| Literature DB >> 33918723 |
Azahara María García-Serna1,2, Elena Martín-Orozco1,2,3, Trinidad Hernández-Caselles1,2,3, Eva Morales1,4.
Abstract
It is suggested that programming of the immune system starts before birth and is shaped by environmental influences acting during critical windows of susceptibility for human development. Prenatal and perinatal exposure to physiological, biological, physical, or chemical factors can trigger permanent, irreversible changes to the developing immune system, which may be reflected in cord blood of neonates. The aim of this narrative review is to summarize the evidence on the role of the prenatal and perinatal environment, including season of birth, mode of delivery, exposure to common allergens, a farming environment, pet ownership, and exposure to tobacco smoking and pollutants, in shaping the immune cell populations and cytokines at birth in humans. We also discuss how reported disruptions in the immune system at birth might contribute to the development of asthma and related allergic manifestations later in life.Entities:
Keywords: early life; environment; immune system; pregnancy; programming
Year: 2021 PMID: 33918723 PMCID: PMC8069583 DOI: 10.3390/ijerph18083962
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 3.390
Season of birth and changes in the immune system of neonates (authors ordered by year and then alphabetically).
| Author, Year [Ref.] | Location | Outcomes Assessed | Season of Birth | Statistically Significant Main Findings | |
|---|---|---|---|---|---|
| Immune Cells Frequency | Cytokine Patterns/Ig | ||||
| Lehmann et al. 2002 [ | Germany | Cytokine response | Summer | ↓ induced-TNF-α (T cells) | |
| Sullivan Dillie et al. 2008 [ | USA | Cytokine response | Spring or summer | ↑ PHA-induced IL-5 | |
| Autumn or winter | ↑ CBMC proliferation | ||||
| Collison et al. 2008 [ | Gambia | Lymphocytes (counts) | Wet season | ↑ leukocytes | |
| Lendor et al. 2008 [ | USA | Cytokine response | Winter | ↑ cockroach-induced IL-5 | |
| Gold et al. 2009 [ | USA | Cytokine production | Autumn or winter | ↑ IFN-γ, IL-8 and TNF-α | |
| ↑ LPS-induced IFN-α | |||||
| Spring/ summer | ↑ CpG-induced IFN-α | ||||
| Keski-Nisula et al. 2010 [ | Finland | Leukocytes (counts) | Cytokine response | Spring | ↓ P/I-induced IL-5, IL-10 and IFN-γ |
| Thysen et al. 2016 [ | Denmark | Leukocytes | Winter | ↑ Leukocytes, granulocytes, neutrophils and monocytes | |
| Spring | ↑ Tc cells | ||||
CBMC: cord blood mononuclear cell; CD: cluster of differentiation; CpG: Immunostimulatory CpG oligonucleotides; IFN: interferon; IL: interleukin; LPS: Lipopolysaccharide; NK: natural killer; PHA: Phytohemagglutinin; PMA: phorbol 12-myristate 13-acetate; P/I: phorbol ester and ionomycin PG: Peptidoglycan; Tc: T cytotoxic cells; Th: T helper cell; TNF: tumor necrosis factor.
Mode of delivery and changes in the immune system of neonates (authors ordered by year and then alphabetically).
| Author, Year [Ref.] | Location | Outcomes Assessed | Mode of Delivery | Statistically Significant Main Findings | |
|---|---|---|---|---|---|
| Immune Cells Frequency | Cytokine Patterns/Ig | ||||
| Samelson et al. 1992 [ | USA | Lymphocytes (%) | Vaginal delivery | ↓ T and Th cells | |
| Thilaganathan et al. 1994 [ | UK | Leukocytes Lymphocytes | Vaginal delivery | ↑ Leukocytes, neutrophils, monocytes and NK cells | |
| Nikischin et al. 1997 [ | Germany | Leukocytes (counts) | Vaginal delivery | ↑ Leukocytes | |
| Chirico et al. 1999 [ | Italy | Leukocytes (counts) | Vaginal delivery | ↑ Leukocytes and neutrophils | |
| Grönlund et al. 1999 [ | Finland | Leukocytes | Vaginal delivery | ↑ Leukocytes and neutrophils | |
| Kotiranta-Ainamo et al. 1999 [ | Finland | Lymphocytes Macrophages (%) | Cesarean section | ↓ CD14+ cells | |
| Steinborn et al. 1999 [ | Germany | Cytokine production | Vaginal delivery | ↑ IL-6 in myelomonocytic cord blood cells | |
| Brown et al. 2003 [ | USA | Cytokine response | Vaginal delivery | ↑ ConA-induced IFN-γ | |
| Gessler et al. 2003 [ | Switzerland Cross-sectional | Neutrophils (counts) | Vaginal delivery | ↑ Neutrophils | |
| Thornton et al. 2003 [ | UK | Leukocytes (%) | Cytokine response | Cesarean section | ↑ CD62L+ Th cells |
| Malamitsi-Puchner et al. 2005 [ | Greece | Cytokine production | Vaginal delivery | ↑ IFN-γ and IL-1β levels | |
| Ly et al. 2006 [ | USA | Cytokine response | Cesarean section | ↑ IFN-γ baseline secretion | |
| Yektaei-Karin et al. 2007 [ | Sweden | Leukocytes | Cytokine production | Vaginal delivery | ↑ IL-8 |
| Assisted delivery (compared to C-section) | ↑ IFN-γ | ||||
| Gold et al. 2009 [ | USA | Cytokine response | Cesarean section | ↓ LPS-induced IL-8 response | |
| Shen et al. 2009 | Taiwan | Leukocytes (counts) | Cesarean section | ↓ Leukocytes, neutrophils, lymphocytes and monocytes | |
| Keski-Nisula et al. 2010 [ | Finland | Leukocytes (counts) | Cytokine response | Cesarean section | ↓ Leukocytes |
| Long labour | ↑ Leukocytes | ||||
| Prostaglandin induction | ↓ induced IFN-γ response | ||||
| Steinborn et al. 2010 [ | Germany | Lymphocytes | Vaginal delivery | ↓ FoxP3 expression in Tregs cells | |
| Bili et al. 2011 [ | Greece | Lymphocytes (%) | Vaginal delivery | ↑ NK cells | |
| Yildiran et al. 2011 [ | Turkey | Lymphocytes (counts) | Vaginal delivery | ↑ Treg cells | |
| Almanzar et al. 2015 [ | Austria | Lymphocytes (counts and %) | Cytokine production | Vaginal delivery | ↑ Leukocytes (counts) |
| Birle et al. 2015 [ | Germany | Leukocytes (counts) | Vaginal delivery | ↑ Leukocytes | |
| Treviño-Garza et al. 2016 [ | Mexico | Cytokine production | Vaginal delivery | ↑ IL-6 | |
| Liao et al. 2017 [ | Taiwan | Cytokine response | Cesarean section | ↓ TLR1-stimulated TNF-α and IL-6 | |
| Lurà et al. 2018 [ | Switzerland | Leukocytes (counts) | Cesarean section | ↓ Leukocytes, basophilic granulocytes | |
| Werlang et al. 2018 [ | Brazil | Leukocytes (counts) | Cytokine production | Cesarean section | ↓ Leukocytes |
| Nandanan et al. 2019 [ | Singapore | Cytokine production | Vaginal delivery | ↑ IL-6 and IL-8 | |
CD: cluster of differentiation; ConA: Concanavalin A; G-CSF: Granulocyte-colony stimulating Factor; CpG: Immunostimulatory CpG oligonucleotides; E.Coli: Escherichia coli; GM-CSF: Granulocyte-macrophage colony-stimulating factor; IL: interleukin; IFN: interferon; LPS: Lipopolysaccharide; NK: natural killer; PHA: P Phytohemagglutinin; PG: Peptidoglycan; Th: T helper cell; Treg: T regulatory cells; TLR: Toll-like receptor; TNF: tumor necrosis factor.
Prenatal exposure to a farming environment, pets and common allergens and changes in the immune system of neonates (authors ordered by exposure, year and then alphabetically).
| Author, Year [Ref] | Location | Outcomes Assessed | Factor Assessed | Statistically Significant Main Findings | |
|---|---|---|---|---|---|
| Immune Cells Frequency | Cytokine Patterns/Ig | ||||
|
| |||||
| Ege et al. 2008 [ | 5 European countries | Specific IgE levels (food and common inhalants) | Maternal farm exposures | ↓ grass pollen-specific IgE | |
| Consumption of boiled farm milk | ↑ cow’s milk-specific IgE | ||||
| Maternal exposure to animal sheds, contact to cattle, removing dung, cleaning the henhouse, handling silage and hay during pregnancy | ↓ seasonal allergens-specific IgE | ||||
| Schaub et al. 2009 [ | Germany | Treg cells | Cytokine responses | Farming mothers | ↑ Treg number and function |
| Cytokine responses | Stables | ↑ PG-induced CD4+CD25+ T cells | |||
| Cytokine responses | Number of animal species ≥2 | ↑ IL-10 | |||
| Keski-Nisula et al. 2010 [ | Finland | Leukocytes (counts) | Cytokine responses | Father as farmer | ↓ Leukocytes |
| Pfefferle et al. 2010 [ | 5 European countries | Cytokine response | Maternal farm exposures | ↑ induced IFN-γ | |
| House spent in barn | ↑ induced TNF-α | ||||
| Contact with farm animal species | ↑ induced TNF-α and IFN-γ | ||||
| Consumption of yogurt made of farm milk | ↓ induced IL-5 and IL-10 | ||||
| Consumption of cheese made of farm milk | ↑ induced IL-5 | ||||
| Lundell et al. 2015 [ | Sweden | Cytokine production | Farming mothers | ↑ B-cell activating factor (BAFF) | |
|
| |||||
| Heinrich et al. 2002 [ | Germany | IgE | Endotoxin | U-shaped association with IgE | |
| Dust mite (Der p 1) | ↑ IgE (medium exposure to mite allergen) | ||||
| Roponen et al. 2005 [ | Finland | Cytokine response | Endotoxin (in settled dust) | ↑ induced-IL-6 | |
| Hagendorens et al. 2004 [ | Belgium | Lymphocytes (%) | T cell cytokine production | Dust mite (Der p 1) during second trimester | ↓ IFN-γ producing induced Th lymphocytes |
| Peters et al. 2009 [ | USA | IgE | Dust mite (Der f 1 + Der p 1) | ↑ Dust mite-specific IgE | |
| Cockroach (Bla g 1 + Bla g 2) | ↓ cockroach-specific IgE (indirectly) | ||||
| Lappalainen et al. 2012 [ | Finland | Cytokine response | Staphylococcal enterotoxin B | ↓ LPS-induced IFN-γ | |
| Mycobacterium spp. | ↓ LPS-induced IL-8 | ||||
| Combined chemical markers | ↑induced TNF-α | ||||
|
| |||||
| Heinrich et al. 2002 [ | Germany | IgE | Cat-allergen exposure | ↑ IgE | |
| Roponen et al. 2005 [ | Finland | Cytokine response | Cat/Dog | ↑ induced IL-6 | |
| Aichbhaumik et al. 2008 [ | USA | IgE | Cats | ↓ IgE | |
| Sybilski et al. 2009 [ | Poland | IgE | Cats | ↑ grass and grain pollen-specific IgE | |
| Dogs | ↓ grass and grain pollen-specific IgE | ||||
| Lappalainen et al. 2010 [ | Finland | Cytokine response | Dogs | ↓ induced TNF-α | |
| Uzuner et al. 2013 [ | Turkey | Cytokine production | Pets | NS | |
Der: Dermatophagoides pteronyssinus; IFN: interferon; Ig: Immunoglobulin; IL: interleukin; LPS: lipopolysaccharide; NS: no significant results PG: peptidoglycan; Treg: T regulatory cells; TNF: tumor necrosis factor.
Prenatal exposure to tobacco smoking and changes in the immune system of neonates (authors ordered by year and then alphabetically).
| Author, Year [Ref.] | Location | Outcomes Assessed | Tobacco Smoking | Statistically Significant Main Findings | |
|---|---|---|---|---|---|
| Immune Cells Frequency | Cytokine Patterns/Ig | ||||
| Harrison 1979 [ | - | Leukocytes | Maternal smoking | ↓ neutrophils | |
| Mercelina-Roumans et al. 1996 [ | The Netherlands | WBC | Maternal smoking | ↓ neutrophils | |
| Noakes et al. 2003 [ | Australia | Cytokine response | Maternal smoking | ↑ IL-13 response to HDM and OVA | |
| Noakes et al. 2006 [ | Australia | Cytokine response | Maternal smoking | ↓ TNF-α responses via TLR2, 3 and 4 | |
| Pachlopnik Schmid et al. 2007 [ | Switzerland | Leukocytes | Maternal smoking | ↓ neutrophils | |
| Karwowska et al. 2008 [ | Poland | Lymphocytes | IgE | Maternal smoking | ↓ T helper (CD4+) cells |
| Keski-Nisula et al. 2010 [ | Finland | Cytokine response | Maternal smoking | ↓ induced IL-5 response | |
| Pfefferle et al. 2010 [ | 5 European countries | Cytokine response | Maternal smoking | ↓ induced-IL-5 levels | |
| Latzin et al. 2011 [ | Switzerland | Cytokine production | Maternal smoking | ↓ IL-6 levels | |
| Hinz et al. 2012 [ | Germany | Treg cells (counts) | Maternal smoking | ↓ Treg cells | |
| Sevgican et al. 2012 [ | USA | Cytokine response | ↓ mitogen-stimulated IFN-γ | ||
CD: cluster of differentiation; HDM: house dust mite; Ig: Immunoglobulin; IL: interleukin; OVA: ovalbumin; TNF: tumor necrosis factor; Treg: T regulatory cells; TLR: Toll-like receptor; WBC: white blood cells.
Prenatal exposure to environmental organic pollutants and changes in the immune system of neonates (authors ordered by year and then alphabetically).
| Author, Year [Ref.] | Location | Outcomes Assessed | Pollutant | Statistically Significant Main Findings | |
|---|---|---|---|---|---|
| Immune Cells Frequency | Cytokine Patterns/Ig | ||||
| Belles-Isles et al. 2002 [ | Canada | Lymphocytes | IgM | Fishing family | ↓ Th naïve cells |
| PCBs and p,p′-DDE | ↑ IgG | ||||
| Lehmann et al. 2002 [ | Germany | T cell cytokine response | VOCs | ↓ induced IFN-γ response (tetrachloroethylene) | |
| Bilrha et al. 2003 [ | Canada | Lymphocytes | Cytokine response | Fishing group | ↓ PHA-induced TNF-α |
| Chlorinated pesticides | Negative correlations between TNF-α and PCBs, p,p′-DDE, and HCB | ||||
| Noakes et al. 2006 [ | Australia | Cytokine response | Organochlorines | NS | |
| Brooks et al. 2007 [ | USA | Cytokine production | Placental p,p′-DDE | ↑ IL-13 levels | |
| Horváthová et al. 2011 [ | Slovakia Cross-sectional | Leukocytes (%) | Living in a region with high levels of PCB contamination | ↓ Dendritic-like cells | |
| Horváthová et al. 2011 [ | Slovakia | Leukocytes | Living in a region with high levels of PCB contamination | ↑ B cells (%) | |
| Neta et al. 2011 [ | USA | Cytokine production | Cis- and trans-Permethrin | ↑ IL-1β levels | |
| Oxychlordane | ↓ IL-1β levels | ||||
| Trans-nonachlor | NS | ||||
| Wang et al. 2011 [ | Taiwan | IgE | PFOA and PFOS | ↑ IgE (boys) | |
| PFNA | NS | ||||
| Ashley-Martin et al. 2015 [ | Canada | TSLP | Phthalates in maternal urine at first trimester | Inverse non-linear association between maternal urinary MCPP and IL-33/TSLP levels | |
| BPA, maternal urine 1st trimester | Inverse non-linear association between maternal urinary BPA and IL-33/TSLP levels | ||||
| Ashley-Martin et al. 2015 [ | Canada | TSLP | Organochlorines maternal plasma at 1st trimester | ↓ IL-33/TSLP (DDE) | |
| Organophosphates in maternal urine at 1st trimester | ↓ IL-33/TSLP (DEP + DETP) | ||||
| PCB, maternal plasma 1st trimester | ↓ IL-33/TSLP (PCB 118) | ||||
| Liao et al. 2016 [ | Taiwan | Cytokine response | BPA | ↓ TLR3- and TLR4-stimulated TNF-α response | |
| Huang et al. 2017 [ | Taiwan | Cytokine production | BPA | ↓ TNF-α levels | |
| Miyashita et al. 2018 [ | Japan | IgE | Dioxin-like compounds, maternal blood, 2nd and 3rd trimesters | ↓ IgE (boys) | |
| Kelley et al. 2019 [ | USA | Cytokine production | 12 phthalates in maternal urine, 1st trimester | ↑ MIP-α (MnBP) | |
BPA: bisphenol A; DEP: Diethylphosphate; p,p′-DDE: p,p′-Dichlorodiphenyldichloroethylene; DETP: Diethylthiophosphate; HCB: hexachlorobenzene; IFN: interferon; Ig: Immunoglobulin; IL: interleukin; MCPP: Mono-3-carboxyypropylphthalate; MIP: Macrophage Inflammatory Proteins; MCP: monocyte chemotactic protein; MnBP: mono n-butyl phthalate; MEHP: mono (2-ethylhexyl) phthalate; NK: Natural Killer cells; NS: no statistically significant results; PAH: polycyclic aromatic hydrocarbons; PCB: Polychlorinated biphenyls; PFOA: Perfluorooctanoic Acid; PFOS: perfluorooctane sulfonate; PFNA: perfluorononanoic acid; PHA: Phytohemagglutinin; PM: particle-matter; Tc: T cytotoxic cells; Th: T helper cells; TLR: toll-like receptor; TNF: tumor necrosis factor; TSLP: thymic stromal lymphopoietin; VOCs: volatile organic compounds.
Prenatal exposure to metals and metalloids and changes in the immune system in cord blood of neonates (authors ordered by year and then alphabetically).
| Author, Year [Ref.] | Location | Outcomes Assessed | Metal or Metalloid Assessed | Statistically Significant Main Findings | |
|---|---|---|---|---|---|
| Immune Cells Frequency | Cytokine Patterns/Ig | ||||
| Belles-Isles et al. 2002 [ | Canada | Lymphocytes (%) | IgM | Hg | ↓ Th naïve cells |
| Pb | ↑ IgG | ||||
| Ahmed et al. 2011 [ | Bangladesh | Cytokine production | As | U-shaped association with proinflammatory cytokines IL-1β, IL-8, IFN-γ, TNF-α | |
| Nadeau et al. 2014 [ | USA | Lymphocytes (counts) | As | ↓ naïve activated T cells (CD69+) | |
| Ashley-Martin et al. 2015 [ | Canada | TSLP | Pb in maternal blood at 1st trimester | ↓ IL-33/TSLP ODDS | |
| Nygaard et al. 2017 [ | USA | T-lymphocytes | As in toenails (8 wks. of post-partum) | ↓ Th memory cells | |
| Cd in toenails within 8 weeks of post-partum | ↓ Th memory cells (girls) | ||||
| Kelley et al. 2019 [ | USA | Cytokine production | As, Ba, Be, Cd, Cr, Cu, Hg, Mn, Mo, Ni, Pb, Se, Sn, Tl, U, W, Zn | ↑ MIP-α (Mo, Cd, Zn) | |
| Kim et al. 2019 [ | Korea | Cytokine production | Pb, Cr | ↑ IL-13 | |
CD: cluster of differentiation; IFN: interferon; Ig: Immunoglobulin; IL: interleukin; MIP: Macrophage Inflammatory Proteins; MCP: monocyte chemotactic protein; Th: T helper cells; Th2: T helper type 2 cells; TNF: tumor necrosis factor; Treg: T regulatory cells; TSLP: thymic stromal lymphopoietin; wks.: weeks.
Prenatal exposure to outdoor air pollutants and changes in the immune system in cord blood of neonates (authors ordered by year and then alphabetically).
| Author, Year [Ref.] | Location | Outcomes Assessed | Pollutant | Statistically Significant Main Findings | |
|---|---|---|---|---|---|
| Immune Cells Frequency | Cytokine Patterns/Ig | ||||
| Hertz-Picciotto et al. 2002 [ | Czech Republic Cross-sectional | Lymphocytes (%) | Living in a high PM polluted area | ↑ NK cells | |
| Hertz-Picciotto et al. 2005 [ | Czech Republic Cross-sectional | Lymphocytes (%) | PAH 14 days before birth | ↓ T-lymphocytes | |
| PM2.5 14 days before birth | ↓ T-lymphocytes and Th cells | ||||
| Herr et al. 2010 [ | Czech Republic Cohort | Lymphocytes (%) | PAHs | ||
| Baïz et al. 2011 [ | France | Lymphocytes (%) | NO2 | ||
| PM10 | |||||
| Benzene | ↓ CD4+CD25+ T cells | ||||
| Latzin et al. 2011 [ | Switzerland | Cytokine production | PM10 last 3 days of pregnancy | ↓ IL-10 | |
| PM10 last 3 mo. of pregnancy | ↑ IL-1ß | ||||
| Ashley-Martin et al. 2016 [ | Canada | IL-33 and TSLP levels | NO2 | ↑ IL-33 and TSLP (girls) | |
| Whole pregnancy and 1st trimester PM2.5 | ↑ IgE (girls) | ||||
| Lurà et al. 2018 [ | Switzerland | Leukocytes | NO2 14 days before delivery | ↓ leukocytes, neutrophils, and monocytes | |
| García-Serna et al. 2020 [ | Spain | Leukocytes | Traffic-related NO2 | ||
| Traffic-related PM2.5 | |||||
| Traffic-related PM10 | |||||
| Traffic-related O3 | |||||
IL: interleukin; NK: natural killer; PAH: polycyclic aromatic hydrocarbons; PM: particulate matter; Tc: T cytotoxic cells; Th: T helper cells; Th1: T helper type 1 cells; Th2: T helper type 2 cells; Th17: T helper type 17 cells; Treg: T regulatory cells; TSLP: thymic stromal lymphopoietin.