Impaired interleukin (IL)-4-associated generation of CCR4-expressing T cells in neonates with hereditary allergy risk

U Haddeland1, G B Sletten, P Brandtzaeg

  • 1Laboratory for Immunohistochemistry and Immunopathology, Institute of Pathology, University of Oslo, Rikshospitalet University Hospital, Oslo, Norway.

Insights

Reduced microbial exposure may increase allergy risk. Bacterial lipopolysaccharide (LPS) exposure influences neonatal T cell maturation, with higher allergy risk neonates showing decreased CCR4 receptor generation, potentially impacting immune system development.

Area of Science:

  • Immunology
  • Allergy Research
  • Neonatal Development

Background:

  • Westernized societies observe rising atopic disease rates, potentially linked to reduced early-life microbial exposure.
  • Mechanisms connecting microbial exposure, immune maturation, and allergy development remain unclear.
  • Neonatal immune responses to environmental antigens are critical for immune tolerance and allergy prevention.

Purpose of the Study:

  • To investigate how bacterial lipopolysaccharide (LPS) exposure influences neonatal lymphoid cell maturation.
  • To compare immune responses to LPS between neonates with high allergy risk (FH+) and controls (FH-).
  • To determine the impact of LPS and antigen (beta-lactoglobulin) co-exposure on T cell chemokine receptor expression.

Main Methods:

  • Cord blood mononuclear cells from FH+ and FH- neonates were stimulated with LPS or beta-lactoglobulin plus LPS.
  • T cell expression of chemokine receptors CCR4 and CXCR3 was analyzed using flow cytometry and RT-PCR.
  • Interleukin-4 (IL-4) and Interferon-gamma (IFN-gamma) production was quantified via RT-PCR and immunoassay.

Main Results:

  • LPS stimulation, with or without beta-lactoglobulin, upregulated CCR4 and CXCR3 on T cells.
  • CCR4 upregulation correlated positively with IL-4 production and negatively with CXCR3 expression.
  • FH+ neonates exhibited significantly lower CCR4+ T cell generation compared to FH- controls, while CXCR3 and IFN-gamma induction did not differ.

Conclusions:

  • Early-life exposure to LPS may enhance T cell interaction potential via CCR4 and CXCR3 upregulation.
  • Neonates with a hereditary allergy risk show a potentially compromised immune regulatory mechanism due to reduced CCR4 induction.
  • Th1 responses to antigens in the presence of LPS appear unaffected by hereditary allergy risk.

Related Concept Videos

T Cell Types and Functions01:24

T Cell Types and Functions

When T cells with CD4 markers are activated, they give rise to two types of effector cells: helper T cells and regulatory T cells. Meanwhile, T cells with CD8 markers differentiate into effector cytotoxic T cells. The differentiation of CD4 T cells into helper T cell subsets, such as Th1, Th2, and Th17 cells, is dependent on the antigen type, antigen-presenting cell, and regulatory cytokines.
Th1 cells stimulate dendritic cells to express necessary co-stimulatory molecules on their surfaces for...
Development of Immunocompetence01:22

Development of Immunocompetence

The initiation of cell-mediated immunity can be observed as early as the third month of fetal growth, with active antibody-mediated immunity following approximately one month later.
The initial cells that migrate from the fetal thymus settle within the skin and epithelial tissues lining the mouth, digestive tract, and in females, the uterus and vagina. These cells, including skin-based dendritic cells, serve as antigen-presenting cells, playing a key role in T cell activation.
Subsequent T...
Immunodeficiency Diseases01:25

Immunodeficiency Diseases

Immunodeficiency disorders are conditions in which the immune system's ability to fight infectious disease and cancer is compromised or entirely absent. The immune system comprises a complex network of cells, tissues, and organs that work together to protect the body from potentially harmful invaders. When this system is deficient or not functioning properly, it leaves the body susceptible to infections, diseases, or other complications.
There are three main causes of immunodeficiency disorders...
Hypersensitivities01:30

Hypersensitivities

Hypersensitivity, also known as a hypersensitivity reaction or allergic reaction, is a condition where the body's immune system reacts abnormally to a foreign substance. Such substances, that cause hypersensitivity are referred to as an allergen, could be something typically harmless to most people, like pollen or certain foods.
Types of Hypersensitivities
Hypersensitivity reactions are categorized into four types: Type 1, Type 2, Type 3, and Type 4. Each type has a distinct mechanism...
Hypersensitivity Reactions: Delayed Hypersensitivity Reactions01:29

Hypersensitivity Reactions: Delayed Hypersensitivity Reactions

Delayed-Type Hypersensitivity (DTH), or Type IV hypersensitivity, is a cell-mediated immune response. It occurs when T cells, rather than antibodies, mediate a reaction to specific antigens. It is characterized by a delayed onset (1-2 days) and involves the recruitment of macrophages to the inflammation site.The initiation of a DTH response begins with the sensitization of T cells. During this phase, which lasts at least 1-2 weeks, antigen-specific T cells are activated, clonally expanded, and...
Inflammatory Bowel Disease III: Crohn's Disease01:25

Inflammatory Bowel Disease III: Crohn's Disease

Crohn’s disease is a chronic, relapsing form of inflammatory bowel disease characterized by segmental, transmural inflammation that can affect any part of the gastrointestinal tract. Its pathogenesis arises from a combination of genetic susceptibility, environmental exposures, epithelial barrier dysfunction, and immune dysregulation. Together, these factors lead to an exaggerated immune response against components of the gut microbiome.Genetic and Environmental InfluencesMultiple genetic...