A microbial symphony: a literature review of the factors that orchestrate the colonization dynamics of the human colonic microbiome during infancy and implications for future health

Edward Horwell , Philip Bearn , Simon M. Cutting

Microbiome Research Reports ›› 2024, Vol. 4 ›› Issue (1) : 1

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Microbiome Research Reports ›› 2024, Vol. 4 ›› Issue (1) :1 DOI: 10.20517/mrr.2024.32
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A microbial symphony: a literature review of the factors that orchestrate the colonization dynamics of the human colonic microbiome during infancy and implications for future health

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Abstract

Since the advent of new sequencing and bioinformatic technologies, our understanding of the human microbiome has expanded rapidly over recent years. Numerous studies have indicated causal links between alterations to the microbiome and a range of pathological conditions. Furthermore, a large body of epidemiological data is starting to suggest that exposure, or lack thereof, to specific microbial species during the first five years of life has key implications for long-term health outcomes. These include chronic inflammatory and metabolic conditions such as diabetes, asthma, inflammatory bowel disease (IBD), and obesity, with the effects lasting into adulthood. Human microbial colonisation during these first five years of life is a highly dynamic process, with multiple environmental exposures recently being characterised to have influence before the microbiome stabilises and resembles that of an adult at 3-5 years. This short period of time, known as the window of opportunity, appears to “prime” immunoregulation for later life. Understanding and appreciating this aspect of human physiology is therefore crucial for clinicians, scientists, and public health officials. This review outlines the most recent evidence for the pre- and post-natal environments that order the development of the microbiome, how these influences metabolic and immunoregulatory pathways, and their associated health outcomes. It also discusses the limitations of the current knowledge base, and describes the potential microbiome-mediated interventions and public health measures that may have therapeutic potential in the future.

Keywords

Microbiome / paediatric / infant / inflammation / IBD / asthma / diabetes / newborn / microbiology / birth

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Edward Horwell, Philip Bearn, Simon M. Cutting. A microbial symphony: a literature review of the factors that orchestrate the colonization dynamics of the human colonic microbiome during infancy and implications for future health. Microbiome Research Reports, 2024, 4(1): 1 DOI:10.20517/mrr.2024.32

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References

[1]

Whipps JM,Cooke RC. Mycoparasitism and plant disease control. In: Burge MN, editors. Fungi in biological control systems. Manchester University Press; 1988.p.161-187. Available from: https://books.google.com/books?hl=zh-CN&lr=&id=qoK7AAAAIAAJ&oi=fnd&pg=PR7&dq=Fungi+in+biological+control+systems&ots=ZGZywqBQQc&sig=SF3yncFR8kM6WBVld-jY1Ymmxec#v=onepage&q=Fungi%20in%20biological%20control%20systems&f=false. [Last accessed on 13 Sep 2024].

[2]

Berg G,Fischer D.Microbiome definition re-visited: old concepts and new challenges.Microbiome2020;8:103 PMCID:PMC7329523

[3]

Ursell LK,Parfrey LW.Defining the human microbiome.Nutr Rev2012;70 Suppl 1:S38-44 PMCID:PMC3426293

[4]

Grice EA.The skin microbiome.Nat Rev Microbiol2011;9:244-53 PMCID:PMC3535073

[5]

Morowitz MJ,Alverdy JC.Contributions of intestinal bacteria to nutrition and metabolism in the critically ill.Surg Clin North Am2011;91:771-85 PMCID:PMC3144392

[6]

Chow J,Shen Y,Mazmanian SK.Host–bacterial symbiosis in health and disease.Adv Immunol2010;107:243-74 PMCID:PMC3152488

[7]

Davenport ER,Song SJ,Clark AG.The human microbiome in evolution.BMC Biol2017;15:127 PMCID:PMC5744394

[8]

Dominguez-Bello MG,Knight R.Role of the microbiome in human development.Gut2019;68:1108-14 PMCID:PMC6580755

[9]

Bragazzi NL,Mayer EA.We are what, when, and how we eat: the evolutionary impact of dietary shifts on physical and cognitive development, health, and disease.Adv Nutr2024;15:100280

[10]

Sender R,Milo R.Revised estimates for the number of human and bacteria cells in the body.PLoS Biol2016;14:e1002533 PMCID:PMC4991899

[11]

Takiishi T,Câmara NOS.Intestinal barrier and gut microbiota: shaping our immune responses throughout life.Tissue Barriers2017;5:e1373208 PMCID:PMC5788425

[12]

Zheng D,Elinav E.Interaction between microbiota and immunity in health and disease.Cell Res2020;30:492-506 PMCID:PMC7264227

[13]

Afzaal M,Shah YA.Human gut microbiota in health and disease: unveiling the relationship.Front Microbiol2022;13:999001 PMCID:PMC9549250

[14]

Stewart CJ,O'Brien JL.Temporal development of the gut microbiome in early childhood from the TEDDY study.Nature2018;562:583-8 PMCID:PMC6415775

[15]

Bäckhed F,Peng Y.Dynamics and stabilization of the human gut microbiome during the first year of life.Cell Host Microbe2015;17:690-703

[16]

Vatanen T,Schwager R.The human gut microbiome in early-onset type 1 diabetes from the TEDDY study.Nature2018;562:589-94 PMCID:PMC6296767

[17]

Bergström A,Bahl MI.Establishment of intestinal microbiota during early life: a longitudinal, explorative study of a large cohort of danish infants.Appl Environ Microbiol2014;80:2889-900 PMCID:PMC3993305

[18]

Sarkar A,Valeria Ozorio Dutra S,Groer M.The association between early-life gut microbiota and long-term health and diseases.J Clin Med2021;10:459 PMCID:PMC7865818

[19]

Wassenaar TM.Is a foetus developing in a sterile environment?.Lett Appl Microbiol2014;59:572-9

[20]

Escherich T.The intestinal bacteria of the neonate and breast-fed infant..Rev Infect Dis1989;11:352-6

[21]

Aagaard K,Antony KM,Petrosino J.The placenta harbors a unique microbiome.Sci Transl Med2014;6:237ra65 PMCID:PMC4929217

[22]

Morais J,Teixeira D.Extremely preterm neonates have more lactobacillus in meconium than very preterm neonates - the in utero microbial colonization hypothesis.Gut Microbes2020;12:1785804 PMCID:PMC7524394

[23]

Seferovic MD,Carroll M.Visualization of microbes by 16S in situ hybridization in term and preterm placentas without intraamniotic infection.Am J Obstet Gynecol2019;221:146.e1-e23 PMCID:PMC10357491

[24]

Stout MJ,Landeau M.Identification of intracellular bacteria in the basal plate of the human placenta in term and preterm gestations.Am J Obstet Gynecol2013;208:226.e1-7 PMCID:PMC3740162

[25]

Jiménez E,Marín ML.Isolation of commensal bacteria from umbilical cord blood of healthy neonates born by cesarean section.Curr Microbiol2005;51:270-4

[26]

Gschwind R,Kennedy S.Evidence for contamination as the origin for bacteria found in human placenta rather than a microbiota.PLoS One2020;15:e0237232 PMCID:PMC7416914

[27]

Perez-Muñoz ME,Ramer-Tait AE.A critical assessment of the “sterile womb” and “in utero colonization” hypotheses: implications for research on the pioneer infant microbiome.Microbiome2017;5:48 PMCID:PMC5410102

[28]

Kennedy KM,Perez-Muñoz ME.Questioning the fetal microbiome illustrates pitfalls of low-biomass microbial studies.Nature2023;613:639-49 PMCID:PMC11333990

[29]

Kennedy KM,Adam T.Fetal meconium does not have a detectable microbiota before birth.Nat Microbiol2021;6:865-73

[30]

Gustafsson B.Germ-free rearing of rats.Acta Anat (Basel)1946;2:376-91

[31]

Stinson LF,Payne MS.The not-so-sterile womb: evidence that the human fetus is exposed to bacteria prior to birth.Front Microbiol2019;10:1124 PMCID:PMC6558212

[32]

Kaisanlahti A,Byts N.Maternal microbiota communicates with the fetus through microbiota-derived extracellular vesicles.Microbiome2023;11:249 PMCID:PMC10642029

[33]

Li Y,Ben-Simon S.In utero human intestine harbors unique metabolome, including bacterial metabolites.JCI Insight2020;5:138751 PMCID:PMC7710283

[34]

Aguilera-Castrejon A,Shani T.Ex utero mouse embryogenesis from pre-gastrulation to late organogenesis.Nature2021;593:119-24

[35]

Singh A.Neonatal microbiome - a brief review.J Matern Fetal Neonatal Med2020;33:3841-8

[36]

Mueller NT,Hoffmann DE.Bacterial baptism: scientific, medical, and regulatory issues raised by vaginal seeding of c-section-born babies.J Law Med Ethics2019;47:568-78 PMCID:PMC7908762

[37]

Prince AL,Seferovic MD,Ma J.The perinatal microbiome and pregnancy: moving beyond the vaginal microbiome.Cold Spring Harb Perspect Med2015;5:a023051 PMCID:PMC4448707

[38]

Starc M,Eržen Vrlič P.Protective effect of lactobacillus crispatus against vaginal colonization with group b streptococci in the third trimester of pregnancy.Pathogens2022;11:980 PMCID:PMC9506259

[39]

Aagaard K,Chu D.Una destinatio, viae diversae: does exposure to the vaginal microbiota confer health benefits to the infant, and does lack of exposure confer disease risk?.EMBO Rep2016;17:1679-84 PMCID:PMC5283592

[40]

Reyman M,van Baarle D.Impact of delivery mode-associated gut microbiota dynamics on health in the first year of life.Nat Commun2019;10:4997 PMCID:PMC6825150

[41]

Wernroth ML,Hedman AM.Development of gut microbiota during the first 2 years of life.Sci Rep2022;12:9080 PMCID:PMC9156670

[42]

Dominguez-Bello MG,Contreras M.Delivery mode shapes the acquisition and structure of the initial microbiota across multiple body habitats in newborns.Proc Natl Acad Sci U S A2010;107:11971-5 PMCID:PMC2900693

[43]

Słabuszewska-Jóźwiak A,Ciebiera M,Jakiel G.Pediatrics consequences of caesarean section-a systematic review and meta-analysis.Int J Environ Res Public Health2020;17:8031 PMCID:PMC7662709

[44]

Stokholm J,Chawes BL.Cesarean section changes neonatal gut colonization.J Allergy Clin Immunol2016;138:881-889.e2

[45]

Wampach L,Fritz JV.Birth mode is associated with earliest strain-conferred gut microbiome functions and immunostimulatory potential.Nat Commun2018;9:5091 PMCID:PMC6269548

[46]

Xie J,Hong S.Maternal vaginal fluids play a major role in the colonization of the neonatal intestinal microbiota.Front Cell Infect Microbiol2023;13:1065884 PMCID:PMC10061231

[47]

Clausen TD,Eriksson F,Keiding N.Prelabor cesarean section and risk of childhood type 1 diabetes: a nationwide register-based cohort study.Epidemiology2016;27:547-55

[48]

Hyde MJ.The long-term effects of birth by caesarean section: the case for a randomised controlled trial.Early Hum Dev2012;88:943-9

[49]

Cardwell CR,Joner G,Svensson J.Caesarean section is associated with an increased risk of childhood-onset type 1 diabetes mellitus: a meta-analysis of observational studies..Diabetologia2008;51:726-35

[50]

Rutayisire E,Huang K,Chen Y.Cesarean section may increase the risk of both overweight and obesity in preschool children.BMC Pregnancy Childbirth2016;16:338 PMCID:PMC5094065

[51]

Tollånes MC,Daltveit AK.Cesarean section and risk of severe childhood asthma: a population-based cohort study.J Pediatr2008;153:112-6

[52]

Thavagnanam S,Bromley A,Cardwell CR.A meta-analysis of the association between caesarean section and childhood asthma.Clin Exp Allergy2008;38:629-33

[53]

Dahlen HG,Wright ML,Taylor JY.Childbirth and consequent atopic disease: emerging evidence on epigenetic effects based on the hygiene and EPIIC hypotheses.BMC Pregnancy Childbirth2016;16:4 PMCID:PMC4712556

[54]

Tefera M,Mengistie B,Teji K.Elective cesarean section on term pregnancies has a high risk for neonatal respiratory morbidity in developed countries: a systematic review and meta-analysis.Front Pediatr2020;8:286 PMCID:PMC7330011

[55]

Mårild K,Montgomery S,Ludvigsson JF.Pregnancy outcome and risk of celiac disease in offspring: a nationwide case-control study.Gastroenterology2012;142:39-45.e3 PMCID:PMC3244504

[56]

Bager P,Nielsen NM.Cesarean section and offspring’s risk of inflammatory bowel disease: a national cohort study.Inflamm Bowel Dis2012;18:857-62

[57]

Sevelsted A,Bønnelykke K.Cesarean section and chronic immune disorders.2015;70:303-5

[58]

Axelsson PB,Petersen AH.Investigating the effects of cesarean delivery and antibiotic use in early childhood on risk of later attention deficit hyperactivity disorder.J Child Psychol Psychiatry2019;60:151-9

[59]

Curran EA,Kearney PM.Association between obstetric mode of delivery and autism spectrum disorder: a population-based sibling design study.JAMA Psychiatry2015;72:935-42

[60]

Boerma T,Melesse DY.Global epidemiology of use of and disparities in caesarean sections.Lancet2018;392:1341-8

[61]

Betrán AP,Moller AB,Gülmezoglu AM.The increasing trend in caesarean section rates: global, regional and national estimates: 1990-2014.PLoS One2016;11:e0148343 PMCID:PMC4743929

[62]

Kiriakopoulos N,Maziotis E.Investigating stress response during vaginal delivery and elective cesarean section through assessment of levels of cortisol, interleukin 6 (IL-6), growth hormone (GH) and insulin-like growth factor 1 (IGF-1).J Clin Med2019;8:1112 PMCID:PMC6723771

[63]

Blaser MJ.The theory of disappearing microbiota and the epidemics of chronic diseases.Nat Rev Immunol2017;17:461-3

[64]

Cho S,Li T.Interactions between bifidobacterium and bacteroides and human milk oligosaccharides and their associations with infant cognition.Front Nutr2023;10:1216327 PMCID:PMC10345227

[65]

Thongaram T,Chow J.Human milk oligosaccharide consumption by probiotic and human-associated bifidobacteria and lactobacilli.J Dairy Sci2017;100:7825-33

[66]

Shao Y,Tsaliki E.Stunted microbiota and opportunistic pathogen colonization in caesarean-section birth.Nature2019;574:117-21 PMCID:PMC6894937

[67]

Sanidad KZ.Neonatal gut microbiome and immunity.Curr Opin Microbiol2020;56:30-7 PMCID:PMC8729197

[68]

Fujimura KE,Cabana MD.Role of the gut microbiota in defining human health.Expert Rev Anti Infect Ther2010;8:435-54 PMCID:PMC2881665

[69]

Mazmanian SK,Tzianabos AO.An immunomodulatory molecule of symbiotic bacteria directs maturation of the host immune system.Cell2005;122:107-18

[70]

Olszak T,Zeissig S.Microbial exposure during early life has persistent effects on natural killer T cell function.Science2012;336:489-93 PMCID:PMC3437652

[71]

Lu CY.Gut microbiota and the development of pediatric diseases.J Gastroenterol2015;50:720-6

[72]

Asnicar F,Zolfo M.Studying vertical microbiome transmission from mothers to infants by strain-level metagenomic profiling.mSystems2017;2:e00164-16 PMCID:PMC5264247

[73]

Leszczynski P,Pituch H,Meisel-Mikolajczyk F.Vaginal carriage of enterotoxigenic bacteroides fragilis in pregnant women.J Clin Microbiol1997;35:2899-903 PMCID:PMC230083

[74]

Wilson BC,Grigg CP.Oral administration of maternal vaginal microbes at birth to restore gut microbiome development in infants born by caesarean section: a pilot randomised placebo-controlled trial.EBioMedicine2021;69:103443 PMCID:PMC8254083

[75]

Zhou L,Wang J.Effects of vaginal microbiota transfer on the neurodevelopment and microbiome of cesarean-born infants: a blinded randomized controlled trial.Cell Host Microbe2023;31:1232-47.e5

[76]

Wharton KR.Committee opinion no. 725: vaginal seeding.Obstet Gynecol2017;130:e274-8

[77]

Bossung V,Dashdorj L.Timing of antimicrobial prophylaxis for cesarean section is critical for gut microbiome development in term born infants.Gut Microbes2022;14:2038855 PMCID:PMC8865290

[78]

Sommerstein R,Atkinson A.SwissnosoAntimicrobial prophylaxis administration after umbilical cord clamping in cesarean section and the risk of surgical site infection: a cohort study with 55,901 patients.Antimicrob Resist Infect Control2020;9:201 PMCID:PMC6180638

[79]

Dierikx T,Eck A.Influence of timing of maternal antibiotic administration during caesarean section on infant microbial colonisation: a randomised controlled trial.Gut2022;71:1803-11 PMCID:PMC9380480

[80]

Azad MB,Maughan H.CHILD Study InvestigatorsGut microbiota of healthy canadian infants: profiles by mode of delivery and infant diet at 4 months.CMAJ2013;185:385-94 PMCID:PMC3602254

[81]

Chu DM,Prince AL,Seferovic MD.Maturation of the infant microbiome community structure and function across multiple body sites and in relation to mode of delivery.Nat Med2017;23:314-26 PMCID:PMC5345907

[82]

Erbaydar N, Erbaydar T. Relationship between caesarean section and breastfeeding: evidence from the 2013 turkey demographic and health survey.BMC Pregnancy Childbirth2020;20:55 PMCID:PMC6988204

[83]

McGuire MK.Got bacteria?.Curr Opin Biotechnol2017;44:63-8

[84]

Urbaniak C,Gloor GB.Human milk microbiota profiles in relation to birthing method, gestation and infant gender.Microbiome2016;4:1. PMCID:PMC4702315

[85]

Khodayar-Pardo P,Collado MC.Impact of lactation stage, gestational age and mode of delivery on breast milk microbiota.J Perinatol2014;34:599-605

[86]

Soto A,Jiménez E,Rodríguez JM.Lactobacilli and bifidobacteria in human breast milk: influence of antibiotherapy and other host and clinical factors.J Pediatr Gastroenterol Nutr2014;59:78-88 PMCID:PMC4086764

[87]

Lyons KE,Grimaud G.The human milk microbiome aligns with lactation stage and not birth mode.Sci Rep2022;12:5598 PMCID:PMC8979980

[88]

Boix-Amorós A,Mira A.Relationship between milk microbiota, bacterial load, macronutrients, and human cells during lactation.Front Microbiol2016;7:492 PMCID:PMC4837678

[89]

Jost T,Braegger CP,Chassard C.Vertical mother-neonate transfer of maternal gut bacteria via breastfeeding.Environ Microbiol2014;16:2891-904

[90]

Perez PF,Leclerc M.Bacterial imprinting of the neonatal immune system: lessons from maternal cells?.Pediatrics2007;119:e724-32

[91]

Rodríguez JM.The origin of human milk bacteria: is there a bacterial entero-mammary pathway during late pregnancy and lactation?.Adv Nutr2014;5:779-84 PMCID:PMC4224214

[92]

Newburg DS.Innate immunity and human milk.J Nutr2005;135:1308-12

[93]

Ouwerkerk JP,Davids M.Adaptation of akkermansia muciniphila to the oxic-anoxic interface of the mucus layer.Appl Environ Microbiol2016;82:6983-93 PMCID:PMC5103097

[94]

Luna E,Kirmiz N.Utilization efficiency of human milk oligosaccharides by human-associated akkermansia is strain dependent.Appl Environ Microbiol2022;88:e0148721 PMCID:PMC8752153

[95]

Cortes-Macías E,García-Mantrana I.Maternal diet shapes the breast milk microbiota composition and diversity: impact of mode of delivery and antibiotic exposure.J Nutr2021;151:330-40 PMCID:PMC7850106

[96]

Ho NT,Lee-Sarwar KA.Meta-analysis of effects of exclusive breastfeeding on infant gut microbiota across populations.Nat Commun2018;9:4169 PMCID:PMC6177445

[97]

Yan J,Zhu Y,Wang PP.The association between breastfeeding and childhood obesity: a meta-analysis.BMC Public Health2014;14:1267 PMCID:PMC4301835

[98]

Cardwell CR,Ludvigsson J.Breast-feeding and childhood-onset type 1 diabetes: a pooled analysis of individual participant data from 43 observational studies.Diabetes Care2012;35:2215-25 PMCID:PMC3476923

[99]

Chua MC,Lay C.Effect of synbiotic on the gut microbiota of cesarean delivered infants: a randomized, double-blind, multicenter study.J Pediatr Gastroenterol Nutr2017;65:102-6

[100]

Fehr K,Sbihi H.Breastmilk feeding practices are associated with the co-occurrence of bacteria in mothers’ milk and the infant gut: the CHILD cohort study.Cell Host Microbe2020;28:285-97.e4

[101]

Stinson LF,Geddes DT.Effect of cold storage on the viable and total bacterial populations in human milk.Nutrients2022;14:1875 PMCID:PMC9099816

[102]

Parigi SM,Larssen P,Villablanca EJ.Breast milk and solid food shaping intestinal immunity.Front Immunol2015;6:415 PMCID:PMC4541369

[103]

Atyeo C.The multifaceted roles of breast milk antibodies.Cell2021;184:1486-99

[104]

Lodge CJ,Lau MX.Breastfeeding and asthma and allergies: a systematic review and meta-analysis.Acta Paediatr2015;104:38-53

[105]

Duijts L,Hofman A.Prolonged and exclusive breastfeeding reduces the risk of infectious diseases in infancy.Pediatrics2010;126:e18-25

[106]

Xu L,Ko Y,Leong RW.Systematic review with meta-analysis: breastfeeding and the risk of Crohn’s disease and ulcerative colitis.Aliment Pharmacol Ther2017;46:780-9 PMCID:PMC5688338

[107]

Ogbo FA,Ogeleka P,Page A.Global Child Health Research Interest GroupInfant feeding practices and diarrhoea in sub-saharan african countries with high diarrhoea mortality.PLoS One2017;12:e0171792 PMCID:PMC5305225

[108]

Su Q,Zhu L.Breastfeeding and the risk of childhood cancer: a systematic review and dose-response meta-analysis.BMC Med2021;19:90 PMCID:PMC8042913

[109]

Horta BL.Breastfeeding and type 2 diabetes: systematic review and meta-analysis.Curr Diab Rep2019;19:1

[110]

Binns C,Low WY.The long-term public health benefits of breastfeeding.Asia Pac J Public Health2016;28:7-14

[111]

Qiao J,Zhang Q.A meta-analysis of the association between breastfeeding and early childhood obesity.J Pediatr Nurs2020;53:57-66

[112]

Bowatte G,Allen KJ.Breastfeeding and childhood acute otitis media: a systematic review and meta-analysis.Acta Paediatr2015;104:85-95

[113]

Tham R,Dharmage SC.Breastfeeding and the risk of dental caries: a systematic review and meta-analysis.Acta Paediatr2015;104:62-84

[114]

McGowan C.The benefits of breastfeeding on child intelligence, behavior, and executive function: a review of recent evidence.Breastfeed Med2023;18:172-87

[115]

Pérez-Escamilla R,Segura-Pérez S.Perspective: should exclusive breastfeeding still be recommended for 6 months?.Adv Nutr2019;10:931-43 PMCID:PMC6855974

[116]

Kramer MS.Optimal duration of exclusive breastfeeding.Cochrane Database Syst Rev2012;2012:CD003517 PMCID:PMC7154583

[117]

Kim JH,Lee JE,Han MY.Breastmilk feeding during the first 4 to 6 months of age and childhood disease burden until 10 years of age.Nutrients2021;13:2825 PMCID:PMC8400284

[118]

der Beek CM, Dejong CHC, Troost FJ, Masclee AAM, Lenaerts K. Role of short-chain fatty acids in colonic inflammation, carcinogenesis, and mucosal protection and healing.Nutr Rev2017;75:286-305

[119]

Kumbhare SV,Patil RH,Patil NP.Factors influencing the gut microbiome in children: from infancy to childhood.J Biosci2019;44:9860

[120]

De Filippo C,Di Paola M.Impact of diet in shaping gut microbiota revealed by a comparative study in children from Europe and rural Africa.Proc Natl Acad Sci U S A2010;107:14691-6 PMCID:PMC2930426

[121]

Stark PL.The microbial ecology of the large bowel of breast-fed and formula-fed infants during the first year of life.J Med Microbiol1982;15:189-203

[122]

Klepeis NE,Ott WR.The National Human Activity Pattern Survey (NHAPS): a resource for assessing exposure to environmental pollutants.J Expo Anal Environ Epidemiol2001;11:231-52

[123]

Shin SK,Ha SM.Metagenomic insights into the bioaerosols in the indoor and outdoor environments of childcare facilities.PLoS One2015;10:e0126960 PMCID:PMC4447338

[124]

Kembel SW,O'Connor TK.Architectural design drives the biogeography of indoor bacterial communities.PLoS One2014;9:e87093 PMCID:PMC3906134

[125]

Rai S,Kumar A.Microbial, environmental and anthropogenic factors influencing the indoor microbiome of the built environment.J Basic Microbiol2021;61:267-92

[126]

Brito IL,Zhao S.Transmission of human-associated microbiota along family and social networks.Nat Microbiol2019;4:964-71 PMCID:PMC7450247

[127]

Lane AA,McGuire MA.Household composition and the infant fecal microbiome: the INSPIRE study.Am J Phys Anthropol2019;169:526-39

[128]

Tavalire HF,Leve LD,Cresko WA.Shared environment and genetics shape the gut microbiome after infant adoption.mBio2021;12:e00548-21 PMCID:PMC8092250

[129]

Stokholm J,Thorsen J.Maturation of the gut microbiome and risk of asthma in childhood.Nat Commun2018;9:141 PMCID:PMC5811596

[130]

Xie H,Zhong H.Shotgun metagenomics of 250 adult twins reveals genetic and environmental impacts on the gut microbiome.Cell Syst2016;3:572-84.e3 PMCID:PMC5762761

[131]

Org E,Joo JW.Genetic and environmental control of host-gut microbiota interactions.Genome Res2015;25:1558-69 PMCID:PMC4579341

[132]

Rausch P,Künzel S.Colonic mucosa-associated microbiota is influenced by an interaction of Crohn disease and FUT2 (secretor) genotype.Proc Natl Acad Sci U S A2011;108:19030-5 PMCID:PMC3223430

[133]

Rehman A,Gavrilova O.Nod2 is essential for temporal development of intestinal microbial communities.Gut2011;60:1354-62

[134]

Cahana I.Impact of host genetics on gut microbiome: take-home lessons from human and mouse studies.Animal Model Exp Med2020;3:229-36 PMCID:PMC7529332

[135]

Liu Z,Jin T,Ocansey DKW.The role of NOD2 in intestinal immune response and microbiota modulation: a therapeutic target in inflammatory bowel disease.Int Immunopharmacol2022;113:109466

[136]

Kates AE,Skarlupka JH.Household pet ownership and the microbial diversity of the human gut microbiota.Front Cell Infect Microbiol2020;10:73 PMCID:PMC7058978

[137]

Nermes M,Aarnio J,Isolauri E.Furry pets modulate gut microbiota composition in infants at risk for allergic disease.J Allergy Clin Immunol2015;136:1688-90.e1

[138]

Gao X,Yang P.Effect of exposure to cats and dogs on the risk of asthma and allergic rhinitis: a systematic review and meta-analysis.Am J Rhinol Allergy2020;34:703-14

[139]

Fall T,Lundholm C,Almqvist C.Dog characteristics and future risk of asthma in children growing up with dogs.Sci Rep2018;8:16899 PMCID:PMC6237975

[140]

Ji X,Zheng P.The relationship of domestic pet ownership with the risk of childhood asthma: a systematic review and meta-analysis.Front Pediatr2022;10:953330 PMCID:PMC9352935

[141]

Amir A,Braun T.Gut microbiome development in early childhood is affected by day care attendance.NPJ Biofilms Microbiomes2022;8:2 PMCID:PMC8752763

[142]

Parslow RC,Law GR.Population mixing and childhood diabetes.Int J Epidemiol2001;30:533-8

[143]

Yatsunenko T,Manary MJ.Human gut microbiome viewed across age and geography.Nature2012;486:222-7 PMCID:PMC3376388

[144]

Widyarman AS,Udawatte NS.Diversity of oral microbiome of women from urban and rural areas of indonesia: a pilot study.Front Oral Health2021;2:738306 PMCID:PMC8757682

[145]

Brewster R,Asiimwe E,Hazelhurst S.Surveying gut microbiome research in africans: toward improved diversity and representation.Trends Microbiol2019;27:824-35 PMCID:PMC6764420

[146]

Gupta VK,Dutta C.Geography, ethnicity or subsistence-specific variations in human microbiome composition and diversity.Front Microbiol2017;8:1162 PMCID:PMC5481955

[147]

Brushett S,Reijneveld SA,Zhernakova A.The effects of urbanization on the infant gut microbiota and health outcomes.Front Pediatr2020;8:408 PMCID:PMC7438894

[148]

Benchimol EI,Otley AR.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 Gastroenterol2017;112:1412-22 PMCID:PMC5596205

[149]

Wong GW.Childhood asthma epidemiology: insights from comparative studies of rural and urban populations.Pediatr Pulmonol2008;43:107-16

[150]

Dagenais GR,Zhang X.Variations in diabetes prevalence in low-, middle-, and high-income countries: results from the prospective urban and rural epidemiological study.Diabetes Care2016;39:780-7

[151]

Nielsen CC,Osornio-Vargas AR.Natural environments in the urban context and gut microbiota in infants.Environ Int2020;142:105881

[152]

Kirjavainen PV,Adams RI.Farm-like indoor microbiota in non-farm homes protects children from asthma development.Nat Med2019;25:1089-95

[153]

Elten M,Fell DB.Residential greenspace in childhood reduces risk of pediatric inflammatory bowel disease: a population-based Cohort study.Am J Gastroenterol2021;116:347-53

[154]

Hanski I,Fyhrquist N.Environmental biodiversity, human microbiota, and allergy are interrelated.Proc Natl Acad Sci U S A2012;109:8334-9 PMCID:PMC3361383

[155]

Hertzen L, Hanski I, Haahtela T. Natural immunity. Biodiversity loss and inflammatory diseases are two global megatrends that might be related.EMBO Rep2011;12:1089-93 PMCID:PMC3207110

[156]

Anthony MA,van der Heijden MGA.Enumerating soil biodiversity.Proc Natl Acad Sci U S A2023;120:e2304663120 PMCID:PMC10437432

[157]

Rook GA.99th Dahlem conference on infection, inflammation and chronic inflammatory disorders: darwinian medicine and the ‘hygiene’ or ‘old friends’ hypothesis.Clin Exp Immunol2010;160:70-9 PMCID:PMC2841838

[158]

Rook GA.Regulation of the immune system by biodiversity from the natural environment: an ecosystem service essential to health.Proc Natl Acad Sci U S A2013;110:18360-7 PMCID:PMC3831972

[159]

Rook GAW.The old friends hypothesis: evolution, immunoregulation and essential microbial inputs.Front Allergy2023;4:1220481 PMCID:PMC10524266

[160]

Tasnim N,Gill S,Hart M.Early life environmental exposures have a minor impact on the gut ecosystem following a natural birth.Gut Microbes2021;13:1-15 PMCID:PMC7872070

[161]

Horwell E,Hong HA,Cutting SM.A family of cyclic lipopeptides found in human isolates of bacillus ameliorates acute colitis via direct agonism of toll-like receptor 2 in a murine model of inflammatory bowel disease.Dig Dis Sci2024;Online ahead of print:

[162]

Roslund MI,Grönroos M.ADELE research groupBiodiversity intervention enhances immune regulation and health-associated commensal microbiota among daycare children.Sci Adv2020;6:eaba2578 PMCID:PMC7556828

[163]

Blum WEH,Keiblinger KM.Does soil contribute to the human gut microbiome?.Microorganisms2019;7:287 PMCID:PMC6780873

[164]

Hirt H.Healthy soils for healthy plants for healthy humans: how beneficial microbes in the soil, food and gut are interconnected and how agriculture can contribute to human health.EMBO Rep2020;21:e51069 PMCID:PMC7403703

[165]

Mhuireach ,Green JL.Spatiotemporal controls on the urban aerobiome.Front Ecol Evol2019;7:43

[166]

Després VR,Burrows SM.Primary biological aerosol particles in the atmosphere: a review.Tellus B: Chemical and Physical Meteorology2022;64:15598

[167]

Liddicoat C,Cando-Dumancela C.Naturally-diverse airborne environmental microbial exposures modulate the gut microbiome and may provide anxiolytic benefits in mice.Sci Total Environ2020;701:134684

[168]

Reyman M,Watson RL.Effects of early-life antibiotics on the developing infant gut microbiome and resistome: a randomized trial.Nat Commun2022;13:893 PMCID:PMC8850541

[169]

Dethlefsen L.Incomplete recovery and individualized responses of the human distal gut microbiota to repeated antibiotic perturbation.Proc Natl Acad Sci U S A2011;108 Suppl 1:4554-61 PMCID:PMC3063582

[170]

Korpela K,Virta LJ.Intestinal microbiome is related to lifetime antibiotic use in finnish pre-school children.Nat Commun2016;7:10410 PMCID:PMC4737757

[171]

Gasparrini AJ,Sun X.Persistent metagenomic signatures of early-life hospitalization and antibiotic treatment in the infant gut microbiota and resistome.Nat Microbiol2019;4:2285-97 PMCID:PMC6879825

[172]

Parker EPK,John J.Changes in the intestinal microbiota following the administration of azithromycin in a randomised placebo-controlled trial among infants in south India.Sci Rep2017;7:9168 PMCID:PMC5569098

[173]

Celind F, Wennergren G, Vasileiadou S, Alm B, Goksör E. Antibiotics in the first week of life were associated with atopic asthma at 12 years of age.Acta Paediatr2018;107:1798-804 PMCID:PMC6175332

[174]

Hviid A,Frisch M.Antibiotic use and inflammatory bowel diseases in childhood.Gut2011;60:49-54

[175]

Kelly D,O'Dowd T.Antibiotic use in early childhood and risk of obesity: longitudinal analysis of a national cohort.World J Pediatr2019;15:390-7

[176]

Cox LM,Sohn J.Altering the intestinal microbiota during a critical developmental window has lasting metabolic consequences.Cell2014;158:705-21 PMCID:PMC4134513

[177]

Anthony WE,Sukhum KV.Acute and persistent effects of commonly used antibiotics on the gut microbiome and resistome in healthy adults.Cell Rep2022;39:110649 PMCID:PMC9066705

[178]

Ozkul C,Battaglia T.A single early-in-life antibiotic course increases susceptibility to DSS-induced colitis.Genome Med2020;12:65 PMCID:PMC7382806

[179]

Buelow E,Fuentes S.Comparative gut microbiota and resistome profiling of intensive care patients receiving selective digestive tract decontamination and healthy subjects.Microbiome2017;5:88 PMCID:PMC5554972

[180]

Fjalstad JW,Juvet LK,Klingenberg C.Antibiotic therapy in neonates and impact on gut microbiota and antibiotic resistance development: a systematic review.J Antimicrob Chemother2018;73:569-80

[181]

Lukasik J,Besseling-van der Vaart I,Szajewska H.Multispecies Probiotic in AAD Study GroupMultispecies probiotic for the prevention of antibiotic-associated diarrhea in children: a randomized clinical trial.JAMA Pediatr2022;176:860-6 PMCID:PMC9214631

[182]

Sharif S,Oddie SJ,McGuire W.Probiotics to prevent necrotising enterocolitis in very preterm or very low birth weight infants.Cochrane Database Syst Rev2020;10:CD005496 PMCID:PMC8094746

[183]

Kukkonen K,Haahtela T.Long-term safety and impact on infection rates of postnatal probiotic and prebiotic (synbiotic) treatment: randomized, double-blind, placebo-controlled trial.Pediatrics2008;122:8-12

[184]

Hatakka K,Pönkä A.Effect of long term consumption of probiotic milk on infections in children attending day care centres: double blind, randomised trial.BMJ2001;322:1327 PMCID:PMC32161

[185]

Lundelin K,Salminen S.Long-term safety and efficacy of perinatal probiotic intervention: evidence from a follow-up study of four randomized, double-blind, placebo-controlled trials.Pediatr Allergy Immunol2017;28:170-5

[186]

Rutten NB,Eck A.Long term development of gut microbiota composition in atopic children: impact of probiotics.PLoS One2015;10:e0137681 PMCID:PMC4574972

[187]

Dhongade AR,Kulkarni SV.The efficacy and safety of a bacillus probiotic combination for the treatment of acute diarrhea in children: a double-blind, randomized, placebo-controlled multicentric study.Pediatric Infectious Disease2022;4:86-91

[188]

Turco R,Miele E.Proton pump inhibitors as a risk factor for paediatric Clostridium difficile infection.Aliment Pharmacol Ther2010;31:754-9

[189]

Huang H,Wang X,Cao H.Exposure to prescribed medication in early life and impacts on gut microbiota and disease development.EClinicalMedicine2024;68:102428 PMCID:PMC10835216

[190]

Joice R,Shafquat A,Huttenhower C.Determining microbial products and identifying molecular targets in the human microbiome.Cell Metab2014;20:731-41 PMCID:PMC4254638

[191]

Marcy Y,Bik EM.Dissecting biological “dark matter” with single-cell genetic analysis of rare and uncultivated TM7 microbes from the human mouth.Proc Natl Acad Sci U S A2007;104:11889-94 PMCID:PMC1924555

[192]

Yan Y,Franzosa EA.Strain-level epidemiology of microbial communities and the human microbiome.Genome Med2020;12:71 PMCID:PMC7427293

[193]

Daniel BBJ,Sintsova A.Assessing microbiome population dynamics using wild-type isogenic standardized hybrid (WISH)-tags.Nat Microbiol2024;9:1103-16 PMCID:PMC10994841

[194]

Jansson JK.Tracking genetically engineered microorganisms in nature.Curr Opin Biotechnol1995;6:275-83

[195]

Geva-Zatorsky N,Hudak JE.In vivo imaging and tracking of host-microbiota interactions via metabolic labeling of gut anaerobic bacteria.Nat Med2015;21:1091-100 PMCID:PMC4694768

[196]

Rivas-Ruiz F,González-Ramírez AR.Bias in clinical epidemiological study designs.Allergol Immunopathol (Madr)2013;41:54-9

[197]

Turin CG.The role of maternal breast milk in preventing infantile diarrhea in the developing world.Curr Trop Med Rep2014;1:97-105 PMCID:PMC4036098

[198]

Ciampo LA, Del Ciampo IRL. Breastfeeding and the benefits of lactation for women’s health.Rev Bras Ginecol Obstet2018;40:354-9 PMCID:PMC10798271

[199]

Hornef MW.‘Layered immunity’ and the ‘neonatal window of opportunity’-timed succession of non-redundant phases to establish mucosal host-microbial homeostasis after birth.Immunology2020;159:15-25 PMCID:PMC6904599

[200]

Gensollen T,Kasper DL.How colonization by microbiota in early life shapes the immune system.Science2016;352:539-44 PMCID:PMC5050524

[201]

Torow N,Hassani K.Active suppression of intestinal CD4+TCRαβ+ T-lymphocyte maturation during the postnatal period.Nat Commun2015;6:7725 PMCID:PMC4518322

[202]

Sjögren YM,Lundberg A.Influence of early gut microbiota on the maturation of childhood mucosal and systemic immune responses.Clin Exp Allergy2009;39:1842-51

[203]

Lu L,Guo Y,Chang EB.Transcriptional modulation of intestinal innate defense/inflammation genes by preterm infant microbiota in a humanized gnotobiotic mouse model.PLoS One2015;10:e0124504 PMCID:PMC4415773

[204]

Reynolds HM.Early-life microbiota-immune homeostasis.Front Immunol2023;14:1266876 PMCID:PMC10627000

[205]

Ronan V,Claud EC.Childhood development and the microbiome-the intestinal microbiota in maintenance of health and development of disease during childhood development.Gastroenterology2021;160:495-506 PMCID:PMC8714606

[206]

Constantinides MG.Early-life imprinting of unconventional T cells and tissue homeostasis.Science2021;374:eabf0095 PMCID:PMC8697520

[207]

Constantinides MG,Tamoutounour S.MAIT cells are imprinted by the microbiota in early life and promote tissue repair.Science2019;366:eaax6624 PMCID:PMC7603427

[208]

Ottman N,Suomalainen A.Soil exposure modifies the gut microbiota and supports immune tolerance in a mouse model.J Allergy Clin Immunol2019;143:1198-206.e12

[209]

Timm S,Janson C.Place of upbringing in early childhood as related to inflammatory bowel diseases in adulthood: a population-based cohort study in Northern Europe.Eur J Epidemiol2014;29:429-37 PMCID:PMC4065648

[210]

Feng M,Pan L.Associations of early life exposures and environmental factors with asthma among children in rural and urban areas of Guangdong, China.Chest2016;149:1030-41

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