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Titlebook: Sodium and Water Homeostasis; Comparative, Evoluti Kelly Anne Hyndman,Thomas L. Pannabecker Book 2015 American Physiological Society 2015 A

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書目名稱Sodium and Water Homeostasis
副標(biāo)題Comparative, Evoluti
編輯Kelly Anne Hyndman,Thomas L. Pannabecker
視頻videohttp://file.papertrans.cn/871/870397/870397.mp4
概述Features current innovative topics in the field of sodium and water homeostasis.Features domestic and international contributions from experts in the field.Covers multiple organ systems and cellular p
叢書名稱Physiology in Health and Disease
圖書封面Titlebook: Sodium and Water Homeostasis; Comparative, Evoluti Kelly Anne Hyndman,Thomas L. Pannabecker Book 2015 American Physiological Society 2015 A
描述.This book presents cutting edge methods that provide insights into the pathways by which salt and water traverse cell membranes and flow in an orchestrated fashion amongst the many compartments of the body. It focuses on a number of molecular, cellular and whole animal studies that involve multiple physiological systems and shows how the internal milieu is regulated by multifactorial gene regulation, molecular signaling, and cell and organ architecture..Topics covered include: water channels, the urinary concentrating mechanism, angiotensin, the endothelin system, miRNAs and MicroRNA in osmoregulation, desert-adapted mammals, the giraffe kidney, mosquito Malpighian tubules, and circadian rhythms. The book highlights how different approaches to explaining the same physiological processes greatly increase our understanding of these fundamental processes. Greater integration of comparative, evolutionary and genetic animal models in basic science and medical science will improve our overall grasp of the mechanisms of sodium and water balance..
出版日期Book 2015
關(guān)鍵詞Angiotensin; Aquaporins; Circadian rhythm; Endothelin; Homeostasis; Ion transport; Kidney; Osmoregulation; U
版次1
doihttps://doi.org/10.1007/978-1-4939-3213-9
isbn_softcover978-1-4939-7999-8
isbn_ebook978-1-4939-3213-9Series ISSN 2625-252X Series E-ISSN 2625-2538
issn_series 2625-252X
copyrightAmerican Physiological Society 2015
The information of publication is updating

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Angiotensin II and Water Balance in Amphibians, sodium concentration in anurans inhabiting different environments. Ang II receptors (AT1R and AT2R) were cloned and their mRNA expression was found in brain, skin, kidney, and urinary bladder. In amphibians, various types of water channel (aquaporins) and ion channels, transporters, and pumps used
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Genetic Manipulation of the Endothelin System,g pathway is necessary for facial and cardiovascular formation, while ET-3/ECE-1/ET. signaling pathway is important for creation of neural crest-derived enteric neurons and epidermal melanocytes during embryonic development. Furthermore, cell-specific deletion of the ET system in the renal collectin
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MicroRNA and Sodium and Water Balance in Mammals,and transporters that mediate movement of ions across the plasma membrane. MicroRNAs influence fluid and electrolyte balance by regulation of genes involved in transport of electrolytes. In addition to channels and transporters, there are also neurohumoral factors that can be regulated by microRNAs
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Non-traditional Models: The Molecular Physiology of Sodium and Water Transport in Mosquito Malpighide an accessible comparative model system for understanding the evolution of Na. and water transport in animal epithelia, and present potential physiological targets to exploit in the control of disease vectors.
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