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Aetiological approach of female reproductive physiology in lactational amenorrhoea

Published online by Cambridge University Press:  31 July 2008

L. Rosetta
Affiliation:
Centre National de la Recherche Scientifique, France

Extract

There is a wide range of duration of post-partum amenorrhoea and resumption of ovulation between individuals, within an individual or between populations. Several extraneous variables, such as parity, mother's age, sex of the breast-fed baby, socioeconomic status and cultural level of the family, can be controlled; then the remaining variables will probably explain a part of the total variability in post-partum amenorrhoea duration but say nothing about the physiological process. In attempting to question physiological aspects of the return of fertility several observational studies have tended to favour one of the different factors which are supposed to play a major role in the regulation and have compared different levels of it, such as body composition of the mother (Frisch & McArthur, 1974), breast-feeding pattern (Jones, 1989) or the life style of the women. Life style can be related to women's physical activity in normal life (Ellison, 1991), the difference between urban and rural life (Carael, 1981) or the environment (Laurenson et al., 1985). Prolactin as a possible mediator of the central regulation has been carefully considered (Lunn, Austin & Whitehead, 1984; Howie et al., 1982). These studies were mainly observational rather than experimental, supplementing mothers during the lactating period or during the pregnancy. If this information is added to what is known of other animal species (Loudon, 1987) or animal experimentation (Plant et al., 1989; Williams et al., 1990a; Williams et al., 1990b), the combination of several of the main factors believed to have a major role in the human species can be clarified and the aetiology of the resumption of fertility in nursing women investigated.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1992

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References

Anderson, K. E., Kappas, A., Conney, A. H., Bradlow, H. L. & Fishman, J. (1984) The influence of dietary protein and carbohydrate on the principal oxidative biotransformations of estradiol in normal subjects. J. clin. Endocr. Metab. 59, 103.Google Scholar
Bentley, G. (1985) Hunter-gatherer energetics and fertility: a reassessment of the !Kung San. Hum. Ecol. 13, 79.CrossRefGoogle Scholar
Cameron, J. L. & Nosbisch, C. (1991) Suppression of pulsatile luteinizing hormone and testosterone secretion during short-term food restriction in the adult male rhesus monkey (Macaco mulatto). Endocrinology, 128, 1532.Google Scholar
Cameron, J. L., Weltzin, T. E., McConaha, C., Helmreich, D. L. & Kaye, W. H. (1991) Slowing of pulsatile luteinizing hormone secretion in men after forty-eight hours of fasting. J. clin. Endocr. Metab. 73, 35.CrossRefGoogle ScholarPubMed
Carael, M. (1981) Child spacing, ecology and nutrition in the Kivu province of Zaïre. In: Child Spacing in Tropical Africa, Traditions and Change, p. 275. Edited by Page, H. J. & Lesthaeghe, R.. Academic Press, New York.Google Scholar
Dettwyler, K. A. (1987) Breastfeeding and weaning in Mali: cultural context and hard data. Social Sci. Med. 24, 633.CrossRefGoogle ScholarPubMed
Ellison, P. T. (1991) Reproductive ecology and human fertility. In: Applications of Biological Anthropology to Human Affairs, p. 14. Edited by Lasker, G. W. & Mascie-Taylor, C. G. N.. Cambridge University Press, Cambridge.CrossRefGoogle Scholar
Ellison, P. T., Peacock, N. R. & Lager, C. (1989) Ecology and ovarian function among the Lese women of the Ituri forest, Zaïre. Am. J. Phys. Anthropol. 78, 519.Google Scholar
Frisch, R. E. & McArthur, J. W. (1974) Menstrual cycles: fatness as a determinant of minimum weight for height necessary for their maintenance or onset. Science, N.Y. 185, 949.CrossRefGoogle ScholarPubMed
Hagerty, M. A., Howie, B. J., Tan, S. & Shultz, T. D. (1988) Effect of low- and high-fat intakes on the hormonal milieu of premenopausal women. Am. J. clin. Nutr. 47, 653.CrossRefGoogle ScholarPubMed
Hennart, P., Hofvander, Y., Vis, H. & Robyn, C. (1985) Comparative study of nursing mothers in Africa (Zaire) and in Europe (Sweden): breastfeeding behaviour, nutritional status, lactational hyperprolactinaemia and status of the menstrual cycle. Clin. Endocr. 22, 179.CrossRefGoogle ScholarPubMed
Howie, P. W., McNeilly, A. S., Houston, M. J., Cook, A. & Boyle, H. (1982) Fertility after child birth: infant feeding patterns, basal PRL levels and post-partum ovulation. Clin. Endocr. 17, 315.CrossRefGoogle Scholar
Hurtado, A. M., Hawkes, K., Hill, K. & Kaplan, H. (1985) Female subsistence strategies among Ache hunter-gatherers of eastern Paraguay. Hum. Ecol. 13, 1.CrossRefGoogle Scholar
Jones, R. E. (1989) Breast-feeding and post-partum amenorrhoea in Indonesia. J. biosoc. Sci. 21, 83.CrossRefGoogle ScholarPubMed
Key, T.J. A., Chen, J., Wang, D. Y, Pike, M. C. & Boreham, J. (1990) Sex hormones in women in rural China and in Britain. Br. J. Cancer, 62, 631.CrossRefGoogle ScholarPubMed
Knobil, E., Plant, T. M., Wildt, L., Belchetz, P. E. & Marshall, G. (1980) Control of the rhesus monkey menstrual cycle: permissive role of hypothalamic gonadotrophin-releasing hormone. Science, N.Y. 207, 1371.CrossRefGoogle Scholar
Laurenson, I. F, Benton, M. A., Bishop, A. J. & Mascie-Taylor, C.G. N. (1985) Fertility at low and high altitude in central Nepal. Social Biol. 32, 65.Google ScholarPubMed
Lewis, P. R., Brown, J. B., Renfree, M. B. & Short, R. V. (1991) The resumption of ovulation and menstruation in a well-nourished population of women breast-feeding for an extended period of time. Fert. Steril. 55, 529.CrossRefGoogle Scholar
Liestøl, K., Rosenberg, M. & Walløe, L. (1988) Lactation and post-partum amenorrhoea: a study based on data from three Norwegian cities 1860–1964. J. biosoc. Sci. 20, 423.CrossRefGoogle ScholarPubMed
Loucks, A. B. (1990) Effects of exercise training on the menstrual cycle: existence and mechanisms. Med. Sci. Sports Exerc. 22, 275.CrossRefGoogle ScholarPubMed
Loucks, A. B., Mortola, J. F., Girton, L. & Yen, S. S. C. (1989) Alterations in the hypothalamic-pituitary-ovarian and the hypothalamic-pituitary-adrenal axes in athletic women. J. clin. Endocr. Metab. 68, 402.CrossRefGoogle ScholarPubMed
Loudon, A. (1987) Nutritional effects on puberty and lactational infertility in mammals: some interspecies considerations. Proc. Nutr. Soc. 46, 203.Google Scholar
Lunn, P. G., Austin, S. & Whitehead, R. G. (1984) The effect of improved nutrition on plasma prolactin concentrations and postpartum infertility in lactating Gambian women. Am. J. clin. Nutr. 39, 227.Google Scholar
Lunn, P. G., Watkinson, M., Prentice, A. M., Morrell, P., Austin, S. & Whitehead, R. G. (1981) Maternal nutrition and lactational amenorrhoea. Lancet, i, 1428.CrossRefGoogle Scholar
Maeda, K. I., Tsukamura, H., Ohkura, S., Kanaizuka, T. & Suzuki, J. (1991) Suppressing of ovarian activity during the breeding season in suckling Japanese monkey (Macaco fuscata). J. Reprod. Pert. 92, 371.CrossRefGoogle Scholar
McNeilly, A. S. (1988) Suckling and the control of gonadotrophin secretion. In The Physiology of Reproduction. Edited by Knobil, E. et al. Raven Press, New York.Google Scholar
Myerson, M., Gutin, B., Warren, M. P., May, M. T., Contento, I., Lee, M., Pi-Sunyer, F. X., Pierson, R. N. & Brooks-Gunn, J. (1991) Resting metabolic rate and energy balance in amenorrheic and eumenorrheic runners. Med. Sci. Sports Exerc. 23, 15.CrossRefGoogle ScholarPubMed
O'Rourke, M. T. & Ellison, P. T. (1990) Salivary measurement of episodic progesterone release. Am. J. Phys. Anthropol. 81, 423.CrossRefGoogle ScholarPubMed
Pagezy, H. (1983) Attitude of Ntomba society towards the primiparous woman and its biological effects. J. biosoc. Sci. 15, 421.CrossRefGoogle ScholarPubMed
Pedersen, A. B., Bartholomew, M. J., Dolence, L. A., Aljadir, L. P., Netteburg, K. L. & Lloyd, T. (1991) Menstrual differences due to vegetarian and nonvegetarian diets. Am. J. clin. Nutr. 53, 879.CrossRefGoogle ScholarPubMed
Plrke, R. M., Schweiger, U., Laessle, R., Dlckhaut, B., Schweiger, M. & Waechtler, M. (1986) Dieting influences the menstrual cycle: vegetarian versus nonvegetarian diet. Pert. Steril. 46, 1083.Google Scholar
Plant, T. M., Gay, V. L., Marshall, G. R. & Arslan, M. (1989) Puberty in monkeys is triggered by chemical stimulation of the hypothalamus. Proc. natn. Acad. Sci. 86, 2506.CrossRefGoogle ScholarPubMed
Rosetta, L. (1986) Sex differences in seasonal variations of the nutritional status of Serere adults in Senegal. Ecol. Food Nutr. 18, 231.Google Scholar
Rosetta, L. (1988) Seasonal variations in food consumption by Serere families in Senegal. Ecol. Food Nutr. 20, 275.CrossRefGoogle Scholar
Rosftta, L. (1989) Breastfeeding and post-partum amenorrhea in Serere women in Senegal. Ann. hum. Biol. 16, 311.CrossRefGoogle Scholar
Rosetta, L. (1990) Biological aspects of fertility among Third World populations. In: Fertility and Resources, p. 18. SSHB Symposium No. 31. Edited by Reynolds, V. & Landers, J.. Cambridge University Press, Cambridge.CrossRefGoogle Scholar
Tremblay, A., Despres, J-P., Leblanc, C., Craig, C. L., Ferris, B., Stephens, T. & Bouchard, C. (1990) Effect of intensity of physical activity on body fatness and fat distribution. Am. J. clin. Nutr. 51, 153.CrossRefGoogle ScholarPubMed
Van Der Walt, L. A., Wilmsen, E. N. & Jenkins, T. (1978) Unusual sex hormone pattern among desert-dwelling hunter-gatherers. J. clin. Endocr. Metab. 46, 658.CrossRefGoogle ScholarPubMed
Williams, C. L., Nishihara, M., Thalabard, J. C., Grosser, P. M., Hotchkiss, J. & Knobil, E. (1990a) Corticotropin releasing factor and gonadotropin releasing hormone pulse generator activity in rhesus monkey. Neuroendocrinology, 52, 133.CrossRefGoogle ScholarPubMed
Williams, C. L., Nishihara, M., Thalabard, J. C., O'Byrne, K. T., Grosser, P. M., Hotchkiss, J. & Knobil, E. (1990b) Duration and frequency of multiunit electrical activity associated with the hypothalamic gonadotropin releasing hormone pulse generator in the rhesus monkey: differential effects of morphine. Neuroendocrinology, 52, 225.CrossRefGoogle ScholarPubMed
Wood, J. W., Johnson, P. L. & Campbell, K. L. (1985) Demographic and endocrinological aspects of low natural fertility in highland New Guinea. J. biosoc. Sci. 17, 57.CrossRefGoogle ScholarPubMed
Woods, M. N., Gorbach, S. L., Longcope, C., Goldin, B. R., Dwyer, J. T. & Merril-Labrode, A. (1989) Low-fat, high-fiber diet and serum estrone sulfates in premenopausal women. Am. J. clin. Nutr. 49, 1179.CrossRefGoogle ScholarPubMed