Biomedical subjects
M M Grönlund
Publications and source records attributed to M M Grönlund.
Importance of intestinal colonisation in the maturation of humoral immunity in early infancy: a prospective follow up study of healthy infants aged 0-6 months.
AIM: To evaluate the role of intestinal microflora and early formula feeding in the maturation of humoral immunity in healthy newborn infants. STUDY DESIGN: Sixty four healthy infants were studied. Faecal colonisation with Bacteroides fragilis group, Bifidobacterium-like, and Lactobacillus-like bacteria was examined at 1, 2, and 6 months of age, and also the number of IgA-secreting, IgM-secreting, and IgG-secreting cells (detected by ELISPOT) at 0, 2, and 6 months of age. RESULTS: Intestinal colonisation with bacteria from the B fragilis group was more closely associated with maturation of IgA-secreting and IgM-secreting cells than colonisation with the other bacterial genera studied or diet. Infants colonised with B fragilis at 1 month of age had more IgA-secreting and IgM-secreting cells/10(6) mononuclear cells at 2 months of age (geometric mean (95% confidence interval) 1393 (962 to 2018) and 754 (427 to 1332) respectively) than infants not colonised (1015 (826 to 1247) and 394 (304 to 511) respectively); p = 0.04 and p = 0.009 respectively. CONCLUSIONS: The type of bacteria colonising the intestine of newborns and the timing may determine the immunomodulation of the naive immune system.
Mode of delivery directs the phagocyte functions of infants for the first 6 months of life.
Factors that direct the immune responsiveness of the newborn beyond the immediate post-natal period are not known. We investigated the influence of mode of delivery and type of feeding on the phagocyte activity during the first 6 months of life. Sixty-four healthy infants (34 delivered vaginally and 30 by elective Caesarean section) were studied at birth and at the ages of 2 and 6 months. Phagocyte functions were studied by measuring the chemiluminescence (CL) activity of whole blood and isolated leucocytes and by investigating the expression of phagocyte receptors (FcgammaRI (CD64), FcgammaRII (CD32), FcgammaRIII (CD16), CR1 (CD35), CR3 (CD11b) and FcalphaR (CD89)) on neutrophils, monocytes and eosinophils by using receptor-specific MoAbs and immunofluorescence flow cytometry. Infants born by elective Caesarean section had significantly higher CL activity than those delivered vaginally during the entire 6-month follow up. In addition, infants who received formula feeds had significantly higher CL activity at 6 months of age and higher expression of FcgammaRI-, Fcalpha- and CR3-receptors on neutrophils than infants exclusively breast-fed. We suggest that stress reaction associated with labour influences the phagocytic activity measured in the cord blood but later during infancy the intraluminal antigens, gut microflora and diet, become important determinants in immune programming of human individuals.
Fecal microflora in healthy infants born by different methods of delivery: permanent changes in intestinal flora after cesarean delivery.
BACKGROUND: Newborn infants in modern maternity hospitals are subject to numerous factors that affect normal intestinal colonization--for example, cesarean delivery and antimicrobial agents. To study the duration of the effect of external factors on intestinal colonization, two groups of infants with different delivery methods were investigated. METHODS: The fecal flora of 64 healthy infants was studied prospectively. Thirty-four infants were delivered vaginally, and 30 by cesarean birth with antibiotic prophylaxis administered to their mothers before the delivery. The fecal flora was cultured on nonselective and selective media in infants 3 to 5, 10, 30, 60, and 180 days of age. Gastrointestinal signs were recorded daily by the mothers for 2 months. RESULTS: The fecal colonization of infants born by cesarean delivery was delayed. Bifidobacterium-like bacteria and Lactobacillus-like bacteria colonization rates reached the rates of vaginally delivered infants at 1 month and 10 days, respectively. Infants born by cesarean delivery were significantly less often colonized with bacteria of the Bacteroides fragilis group than were vaginally delivered infants: At 6 months the rates were 36% and 76%, respectively (p=0.009). The occurrence of gastrointestinal signs did not differ between the study groups. CONCLUSIONS: This study shows for the first time that the primary gut flora in infants born by cesarean delivery may be disturbed for up to 6 months after the birth. The clinical relevance of these changes is unknown, and even longer follow-up is needed to establish how long-lasting these alterations of the primary gut flora can be.
Development of intestinal bacterial enzymes in infants--relationship to mode of delivery and type of feeding.
To evaluate the development of intestinal flora in young infants, and especially to estimate the influence of mode of delivery and type of feeding on the establishment of intestinal microflora, faecal flora was studied indirectly by measuring prospectively the faecal bacterial enzyme activities (beta-glucosidase, beta-glucuronidase and urease) in 29 full-term, healthy infants during the first 6 months of life. Mode of delivery had no influence on the faecal enzyme activities. In contrast, infants receiving formula feeds were more often urease positive at 1-2 months of age (70% vs 25%, p=0.043) and had higher median activity of beta-glucuronidase at 6 months of age (0.90 and 0.19 nmoles/mg protein x min, p= 0.0043) than exclusively breast-fed infants. Through indirect methods to measure the development of a faecal microflora our results indicate that the type of milk that infants receive during the first months of life may have an important role in the development of intestinal flora.
Lactobacillus GG supplementation does not reduce faecal colonization of Klebsiella oxytoca in preterm infants.
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Lactobacillus GG supplementation does not reduce faecal colonization of Klebsiella oxytoca in preterm infants.
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