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Published on: July 17, 2018
Differential adipokine receptor expression on circulating leukocyte subsets in lean and obese children
Genoveva Keustermans1, Laila B van der Heijden2, Berlinda Boer1
1Laboratory for Translational Immunology, University Medical Center Utrecht, Utrecht, The Netherlands.
Insights
Childhood obesity is linked to type 2 diabetes and cardiovascular disease. Immune cell adipokine receptor expression was similar in obese and normal-weight children, suggesting circulating adipokine levels, not receptor expression, primarily influence signaling in obese youth.
Area of Science:
- Immunology
- Endocrinology
- Pediatrics
Background:
- Childhood obesity is a growing global health concern, increasing risks for type 2 diabetes (T2D) and cardiovascular disease (CVD).
- Obesity-associated adipose tissue produces inflammatory adipokines, contributing to T2D and CVD development.
- While adipokine levels are known, receptor expression on immune cells in obese children remains unstudied.
Purpose of the Study:
- To investigate adiponectin and leptin receptor expression on circulating immune cells in obese children.
- To compare receptor expression before and after a lifestyle intervention in obese children versus normal-weight controls.
Main Methods:
- Compared 13 obese children (pre/post-intervention) with 15 normal-weight controls.
- Measured clinical parameters, circulating adipokines, and immune cell adipokine receptor expression (AdipoR1, AdipoR2, leptin receptor) via flow cytometry.
Main Results:
- Obese children had higher BMI-SDS, blood pressure, leptin, and lower insulin sensitivity (QUICKI).
- Leukocyte subsets showed distinct adipokine receptor profiles (e.g., monocytes high expression, NK/iNKT cells AdipoR2 predominant).
- Most receptor expression profiles and cell numbers were similar between obese and control children, with few significant differences after correction.
Conclusions:
- Distinct adipokine receptor profiles on leukocyte subsets may explain differential adipokine impacts.
- Similar receptor expression suggests circulating adipokine levels, not receptor expression, primarily modulate adipokine signaling in childhood obesity.
Background:
Childhood obesity prevalence has increased worldwide and is an important risk factor for type 2 diabetes (T2D) and cardiovascular disease (CVD). The production of inflammatory adipokines by obese adipose tissue contributes to the development of T2D and CVD. While levels of circulating adipokines such as adiponectin and leptin have been established in obese children and adults, the expression of adiponectin and leptin receptors on circulating immune cells can modulate adipokine signalling, but has not been studied so far. Here, we aim to establish the expression of adiponectin and leptin receptors on circulating immune cells in obese children pre and post-lifestyle intervention compared to normal weight control children.
Methods:
13 obese children before and after a 1-year lifestyle intervention were compared with an age and sex-matched normal weight control group of 15 children. Next to routine clinical and biochemical parameters, circulating adipokines were measured, and flow cytometric analysis of adiponectin receptor 1 and 2 (AdipoR1, AdipoR2) and leptin receptor expression on peripheral blood mononuclear cell subsets was performed.
Results:
Obese children exhibited typical clinical and biochemical characteristics compared to controls, including a higher BMI-SD, blood pressure and circulating leptin levels, combined with a lower insulin sensitivity index (QUICKI). The 1-year lifestyle intervention resulted in stabilization of their BMI-SD. Overall, circulating leukocyte subsets showed distinct adipokine receptor expression profiles. While monocytes expressed high levels of all adipokine receptors, NK and iNKT cells predominantly expressed AdipoR2, and B-lymphocytes and CD4+ and CD8+ T-lymphocyte subsets expressed AdipoR2 as well as leptin receptor. Strikingly though, leukocyte subset numbers and adipokine receptor expression profiles were largely similar in obese children and controls. Obese children showed higher naïve B-cell numbers, and pre-intervention also higher numbers of immature transition B-cells and intermediate CD14++CD16+ monocytes combined with lower total monocyte numbers, compared to controls. Furthermore, adiponectin receptor 1 expression on nonclassical CD14+CD16++ monocytes was consistently upregulated in obese children pre-intervention, compared to controls. However, none of the differences in leukocyte subset numbers and adipokine receptor expression profiles between obese children and controls remained significant after multiple testing correction.
Conclusions:
First, the distinct adipokine receptor profiles of circulating leukocyte subsets may partly explain the differential impact of adipokines on leukocyte subsets. Second, the similarities in adipokine receptor expression profiles between obese children and normal weight controls suggest that adipokine signaling in childhood obesity is primarily modulated by circulating adipokine levels, instead of adipokine receptor expression.
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