International audienceThe body maintains Mg(2+) homeostasis by renal and intestinal (re)absorption. However, the molecular mechanisms that mediate transepithelial Mg(2+) transport are largely unknown. Transient receptor potential melastatin 6 (TRPM6) was recently identified and shown to function in active epithelial Mg(2+) transport in intestine and kidney. To define the relationship between Mg(2+) status and TRPM6 expression, we used two models of hypomagnesemia: 1) C57BL/6J mice fed a mildly or severely Mg(2+)-deficient diet, and 2) mice selected for either low (MgL) or high (MgH) erythrocyte and plasma Mg(2+) status. In addition, the mice were subjected to a severely Mg(2+)-deficient diet. Our results show that C57BL/6J mice fed a severe...
AbstractHuman magnesium homeostasis primarily depends on the balance between intestinal absorption a...
Mg2+ regulates many physiological processes and signalling pathways. However, little is known about ...
Mg2+ regulates many physiological processes and signalling pathways. However, little is known about ...
The body maintains Mg(2+) homeostasis by renal and intestinal (re)absorption. However, the molecular...
Item does not contain fulltextThe body maintains Mg(2+) homeostasis by renal and intestinal (re)abso...
The kidney is the principal organ responsible for the regulation of the body Mg(2+) balance. Identif...
The kidney is the principal organ responsible for the regulation of the body Mg2 balance. Identific...
Contains fulltext : 49773.pdf (publisher's version ) (Open Access)The kidney is th...
BACKGROUND: Hypomagnesemia with secondary hypocalcemia is due to disturbed renal and intestinal magn...
Contains fulltext : 57440.pdf (Publisher’s version ) (Open Access)Mg2+ is an essen...
BACKGROUND: Magnesium (Mg(2+)) is an essential electrolyte with important physiological functions. C...
The past decade has witnessed multiple advances in our understanding of magnesium (Mg(2+)) homeostas...
Mg2+ is an essential ion involved in a multitude of physiological and biochemical processes and a ma...
Contains fulltext : 98486.pdf (publisher's version ) (Closed access)BACKGROUND: Hy...
The overall aim of the research presented in this thesis was to elucidate the molecular mechanisms o...
AbstractHuman magnesium homeostasis primarily depends on the balance between intestinal absorption a...
Mg2+ regulates many physiological processes and signalling pathways. However, little is known about ...
Mg2+ regulates many physiological processes and signalling pathways. However, little is known about ...
The body maintains Mg(2+) homeostasis by renal and intestinal (re)absorption. However, the molecular...
Item does not contain fulltextThe body maintains Mg(2+) homeostasis by renal and intestinal (re)abso...
The kidney is the principal organ responsible for the regulation of the body Mg(2+) balance. Identif...
The kidney is the principal organ responsible for the regulation of the body Mg2 balance. Identific...
Contains fulltext : 49773.pdf (publisher's version ) (Open Access)The kidney is th...
BACKGROUND: Hypomagnesemia with secondary hypocalcemia is due to disturbed renal and intestinal magn...
Contains fulltext : 57440.pdf (Publisher’s version ) (Open Access)Mg2+ is an essen...
BACKGROUND: Magnesium (Mg(2+)) is an essential electrolyte with important physiological functions. C...
The past decade has witnessed multiple advances in our understanding of magnesium (Mg(2+)) homeostas...
Mg2+ is an essential ion involved in a multitude of physiological and biochemical processes and a ma...
Contains fulltext : 98486.pdf (publisher's version ) (Closed access)BACKGROUND: Hy...
The overall aim of the research presented in this thesis was to elucidate the molecular mechanisms o...
AbstractHuman magnesium homeostasis primarily depends on the balance between intestinal absorption a...
Mg2+ regulates many physiological processes and signalling pathways. However, little is known about ...
Mg2+ regulates many physiological processes and signalling pathways. However, little is known about ...