CORE
CO
nnecting
RE
positories
Services
Services overview
Explore all CORE services
Access to raw data
API
Dataset
FastSync
Content discovery
Recommender
Discovery
OAI identifiers
OAI Resolver
Managing content
Dashboard
Bespoke contracts
Consultancy services
Support us
Support us
Membership
Sponsorship
Research partnership
About
About
About us
Our mission
Team
Blog
FAQs
Contact us
Community governance
Governance
Advisory Board
Board of supporters
Research network
Innovations
Our research
Labs
unknown
Cellular magnesium acquisition : an anomaly in embryonic cation homeostasis
Authors
Aikawa
Aikawa
+180 more
Alderdice
Allmann
Anderson
Arellano
Armstrong
Armstrong
Baker
Barri
Bartholmes
Bertram
Bianchi
Borei
Bregestovski
Bui
Campbell
Carrier
Chamnongpol
Chong
Cieslinski
Clegg
Coe
Coombs
Copeland
Copeland
Copeland
Copeland
Copeland
Cox
Crook
Culkin
D. Radford Shanklin
Diebler
Dill
Dittmar
Edelman
Eichhorn
Eisenman
Elin
Elin
Elin
Elin
Elin
Elisaf
Eyring
Fox
Frausto da Silva
Fullmer
Gard
Garner
Gill
Gitelman
Grabe
Green
Greenhalgh
Griffith
Grubbs
Guggino
Guggino
Gurdon
Haigney
Haigney
Hallak
Halperin
Haung
Heidemann
Henry
Henson
Hill
Hillman
Hmiel
Hoenderop
Hossler
Jacob
Karpen
Katoh
Kelepouris
Kelly
Kibrick
Kirber
Komatsu
Kost
Kucharski
Laurent
Laver
Lebeche
Levitt
Lichodziejewska
Lim
Loeb
Loeb
Loevinger
London
Lucero
Lunin
Lyman
Maguire
Maguire
Manery
Maples
Marshall
Martin
Marynick
Mason
Matsuda
McGuinness
McPherson
Medina
Mittendorf
Montes
Moody
Moody
Morris
Morris
Narins
Nicholas
Nijenhuis
Nishikimi
Nixon
Novak
Oberdorf
Okagaki
Oppenheimer
Orange
Packard
Paolisso
Paolisso
Park
Parpart
Pestell
Pfeffer
Portelli
Potts
Qin
Quamme
Raff
Rayner
Reamer
Reinhart
Reinhart
Resnick
Resnick
Riley
Rojas
Ruigh
Rutenberg
Ryzen
Ryzen
Samoilov
Scheinman
Schloerb
Scott
Scott
Shanklin
Shanklin
Shanklin
Shanklin
Shanklin
Shaw
Shi
Simon
Simonsen
Sjogren
Snavely
Stigson
Strewler
Sun
Taglietti
Taglietti
Thompson
Touys
Tredgold
Tveskov
Urdal
Van Liew
Wacker
Whitaker
Wood
Woodbury
Woodland
Zimmerberg
Publication date
14 March 2007
Publisher
'Elsevier BV'
Doi
Abstract
Author Posting. © The Author(s), 2007. This is the author's version of the work. It is posted here by permission of Elsevier B.V. for personal use, not for redistribution. The definitive version was published in Experimental and Molecular Pathology 83 (2007): 224-240, doi:10.1016/j.yexmp.2007.03.007.The intracellular dominance of magnesium ion makes clinical assessment difficult despite the critical role of Mg++ in many key functions of cells and enzymes. There is general consensus that serum Mg++ levels are not representative of the growing number of conditions for which magnesium is known to be important. There is no consensus method or sample source for testing for clinical purposes. High intracellular Mg++ in vertebrate embryos results in part from interactions of cations which influence cell membrane transport systems. These are functionally competent from the earliest stages, at least transiently held over from the unfertilized ovum. Kinetic studies with radiotracer cations, osmolar variations, media lacking one or more of the four biological cations, Na+, Mg++, K+, and Ca++, and metabolic poison 0.05 mEq/L NaF, demonstrated: (1) all four cations influence the behavior of the others, and (2) energy is required for uptake and efflux on different time scales, some against gradient. Na+ uptake is energy dependent against an efflux gradient. The rate of K+ loss is equal with or without fluoride, suggesting a lack of an energy requirement at these stages. Ca++ efflux took twice as long in the presence of fluoride, likely due in part to intracellular binding. Mg++ is anomalous in that early teleost vertebrate embryos have an intracellular content exceeding the surrounding sea water, an isolated unaffected yolk compartment, and a clear requirement for energy for both uptake and efflux. The physiological, pathological, and therapeutic roles of magnesium are poorly understood. This will change: (1) when 28Mg is once again generally available at a reasonable cost for both basic research and clinical assessment, and (2) when serum or plasma levels are determined simultaneously with intracellular values, preferably as part of complete four cation profiles. Atomic absorption spectrophotometry, energy-dispersive x-ray analysis, and inductively coupled plasma emission spectroscopy on sublingual mucosal and peripheral blood samples are potential methods of value for coordinated assessments.AEC Grant No. 134
Similar works
Full text
Open in the Core reader
Download PDF
Available Versions
Crossref
See this paper in CORE
Go to the repository landing page
Download from data provider
Last time updated on 01/04/2019
Woods Hole Open Access Server
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:darchive.mblwhoilibrary.or...
Last time updated on 08/06/2012