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Updated: Jul 14, 2026

Isolation of Leukocytes from the Murine Tissues at the Maternal-Fetal Interface
Published on: May 21, 2015
Maternal allergy influences the proliferation of neonatal T cells expressing CCR4, CXCR5 or CD103
U Haddeland1, P Brandtzaeg, B Nakstad
1Laboratory for Immunohistochemistry and Immunopathology (LIIPAT), Department and Institute of Pathology, University of Oslo, Rikshospitalet-Radiumhospitalet Medical Centre, Oslo, Norway.
Insights
Neonatal immune cells show altered T cell proliferation markers in infants with a family history of allergies. These changes suggest potential early screening markers for allergy risk in newborns.
Area of Science:
- Immunology
- Neonatal Health
- Allergy Research
Background:
- Elevated allergen response in cord blood mononuclear cells (CBMCs) predicts infant allergy development.
- CBMC proliferative response is a potential screening marker for high allergy risk.
Purpose of the Study:
- Characterize proliferating cells in CBMCs from neonates with maternal allergy history versus controls.
- Identify differences in immune cell markers associated with allergy risk.
Main Methods:
- CBMCs stimulated with bovine beta-lactoglobulin (beta-LG).
- Proliferation assessed via thymidine incorporation (stimulation index, SI).
- Analyzed IL-4, IFN-gamma mRNA, and chemokine/adhesion receptors on proliferating T cells (CD3+ Ki-67+) using RT-PCR and flow cytometry.
Main Results:
- CCR4+ cell percentage correlated with IL-4; CXCR3 correlated with IFN-gamma.
- Allergy risk group showed reduced CCR4+ and CD103+ proliferating T cells.
- Increased CXCR5 and corrected SI observed in the allergy risk group.
Conclusions:
- Findings suggest delayed immune maturation in neonates with hereditary allergy risk.
- Corrected SI and proliferation of specific T cell subsets (CCR4+, CXCR5+, CD103+) may serve as early allergy risk screening markers.
Background:
Elevated proliferative response to allergen in cord blood mononuclear cells (CBMCs) is related to subsequent allergy development of the neonate and has been suggested as a screening marker for high allergy risk.
Objective:
To characterize the proliferating cells in CBMCs from a neonatal group influenced by maternal allergy compared with a control group without known allergic heredity.
Methods:
CBMCs were stimulated with bovine beta-lactoglobulin (beta-LG) and proliferation was analysed by radioactive thymidine incorporation and expressed both as the traditional stimulation index (SI) and SI corrected by eliminating non-specific proliferation. After beta-LG combined with endotoxin stimulation, cellular expression of IL-4 and IFN-gamma mRNA was determined by quantitative RT-PCR and adhesion as well as chemokine receptors were analysed by three-colour flow cytometry in proliferating T cells (CD3+ Ki-67+).
Results:
The percentage of CCR4+ cells correlated weakly with concurrent IL-4 expression (r(S)=0.5, P<0.05), while CXCR3 correlated strongly with IFN-gamma expression (r(S)=0.83, P<0.001). In the allergy risk group, the percentage of proliferating T cells expressing CCR4 or integrin alphaE (CD103) was significantly reduced compared with the control group, while CXCR5 and the corrected SI were relatively increased (CCR4: P=0.01; integrin alphaE: P=0.03; CXCR5: P=0.04; SI: P=0.04).
Conclusion:
Our results implied delayed maturation of immune functions involved in cellular migration, cell-cell interaction and immunoregulatory functions in neonates with hereditary allergy risk. The alterations observed in this subject group suggested that the corrected SI as well as proliferation of CCR4+, CXCR5+ or CD103+ T cells in allergen-stimulated CBMCs might serve as early screening markers for allergy risk.
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