Tuesday, September 19, 2017

Hormone Histamine: Histamine and smooth muscle cells

Kyle J. Norton(Scholar and Master of Nutrients, all right reserved)
Health article writer and researcher; Over 10.000 articles and research papers have been written and published on line, including world wide health, ezine articles, article base, healthblogs, selfgrowth, best before it's news, the karate GB daily, etc.,.
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Some articles have been used as references in medical research, such as international journal Pharma and Bio science, ISSN 0975-6299.                     

                                 Hormone Histamine

Histamine, found within granules of basophils and mast cells (>90% of body stores) is a biogenic amine and an organic nitrogen compound that occurs to various degrees in many foods such as cherries to about 0.17-13.46 ng/g, bananas and grapes, rice and cereals, herbs, olive oil, wine, beer, etc.. In healthy persons, dietary histamine can be rapidly detoxified by amine oxidases, whereas persons with low amine oxidase activity are at risk of histamine toxicity(a). the hormone, as a neurotransmitter is involved in regulating physiological function in the gut and immune response to foreign pathogens.

     Histamine: Histamine and smooth muscle cells



Acoording to the study by The University of Tennessee, histamine markedly induces protein kinase D (PKD) activation in human aortic smooth muscle cells (HASMCs). PKD belongs to a family of serine/threonine protein kinases, and its function in vascular disease is largely unknown. Histamine-induced PKD phosphorylation is dependent on the activation of histamine receptor 1 (H1) and protein kinase C (PKC). PKD2 predominantly mediates histamine-induced TF expression via the p38 MAPK pathway, while PKD1 mediates histamine-induced TF expression through a p38 MAPK-independent pathway. PKD is a new component in histamine signaling in live cells and that PKD has a novel function in the histamine signaling pathway leading to gene expression, as evidenced by TF expression. Importantly, our data reveal a regulatory link from histamine to PKD and TF, providing new insights into the mechanisms of coagulation and the development of atherothrombosis(13).

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Sources
(a) http://www.ncbi.nlm.nih.gov/pubmed/17490952
(13) http://www.ncbi.nlm.nih.gov/pubmed/23001835

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