Calcitonin gene-related peptide is a key neurotransmitter in the neuro-immune axis
The question of how the neural and immune systems interact in host defense is important, integrating a system that senses the whole body with one that protects. Understanding the mechanisms and routes of control could produce novel and powerful ways of promoting and enhancing normal functions as wel...
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Published in | Frontiers in neuroscience Vol. 8; p. 23 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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14.02.2014
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Abstract | The question of how the neural and immune systems interact in host defense is important, integrating a system that senses the whole body with one that protects. Understanding the mechanisms and routes of control could produce novel and powerful ways of promoting and enhancing normal functions as well as preventing or treating abnormal functions. Fragmentation of biological research into specialities has resulted in some failures in recognizing and understanding interactions across different systems and this is most striking across immunology, hematology, and neuroscience. This reductionist approach does not allow understanding of the in vivo orchestrated response generated through integration of all systems. However, many factors make the understanding of multisystem cross-talk in response to a threat difficult, for instance the nervous and immune systems share communication molecules and receptors for a wide range of physiological signals. But, it is clear that physical, hard-wired connections exist between the two systems, with the key link involving sensory, unmyelinated nerve fibers (c fibers) containing the neuropeptide calcitonin gene-related peptide (CGRP), and modified macrophages, mast cells and other immune and host defense cells in various locations throughout the body. In this review we will therefore focus on the induction of CGRP and its key role in the neuroimmune axis. |
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AbstractList | The question of how the neural and immune systems interact in host defense is important, integrating a system that senses the whole body with one that protects. Understanding the mechanisms and routes of control could produce novel and powerful ways of promoting and enhancing normal functions as well as preventing or treating abnormal functions. Fragmentation of biological research into specialities has resulted in some failures in recognizing and understanding interactions across different systems and this is most striking across immunology, hematology, and neuroscience. This reductionist approach does not allow understanding of the
in vivo
orchestrated response generated through integration of all systems. However, many factors make the understanding of multisystem cross-talk in response to a threat difficult, for instance the nervous and immune systems share communication molecules and receptors for a wide range of physiological signals. But, it is clear that physical, hard-wired connections exist between the two systems, with the key link involving sensory, unmyelinated nerve fibers (c fibers) containing the neuropeptide calcitonin gene-related peptide (CGRP), and modified macrophages, mast cells and other immune and host defense cells in various locations throughout the body. In this review we will therefore focus on the induction of CGRP and its key role in the neuroimmune axis. The question of how the neural and immune systems interact in host defence is important, integrating a system that senses the whole body with one that protects. Understanding the mechanisms and routes of control could produce novel and powerful ways of promoting and enhancing normal functions as well as preventing or treating abnormal functions. Fragmentation of biological research into specialities has resulted in some failures in recognising and understanding interactions across different systems and this is most striking across immunology, haematology and neuroscience. This reductionist approach does not allow understanding of the in vivo orchestrated response generated through integration of all systems. However, many factors make the understanding of multisystem cross-talk in response to a threat difficult, for instance the nervous and immune systems share communication molecules and receptors for a wide range of physiological signals. But, it is clear that physical, hard-wired connections exist between the two systems, with the key link involving sensory, unmyelinated nerve fibres (c fibres) containing the neuropeptide calcitonin gene-related peptide (CGRP), and modified macrophages, mast cells and other immune and host defence cells in various locations throughout the body. In this review we will therefore focus on the induction of CGRP and its key role in the neuroimmune axis. The question of how the neural and immune systems interact in host defense is important, integrating a system that senses the whole body with one that protects. Understanding the mechanisms and routes of control could produce novel and powerful ways of promoting and enhancing normal functions as well as preventing or treating abnormal functions. Fragmentation of biological research into specialities has resulted in some failures in recognizing and understanding interactions across different systems and this is most striking across immunology, hematology, and neuroscience. This reductionist approach does not allow understanding of the in vivo orchestrated response generated through integration of all systems. However, many factors make the understanding of multisystem cross-talk in response to a threat difficult, for instance the nervous and immune systems share communication molecules and receptors for a wide range of physiological signals. But, it is clear that physical, hard-wired connections exist between the two systems, with the key link involving sensory, unmyelinated nerve fibers (c fibers) containing the neuropeptide calcitonin gene-related peptide (CGRP), and modified macrophages, mast cells and other immune and host defense cells in various locations throughout the body. In this review we will therefore focus on the induction of CGRP and its key role in the neuroimmune axis. |
Author | Miyan, Jaleel A Pennock, Joanne I Assas, Bakri M |
AuthorAffiliation | 2 Department of Immunology, Faculty of Applied Sciences, King Abdulaziz University Jeddah, Saudi Arabia 3 Neurosciences, Faculty of Life Sciences, The University of Manchester Manchester, UK 1 Translational Medicine, Faculty of Medical and Human Sciences, The University of Manchester Manchester, UK |
AuthorAffiliation_xml | – name: 2 Department of Immunology, Faculty of Applied Sciences, King Abdulaziz University Jeddah, Saudi Arabia – name: 3 Neurosciences, Faculty of Life Sciences, The University of Manchester Manchester, UK – name: 1 Translational Medicine, Faculty of Medical and Human Sciences, The University of Manchester Manchester, UK |
Author_xml | – sequence: 1 givenname: Bakri M surname: Assas fullname: Assas, Bakri M organization: Translational Medicine, Faculty of Medical and Human Sciences, The University of Manchester Manchester, UK ; Department of Immunology, Faculty of Applied Sciences, King Abdulaziz University Jeddah, Saudi Arabia – sequence: 2 givenname: Joanne I surname: Pennock fullname: Pennock, Joanne I organization: Translational Medicine, Faculty of Medical and Human Sciences, The University of Manchester Manchester, UK – sequence: 3 givenname: Jaleel A surname: Miyan fullname: Miyan, Jaleel A organization: Neurosciences, Faculty of Life Sciences, The University of Manchester Manchester, UK |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/24592205$$D View this record in MEDLINE/PubMed |
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ContentType | Journal Article |
Copyright | 2014. This work is licensed under http://creativecommons.org/licenses/by/3.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. Copyright © 2014 Assas, Pennock and Miyan. 2014 |
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Keywords | neuroimmunology TRPV1 TNF-alpha CGRP C fibers gut-brain axis |
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Title | Calcitonin gene-related peptide is a key neurotransmitter in the neuro-immune axis |
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