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Maternal nutrition and the regulation of milk synthesis

Published online by Cambridge University Press:  28 February 2007

Peter Hartmann
Affiliation:
Department of Biochemistry, The University of Western Australia, Nedlands, WA 6009, Australia
Jillian Sherriff
Affiliation:
School of Public Health, Curtin University of Technology, Bentley, WA 6102, Australia
Jacqueline Kent
Affiliation:
Department of Biochemistry, The University of Western Australia, Nedlands, WA 6009, Australia
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Abstract

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Type
Symposium on ‘Maternal–offspring interactions’
Copyright
Copyright © The Nutrition Society 1995

References

Allen, L. H., Ferris, A. M. & Pelto, G. H. (1986). Maternal factors affecting lactation. In Human Lactation 2: Maternal and Environmental Factors, pp. 51–40 [Hamosh, M. and Goldman, A. J., editors]. New York: Plenum Press.CrossRefGoogle Scholar
Arthur, P. G., Hartmann, P. E. & Smith, M. (1987). Measurement of milk intake of breast-fed infants. Journal of Pediatric Gastroenterology and Nutrition 6, 758763.Google ScholarPubMed
Arthur, P. G., Jones, T. J., Spruce, J. & Hartmann, P. E. (1989). Measuring short-term rates of milk synthesis in breast feeding mothers. The Quarterly Journal of Experimental Physiology 74, 419428.CrossRefGoogle ScholarPubMed
Bauer, D. C., Browner, W. S., Cauley, J. A., Orwell, E. S., Scott, J. C., Black, D. M., Tao, J. L. & Cummings, S. R. (1993). Factors associated with appendicular bone mass in older women. Annals of Internal Medicine 118, 657665.CrossRefGoogle ScholarPubMed
Brewer, M. M., Bates, M. R. & Vannoy, L. P. (1989). Postpartum changes in maternal weight and body fat depots in lactating versus non-lactating women. American Journal of Clinical Nutrition 49, 259265.CrossRefGoogle Scholar
Connor, W. E., Neuringer, M. & Reisbick, J. (1992). Essential fatty acids: The importance of n-3 fatty acids in the retina and brain. Nutrition Reviews 50, 2129.CrossRefGoogle ScholarPubMed
Daly, S. E. J. & Hartmann, P. E. (1995 a). Infant demand and milk supply, Part 1: Infant demand and milk production in lactating women. Journal of Human Lactation 11, 2126.CrossRefGoogle ScholarPubMed
Daly, S. E. J. & Hartmann, P. E. (1995 b). Infant demand and milk supply, Part 2: The short-term control of milk synthesis in lactating women. Journal of Human Lactation 11, 2737.CrossRefGoogle ScholarPubMed
Daly, S. E. J., Kent, J. C., Huynh, D. Q., Owens, R. A., Alexander, B. F., Ng, K. C. & Hartmann, P. E. (1992). The determination of short-term breast volume changes and the rate of synthesis of human milk using computerized breast measurement. Experimental Physiology 77, 7987.CrossRefGoogle ScholarPubMed
Daly, S. E. J., Owens, R. A. & Hartmann, P. E. (1993). The short-term synthesis and infant-regulated removal of milk in lactating women. Experimental Physiology 78, 209220.CrossRefGoogle ScholarPubMed
Dewey, K. G., Heinig, M. J. & Nornmsen, L. A. (1993). Maternal weight-loss patterns during prolonged lactation. American Journal of Clinical Nutrition 58, 162166.CrossRefGoogle ScholarPubMed
Dewey, K. G., Heinig, M. J., Nommsen, L. A. & Lonnerdal, B. (1991). Maternal versus infant factors related to breast milk intake and residual milk intake. Pediatrics 87, 829837.CrossRefGoogle ScholarPubMed
Dugdale, A. E. & Eaton-Evans, J. (1989). The effect of lactation and other factors on postpartum changes in body weight and triceps skinfold thickness. British Journal of Nutrition 61, 149153.CrossRefGoogle ScholarPubMed
Egger, G. (1992). The case for using waist to hip ratio measurements in routine medical checks. Medical Journal of Australia 156, 280284.CrossRefGoogle ScholarPubMed
Gibson, R., Makrides, M., Neumann, M. & Simmer, K. (1993). Fatty acid status and visual function in term infants. In Abstracts XV International Congress of Nutrition, Adelaide: 2, p. 760. Adelaide: International Union of Nutritional Sciences.Google Scholar
Goldberg, G. R., Prentice, A. M., Coward, W. A., Davies, H. L., Murgatroyd, P. R., Sawyer, M. B., Ashford, J. & Black, A. E. (1991). Longitudinal assessment of the components of energy balance in well-nourished lactating women. American Journal of Clinical Nutrition 54, 788798.CrossRefGoogle ScholarPubMed
Gorman, C. (1994). When breast-feeding fails. Time Australia 34, 67.Google Scholar
Greenwood, M. R. C., Savard, R., West, D. B. & Kava, R. (1987). Energy metabolism and nutrient [gating] in pregnancy and lactation. In Recent Advances in Obesity Research, vol. 5, pp. 258623 [Berry, E., Blonheim, S. H., Eliahon, E. and Shafrir, E., editors]. London: John Libbey and Co.Google Scholar
Hartmann, P. E., Atwood, C. S., Cox, D. B. & Dafy, S. E. J. (1995). Endocrine and autocrine strategies for the control of lactation in women and sows. Hannah Research Institute Conference on Intercellular Signalling in the Mammary Gland [Wilde, C., Knight, D. H. and Peaker, M., editors]. New York: Plenum Publishing Co. (In the Press).Google Scholar
Harzer, G. & Haschke, F. (1989). Micronutrients in human milk. In Micronutrients in Milk and Milk-based Food Products, pp. 146148 [Renner, E., editor]. London and New York: Elsevier Applied Science.Google Scholar
Hytten, F. (1991). Weight gain in pregnancy. In Clinical Physiology in Obstetrics, 2nd ed., pp. 173203 [Hytten, F. and Chamberlain, G., editors]. Oxford: Blackwell Scientific Publications.Google Scholar
James, W. P. T. & Ralph, A. (1991). Maternal nutrition and pregnancy. In Scientific Foundations of Obstetrics and Gynaecology, p. 405 [Philipp, E., Setchell, M. and Ginsburg, J., editors]. Oxford: Butterworth Heinemann.Google Scholar
Kent, G. N., Price, R. I., Gutteridge, D. H., Rosman, K. J., Smith, M., Allen, J. R., Hickling, C. J. & Blakeman, S. L. (1991). The efficiency of intestinal calcium absorption is increased in late pregnancy but not in established lactation. Calcified Tissue International 48, 293295.CrossRefGoogle ScholarPubMed
Kent, G. N., Price, R. I., Gutteridge, D. H., Smith, M., Allen, J. R., Bhagat, C. I., Barnes, M. P., Hickling, C. J., Retallack, R. W., Wilson, S. G., Devlin, R. D., Davies, C. & St John, A. (1990). Human lactation: Forearm trabecular bone loss, increased bone turnover, renal conservation of calcium and inorganic phosphate with recovery of bone mass following weaning. Journal of Bone and Mineral Research 5, 361369.CrossRefGoogle ScholarPubMed
King, J. C., Halloran, B. P., Huq, N., Diamond, T. & Buckendahl, P. E. (1992). Calcium metabolism during pregnancy and lactation. In Mechanisms Regulating Lactation and Infant Nutrient Utilization, pp. 129146 [Picciano, M. F. and Lönnerdal, B., editors]. New York: Wiley-Liss.Google Scholar
Lissner, L., Bengtsson, C. & Hasson, T. (1991). Bone mineral content in relation to lactation history in pre- and postmenopausal women. Calcified Tissue International 48, 319325.CrossRefGoogle ScholarPubMed
Lucas, A., Morley, R., Cole, T. J., Lister, G. & Leeson-Payne, C. (1992). Breast milk and subsequent intelligence quotient in children born preterm. Lancet 339, 14771481.CrossRefGoogle ScholarPubMed
National Health and Medical Research Council (1992). Dietary Guidelines for Australians, pp. 8492. Canberra: Australian Government Publishing Service.Google Scholar
National Heart Foundation of Australia (1990). Risk Prevalence Study no. 3, 1989. Canberra: National Heart Foundation of Australia and The Australian Institute of Health.Google Scholar
Ohlin, A. & Rossner, S. (1990). Maternal body weight development after pregnancy. International Journal of Obesity 14, 159173.Google Scholar
Phillips, V. (1991). Successful Lactation, 6th ed. Melbourne: NMAA.Google Scholar
Prentice, A., Addey, C. V. P. & Wilde, C. J. (1989). Evidence for local feedback control of human milk secretion. Biochemical Society Transactions 17, 122.CrossRefGoogle Scholar
Prentice, A., Paul, A., Prentice, A., Black, A., Cole, T. & Whitehead, R. (1986). Cross-cultural differences in lactational performance. In Human Lactation 2: Maternal and Environmental Factors, pp. 1344 [Hamosh, M. and Goldman, A. S., editors]. New York: Plenum Press.CrossRefGoogle Scholar
Rattigan, S., Ghisalberti, A. V. & Hartmann, P. E. (1981). Breast milk production in Australian women. British Journal of Nutrition 45, 243249.CrossRefGoogle ScholarPubMed
Rolls, B. J. & Shide, D. J. (1992). The influence of dietary fat and food intake on body weight. Nutrition Reviews 50, 283290.CrossRefGoogle ScholarPubMed
Rookus, M. A., Rokebrand, P., Burema, J. & Deurenburg, P. (1987). The effect of pregnancy on BMI nine months postpartum in 49 females. International Journal of Obesity 11, 609618.Google Scholar
Saint, L., Smith, M. & Hartmann, P. E. (1984). The yield and nutrient content of colostrum and milk of women from giving birth to 1 month post-partum. British Journal of Nutrition 52, 8795.CrossRefGoogle ScholarPubMed
Sanders, T. A. & Reddy, S. (1992). The influence of a vegetarian diet on the fatty acid composition of human milk and the essential fatty acid status of the infant. Journal of Pediatrics 120, S71S77.CrossRefGoogle ScholarPubMed
Sheldon, J. H. (1949). Maternal obesity. Lancet 12, 869873.CrossRefGoogle Scholar
Sherriff, J. L. & Hartmann, P. E. (1994). Changes in maternal anthropometry during lactation. 2nd National Conference of the Australian Lactation Consultants' Association, Adelaide W15. Adelaide: South Australian Women's Association.Google Scholar
Short, R. V., Lewis, P. R., Renfree, M. B. & Shaw, G. (1991). Contraceptive effects of extended lactational amenorrhoea: beyond the Bellagio Consensus. Lancet 337, 715717.CrossRefGoogle ScholarPubMed
Sowers, M. F., Corton, G., Shapiro, B., Jannausch, M. L., Crutchfield, M., Smith, M. L., Randolph, J. F. & Hollos, B. (1993). Changes in bone density with lactation. Journal of the American Medical Association 269, 31303135.CrossRefGoogle ScholarPubMed
Specker, B. L., Tsang, R. C., Ho, M. & Miller, D. (1987). Effect of a vegetarian diet on serum 1,25-dihydroxyvitamin D concentrations during lactation. Obstetrics and Gynaecology 70, 870874.Google Scholar
Van Beusekom, C., Martini, I. A., Rutgers, H. M., Boersma, E. R. & Muskiet, F. A. (1990). A carbohydrate-rich diet not only leads to incorporation of medium-chain fatty acids (6:0–14:0) in milk triglycerides but also in each milk-phospholipid subclass. American Journal of Clinical Nutrition 52, 326334.CrossRefGoogle ScholarPubMed
Wilde, C. J. & Peaker, M. (1990). Autocrine control in milk secretion. Journal of Agricultural Science 114, 235238.CrossRefGoogle Scholar