Page 40 - Read Online
P. 40
Page 18 of 20 Horwell et al. Microbiome Res Rep 2025;4:1 https://dx.doi.org/10.20517/mrr.2024.32
2019;4:964-71. DOI PubMed PMC
127. Lane AA, McGuire MK, McGuire MA, et al. Household composition and the infant fecal microbiome: the INSPIRE study. Am J
Phys Anthropol 2019;169:526-39. DOI PubMed
128. Tavalire HF, Christie DM, Leve LD, Ting N, Cresko WA, Bohannan BJM. Shared environment and genetics shape the gut
microbiome after infant adoption. mBio 2021;12:e00548-21. DOI PubMed PMC
129. Stokholm J, Blaser MJ, Thorsen J, et al. Maturation of the gut microbiome and risk of asthma in childhood. Nat Commun 2018;9:141.
DOI PubMed PMC
130. Xie H, Guo R, Zhong H, et al. Shotgun metagenomics of 250 adult twins reveals genetic and environmental impacts on the gut
microbiome. Cell Syst 2016;3:572-84.e3. DOI PubMed PMC
131. Org E, Parks BW, Joo JW, et al. Genetic and environmental control of host-gut microbiota interactions. Genome Res 2015;25:1558-
69. DOI PubMed PMC
132. Rausch P, Rehman A, Künzel S, et al. Colonic mucosa-associated microbiota is influenced by an interaction of Crohn disease and
FUT2 (secretor) genotype. Proc Natl Acad Sci U S A 2011;108:19030-5. DOI PubMed PMC
133. Rehman A, Sina C, Gavrilova O, et al. Nod2 is essential for temporal development of intestinal microbial communities. Gut
2011;60:1354-62. DOI PubMed
134. Cahana I, Iraqi FA. Impact of host genetics on gut microbiome: take-home lessons from human and mouse studies. Animal Model
Exp Med 2020;3:229-36. DOI PubMed PMC
135. Liu Z, Zhang Y, Jin T, Yi C, Ocansey DKW, Mao F. The role of NOD2 in intestinal immune response and microbiota modulation: a
therapeutic target in inflammatory bowel disease. Int Immunopharmacol 2022;113:109466. DOI PubMed
136. Kates AE, Jarrett O, Skarlupka JH, et al. Household pet ownership and the microbial diversity of the human gut microbiota. Front
Cell Infect Microbiol 2020;10:73. DOI PubMed PMC
137. Nermes M, Endo A, Aarnio J, Salminen S, Isolauri E. Furry pets modulate gut microbiota composition in infants at risk for allergic
disease. J Allergy Clin Immunol 2015;136:1688-90.e1. DOI PubMed
138. Gao X, Yin M, Yang P, et al. Effect of exposure to cats and dogs on the risk of asthma and allergic rhinitis: a systematic review and
meta-analysis. Am J Rhinol Allergy 2020;34:703-14. DOI PubMed
139. Fall T, Ekberg S, Lundholm C, Fang F, Almqvist C. Dog characteristics and future risk of asthma in children growing up with dogs.
Sci Rep 2018;8:16899. DOI PubMed PMC
140. Ji X, Yao Y, Zheng P, Hao C. The relationship of domestic pet ownership with the risk of childhood asthma: a systematic review and
meta-analysis. Front Pediatr 2022;10:953330. DOI PubMed PMC
Amir A, Erez-Granat O, Braun T, et al. Gut microbiome development in early childhood is affected by day care attendance. NPJ
141. health outcomes. Front Pediatr 2020;8:408. DOI PubMed PMC
Biofilms Microbiomes 2022;8:2. DOI PubMed PMC
142. Parslow RC, McKinney PA, Law GR, Bodansky HJ. Population mixing and childhood diabetes. Int J Epidemiol 2001;30:533-8.
DOI PubMed
143. Yatsunenko T, Rey FE, Manary MJ, et al. Human gut microbiome viewed across age and geography. Nature 2012;486:222-7. DOI
PubMed PMC
144. Widyarman AS, Theodorea CF, Udawatte NS, et al. Diversity of oral microbiome of women from urban and rural areas of indonesia:
a pilot study. Front Oral Health 2021;2:738306. DOI PubMed PMC
145. Brewster R, Tamburini FB, Asiimwe E, Oduaran O, Hazelhurst S, Bhatt AS. Surveying gut microbiome research in africans: toward
improved diversity and representation. Trends Microbiol 2019;27:824-35. DOI PubMed PMC
146. Gupta VK, Paul S, Dutta C. Geography, ethnicity or subsistence-specific variations in human microbiome composition and diversity.
Front Microbiol 2017;8:1162. DOI PubMed PMC
147. Brushett S, Sinha T, Reijneveld SA, de Kroon MLA, Zhernakova A. The effects of urbanization on the infant gut microbiota and
148. Benchimol EI, Kaplan GG, Otley AR, et al. Rural and urban residence during early life is associated with risk of inflammatory bowel
disease: a population-based inception and birth cohort study. Am J Gastroenterol 2017;112:1412-22. DOI PubMed PMC
149. Wong GW, Chow CM. Childhood asthma epidemiology: insights from comparative studies of rural and urban populations. Pediatr
Pulmonol 2008;43:107-16. DOI PubMed
150. Dagenais GR, Gerstein HC, Zhang X, et al. Variations in diabetes prevalence in low-, middle-, and high-income countries: results
from the prospective urban and rural epidemiological study. Diabetes Care 2016;39:780-7. DOI PubMed
151. Nielsen CC, Gascon M, Osornio-Vargas AR, et al. Natural environments in the urban context and gut microbiota in infants. Environ
Int 2020;142:105881. DOI PubMed
152. Kirjavainen PV, Karvonen AM, Adams RI, et al. Farm-like indoor microbiota in non-farm homes protects children from asthma
development. Nat Med 2019;25:1089-95. DOI PubMed
153. Elten M, Benchimol EI, Fell DB, et al. Residential greenspace in childhood reduces risk of pediatric inflammatory bowel disease: a
population-based Cohort study. Am J Gastroenterol 2021;116:347-53. DOI PubMed
154. Hanski I, von Hertzen L, Fyhrquist N, et al. Environmental biodiversity, human microbiota, and allergy are interrelated. Proc Natl
Acad Sci U S A 2012;109:8334-9. DOI PubMed PMC
155. Hertzen L, Hanski I, Haahtela T. Natural immunity. Biodiversity loss and inflammatory diseases are two global megatrends that
might be related. EMBO Rep 2011;12:1089-93. DOI PubMed PMC

