Objective. This study investigated the influence of fluoride levels on the temporal synthesis of bone-associated glycoproteins, which have been assigned prominent roles in regulating crystal growth, size and shape during the mineralization process. Materials and methods. Bone marrow stromal cells were isolated from male Wistar rats and cultured under mineralizing conditions, supplemented with 0 M, 10−7 M or 10−5 M sodium fluoride. The presence of bone-associated glycoproteins was examined 2–13 days post-reseeding by immunocytochemical localization. Results. All bone-associated glycoproteins increased in 10−7 M fluoride, compared to untreated controls, particularly at days 6 and 13 in culture. Conversely, higher 10−5 M fluoride concentration...
Exposure to high fluoride concentrations in the immediate environment of the tissue is recognized to...
Anorganic preparations of femurs from rats given 150 ppm fluoride in the drinking water for 10 wk re...
Fluoride is known to influence mineralisation patterns within dentine, where alterations in the post...
Objective. This study investigated the influence of fluoride levels on the temporal synthesis of bon...
Fluoride is known to alter mineralization within bone, although the mechanism for its action is uncl...
In an effort to assess the effects of F on overall bone metabolism, cultures of osteoblastic cells i...
The femurs from rats given 120 ppm fluoride in their drinking water for 4 weeks were examined with h...
Abstract: Fluoride as a supplement can affect the structural integrity of bone. Fluoride that is inc...
This dissertation was designed to test the hypothesis that fluoride-stimulated osteoblast proliferat...
This study aimed to characterize fluoride-induced alterations in dentin mineralization within a dent...
Objective. Experimental study of bone tissue metabolism and mechanisms of mineral homeostasis regula...
ABSTRACT: Over the past two decades, fluoride effects on osteoclasts have been evaluated; however, i...
Genetic factors influence the effects of fluoride (F) on amelogenesis and bone homeostasis but the u...
AbstractFluoride is known to influence mineralisation patterns within dentine, where alterations in ...
Exposure to high fluoride concentrations in the immediate environment of the tissue is recognized to...
Anorganic preparations of femurs from rats given 150 ppm fluoride in the drinking water for 10 wk re...
Fluoride is known to influence mineralisation patterns within dentine, where alterations in the post...
Objective. This study investigated the influence of fluoride levels on the temporal synthesis of bon...
Fluoride is known to alter mineralization within bone, although the mechanism for its action is uncl...
In an effort to assess the effects of F on overall bone metabolism, cultures of osteoblastic cells i...
The femurs from rats given 120 ppm fluoride in their drinking water for 4 weeks were examined with h...
Abstract: Fluoride as a supplement can affect the structural integrity of bone. Fluoride that is inc...
This dissertation was designed to test the hypothesis that fluoride-stimulated osteoblast proliferat...
This study aimed to characterize fluoride-induced alterations in dentin mineralization within a dent...
Objective. Experimental study of bone tissue metabolism and mechanisms of mineral homeostasis regula...
ABSTRACT: Over the past two decades, fluoride effects on osteoclasts have been evaluated; however, i...
Genetic factors influence the effects of fluoride (F) on amelogenesis and bone homeostasis but the u...
AbstractFluoride is known to influence mineralisation patterns within dentine, where alterations in ...
Exposure to high fluoride concentrations in the immediate environment of the tissue is recognized to...
Anorganic preparations of femurs from rats given 150 ppm fluoride in the drinking water for 10 wk re...
Fluoride is known to influence mineralisation patterns within dentine, where alterations in the post...