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Endocrinology ; 125(2): 810-6, 1989 Aug.
Article in English | MEDLINE | ID: mdl-2502377

ABSTRACT

This study was designed to test the hypothesis that endocrine and pharmacological suppressors of bone turnover prevent the development of osteopenia during estrogen deficiency. Sham-operated control and ovariectomized (OVX) rats were treated intermittently with vehicle alone, estrogen, or the diphosphonate compounds etidronate disodium (EHDP) and NE-58095 [2-(3-pyridinyl)2-hydroxyethylidene-1,1-bisphosphonate disodium] for 35 or 70 days after surgery. Their proximal tibiae were processed undecalcified for quantitative bone histomorphometry. Vehicle-treated OVX rats were characterized by decreased cancellous bone volume and 3- to 4-fold increases in osteoblast surface, osteoclast surface, bone formation rate, and bone resorption rate. Treatment of OVX rats with estrogen and NE-58095 provided complete protection against bone loss and significantly depressed all of the above indices of bone turnover. OVX rats treated with EHDP exhibited at least partial protection against bone loss and decreased bone turnover. EHDP induced a mild mineralization defect, as indicated by a prolonged mineralization lag time at the tibial endocortical surface. The new diphosphonate compound NE-58095 did not impair bone mineralization. Our results indicate that endocrine and pharmacological suppressors of bone turnover prevent the development of osteopenia during the early stages of estrogen deficiency. If confirmed by clinical trials in humans, diphosphonate compounds may prove to be an alternative to estrogen for the prevention of postmenopausal bone loss.


Subject(s)
Bone Diseases, Metabolic/prevention & control , Bone and Bones/metabolism , Diphosphonates/pharmacology , Estrogens/pharmacology , Ovariectomy , Animals , Bone Diseases, Metabolic/drug therapy , Bone and Bones/drug effects , Diphosphonates/therapeutic use , Disease Models, Animal , Estrogens/therapeutic use , Etidronic Acid/analogs & derivatives , Etidronic Acid/pharmacology , Female , Osteoporosis/drug therapy , Rats , Rats, Inbred Strains
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