Bredahl Eric C, Hydock David S
a Department of Exercise Science and Pre-Health Professions , Creighton University , Omaha , Nebraska , USA.
b School of Sport and Exercise Science, University of Northern Colorado , Greeley , Colorado , USA.
Nutr Cancer. 2017 May-Jun;69(4):607-615. doi: 10.1080/01635581.2017.1295089. Epub 2017 Mar 21.
Supplementing the diet with creatine (Cr) to manage chemotherapy-induced skeletal muscle weakness and fatigue has potential, but little has been done exploring it as an intervention. This study examined the effects of Cr on skeletal muscle dysfunction induced by the chemotherapy drug doxorubicin (Dox). Soleus and extensor digitorum longus (EDL) from male Sprague-Dawley rats maintained in an organ bath were incubated in Krebs-Henseleit (KH) buffer with or without creatine monohydrate (25 mM) for 30 min. Skeletal muscle was then incubated in KH buffer with or without Dox (24 μM) for an additional 30 min. Baths were then refreshed with KH buffer, and a 100-s fatigue protocol was administered. At baseline (0 s time point), no significant differences in force production were observed in the slow, type I soleus, but the Dox-treated soleus fatigued quicker than the non-Dox-treated soleus; however, pretreatment with Cr extended the time to fatigue in the Dox-treated soleus. In the fast, type II EDL, Dox treatment decreased force production at baseline and increased fatigue, and Cr treatment prior to Dox attenuated this dysfunction. Creatine pretreatment mitigated Dox-induced skeletal muscle dysfunction ex vivo suggesting that Cr may play a role in managing Dox-induced skeletal muscle side effects.
通过补充肌酸(Cr)来应对化疗引起的骨骼肌无力和疲劳具有一定潜力,但作为一种干预措施,对此进行的探索却很少。本研究考察了肌酸对化疗药物阿霉素(Dox)所致骨骼肌功能障碍的影响。将维持在器官浴中的雄性Sprague-Dawley大鼠的比目鱼肌和趾长伸肌(EDL)在含有或不含有一水肌酸(25 mM)的Krebs-Henseleit(KH)缓冲液中孵育30分钟。然后将骨骼肌在含有或不含有阿霉素(24 μM)的KH缓冲液中再孵育30分钟。随后用KH缓冲液更换浴液,并实施100秒的疲劳方案。在基线(0秒时间点)时,慢肌I型比目鱼肌在力量产生方面未观察到显著差异,但阿霉素处理的比目鱼肌比未处理的比目鱼肌疲劳得更快;然而,用肌酸预处理可延长阿霉素处理的比目鱼肌的疲劳时间。在快肌II型趾长伸肌中,阿霉素处理降低了基线时的力量产生并增加了疲劳,而在阿霉素处理前进行肌酸处理可减轻这种功能障碍。肌酸预处理在体外减轻了阿霉素诱导的骨骼肌功能障碍,表明肌酸可能在应对阿霉素诱导的骨骼肌副作用中发挥作用。