健常成人女性における異なるエネルギーの清涼飲料水の摂取が, その後一日の食事摂取量に及ぼす影響
異なるエネルギーの清涼飲料水の摂取が朝食と1日の食事摂取量に及ぼす影響, および習慣的な身体活動と補償効果の関連を検討することを目的とし, 無作為クロスオーバー試験 (エネルギーのある甘味料入り清涼飲料水 ; sweetener群 (以下, S群) ; 225 kcal vs. エネルギーのない人工甘味料入り清涼飲料水 ; artificial sweetener群 (以下, AS群) ; 0 kcal) を実施した. 対象者は月経後2週間以内の女性16名 (平均21.6±0.5歳) とした. 飲料摂取前, 摂取後0, 20, 40, 60, 120, 150分に血糖測定と主観的食欲を評価し,...
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Published in | 日本家政学会誌 Vol. 71; no. 5; pp. 269 - 279 |
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Main Authors | , , , |
Format | Journal Article |
Language | Japanese |
Published |
一般社団法人 日本家政学会
2020
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Subjects | |
Online Access | Get full text |
ISSN | 0913-5227 1882-0352 |
DOI | 10.11428/jhej.71.269 |
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Abstract | 異なるエネルギーの清涼飲料水の摂取が朝食と1日の食事摂取量に及ぼす影響, および習慣的な身体活動と補償効果の関連を検討することを目的とし, 無作為クロスオーバー試験 (エネルギーのある甘味料入り清涼飲料水 ; sweetener群 (以下, S群) ; 225 kcal vs. エネルギーのない人工甘味料入り清涼飲料水 ; artificial sweetener群 (以下, AS群) ; 0 kcal) を実施した. 対象者は月経後2週間以内の女性16名 (平均21.6±0.5歳) とした. 飲料摂取前, 摂取後0, 20, 40, 60, 120, 150分に血糖測定と主観的食欲を評価し, 飲料摂取後60分に自由摂食の朝食を提供した. 150分以降は自由生活とし, その後1日のエネルギー摂取量を評価した. さらに, 対象者は実験日を除く任意の1週間加速度計付活動量計を装着し習慣的な1日の身体活動を評価した. AS群はS群と比較して朝食摂取前までの血糖値は有意に低かった (p<0.010) が, 朝食後の飲料摂取後120分では有意に高かった (p=0.004). 主観的食欲は飲料摂取後60分のときAS群が有意に高かった (p=0.034). 一方, 飲料のエネルギーを含む朝食及び1日の総エネルギー摂取量はAS群よりS群で有意に高く (p<0.010), エネルギー摂取量の補償効果は認められなかった. 習慣的な身体活動量と補償効果の間には有意な相関関係は認められなかった. 本研究より, 異なるエネルギーの清涼飲料水の摂取は血糖値と主観的食欲に影響するが, その後の食事摂取量には影響しないことが示唆された. |
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AbstractList | 異なるエネルギーの清涼飲料水の摂取が朝食と1日の食事摂取量に及ぼす影響, および習慣的な身体活動と補償効果の関連を検討することを目的とし, 無作為クロスオーバー試験 (エネルギーのある甘味料入り清涼飲料水 ; sweetener群 (以下, S群) ; 225 kcal vs. エネルギーのない人工甘味料入り清涼飲料水 ; artificial sweetener群 (以下, AS群) ; 0 kcal) を実施した. 対象者は月経後2週間以内の女性16名 (平均21.6±0.5歳) とした. 飲料摂取前, 摂取後0, 20, 40, 60, 120, 150分に血糖測定と主観的食欲を評価し, 飲料摂取後60分に自由摂食の朝食を提供した. 150分以降は自由生活とし, その後1日のエネルギー摂取量を評価した. さらに, 対象者は実験日を除く任意の1週間加速度計付活動量計を装着し習慣的な1日の身体活動を評価した. AS群はS群と比較して朝食摂取前までの血糖値は有意に低かった (p<0.010) が, 朝食後の飲料摂取後120分では有意に高かった (p=0.004). 主観的食欲は飲料摂取後60分のときAS群が有意に高かった (p=0.034). 一方, 飲料のエネルギーを含む朝食及び1日の総エネルギー摂取量はAS群よりS群で有意に高く (p<0.010), エネルギー摂取量の補償効果は認められなかった. 習慣的な身体活動量と補償効果の間には有意な相関関係は認められなかった. 本研究より, 異なるエネルギーの清涼飲料水の摂取は血糖値と主観的食欲に影響するが, その後の食事摂取量には影響しないことが示唆された. |
Author | 田尻, 絵里 重黒木, 彩乃 畑本, 陽一 吉村, 英一 |
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References | 7) 独立行政法人農畜産業振興機構. “近年における人工甘味料の動向”. https://www.alic.go.jp/joho-s/joho07_000878.html (入手日 : 2018.10.1 26) King, NA.; Snell, L.; Smith, R. D.; Blundell, J. E. Effects of short-term exercise on appetite responses in unrestrained females. Europeam Journal of Clinical Nutrition. 1996, Vol. 50, No. 10, 663-667. 5) Schulze, M. B.; Manson, J. E.; Ludwig, D. S.; Colditzn, G. A.; Stampfer, M. J.; Willett, W. C.; Hu, F. B. Sugar-sweetened beverages, weight gain, and incidence of type 2 diabetes in young and middle-aged women. Journal of the American Medical Association. 2004, Vol. 292, No. 8, 927-934. 18) Ganpule, A. A.; Tanaka, S.; Ishikawa-Takata, K.; Tabata, I. Interindividual variability in sleeping metabolic rate in Japanese subjects. Europeam Journal of Clinical Nutrition. 2007, Vol. 61, No. 11, 1256-1261. 22) Black, R. M.; Tanaka, P.; Leiter, L. A.; Anderson, G. H. Soft drinks with aspartame: effect on subjective hunger, food selection, and food intake of young adult males. Physiology & Behavior. 1991, Vol. 49, No. 4, 803-810. 27) Hagobian, T. A.; Braun, B. Physical activity and hormonal regulation of appetite: sex differences and weight control. Exercise and Sport Scices Reviews. 2010, Vol. 38, No. 1, 25-30. 10) Davy, B. M.; Van Walleghen, E. L.; Orr, J. S. Sex differences in acute energy intake regulation. Appetite. 2007, Vol. 49, No. 1, 141-147. 2) Apovian, C. M. Sugar-sweetened soft drinks, obesity, and type 2 diabetes. Journal of the American Medical Association. 2004, Vol. 292, No. 8, 978-979. 23) Nichol, A. D; Holle, M. J.; An, R. Glycemic impact of non-nutritive sweeteners: a systematic review and meta-analysis of randomized controlled trials. Europeam Journal of Clinical Nutrition. 2018, Vol. 72, No. 6, 796-804. 8) Ranawana, D. V.; Henry, C. J. Are caloric beverages compensated for in the short-term by young adults? An investigation with particular focus on gender differences. Appetite. 2010, Vol. 55, No. 1, 137-146. 16) 文部科学省. “日本食品標準成分表2015年版 (七訂)”. http://www.mext.go.jp/a_menu/syokuhinseibun/1365297.htm (入手日 : 2019.11.12 9) Beaulieu, K.; Hopkins, M.; Long, C.; Blundell, J.; Finlayson, G. High Habitual Physical Activity Improves Acute Energy Compensation in Nonobese Adults. Medicine & Science in Sports & Exercise. 2017, Vol. 49, No. 11, 2268-2275. 19) Del Parigi, A.; Chen, K.; Gautier, J. F.; Salbe, A. D.; Pratley, R. E.; Ravussin, E.; Reiman, E. M.; Tataranni, P. A. Sex differences in the human brain's response to hunger and satiation. American Journal of Clinical Nutrition. 2002, Vol. 75, No. 6, 1017-1022. 21) Maersk, M.; Belza, A.; Holst, J. J.; Fenger-Grøn, M.; Pedersen, S. B.; Astrup, A.; Richelsen, B. Satiety scores and satiety hormone response after sucrose-sweetened soft drink compared with isocaloric semi-skimmed milk and with non-caloric soft drink: a controlled trial. Europeam Journal of Clinical Nutrition. 2012, Vol. 66, No. 4, 523-529. 13) Rogers, P. J.; Hogenkamp, P. S.; de Graaf, C.; Higgs, S.; Lluch, A.; Ness, A. R.; Penfold, C.; Perry, R.; Putz, P.; Yeomans, M. R.; Mela, D. J. Does low-energy sweetener consumption affect energy intake and body weight? A systematic review, including meta-analyses, of the evidence from human and animal studies. International Journal of Obesity (Lond). 2016, Vol. 40, No. 3, 381-394. 12) Canty, D. J.; Chan, M. M. Effects of consumption of caloric vs noncaloric sweet drinks on indices of hunger and food consumption in normal adults. American Journal of Clinical Nutrition. 1991, Vol. 53, No. 5, 1159-1164. 20) Diaz, S.; Farhang, B.; Hoien, J.; Stahlman, M.; Adatia, N.; Cox, J. M.; Wagner, E. J. Sex differences in the cannabinoid modulation of appetite, body temperature and neurotransmission at POMC synapses. Neuroendocrinology. 2009, Vol. 89, No. 4, 424-440. 4) Vartanian, L. R.; Schwartz, M. B.; Brownell, K. D. Effects of soft drink consumption on nutrition and health: a systematic review and meta-analysis. American Journal of Public Health. 2007, Vol. 97, No. 4, 667-675. 29) Rolls, B. J; Dimeo, K. A; Shide, D. J. Age-related impairments in the regulation of food intake. American Journal of Clinical Nutrition. 1995, Vol. 62, No. 5, 923-931. 11) Gadah, N. S.; Brunstrom, J. M.; Rogers, P. J. Cross-over studies underestimate energy compensation: The example of sucrose-versus sucralose-containing drinks. Appetite. 2016, Vol. 107, No. 398-405. 28) Ebbeling, C. B.; Sinclair, K. B.; Pereira, M. A.; Garcia-Lago, E.; Feldman, H. A; Ludwig, D. S. Compensation for energy intake from fast food among overweight and lean adolescents. Journal of the American Medical Association. 2004, Vol. 291, No. 23, 2828-2833. 30) Levitsky, D. A.; Youn, T. The more food young adults are served, the more they overeat. Journal of Nutrition. 2004, Vol. 134, No. 10, 2546-2549. 17) Healy, G. N.; Matthews, C. E.; Dunstan, D. W.; Winkler, E. A.; Owen, N. Sedentary time and cardio-metabolic biomarkers in US adults: NHANES 2003-06. European Heart Journal. 2011, Vol. 32, No. 5, 590-597. 24) Jenkins, D. J.; Wolever, T. M.; Taylor, R. H; Griffiths, C.; Krzeminska, K.; Lawrie, J. A.; Bennett, C. M.; Goff, D. V.; Sarson, D. L.; Bloom, S. R. Slow release dietary carbohydrate improves second meal tolerance. American Journal of Clinical Nutrition. 1982, Vol. 35, No. 6, 1339-1346. 1) 一般社団法人全国清涼飲料連合会. “清涼飲料水の生産量推移 (1998年~2017年)”. http://www.j-sda.or.jp/statistically-information/stati02.php (入手日 : 2018.10.1). 15) Gorczyca, A. M.; Sjaarda, L. A.; Mitchell, E. M.; Perkins, N. J.; Schliep, K. C.; Wactawski-Wende, J.; Mumford, S. L. Changes in macronutrient, micronutrient, and food group intakes throughout the menstrual cycle in healthy, premenopausal women. Europeam Journal of Clinical Nutrition. 2016, Vol. 55, No. 3, 1181-1188. 6) World Health Organization. “Diet, nutrition and the prevention of chronic disease: report of a joint WHO/FAO expert consultation”. Geneva 2013. http://apps.who.int/iris/bitstream/handle/10665/42665/WHO_TRS_916.pdf (入手日 : 2018.10.1 14) DellaValle, D. M; Roe, L. S; Rolls, B. J. Does the consumption of caloric and non-caloric beverages with a meal affect energy intake? Appetite. 2005, Vol. 44, No. 2, 187-193. 25) Pomerleau, M.; Imbeault, P.; Parker, T.; Doucet, E. Effects of exercise intensity on food intake and appetite in women. American Journal of Clinical Nutrition. 2004, Vol. 80, No. 5, 1230-1236. 3) Malik, V. S.; Schulze, M. B.; Hu, F. B. Intake of sugar-sweetened beverages and weight gain: a systematic review. American Journal of Clinical Nutrition. 2006, Vol. 84, No. 2, 274-288. |
References_xml | – reference: 22) Black, R. M.; Tanaka, P.; Leiter, L. A.; Anderson, G. H. Soft drinks with aspartame: effect on subjective hunger, food selection, and food intake of young adult males. Physiology & Behavior. 1991, Vol. 49, No. 4, 803-810. – reference: 16) 文部科学省. “日本食品標準成分表2015年版 (七訂)”. http://www.mext.go.jp/a_menu/syokuhinseibun/1365297.htm (入手日 : 2019.11.12) – reference: 27) Hagobian, T. A.; Braun, B. Physical activity and hormonal regulation of appetite: sex differences and weight control. Exercise and Sport Scices Reviews. 2010, Vol. 38, No. 1, 25-30. – reference: 10) Davy, B. M.; Van Walleghen, E. L.; Orr, J. S. Sex differences in acute energy intake regulation. Appetite. 2007, Vol. 49, No. 1, 141-147. – reference: 6) World Health Organization. “Diet, nutrition and the prevention of chronic disease: report of a joint WHO/FAO expert consultation”. Geneva 2013. http://apps.who.int/iris/bitstream/handle/10665/42665/WHO_TRS_916.pdf (入手日 : 2018.10.1) – reference: 18) Ganpule, A. A.; Tanaka, S.; Ishikawa-Takata, K.; Tabata, I. Interindividual variability in sleeping metabolic rate in Japanese subjects. Europeam Journal of Clinical Nutrition. 2007, Vol. 61, No. 11, 1256-1261. – reference: 2) Apovian, C. M. Sugar-sweetened soft drinks, obesity, and type 2 diabetes. Journal of the American Medical Association. 2004, Vol. 292, No. 8, 978-979. – reference: 7) 独立行政法人農畜産業振興機構. “近年における人工甘味料の動向”. https://www.alic.go.jp/joho-s/joho07_000878.html (入手日 : 2018.10.1) – reference: 29) Rolls, B. J; Dimeo, K. A; Shide, D. J. Age-related impairments in the regulation of food intake. American Journal of Clinical Nutrition. 1995, Vol. 62, No. 5, 923-931. – reference: 19) Del Parigi, A.; Chen, K.; Gautier, J. F.; Salbe, A. D.; Pratley, R. E.; Ravussin, E.; Reiman, E. M.; Tataranni, P. A. Sex differences in the human brain's response to hunger and satiation. American Journal of Clinical Nutrition. 2002, Vol. 75, No. 6, 1017-1022. – reference: 13) Rogers, P. J.; Hogenkamp, P. S.; de Graaf, C.; Higgs, S.; Lluch, A.; Ness, A. R.; Penfold, C.; Perry, R.; Putz, P.; Yeomans, M. R.; Mela, D. J. Does low-energy sweetener consumption affect energy intake and body weight? A systematic review, including meta-analyses, of the evidence from human and animal studies. International Journal of Obesity (Lond). 2016, Vol. 40, No. 3, 381-394. – reference: 25) Pomerleau, M.; Imbeault, P.; Parker, T.; Doucet, E. Effects of exercise intensity on food intake and appetite in women. American Journal of Clinical Nutrition. 2004, Vol. 80, No. 5, 1230-1236. – reference: 14) DellaValle, D. M; Roe, L. S; Rolls, B. J. Does the consumption of caloric and non-caloric beverages with a meal affect energy intake? Appetite. 2005, Vol. 44, No. 2, 187-193. – reference: 15) Gorczyca, A. M.; Sjaarda, L. A.; Mitchell, E. M.; Perkins, N. J.; Schliep, K. C.; Wactawski-Wende, J.; Mumford, S. L. Changes in macronutrient, micronutrient, and food group intakes throughout the menstrual cycle in healthy, premenopausal women. Europeam Journal of Clinical Nutrition. 2016, Vol. 55, No. 3, 1181-1188. – reference: 3) Malik, V. S.; Schulze, M. B.; Hu, F. B. Intake of sugar-sweetened beverages and weight gain: a systematic review. American Journal of Clinical Nutrition. 2006, Vol. 84, No. 2, 274-288. – reference: 23) Nichol, A. D; Holle, M. J.; An, R. Glycemic impact of non-nutritive sweeteners: a systematic review and meta-analysis of randomized controlled trials. Europeam Journal of Clinical Nutrition. 2018, Vol. 72, No. 6, 796-804. – reference: 28) Ebbeling, C. B.; Sinclair, K. B.; Pereira, M. A.; Garcia-Lago, E.; Feldman, H. A; Ludwig, D. S. Compensation for energy intake from fast food among overweight and lean adolescents. Journal of the American Medical Association. 2004, Vol. 291, No. 23, 2828-2833. – reference: 11) Gadah, N. S.; Brunstrom, J. M.; Rogers, P. J. Cross-over studies underestimate energy compensation: The example of sucrose-versus sucralose-containing drinks. Appetite. 2016, Vol. 107, No. 398-405. – reference: 21) Maersk, M.; Belza, A.; Holst, J. J.; Fenger-Grøn, M.; Pedersen, S. B.; Astrup, A.; Richelsen, B. Satiety scores and satiety hormone response after sucrose-sweetened soft drink compared with isocaloric semi-skimmed milk and with non-caloric soft drink: a controlled trial. Europeam Journal of Clinical Nutrition. 2012, Vol. 66, No. 4, 523-529. – reference: 20) Diaz, S.; Farhang, B.; Hoien, J.; Stahlman, M.; Adatia, N.; Cox, J. M.; Wagner, E. J. Sex differences in the cannabinoid modulation of appetite, body temperature and neurotransmission at POMC synapses. Neuroendocrinology. 2009, Vol. 89, No. 4, 424-440. – reference: 30) Levitsky, D. A.; Youn, T. The more food young adults are served, the more they overeat. Journal of Nutrition. 2004, Vol. 134, No. 10, 2546-2549. – reference: 4) Vartanian, L. R.; Schwartz, M. B.; Brownell, K. D. Effects of soft drink consumption on nutrition and health: a systematic review and meta-analysis. American Journal of Public Health. 2007, Vol. 97, No. 4, 667-675. – reference: 12) Canty, D. J.; Chan, M. M. Effects of consumption of caloric vs noncaloric sweet drinks on indices of hunger and food consumption in normal adults. American Journal of Clinical Nutrition. 1991, Vol. 53, No. 5, 1159-1164. – reference: 8) Ranawana, D. V.; Henry, C. J. Are caloric beverages compensated for in the short-term by young adults? An investigation with particular focus on gender differences. Appetite. 2010, Vol. 55, No. 1, 137-146. – reference: 1) 一般社団法人全国清涼飲料連合会. “清涼飲料水の生産量推移 (1998年~2017年)”. http://www.j-sda.or.jp/statistically-information/stati02.php (入手日 : 2018.10.1). – reference: 9) Beaulieu, K.; Hopkins, M.; Long, C.; Blundell, J.; Finlayson, G. High Habitual Physical Activity Improves Acute Energy Compensation in Nonobese Adults. Medicine & Science in Sports & Exercise. 2017, Vol. 49, No. 11, 2268-2275. – reference: 24) Jenkins, D. J.; Wolever, T. M.; Taylor, R. H; Griffiths, C.; Krzeminska, K.; Lawrie, J. A.; Bennett, C. M.; Goff, D. V.; Sarson, D. L.; Bloom, S. R. Slow release dietary carbohydrate improves second meal tolerance. American Journal of Clinical Nutrition. 1982, Vol. 35, No. 6, 1339-1346. – reference: 5) Schulze, M. B.; Manson, J. E.; Ludwig, D. S.; Colditzn, G. A.; Stampfer, M. J.; Willett, W. C.; Hu, F. B. Sugar-sweetened beverages, weight gain, and incidence of type 2 diabetes in young and middle-aged women. Journal of the American Medical Association. 2004, Vol. 292, No. 8, 927-934. – reference: 17) Healy, G. N.; Matthews, C. E.; Dunstan, D. W.; Winkler, E. A.; Owen, N. Sedentary time and cardio-metabolic biomarkers in US adults: NHANES 2003-06. European Heart Journal. 2011, Vol. 32, No. 5, 590-597. – reference: 26) King, NA.; Snell, L.; Smith, R. D.; Blundell, J. E. Effects of short-term exercise on appetite responses in unrestrained females. Europeam Journal of Clinical Nutrition. 1996, Vol. 50, No. 10, 663-667. |
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Snippet | 異なるエネルギーの清涼飲料水の摂取が朝食と1日の食事摂取量に及ぼす影響, および習慣的な身体活動と補償効果の関連を検討することを目的とし, 無作為クロスオーバー試験 (エネルギーのある甘味料入り清涼飲料水 ; sweetener群 (以下, S群) ; 225 kcal vs.... |
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SubjectTerms | エネルギー摂取量 人工甘味料 血糖値 補償効果 食欲 |
Title | 健常成人女性における異なるエネルギーの清涼飲料水の摂取が, その後一日の食事摂取量に及ぼす影響 |
URI | https://www.jstage.jst.go.jp/article/jhej/71/5/71_269/_article/-char/ja |
Volume | 71 |
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ispartofPNX | 日本家政学会誌, 2020, Vol.71(5), pp.269-279 |
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