, and investigated extensively with regards to pancreatic exocrine secretions. However, the role of such pathways in pancreatic endocrine secretions has received less attention. The secretion of insulin and glucagon in response to protein and amino acids is conserved across species. This effect is thought to promote amino acid uptake into tissues without concomitant hypoglycaemia. We found that the essential amino acid L-Phenylalanine potently stimulates glucagon secretion, even when administered directly into the gut at small doses unlikely to significantly raise systematic levels. Administration of L-Phenylalanine also increased neuronal activation in the rat and mouse dorsal vagal complex, the central nervous system region directly innervated by vagal afferents. L-Phenylalanine modulates the activity of the calcium sensing receptor (CaSR), a nutrient sensor more commonly known for its role in calcium homeostasis, but which is thought to also act as a sensor of aromatic amino acids. Interestingly, the CaSR is one of the few nutrient sensors expressed in vagal afferents and in vitro calcium imaging revealed CaSR synthetic agonists activate subpopulations of vagal afferents. The role of CaSR in vivo was investigated further by selectively knocking down the CaSR in vagal afferents. Briefly, CaSR floxed mice were bilaterally injected directly into the nodose ganglion, where the cell bodies of vagal afferents are located, with a cre expressing adeno-associated virus. CaSR knockdown did not interfere with normal food intake, nor the vagal-dependent anorectic effects of cholecystokinin, or of L-Phenylalanine. However, it did blunt protein-induced glucagon secretion, suggesting involvement of the CaSR in the vagus nerve in protein sensing and glucose homeostasis. Future studies are required to determine the importance of vagal CaSR in protein induced pancreatic endocrine secretions, and the possibility of exploiting this circuit to develop new anti-diabetic therapies. Oxford University Press 2020-05-08 /pmc/articles/PMC7208669/ http://dx.doi.org/10.1210/jendso/bvaa046.1776 Text en © Endocrine Society 2020. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com |
spellingShingle | Neuroendocrinology and Pituitary Norton, Mariana Cork, Simon C Alonso, Aldara Martin Roberts, Anna G Patel, Yateen S Cheng, Sijing Hansford, Robert Cao, Ye Salem, Victoria Hanyaloglu, Aylin Carla Chang, Wenhan Murphy, Kevin Graeme SUN-266 Protein Induced Pancreatic Hormone Secretion Is Modulated by Vagal CaSR |
title | SUN-266 Protein Induced Pancreatic Hormone Secretion Is Modulated by Vagal CaSR |
title_full | SUN-266 Protein Induced Pancreatic Hormone Secretion Is Modulated by Vagal CaSR |
title_fullStr | SUN-266 Protein Induced Pancreatic Hormone Secretion Is Modulated by Vagal CaSR |
title_full_unstemmed | SUN-266 Protein Induced Pancreatic Hormone Secretion Is Modulated by Vagal CaSR |
title_short | SUN-266 Protein Induced Pancreatic Hormone Secretion Is Modulated by Vagal CaSR |
title_sort | sun-266 protein induced pancreatic hormone secretion is modulated by vagal casr |
topic | Neuroendocrinology and Pituitary |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7208669/ http://dx.doi.org/10.1210/jendso/bvaa046.1776 |
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