Literature DB >> 1790417

Fluoride-induced bone changes in lambs during and after exposure to sodium fluoride.

P Chavassieux1, P Pastoureau, G Boivin, M C Chapuy, P D Delmas, G Milhaud, P J Meunier.   

Abstract

The evolution of bone changes induced by fluoride after the end of exposure was investigated in lambs. Sodium fluoride (NaF) was given orally at a dose of 3.5 mg/kg per day to 14 animals for 120 days. A group of 7 control and 7 treated lambs was slaughtered at the end of NaF administration (T120) and another group 120 days after the end of NaF exposure (T240). At T120, the bone fluoride content (BFC) was very significantly increased in treated animals. The histomorphometric analysis confirmed that fluoride induces an increase in bone formation (the osteoid perimeter and area were 3-fold and 4.5-fold higher respectively in treated than in control animals). The number of osteoblasts was significantly augmented. Serum osteocalcin level was twice as high in treated animals compared with controls. The bone formation rate at the tissue level (BFR) doubled after treatment, but the apposition rate (Aj.AR) was half that in the control group. The mineralization lag time (Mlt) was 120 days in treated animals compared with 42 days in controls. At T240, BFC had decreased by 50% compared with the level at T120, but it was still significantly higher than in controls. The osteoid and osteoblastic parameters were 2 and 1.3 times higher than in control animals. BFR remained significantly increased in treated animals, but Aj.AR and Mlt were similar in control and treated animals. In conclusion, after 4 months of NaF exposure fluoride induced an increase in osteoblast natality and bone formation at the tissue level, associated with a toxic effect at the individual cell level.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1991        PMID: 1790417     DOI: 10.1007/bf01627075

Source DB:  PubMed          Journal:  Osteoporos Int        ISSN: 0937-941X            Impact factor:   4.507


  21 in total

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5.  Effect of fluoride treatment on the fracture rate in postmenopausal women with osteoporosis.

Authors:  B L Riggs; S F Hodgson; W M O'Fallon; E Y Chao; H W Wahner; J M Muhs; S L Cedel; L J Melton
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6.  Fluoride content in human iliac bone: results in controls, patients with fluorosis, and osteoporotic patients treated with fluoride.

Authors:  G Boivin; M C Chapuy; C A Baud; P J Meunier
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7.  Treatment of osteoporosis with fluoride, calcium, and vitamin D.

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Authors:  P Pastoureau; B Merle; P D Delmas
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9.  Effect of the fluoride/calcium regimen on vertebral fracture occurrence in postmenopausal osteoporosis. Comparison with conventional therapy.

Authors:  B L Riggs; E Seeman; S F Hodgson; D R Taves; W M O'Fallon
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  4 in total

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3.  Phenytoin and fluoride act in concert to stimulate bone formation and to increase bone volume in adult male rats.

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  4 in total

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