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脱氢表雄酮补充剂联合全身振动训练对小鼠睾酮水平和身体成分的影响

Dehydroepiandrosterone Supplementation Combined with Whole-Body Vibration Training Affects Testosterone Level and Body Composition in Mice.

作者信息

Chen Wen-Chyuan, Chen Yi-Ming, Huang Chi-Chang, Tzeng Yen-Dun

机构信息

Center for General Education, Chang Gung University of Science and Technology, Taoyuan 33301, Taiwan;; Department of Otorhinolaryngology-Head and Neck Surgery, Sleep Center, Linkou-Chang Gung Memorial Hospital, Taoyuan 33301, Taiwan.

Center for General Education, Chang Gung University of Science and Technology, Taoyuan 33301, Taiwan;; Graduate Institute of Sports Science, National Taiwan Sport University, Taoyuan 33301, Taiwan.

出版信息

Int J Med Sci. 2016 Sep 16;13(10):730-740. doi: 10.7150/ijms.16132. eCollection 2016.

Abstract

Dehydroepiandrosterone (DHEA), the most abundant sex steroid, is primarily secreted by the adrenal gland and a precursor hormone used by athletes for performance enhancement. Whole-body vibration (WBV) is a well-known light-resistance exercise by automatic adaptations to rapid and repeated oscillations from a vibrating platform, which is also a simple and convenient exercise for older adults. However, the potential effects of DHEA supplementation combined with WBV training on to body composition, exercise performance, and hormone regulation are currently unclear. The objective of the study is to investigate the effects of DHEA supplementation combined with WBV training on body composition, exercise performance, and physical fatigue-related biochemical responses and testosterone content in young-adult C57BL/6 mice. In this study, male C57BL/6 mice were divided into four groups (n = 8 per group) for 6-weeks treatment: sedentary controls with vehicle (SC), DHEA supplementation (DHEA, 10.2 mg/kg), WBV training (WBV; 5.6 Hz, 2 mm, 0.13 g), and WBV training with DHEA supplementation (WBV+DHEA; WBV: 5.6 Hz, 2 mm, 0.13 g and DHEA: 10.2 mg/kg). Exercise performance was evaluated by forelimb grip strength and exhaustive swimming time, as well as changes in body composition and anti-fatigue levels of serum lactate, ammonia, glucose, creatine kinase (CK), and blood urea nitrogen (BUN) after a 15-min swimming exercise. In addition, the biochemical parameters and the testosterone content were measured at the end of the experiment. Six-week DHEA supplementation alone significantly increased mice body weight (BW), muscle weight, testosterone level, and glycogen contents (liver and muscle) when compared with SC group. DHEA supplementation alone had no negative impact on all tissue and biochemical profiles, but could not improve exercise performance. However, WBV+DHEA supplementation also significantly decreased BW, testosterone level and glycogen content of liver, as well as serum lactate and ammonia levels after the 15-min swimming exercise when compared with DHEA supplementation alone. Although DHEA supplementation alone had no beneficial effect in the exercise performance of mice, the BW, testosterone level and glycogen content significantly increased. On the other hand, WBV training combined with DHEA decreased the BW gain, testosterone level and glycogen content caused by DHEA supplementation. Therefore, WBV training could inhibit DHEA supplementation to synthesis the testosterone level or may decrease the DHEA supplement absorptive capacity in young-adult mice.

摘要

脱氢表雄酮(DHEA)是最丰富的性类固醇,主要由肾上腺分泌,是运动员用于提高成绩的一种前体激素。全身振动(WBV)是一种通过自动适应振动平台的快速重复振荡而闻名的轻度抗阻运动,对老年人来说也是一种简单方便的运动。然而,目前尚不清楚补充DHEA与WBV训练相结合对身体成分、运动表现和激素调节的潜在影响。本研究的目的是探讨补充DHEA与WBV训练相结合对年轻成年C57BL/6小鼠身体成分、运动表现、与身体疲劳相关的生化反应以及睾酮含量的影响。在本研究中,将雄性C57BL/6小鼠分为四组(每组n = 8)进行为期6周的治疗:给予载体的久坐对照组(SC)、补充DHEA组(DHEA,10.2 mg/kg)、WBV训练组(WBV;5.6 Hz,2 mm,0.13 g)以及补充DHEA的WBV训练组(WBV+DHEA;WBV:5.6 Hz,2 mm,0.13 g,DHEA:10.2 mg/kg)。通过前肢握力和力竭游泳时间评估运动表现,以及在15分钟游泳运动后身体成分的变化和血清乳酸、氨、葡萄糖、肌酸激酶(CK)和血尿素氮(BUN)的抗疲劳水平。此外,在实验结束时测量生化参数和睾酮含量。与SC组相比,单独补充6周DHEA可显著增加小鼠体重(BW)、肌肉重量、睾酮水平和糖原含量(肝脏和肌肉)。单独补充DHEA对所有组织和生化指标均无负面影响,但不能提高运动表现。然而,与单独补充DHEA相比,补充WBV+DHEA在15分钟游泳运动后还显著降低了BW、睾酮水平和肝脏糖原含量,以及血清乳酸和氨水平。虽然单独补充DHEA对小鼠的运动表现没有有益影响,但BW、睾酮水平和糖原含量显著增加。另一方面,WBV训练与DHEA相结合降低了由补充DHEA引起的BW增加、睾酮水平和糖原含量。因此,WBV训练可能会抑制DHEA补充剂合成睾酮水平,或者可能会降低年轻成年小鼠对DHEA补充剂的吸收能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cda/5069407/8429d5873569/ijmsv13p0730g001.jpg

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