Vanadium is a trace element present in practically all cells in plants and animals. It exerts interesting actions in living systems. At pharmacological doses, vanadium compounds display relevant biological actions such as mimicking insulin and growth factors as well as having osteogenic activity. Some vanadium compounds also show antitumoral properties. The importance of vanadium in bone arises from the studies developed to establish the essentiality of this element in animals and humans. Bone tissue, where the element seems to play an important role, accumulates great amounts of vanadium. This paper reviews the physiology of osteoblasts, the involvement of different growth factors on bone development, and the effects of vanadium derivative...
Vanadium compounds show interesting biological and pharmacological properties. Some of them display ...
Vanadium is an ultratrace element present in higher plants, animals, algae, and bacteria. In recent ...
Protein phosphorylation and dephosphorylation regulate much of the machinery of the cell. Emphasis i...
Vanadium compounds mimic insulin actions in different cell types. The present study concerns the ins...
We have previously shown that different vanadium(IV) complexes regulate osteoblastic growth. Since v...
We have previously shown that different vanadium(IV) complexes regulate osteoblastic growth. Since v...
Osteoblastogenesis is an essential part of the bone healing process. Insulin has been shown to impro...
The effect of different vanadium compounds on proliferation and differentiation was examined in oste...
The effect of different vanadium compounds on proliferation and differentiation was examined in oste...
Vanadium is a trace element widely distributed in the environment. In vertebrates it is mainly store...
Vanadate, one of the most relevant forms of vanadium in solution, has been associated with the regul...
The cytotoxicity and free radical production induced by vanadium compounds were investigated in an o...
Vanadate is known for mimicking insulin action through activation of insulin and/or insulin like gro...
Vanadium compounds display important pharmacological actions in vivo and in vitro systems. Semicarba...
Vanadium is a transition metal that occurs naturally in a variety of minerals and exhibits an except...
Vanadium compounds show interesting biological and pharmacological properties. Some of them display ...
Vanadium is an ultratrace element present in higher plants, animals, algae, and bacteria. In recent ...
Protein phosphorylation and dephosphorylation regulate much of the machinery of the cell. Emphasis i...
Vanadium compounds mimic insulin actions in different cell types. The present study concerns the ins...
We have previously shown that different vanadium(IV) complexes regulate osteoblastic growth. Since v...
We have previously shown that different vanadium(IV) complexes regulate osteoblastic growth. Since v...
Osteoblastogenesis is an essential part of the bone healing process. Insulin has been shown to impro...
The effect of different vanadium compounds on proliferation and differentiation was examined in oste...
The effect of different vanadium compounds on proliferation and differentiation was examined in oste...
Vanadium is a trace element widely distributed in the environment. In vertebrates it is mainly store...
Vanadate, one of the most relevant forms of vanadium in solution, has been associated with the regul...
The cytotoxicity and free radical production induced by vanadium compounds were investigated in an o...
Vanadate is known for mimicking insulin action through activation of insulin and/or insulin like gro...
Vanadium compounds display important pharmacological actions in vivo and in vitro systems. Semicarba...
Vanadium is a transition metal that occurs naturally in a variety of minerals and exhibits an except...
Vanadium compounds show interesting biological and pharmacological properties. Some of them display ...
Vanadium is an ultratrace element present in higher plants, animals, algae, and bacteria. In recent ...
Protein phosphorylation and dephosphorylation regulate much of the machinery of the cell. Emphasis i...