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J Clin Microbiol. 1990 February; 28(2): 287–292.
PMCID: PMC269592
Growth promotion of Bifidobacterium species by whey and casein fractions from human and bovine milk.
B W Petschow and R D Talbott
Food and Nutrition Research, Bristol-Myers USPNG, Evansville, Indiana 47721.
Abstract
An in vitro assay was used to study the growth-promotional activity of human milk (HM), cow's milk (CM), and whey and casein fractions of HM and CM for five strains of Bifidobacterium species isolated originally from stools of human infants. Whey- and casein-predominant CM-based infant formulas were studied as well. When compared on an equivalent protein basis, the growth promotion activity of HM was greater than that of CM for Bifidobacterium bifidum serovar pennsylvanicus and Bifidobacterium longum but comparable for B. bifidum, Bifidobacterium infantis, and Bifidobacterium breve. Pasteurization of HM and CM resulted in an increase of growth promotion activity for B. bifidum serovar pennsylvanicus and B. bifidum, a decrease for B. infantis, and no change for B. longum and B. breve. The growth promotion activity of HM whey was slightly higher than that of HM casein for four strains of bifidobacteria. When CM casein was a substrate, virtually no growth occurred for B. bifidum serovar pennsylvanicus, B. bifidum, B. infantis, and B. longum. The growth promotion activity of CM whey, however, was similar to that of HM whey. A similar trend was observed for CM-based infant formula. Whey-dominant formulas promoted better growth of B. bifidum serovar pennsylvanicus, B. bifidum, and B. infantis than casein-dominant formulas. The data suggest a direct relationship between amount of whey-specific factors and the ability to promote growth of clinically relevant strains of Bifidobacterium species by HM, CM, and CM-based infant formulas.
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Selected References
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  • Beerens H, Romond C, Neut C. Influence of breast-feeding on the bifid flora of the newborn intestine. Am J Clin Nutr. 1980 Nov;33(11 Suppl):2434–2439. [PubMed]
  • Benno Y, Sawada K, Mitsuoka T. The intestinal microflora of infants: composition of fecal flora in breast-fed and bottle-fed infants. Microbiol Immunol. 1984;28(9):975–986. [PubMed]
  • Bezkorovainy A, Topouzian N. Bifidobacterium bifidus var. Pennsylvanicus growth promoting activity of human milk casein and its derivatives. Int J Biochem. 1981;13(5):585–590. [PubMed]
  • Chandra RK. Prospective studies of the effect of breast feeding on incidence of infection and allergy. Acta Paediatr Scand. 1979 Sep;68(5):691–694. [PubMed]
  • Cunningham AS. Morbidity in breast-fed and artificially fed infants. J Pediatr. 1977 May;90(5):726–729. [PubMed]
  • Cunningham AS. Morbidity in breast-fed and artificially fed infants. II. J Pediatr. 1979 Nov;95(5 Pt 1):685–689. [PubMed]
  • Gerrard JW. Breast-feeding: second thoughts. Pediatrics. 1974 Dec;54(6):757–764. [PubMed]
  • GLICK MC, SALL T, ZILLIKEN F, MUDD S. Morphological changes of Lactobacillus bifidus var. pennsylvanicus produced by a cell-wall precursor. Biochim Biophys Acta. 1960 Jan 15;37:361–363. [PubMed]
  • GYORGY P. A hitherto unrecognized biochemical difference between human milk and cow's milk. Pediatrics. 1953 Feb;11(2):98–108. [PubMed]
  • GYORGY P, ROSE CS. 'Microbiological studies on growth factor for L. bifidus var. pennsylvanicus. Proc Soc Exp Biol Med. 1955 Oct;90(1):219–223. [PubMed]
  • Kovar MG, Serdula MK, Marks JS, Fraser DW. Review of the epidemiologic evidence for an association between infant feeding and infant health. Pediatrics. 1984 Oct;74(4 Pt 2):615–638. [PubMed]
  • Long SS, Swenson RM. Development of anaerobic fecal flora in healthy newborn infants. J Pediatr. 1977 Aug;91(2):298–301. [PubMed]
  • Lönnerdal B. Biochemistry and physiological function of human milk proteins. Am J Clin Nutr. 1985 Dec;42(6):1299–1317. [PubMed]
  • Mata LJ, Wyatt RG. The uniqueness of human milk. Host resistance to infection. Am J Clin Nutr. 1971 Aug;24(8):976–986. [PubMed]
  • Mitsuoka T, Kaneuchi C. Ecology of the bifidobacteria. Am J Clin Nutr. 1977 Nov;30(11):1799–1810. [PubMed]
  • Landau W. Human colostral whey M-1 glycoproteins and their L. bifidus var. Penn. growth promoting activities. Life Sci. 1974 Mar 1;14(5):967–976. [PubMed]
  • Ochi Y, Mitsuoka T, Sega T. Untersuchungen über die Darmflora des Huhnes. III. Die Entwicklung der Darmflora von Küken bis zum Huhn. Zentralbl Bakteriol Orig. 1964 Jun;193(1):80–95. [PubMed]
  • Poch M, Bezkorovainy A. Growth-enhancing supplements for various species of the genus Bifidobacterium. J Dairy Sci. 1988 Dec;71(12):3214–3221. [PubMed]
  • Poupard JA, Husain I, Norris RF. Biology of the bifidobacteria. Bacteriol Rev. 1973 Jun;37(2):136–165. [PubMed]
  • Stark PL, Lee A. The microbial ecology of the large bowel of breast-fed and formula-fed infants during the first year of life. J Med Microbiol. 1982 May;15(2):189–203. [PubMed]
  • Yoshioka H, Iseki K, Fujita K. Development and differences of intestinal flora in the neonatal period in breast-fed and bottle-fed infants. Pediatrics. 1983 Sep;72(3):317–321. [PubMed]