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J Oral Maxillofac Surg ; 76(5): 972-981, 2018 May.
Article in English | MEDLINE | ID: mdl-29247623

ABSTRACT

PURPOSE: The aim of the present study was to evaluate the effect of alendronate (ALN) on the bone microarchitecture of irradiated rats with estrogen deficiency, using microcomputed tomography (micro-CT) and histomorphometric analysis. MATERIALS AND METHODS: Forty adult Wistar rats were subjected to ovariectomy and randomly divided into the following groups: control (CON), ALN, irradiated (IRR), and ALN/irradiated (ALN/IRR). Approximately 50 days after ovariectomy, the hind limbs of the rats in the IRR and ALN/IRR groups were irradiated with 15 Gy of x-radiation. The rats were euthanized 7 and 30 days after irradiation. The bone microarchitecture was analyzed using micro-CT and histomorphometry. The bone microarchitecture was evaluated using the Mann-Whitney U test, analysis of variance, and the post hoc Tukey test, with statistical significance set at 5%. RESULTS: Irradiation had increased the thickness of the cortical bone at 7 days (P < .05) and also decreased the number of trabeculae per unit length and increased the average distance between the trabeculae (P < .05) at 30 days. ALN inhibited the deleterious effect of x-radiation, preventing the distance between the trabeculae from increasing and the number of trabeculae per unit length from decreasing (P < .05). CONCLUSIONS: The present results have demonstrated that the initial effect of ALN could be positive, because it checked the deleterious action in the bone tissue submitted to x-radiation.


Subject(s)
Alendronate/pharmacology , Bone Density Conservation Agents/pharmacology , Bone Density/drug effects , Osteoporosis/prevention & control , Radiation Injuries, Experimental/prevention & control , Tibia/drug effects , Alendronate/therapeutic use , Animals , Bone Density Conservation Agents/therapeutic use , Female , Osteoporosis/diagnostic imaging , Osteoporosis/etiology , Osteoporosis/pathology , Ovariectomy , Radiation Injuries, Experimental/diagnostic imaging , Radiation Injuries, Experimental/pathology , Random Allocation , Rats , Rats, Wistar , Tibia/diagnostic imaging , Tibia/pathology , X-Ray Microtomography
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