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The effect of chronic nicotine administration on bone mineral content and bone strength in normal and castrated male rats
Broulik Petr D., Rosenkrancová J, Růzicka P, Sedlácek R, Kurcová I.
Language English Country Germany
Document type Comparative Study
Grant support
NB7508
MZ0
CEP Register
Digital library NLK
Full text - Část
Source
- MeSH
- Alkaline Phosphatase blood MeSH
- Time MeSH
- Femur drug effects MeSH
- Financing, Organized MeSH
- Evaluation Studies as Topic MeSH
- Bone Density drug effects MeSH
- Rats MeSH
- Nicotine administration & dosage pharmacology MeSH
- Orchiectomy MeSH
- Compressive Strength drug effects MeSH
- Rats, Wistar MeSH
- Tibia drug effects MeSH
- Animals MeSH
- Check Tag
- Rats MeSH
- Male MeSH
- Animals MeSH
- Publication type
- Comparative Study MeSH
Tobacco, containing nicotine as the principal pharmacologically active chemical, has been identified as being a risk factor for the development of osteoporosis. Thirty-two male Wistar rats of two months of age were castrated or sham operated to evaluate the effects of long-term administration (four months) of nicotine in drinking water (9.0 mg/kg/day). The presence of cotinine in urine confirmed successful delivery of nicotine. The bones were tested mechanically by a three point bending test in a Mini Bionix (MTA) testing system. The bones from castrated rats were characterized by a reduction in bone density as well as ash, calcium and phosphate content. Castration significantly altered mechanical properties of bone (9%) and femoral cortical thickness. When intact rats were treated with a high dose of nicotine, nicotine had negative effect on tibial bone density as well as ash, calcium, phosphate content and significantly altered the mechanical properties of bone (12%) and femoral cortical thickness compared to intact animals. Nicotine itself does not exert any anti-androgenic effect and does not produce changes in the weight of seminal vesicles. Nicotine-induced bone loss is associated with high bone turnover in the male rats as expressed by increased TrACP and B-ALP. When castrated rats were treated with the high dose of nicotine the changes in bone density resulting from castration were not further potentiated. These results document the efficacy of nicotine at high doses to cause bone loss and loss of bone mechanical strength in intact rats. The results of the present study may be interpreted as supporting the hypothesis of nicotine as a risk factor for osteoporosis.
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- $a Broulík, Petr, $d 1937- $7 jn20000400281
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- $a The effect of chronic nicotine administration on bone mineral content and bone strength in normal and castrated male rats / $c Broulik Petr D., Rosenkrancová J, Růzicka P, Sedlácek R, Kurcová I.
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- $a Third Medical Clinic, First Medical Faculty, Charles University, Prague, Czech Republic. pbrou@lfl.cuni.cz
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- $a Tobacco, containing nicotine as the principal pharmacologically active chemical, has been identified as being a risk factor for the development of osteoporosis. Thirty-two male Wistar rats of two months of age were castrated or sham operated to evaluate the effects of long-term administration (four months) of nicotine in drinking water (9.0 mg/kg/day). The presence of cotinine in urine confirmed successful delivery of nicotine. The bones were tested mechanically by a three point bending test in a Mini Bionix (MTA) testing system. The bones from castrated rats were characterized by a reduction in bone density as well as ash, calcium and phosphate content. Castration significantly altered mechanical properties of bone (9%) and femoral cortical thickness. When intact rats were treated with a high dose of nicotine, nicotine had negative effect on tibial bone density as well as ash, calcium, phosphate content and significantly altered the mechanical properties of bone (12%) and femoral cortical thickness compared to intact animals. Nicotine itself does not exert any anti-androgenic effect and does not produce changes in the weight of seminal vesicles. Nicotine-induced bone loss is associated with high bone turnover in the male rats as expressed by increased TrACP and B-ALP. When castrated rats were treated with the high dose of nicotine the changes in bone density resulting from castration were not further potentiated. These results document the efficacy of nicotine at high doses to cause bone loss and loss of bone mechanical strength in intact rats. The results of the present study may be interpreted as supporting the hypothesis of nicotine as a risk factor for osteoporosis.
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