Vascular Sensitivity to Phenylephrine in Rats Submitted to Anaerobic Training and Nandrolone Treatment

苯肾上腺素 南地龙 内分泌学 内科学 医学 主动脉 无氧运动 胸主动脉 内皮 一氧化氮 化学 血压 物理疗法 合成代谢
作者
Tatiana Sousa Cunha,María José,Costa Sampaio Moura,Celene Fernandes Bernardes,Ana Paula Tanno,Fernanda Klein Marcondes
出处
期刊:Hypertension [Lippincott Williams & Wilkins]
卷期号:46 (4): 1010-1015 被引量:48
标识
DOI:10.1161/01.hyp.0000174600.51515.e7
摘要

The effect of anaerobic physical training and nandrolone treatment on the sensitivity to phenylephrine in thoracic aorta and lipoprotein plasma levels of rats was studied. Sedentary and trained male Wistar rats were treated with vehicle or nandrolone (5 mg/kg IM; twice per week) for 6 weeks. Training was performed by jumping into water (4 sets, 10 repetitions, 30-second rest, 50% to 70% body weight load, 5 days/week, 6 weeks). Two days after the last training session, the animals were killed and blood samples for lipoprotein dosage were obtained. Thoracic aorta was isolated and concentration-effect curves of phenylephrine were performed in intact endothelium and endothelium-denuded aortic rings in the absence or presence of N G - l -arginine-methyl ester. No changes were observed in endothelium-denuded aortic rings. However, in endothelium-intact thoracic aorta, anaerobic physical training induced subsensitivity to phenylephrine (pD 2 =7.11±0.07) compared with sedentary group (7.55±1.74), and this effect was canceled by the inhibition of nitric oxide synthesis. No difference was observed between trained (7.22±0.07) and sedentary (7.28±0.09) groups treated with nandrolone. Anaerobic training induced an increase in high-density lipoprotein levels in vehicle-treated rats, but there were no changes in nandrolone-treated groups. Training associated with nandrolone induced an increase in low-density lipoprotein levels but no change in the other groups. If altering endothelium-dependent vasodilatation is considered to be a beneficial adaptation to anaerobic physical training, it is concluded that nandrolone treatment worsens animals’ endothelial function, and this effect may be related to lipoprotein blood levels.
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