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Metabolic changes during the menstrual cycle

Published online by Cambridge University Press:  09 March 2007

J. T. Bisdee
Affiliation:
Dunn Clinical Nutrition Centre, 100 Tennis Court Road, Cambridge CB2 1QL
P. J. Garlick
Affiliation:
Rowett Research Institute, Bucksburn, Aberdeen AB2 9SB
W. P. T. James
Affiliation:
Rowett Research Institute, Bucksburn, Aberdeen AB2 9SB
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Abstract

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1. Eight women maintained on a constant diet throughout a single menstrual cycle were studied for cyclical changes in body-weight, carbohydrate, fat and protein metabolism.

2. A cyclical variation in weight occurred with two phases corresponding to the time of ovulation and menstruation.

3. Creatinine and nitrogen excretion in the urine also tended to be higher in the luteal phase.

4. Analysis of gas exchange in a respiratory chamber for 24 h periods at intervals during the cycle suggested that carbohydrate utilization tended to be less in the early follicular phase.

5. Feeding with a mixed diet produced marked increases in carbohydrate utilization during the day with little change in fat utilization from the fasting state. Carbohydrate utilization was less when fasting at night and tended to be less when fed during the day in the early follicular phase of the menstrual cycle.

6. Weight changes were not readily ascribed to changes in colonic function, or in glycogen or body protein storage.

Type
Hormones, Metabolism
Copyright
Copyright © The Nutrition Society 1989

References

Bingham, S., Cummings, J. H. & McNeil, N. I. (1979). Intakes and sources of dietary fibre in the British population. American Journal of Clinical Nutrition 32, 13141319.CrossRefGoogle ScholarPubMed
Bisdee, J. T., James, W. P. T. & Shaw, M. A. (1989). Changes in energy expenditure during the menstrual cycle. British Journal of Nutrition 61, 187199.Google Scholar
Branch, W. J. & Cummings, J. H. (1978). Comparison of radio-opaque pellets and chromium sesquioxide as inert markers in studies requiring faecal collections. Gut 19, 371376.CrossRefGoogle ScholarPubMed
Bruce, J. & Russell, G. F. M. (1962). Premenstrual tension: a study of weight changes and balances of water, sodium and potassium. Lancet ii, 267271.Google Scholar
Calloway, D. H. & Kurzer, M. S. (1982). Menstrual cycle and protein requirements of women. Journal of Nutrition 112, 356366.CrossRefGoogle ScholarPubMed
Chesley, L. C. & Hellman, L. M. (1957). Variations in body weight and salivary sodium in the menstrual cycle. American Journal of Obstetrics & Gynecology 74, 582590.Google Scholar
Clugston, G. A. & Garlick, P. J. (1982). The response of protein and energy metabolism to food intake in lean and obese man. Human Nutrition: Clinical Nutrition 36C, 5770.Google ScholarPubMed
Cummings, J. H., Jenkins, D. J. A. & Wiggins, H. S. (1976). Measurement of the mean transit time of dietary residue through the human gut. Gut 17, 210218.Google Scholar
Dalvit, S. P. (1981). The effect of the menstrual cycle on patterns of food intake. American Journal of Clinical Nutrition 34, 18111815.CrossRefGoogle ScholarPubMed
Dalvit-McPhillips, S. P. (1983). The effect of the human menstrual cycle on nutrient intake. Physiology and Behaviour 31, 209212.CrossRefGoogle ScholarPubMed
Danforth, D. N., Boyer, P. K. & Graff, S. (1946). Fluctuations in weight, haematocrit and plasma protein with the menstrual cycle. Endocrinology 39, 188193.CrossRefGoogle ScholarPubMed
Flatt, J. P., Ravussin, E., Acheson, K. J. & Jequier, E. (1985). Effects of dietary fat on postprandial substrate oxidation and on carbohydrate and fat balances. Journal of Clinical Investigation 76, 10191024.Google Scholar
Fortin, J. N., Wittkower, E. D. & Kalz, F. (1958). A psychosomatic approach to the pre-menstrual tension syndrome: a preliminary report. Canadian Medical Association Journal 79, 978981.Google Scholar
Garlick, P. J. (1987). An evaluation of the formulae for calculating nutrient oxidation rates from respiratory gas measurements. Human Nutrition: Clinical Nutrition 41C, 165176.Google Scholar
Garlick, P. J., McHardy, K. C., McNurlan, M. A., Calder, A. G., Milne, E., Fearns, L. M. & Broom, J. (1987). Rates of nutrient utilization in man measured by combined respiratory gas analysis and stable isotopic labelling: the effect of food intake. Human Nutrition: Clinical Nutrition 41C, 177191.Google Scholar
Gear, J. S. S., Fursdon, P., Nolan, D. J., Ware, A., Mann, J. I., Brodribb, A. J. M. & Vessey, M. P. (1979). Symptomless diverticular disease and intake of dietary fibre. Lancet i, 511514.CrossRefGoogle Scholar
Golub, L. J., Menduke, H. & Conly, S. S. (1965). Weight changes in college women during the menstrual cycle. American Journal of Obstetrics and Gynecology 91, 8994.Google Scholar
Lamb, W. M., Ulett, G. A., Masters, W. H. & Robinson, D. W. (1953). Premenstrual tension: EEG, hormonal and psychiatric evaluation. American Journal of Psychiatry 102, 840846.Google Scholar
Manocha, S., Choudhuri, G. & Tandon, B. N. (1986). A study of dietary intake in pre- and post-menstrual period. Human Nutrition: Applied Nutrition 40A, 213216.Google Scholar
Morton, J. H. (1950). Premenstrual tension. American Journal of Obstetrics and Gynecology 60, 343352.Google Scholar
Morton, J. H., Additon, H., Addison, R. G., Hunt, L. & Sullivan, J. J. (1953). A clinical study of premenstrual tension. American Journal of Obstetrics and Gynecology 65, 11821191.CrossRefGoogle ScholarPubMed
Okey, R. & Robb, E. I. (1925). Studies of the metabolism of women. I. Variations in the fasting blood sugar level and in sugar tolerance in relation to the menstrual cycle. Journal of Biological Chemistry 65, 165186.Google Scholar
Pliner, P. & Fleming, A. S. (1983). Food intake, body weight, and sweetness preferences over the menstrual cycle in humans. Physiology and Behaviour 30, 663666.CrossRefGoogle ScholarPubMed
Robinson, M. F. & Watson, P. E. (1965). Day to day variations in body weight of young women. British Journal of Nutrition 19, 225235.Google Scholar
Southgate, D. A. T. & Durnin, J. V. G. A. (1970). Calorie conversion factors: an experimental reassessment of the factors used in the calculation of the energy value of human diets. British Journal of Nutrition 24, 517535.Google Scholar
Thomas, C. B. (1953). Some observations on the relationship between weight changes following sodium restriction and those associated with the menstrual cycle in young women. Annals of Internal Medicine 39, 289305.Google ScholarPubMed
Thorn, G. W., Nelson, K. R. & Thorn, D. W. (1938). A study of the mechanism of edema associated with menstruation. Endocrinology 22, 155163.CrossRefGoogle Scholar
Wald, A., Van Thiel, D. H., Hoechsetter, L., Gavaler, J. S., Egler, K. M., Verm, R., Scott, L. & Lester, R. (1981). Gastrointestinal transit: the effect of the menstrual cycle. Gastroenterology 80, 14971500.CrossRefGoogle ScholarPubMed
Watson, P. E. & Robinson, M. F. (1965). Variations in body weight of young women during the menstrual cycle. British Journal of Nutrition 19, 237248.Google Scholar