It is generally accepted that feeding the newborn infant human milk has a positive effect on the infant's health, supplying both optimal nutrition and decreasing the rates of certain infectious diseases. The mechanism by which the latter is achieved is not totally understood, but is thought to be related to the large number of milk components that are classically related to host defense, such as phagocytic cells, immunoglobulins and multiple """"""""nonspecific"""""""" factors. Paradoxically, however, milk polymorphonuclear leukocytes (PMN), the most prominent cellular component of colostrum, are hypofunctional compared to the circulating PMN, suggesting that either their intended functions have been performed and they are effete, or that they function in ways that are neither understood nor appreciated. This section of the Program Project Grant proposes to examine three hypotheses about the colostral PMN. The first is that it is an exudate cell, and as such, has the functional behaviour of an exudate cell perhaps with some modifications due to the unique environment in which it exists. The second is that as yet unrecognized components of milk and colostrum uniquely benefit the newborn infant by ameliorating the functional defects found in the neonatal PMN. The third hypothesis is that colostrum and milk are inherently """"""""anti-inflammatory"""""""" to protect the neonatal intestine from the potentially harmful effects of maternal PMN that are present in colostrum.

Project Start
Project End
Budget Start
Budget End
Support Year
12
Fiscal Year
1991
Total Cost
Indirect Cost
City
Houston
State
TX
Country
United States
Zip Code
77225
Reed, Benjamin D; Schibler, Kurt R; Deshmukh, Hitesh et al. (2018) The Impact of Maternal Antibiotics on Neonatal Disease. J Pediatr 197:97-103.e3
Young, Bridget E; Patinkin, Zachary W; Pyle, Laura et al. (2017) Markers of Oxidative Stress in Human Milk do not Differ by Maternal BMI But are Related to Infant Growth Trajectories. Matern Child Health J 21:1367-1376
Dingess, Kelly A; Valentine, Christina J; Ollberding, Nicholas J et al. (2017) Branched-chain fatty acid composition of human milk and the impact of maternal diet: the Global Exploration of Human Milk (GEHM) Study. Am J Clin Nutr 105:177-184
He, YingYing; Lawlor, Nathan T; Newburg, David S (2016) Human Milk Components Modulate Toll-Like Receptor-Mediated Inflammation. Adv Nutr 7:102-11
Vanchiere, John A; Carillo, Berenice; Morrow, Ardythe L et al. (2016) Fecal Polyomavirus Excretion in Infancy. J Pediatric Infect Dis Soc 5:210-3
Ward, Doyle V; Scholz, Matthias; Zolfo, Moreno et al. (2016) Metagenomic Sequencing with Strain-Level Resolution Implicates Uropathogenic E. coli in Necrotizing Enterocolitis and Mortality in Preterm Infants. Cell Rep 14:2912-24
Newburg, David S; Ko, Jae Sung; Leone, Serena et al. (2016) Human Milk Oligosaccharides and Synthetic Galactosyloligosaccharides Contain 3'-, 4-, and 6'-Galactosyllactose and Attenuate Inflammation in Human T84, NCM-460, and H4 Cells and Intestinal Tissue Ex Vivo. J Nutr 146:358-67
He, YingYing; Liu, ShuBai; Kling, David E et al. (2016) The human milk oligosaccharide 2'-fucosyllactose modulates CD14 expression in human enterocytes, thereby attenuating LPS-induced inflammation. Gut 65:33-46
Currier, Rebecca L; Payne, Daniel C; Staat, Mary A et al. (2015) Innate Susceptibility to Norovirus Infections Influenced by FUT2 Genotype in a United States Pediatric Population. Clin Infect Dis 60:1631-8
Newburg, David S; Morelli, Lorenzo (2015) Human milk and infant intestinal mucosal glycans guide succession of the neonatal intestinal microbiota. Pediatr Res 77:115-20

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