Milk: A Scientific Model for Diet and Health Research in the 21st Century

被引:4
作者
German, J. Bruce [1 ,2 ,3 ]
Lebrilla, Carlito [1 ,4 ]
Mills, David A. [1 ,2 ,3 ]
机构
[1] Univ Calif Davis, Davis, CA 95616 USA
[2] Univ Calif Davis, Dept Food Sci & Technol, Davis, CA 95616 USA
[3] Univ Calif Davis, Foods Hlth Inst, Davis, CA 95616 USA
[4] Univ Calif Davis, Dept Chem, Davis, CA 95616 USA
关键词
milk; lactation; genomics; oligosaccharides; bifidobacteria; OLIGOSACCHARIDES; EVOLUTION; INFANTIS; BIFIDOBACTERIA; ADAPTATIONS; STRATEGIES; BACTERIAL; PROTEINS; ORIGIN; SYSTEM;
D O I
10.3389/fnut.2022.922907
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
The origin of lactation and the composition, structures and functions of milk's biopolymers highlight the Darwinian pressure on lactation as a complete, nourishing and protective diet. Lactation, under the driving pressure to be a sustainable bioreactor, was under selection pressure of its biopolymers with diverse functions acting from the mammary gland through the digestive system of the infant. For example, milk is extensively glycosylated and the glycan structures and their functions are now emerging. Milk contains free oligosaccharides; complex polymers of sugars whose stereospecific linkages are not matched by glycosidic enzymes within the mammalian infant gut. These glycan polymers reach the lower intestine undigested. In this microbe-rich environment, bacteria compete to release and ferment the sugars via different hydrolytic strategies. One specific type of bacteria, Bifidobacterium longum subsp. infantis, (B. infantis) is uniquely equipped with a repertoire of genes encoding enzymes capable of taking up, hydrolyzing and metabolizing the complex glycans of human milk. This combination of a distinct food supply and unique genetic capability shapes the composition and metabolic products of the entire microbial community within the lower intestine of breast fed infants. The intestinal microbiome dominated by B. infantis, shields the infant from the growth of gram negative enteropathogens and their endotoxins as a clear health benefit. The world is facing unprecedented challenges to produce a food supply that is both nourishing, safe and sustainable. Scientists need to guide the future of agriculture and food in response to these 21st century challenges. Lactation provides an inspiring model of what that future research strategy could be.
引用
收藏
页数:6
相关论文
共 51 条
[11]   Development of bacterial and bifidobacterial communities in feces of newborn babies [J].
Favier, CF ;
de Vos, WM ;
Akkermans, ADL .
ANAEROBE, 2003, 9 (05) :219-229
[12]  
Ferreyra JA, 2014, CELL MICROBIOL, V16, P993, DOI [10.1111/cmi.12300, 10.1111/cmi.123]
[13]  
Frese SA, 2017, MSPHERE, V2, DOI [10.1128/mSphere.00501-17, 10.1128/msphere.00501-17]
[14]   Distribution of Free and Esterified Oxylipins in Cream, Cell, and Skim Fractions of Human Milk [J].
Gan, Junai ;
Zhang, Zhichao ;
Kurudimov, Karina ;
German, J. Bruce ;
Taha, Ameer Y. .
LIPIDS, 2020, 55 (06) :661-670
[15]   Peptidomic profiling of human milk with LC-MS/MS reveals pH-specific proteolysis of milk proteins [J].
Gan, Junai ;
Robinson, Randall C. ;
Wang, Jiaqi ;
Krishnakumar, Nithya ;
Manning, Courtney J. ;
Lor, Yi ;
Breck, Melissa ;
Barile, Daniela ;
German, J. Bruce .
FOOD CHEMISTRY, 2019, 274 :766-774
[16]   Comparative transcriptomics reveals key differences in the response to milk oligosaccharides of infant gut-associated bifidobacteria [J].
Garrido, Daniel ;
Ruiz-Moyano, Santiago ;
Lemay, Danielle G. ;
Sela, David A. ;
German, J. Bruce ;
Mills, David A. .
SCIENTIFIC REPORTS, 2015, 5
[17]   Oligosaccharide Binding Proteins from Bifidobacterium longum subsp infantis Reveal a Preference for Host Glycans [J].
Garrido, Daniel ;
Kim, Jae Han ;
German, J. Bruce ;
Raybould, Helen E. ;
Mills, David A. .
PLOS ONE, 2011, 6 (03)
[18]   BIFIDUS FACTOR .4. PREPARATIONS OBTAINED FROM HUMAN MILK [J].
GAUHE, A ;
GYORGY, P ;
HOOVER, JRE ;
KUHN, R ;
ROSE, CS ;
RUELIUS, HW ;
ZILLIKEN, F .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1954, 48 (01) :214-224
[19]   Bifidobacteria-mediated immune system imprinting early in life [J].
Henrick, Bethany M. ;
Rodriguez, Lucie ;
Lakshmikanth, Tadepally ;
Pou, Christian ;
Henckel, Ewa ;
Arzoomand, Aron ;
Olin, Axel ;
Wang, Jun ;
Mikes, Jaromir ;
Tan, Ziyang ;
Chen, Yang ;
Ehrlich, Amy M. ;
Bernhardsson, Anna Karin ;
Mugabo, Constantin Habimana ;
Ambrosiani, Ylva ;
Gustafsson, Anna ;
Chew, Stephanie ;
Brown, Heather K. ;
Prambs, Johann ;
Bohlin, Kajsa ;
Mitchell, Ryan D. ;
Underwood, Mark A. ;
Smilowitz, Jennifer T. ;
German, J. Bruce ;
Frese, Steven A. ;
Brodin, Petter .
CELL, 2021, 184 (15) :3884-+
[20]   Colonization by B. infantis EVC001 modulates enteric inflammation in exclusively breastfed infants [J].
Henrick, Bethany M. ;
Chew, Stephanie ;
Casaburi, Giorgio ;
Brown, Heather K. ;
Frese, Steven A. ;
Zhou, You ;
Underwood, Mark A. ;
Smilowitz, Jennifer T. .
PEDIATRIC RESEARCH, 2019, 86 (06) :749-757