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題名:補充綠藻萃取物對於運動員脫水後運動疲勞之影響
書刊名:大專體育學刊
作者:祁崇溥 引用關係葉丁鵬林佳霈余思賢 引用關係
作者(外文):Chi, Chung-puYeh, Ding-pengLin, Chia-peiYu, Szu-hsien
出版日期:2019
卷期:21:2
頁次:頁185-198
主題關鍵詞:最大攝氧量氧化壓力發炎Maximal oxygen uptakeOxidative stressInflammation
原始連結:連回原系統網址new window
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本研究目的為探討綠藻萃取物補充是否有助於改善因脫水造成的運動表現降低與疲勞。研究方法為隨機雙盲交叉試驗,將10名受試者隨機分為安慰劑組(Placebo group)與綠藻組(Chlorella group)。所有受試者均於高溫濕環境(35℃與70%相對溼度)中以跑步機進行低強度運動(40%最大攝氧量[maximal oxygen uptake,VO_(2max)])以誘發達3%體重的脫水,並於脫水後給予脫水量的1.5倍液體補充(6%醣類與0.04%食鹽)。此外,綠藻與安慰劑組於脫水後立即分別補充130ml的綠藻萃取物或等量安慰劑。於脫水前後以漸增式運動檢測VO_(2max),並抽血以分析氧化壓力、發炎與分解/合成指標。研究結果顯示脫水後安慰劑組VO_(2max)與運動時間顯著降低,但是安慰劑組顯著低於綠藻組。另外脫水也造成血液白血球、噬中性球、介白素6、介白素10、硫代巴比妥酸反應物(thiobarbituric acid reactive substances,TBARS)、超氧岐化酶顯著上升,但是綠藻組於脫水後4小時TBARS顯著低於安慰劑組。於合成/分解反應方面,脫水後立即睪固酮與可體松濃度均顯著增加,綠藻組在脫水後2小時的可體松濃度顯著低於安慰劑組。綜合上述研究結果,本研究結論為運動後進行綠藻補充應有助於避免脫水後耐力運動表現降低,且可能降低氧化壓力與分解作用。
The purpose of this study was to investigate the effects of acute Chlorella extract supplementation on endurance performance and fatigue markers after dehydration. In this randomized, double-blind crossover study design, 10 participants were divided into Placebo or Chlorella groups. Dehydration (3% body weight) in all subjects was induced by treadmill walking in a high temperature (35°C) and humidity (70%) environment. Subjects were then rehydrated with fluid (6% carbohydrate and 0.04% salt) equal to 1.5 times weight lost. One hundred and thirty ml of Chlorella extract or placebo were administered to the subjects of Placebo or Chlorella groups at the same time according to their groups. Maximal oxygen uptake (VO_(2max)) and markers of oxidative stress, inflammation and anabolism/catabolism were determined before and after dehydration. The results showed that VO_(2max) and exercise time to fatigue were significantly decreased after dehydration in Placebo group. However, VO_(2max), and exercise time to fatigue of Chlorella group were significantly higher than those of Placebo group after dehydration. Dehydration increased levels of white blood cells (WBC), neutrophils, interleukin-6 (IL-6), interleukin-10 (IL-10), thiobarbituric acid reactive substances (TBARS), and superoxide dismutase (SOD). The TBARS level in Chlorella group was significantly lower after dehydration than that in Pl acebo group. Furthermore, testosterone and cortisol levels were significantly increased in Placebo group after dehydration. The cortisol level of Chlorella group was significantly lower 2 hours after dehydration than that of Placebo group. In conclusion, decreased endurance performance and increased oxidative damage and catabolic response after dehydration could be mitigated by acute Chlorella supplementation.
期刊論文
1.An, H. J.、Choi, H. M.、Park, H. S.、Han, J. G.、Lee, E. H.、Park, Y. S.、Kim, H.-M.(2006)。Oral administration of hot water extracts of Chlorella vulgaris increases physical stamina in mice。Annals of Nutrition and Metabolism,50(4),380-386。  new window
2.Mizoguchi, T.、Arakawa, Y.、Kobayashi, M.、Fujishima, M.(2011)。Influence of Chlorella powder intake during swimming stress in mice。Biochemical and Biophysical Research Communications,404(1),121-126。  new window
3.Schröder, H.、Navarro, E.、Mora, J.、Galiano, D.、Tramullas, A.(2001)。Effects of α-tocopherol, β-carotene and ascorbic acid on oxidative, hormonal and enzymatic exercise stress markers in habitual training activity of professional basketball players。European Journal of Nutrition,40(4),178-184。  new window
4.Kim, S.、Kim, J.、Lim, Y.、Kim, Y. J.、Kim, J. Y.、Kwon, O.(2016)。A dietary cholesterol challenge study to assess Chlorella supplementation in maintaining healthy lipid levels in adults: A double-blinded, randomized, placebo-controlled study。Nutrition Journal,15(1)。  new window
5.Lee, S. H.、Kang, H. J.、Lee, H. J.、Kang, M. H.、Park, Y. K.(2010)。Six-week supplementation with Chlorella has favorable impact on antioxidant status in Korean male smokers。Nutrition,26(2),175-183。  new window
6.Mizoguchi, T.、Takehara, I.、Masuzawa, T.、Saito, T.、Naoki, Y.(2008)。Nutrigenomic studies of effects of Chlorella on subjects with high-risk factors for lifestyle-related disease。Journal of Medicinal Food,11(3),395-404。  new window
7.Umemoto, S.、Otsuki, T.(2014)。Chlorella-derived multicomponent supplementation increases aerobic endurance capacity in young individuals。Journal of Clinical Biochemistry and Nutrition,55(2),143-146。  new window
8.祁崇溥、張世沛、楊孫錦、林學宜、余思賢(20170600)。補充四週綠藻對運動員阻力運動引起肌肉損傷的影響。大專體育學刊,19(2),183-194。new window  延伸查詢new window
9.Aizzat, O.、Yap, S. W.、Sopiah, H.、Madiha, M. M.、Hazreen, M.、Shailah, A.、Yasmin, A. M. Y.(2010)。Modulation of oxidative stress by Chlorella vulgaris in streptozotocin (STZ) induced diabetic Sprague-Dawley rats。Advances in Medical Sciences,55(2),281-288。  new window
10.Anderson, T.、Lane, A. R.、Hackney, A. C.(2016)。Cortisol and testosterone dynamics following exhaustive endurance exercise。European Journal of Applied Physiology,116(8),1503-1509。  new window
11.Casa, D. J.、Armstrong, L. E.、Hillman, S. K.、Montain, S. J.、Reiff, R. V.、Rich, B. S. E.、Stone, J. A.(2000)。National Athletic Trainers' Association position statement: Fluid replacement for athletes。Journal of Athletic Training,35(2),212-224。  new window
12.Daligault, F.、Reed, D. W.、Savile, C. K.、Nugier-Chauvin, C.、Patin, H.、Covello, P. S.、Buist, P. H.(2003)。Mechanistic characterization of ω-3 desaturation in the green alga Chlorella vulgaris。Phytochemistry,63(7),739-744。  new window
13.Ebrahimi-Mameghani, M.、Sadeghi, Z.、Abbasalizad, F. M.、Vaghef-Mehrabany, E.、Aliashrafi, S.(2017)。Glucose homeostasis, insulin resistance and inflammatory biomarkers in patients with non-alcoholic fatty liver disease: Beneficial effects of supplementation with microalgae Chlorella vulgaris: A double-blind placebo-controlled randomized clinical trial。Clinical Nutrition,36(4),1001-1006。  new window
14.Fallah, A. A.、Sarmast, E.、Dehkordi, S. H.、Engardeh, J.、Mahmoodnia, L.、Khaledifar, A.、Jafari, T.(2018)。Effect of Chlorella supplementation on cardiovascular risk factors: A meta-analysis of randomized controlled trials。Clinical Nutrition,37(6),1892-1901。  new window
15.Finsterer, J.、Drory, V. E.(2016)。Wet, volatile, and dry biomarkers of exercise-induced muscle fatigue。BMC Musculoskeletal Disorders,17(1)。  new window
16.Galal, A. A. A.、Reda, R. M.、Mohamed, A. A.(2018)。Influences of Chlorella vulgaris dietary supplementation on growth performance, hematology, immune response and disease resistance in Oreochromis niloticus exposed to sub-lethal concentrations of penoxsulam herbicide。Fish & Shellfish Immunology,77,445-456。  new window
17.Georgescu, V. P.、de Souza Junior, T. P.、Behrens, C.、Barros, M. P.、Bueno, C. A.、Utter, A. C.、McAnulty, S. R.(2017)。Effect of exercise-induced dehydration on circulatory markers of oxidative damage and antioxidant capacity。Applied Physiology, Nutrition, and Metabolism,42(7),694-699。  new window
18.Goulet, E. D.(2012)。Dehydration and endurance performance in competitive athletes。Nutrition Reviews,70(Suppl. 2),S132-S136。  new window
19.Hillman, A. R.、Vince, R. V.、Taylor, L.、McNaughton, L.、Mitchell, N.、Siegler, J.(2011)。Exercise-induced dehydration with and without environmental heat stress results in increased oxidative stress。Applied Physiology, Nutrition, and Metabolism,36(5),698-706。  new window
20.Hoffman, J. R.、Ratamess, N. A.、Kang, J.、Rashti, S. L.、Kelly, N.、Gonzalez, A. M.、Maresh, C. M.(2010)。Examination of the efficacy of acute L-alanyl-L-glutamine ingestion during hydration stress in endurance exercise。Journal of the International Society of Sports Nutrition,7(1)。  new window
21.Horii, N.、Hasegawa, N.、Fujie, S.、Uchida, M.、Miyamoto- Mikami, E.、Hashimoto, T.、Iemitsu, M.(2017)。High-intensity intermittent exercise training with Chlorella intake accelerates exercise performance and muscle glycolytic and oxidative capacity in rats。American Journal of Physiology: Regulatory, Integrative and Comparative Physiology,312(4),R520-R528。  new window
22.Hou, Chien-Wen、Tsai, Yung-Shen、Jean, Wei-Horng、Chen, Chung-Yu、Ivy, John L.、Huang, Chih-Yang、Kuo, Chia-Hua(2013)。Deep ocean mineral water accelerates recovery from physical fatigue。Journal of the International Society of Sports Nutrition,10(1),1-7。  new window
23.James, L. J.、Moss, J.、Henry, J.、Papadopoulou, C.、Mears, S. A.(2017)。Hypohydration impairs endurance performance: A blinded study。Physiological Reports,5(12),e13315。  new window
24.Judelson, D. A.、Maresh, C. M.、Yamamoto, L. M.、Farrell, M. J.、Armstrong, L. E.、Kraemer, W. J.、Anderson, J. M.(2008)。Effect of hydration state on resistance exercise-induced endocrine markers of anabolism, catabolism, and metabolism。Journal of Applied Physiology,105(3),816-824。  new window
25.Kara, B.(2013)。Validity and reliability of the Turkish version of the thirst distress scale in patients on hemodialysis。Asian Nursing Research,7(4),212-218。  new window
26.Laitano, O.、Kalsi, K. K.、Pearson, J.、Lotlikar, M.、Reischak-Oliveira, A.、González-Alonso, J.(2012)。Effects of graded exercise-induced dehydration and rehydration on circulatory markers of oxidative stress across the resting and exercising human leg。European Journal of Applied Physiology,112(5),1937-1944。  new window
27.Lee, H.-S.、Choi, C.-Y.、Cho, C.、Song, Y.(2003)。Attenuating effect of Chlorella supplementation on oxidative stress and NFκB activation in peritoneal macrophages and liver of C57BL/6 mice fed on an atherogenic diet。Bioscience, Biotechnology, and Biochemistry,67(10),2083-2090。  new window
28.Li, L.、Sun, F.-H.、Huang, W. Y.-J.、Wong, S. H.-S.(2018)。Effects of whey protein in carbohydrate-electrolyte drinks on post-exercise rehydration。European Journal of Sport Science,18,1-10。  new window
29.López-Samanes, Á.、Pallarés, J. G.、Pérez-López, A.、Mora-Rodríguez, R.、Ortega, J. F.(2018)。Hormonal and neuromuscular responses during a singles match in male professional tennis players。PloS One,13(4),e0195242。  new window
30.McDermott, B. P.、Casa, D. J.、Lee, E.、Yamamoto, L.、Beasley, K.、Emmanuel, H.、Maresh, C.(2013)。Thermoregulation and stress hormone recovery after exercise dehydration: Comparison of rehydration methods。Journal of Athletic Training,48(6),725-733。  new window
31.Murray, B.(2007)。Hydration and physical performance。Journal of the American College of Nutrition,26(Suppl. 5),542S-548S。  new window
32.Okada, H.、Yoshida, N.、Kakuma, T.、Toyomasu, K.(2018)。Effect of Chlorella ingestion on oxidative stress and fatigue symptoms in healthy men。Kurume Medical Journal,64,MS644001。  new window
33.Otsuki, T.、Shimizu, K.、Iemitsu, M.、Kono, I.(2012)。Chlorella intake attenuates reduced salivary SIgA secretion in kendo training camp participants。Nutrition Journal,11(1)。  new window
34.Ozkan, I.、Ibrahim, C. H.(2016)。Dehydration, skeletal muscle damage and inflammation before the competitions among the elite wrestlers。Journal of Physical Therapy Science,28(1),162-168。  new window
35.Panahi, Y.、Badeli, R.、Karami, G.-R.、Badeli, Z.、Sahebkar, A.(2015)。A randomized controlled trial of 6-week Chlorella vulgaris supplementation in patients with major depressive disorder。Complementary Therapies in Medicine,23(4),598-602。  new window
36.Panahi, Y.、Mostafazadeh, B.、Abrishami, A.、Saadat, A.、Beiraghdar, F.、Tavana, S.、Sahebkar, A.(2013)。Investigation of the effects of Chlorella vulgaris supplementation on the modulation of oxidative stress in apparently healthy smokers。Clinical Laboratory,59(5/6),579-587。  new window
37.Panahi, Y.、Tavana, S.、Sahebkar, A.、Masoudi, H.、Madanchi, N.(2012)。Impact of adjunctive therapy with Chlorella vulgaris extract on antioxidant status, pulmonary function, and clinical symptoms of patients with obstructive pulmonary diseases。Scientia Pharmaceutica,80(3),719-730。  new window
38.Renju, G. L.、Kurup, G. M.、Kumari, C. H. S.(2014)。Effect of lycopene from Chlorella marina on high cholesterol-induced oxidative damage and inflammation in rats。Inflammopharmacology,22(1),45-54。  new window
39.Sawka, M. N.、Cheuvront, S. N.、Kenefick, R. W.(2015)。Hypohydration and human performance: Impact of environment and physiological mechanisms。Sports Medicine,45(Suppl. 1),51-60。  new window
40.Shirreffs, S. M.(2009)。Hydration in sport and exercise: Water, sports drinks and other drinks。Nutrition Bulletin,34(4),374-379。  new window
41.van Rosendal, S. P.、Strobel, N. A.、Osborne, M. A.、Fassett, R. G.、Coombes, J. S.(2015)。Hydration and endocrine responses to intravenous fluid and oral glycerol。Scandinavian Journal of Medicine & Science in Sports,25(S1),112-125。  new window
42.Vijayavel, K.、Anbuselvam, C.、Balasubramanian, M. P.(2007)。Antioxidant effect of the marine algae Chlorella vulgaris against naphthalene-induced oxidative stress in the albino rats。Molecular and Cellular Biochemistry,303(1/2),39-44。  new window
43.Zempo-Miyaki, A.、Maeda, S.、Otsuki, T.(2017)。Effect of Chlorella-derived multicomponent supplementation on maximal oxygen uptake and serum vitamin B2 concentration in young men。Journal of Clinical Biochemistry and Nutrition,61(2),135-139。  new window
 
 
 
 
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