COMPENDIUM ON FUNCTIONAL MEDICINE - Flipbook - Page 789
[63] Di Gioia D, Aloisio I, Mazzola G, et al. Bifidobacteria: their
impact on gut microbiota composition and their applications as
probiotics in infants. Appl Microbiol Biotechnol. 2014;98(2):563-77.
[64] Turroni F, Milani C, Duranti S, et al. Deciphering
bifidobacterial-mediated metabolic interactions and their impact
on gut microbiota by a multi-omics approach. ISME J.
2016;10(7):1656-68.
[65] Duranti S, Gaiani F, Mancabelli L, et al. Elucidating the gut
microbiome of ulcerative colitis: bifidobacteria as novel microbial
biomarkers. FEMS Microbiol Ecol. 2016;92(12).
[66] Xu J, Bjursell MK, Himrod J, et al. A genomic view of the
human-Bacteroides thetaiotaomicron symbiosis. Science.
2003;299(5615):2074-6.
[67] Pudlo NA, Urs K, Kumar SS, et al. Symbiotic human gut
bacteria with variable metabolic priorities for host mucosal
glycans. mBio. 2015;6(6).
[68] Hooper LV, Wong MH, Thelin A, et al. Molecular analysis of
commensal host-microbial relationships in the intestine. Science.
2001;291(5505):881-4.
[69] Stappenbeck TS, Hooper LV, Gordon JI. Developmental
regulation of intestinal angiogenesis by indigenous microbes via
Paneth cells. Proc Natl Acad Sci USA. 2002;99(24):15451-5.
[70] Ridlon JM, Kang DJ, Hylemon PB, et al. Bile acids and the gut
microbiome. Curr Opin Gastroenterol. 2014;30(3):332-8.
[71] Martens EC, Chiang HC, Gordon JI. Mucosal glycan foraging
enhances fitness and transmission of a saccharolytic human gut
bacterial symbiont. Cell Host Microbe. 2008;4(5):447-57.
[72] Curtis MM, Hu Z, Klimko C, et al. The gut commensal
Bacteroides thetaiotaomicron exacerbates enteric infection
789