The contribution of magnesium to cell differentiation is not clear. Some studies indicate that low extracellular magnesium promotes cell differentiation, while others reach opposite conclusions. We evaluated the effects of different concentrations of extracellular magnesium on the differentiation of three in vitro experimental models: human endothelial cells seeded onto Matrigel, phorbol ester-treated myeloid leukemia U937 cells, and 3T3-L1 pre-adipocytes exposed to a hormonal cocktail containing dexamethasone and insulin. The differentiation of endothelial cells and pre-adipocytes seems to be independent of extracellular Mg concentration. Conversely, magnesium deficiency retards, while high extracellular magnesium accelerates phorbol ester...
The purpose of this review is to summarize experimental findings showing that magnesium modulates ce...
peer reviewedMagnesium is an important ion in all living cells being a cofactor of many enzymes, esp...
In this study, we explore the behaviour of intracellular magnesium during bone phenotype modulation ...
Several studies in humans indicate that both high and low concentrations of magnesium have harmful e...
The hematopoietic U937 cells are able to differentiate into monocytes, macrophages, or osteoclasts w...
Divalent cations, especially calcium and magnesium, have been shown to play an important regulatory ...
Magnesium plays a pivotal role in energy metabolism and in the control of cell growth. While magnesi...
The differing bioavailability of magnesium salts remains an open question, both at the cellular and ...
The differing bioavailability of magnesium salts remains an open question, both at the cellular and ...
Magnesium (Mg) is crucial for bone health. Low concentrations of Mg inhibit the activity of osteobla...
Magnesium (Mg) is crucial for bone health. Low concentrations of Mg inhibit the activity of osteobla...
Evidence has accumulated to suggest that magnesium might play a role in controlling angiogenesis. Si...
<p><strong>Aim.</strong> To study the effect of magnesium orotate, magnesium/pyridoxine combination ...
Magnesium has been shown to effectively prevent vascular calcification associated with chronic kidne...
To study the role of Magnesium in the regulation of cell proliferation we characterized the prolifer...
The purpose of this review is to summarize experimental findings showing that magnesium modulates ce...
peer reviewedMagnesium is an important ion in all living cells being a cofactor of many enzymes, esp...
In this study, we explore the behaviour of intracellular magnesium during bone phenotype modulation ...
Several studies in humans indicate that both high and low concentrations of magnesium have harmful e...
The hematopoietic U937 cells are able to differentiate into monocytes, macrophages, or osteoclasts w...
Divalent cations, especially calcium and magnesium, have been shown to play an important regulatory ...
Magnesium plays a pivotal role in energy metabolism and in the control of cell growth. While magnesi...
The differing bioavailability of magnesium salts remains an open question, both at the cellular and ...
The differing bioavailability of magnesium salts remains an open question, both at the cellular and ...
Magnesium (Mg) is crucial for bone health. Low concentrations of Mg inhibit the activity of osteobla...
Magnesium (Mg) is crucial for bone health. Low concentrations of Mg inhibit the activity of osteobla...
Evidence has accumulated to suggest that magnesium might play a role in controlling angiogenesis. Si...
<p><strong>Aim.</strong> To study the effect of magnesium orotate, magnesium/pyridoxine combination ...
Magnesium has been shown to effectively prevent vascular calcification associated with chronic kidne...
To study the role of Magnesium in the regulation of cell proliferation we characterized the prolifer...
The purpose of this review is to summarize experimental findings showing that magnesium modulates ce...
peer reviewedMagnesium is an important ion in all living cells being a cofactor of many enzymes, esp...
In this study, we explore the behaviour of intracellular magnesium during bone phenotype modulation ...