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Altered Toll-Like Receptor Signalling in Children with Down Syndrome
Dean Huggard1,2,3,4, W J Koay1, Lynne Kelly1,2
1Paediatrics, Trinity College, The University of Dublin, Dublin, Ireland.
Insights
Toll-like receptor 2 (TLR2) signaling is dysregulated in children with Down syndrome (DS), showing increased TLR2 expression and altered immune gene expression. Sparstolonin B effectively reduced inflammation, suggesting therapeutic potential for DS.
Area of Science:
- Immunology
- Genetics
- Pediatrics
Background:
- Toll-like receptors (TLRs) initiate innate immunity, with TLR2 recognizing gram-positive bacteria and linked to chronic inflammation.
- Children with Down syndrome (DS) face increased infection risk and autoimmunity, suggesting potential immune dysregulation.
- Sparstolonin B (SsnB) is a TLR antagonist that reduces cytokine production and improves sepsis outcomes.
Purpose of the Study:
- To investigate potential abnormalities in Toll-like receptor (TLR) signaling pathways in children with Down syndrome (DS).
- To evaluate the expression of TLR2 and key TLR signaling proteins (MyD88, IRAK4, TRIF) in DS.
- To assess the efficacy of Sparstolonin B (SsnB) in modulating TLR responses and cytokine production in DS.
Main Methods:
- Flow cytometry was used to determine TLR2 expression on neutrophils and monocytes.
- Quantitative PCR measured gene expression of MyD88, IRAK4, and TRIF.
- ELISA assessed cytokine production following stimulation with LPS, Pam3Csk4, and treatment with SsnB.
Main Results:
- Children with DS exhibited significantly increased TLR2 expression on neutrophils and monocytes compared to controls.
- Baseline MyD88 expression was lower, while TRIF expression was higher in children with DS.
- SsnB effectively reduced TLR2 and CD11b expression and abrogated cytokine production in both groups.
Conclusions:
- TLR signaling, particularly the TLR2 pathway, is dysregulated in children with Down syndrome, potentially contributing to chronic inflammation.
- The observed immune dysregulation in DS involves altered expression of TLR2 and associated signaling molecules.
- Sparstolonin B demonstrates potential as a therapeutic agent by attenuating pro-inflammatory mediators in DS.
Abstract:
Toll-like receptors (TLRs) are the key in initiating innate immune responses. TLR2 is crucial in recognising lipopeptides from gram-positive bacteria and is implicated in chronic inflammation. Children with Down syndrome (DS) are prone to infections from these pathogens and have an increased risk of autoimmunity. Sparstolonin B (SsnB) is a TLR antagonist which attenuates cytokine production and improves outcomes in sepsis. We hypothesised that TLR signalling may be abnormal in children with DS and contribute to their clinical phenotype. We evaluated TLR pathways in 3 ways: determining the expression of TLR2 on the surface of neutrophils and monocytes by flow cytometry, examining the gene expression of key regulatory proteins involved in TLR signal propagation, MyD88, IRAK4, and TRIF, by quantitative PCR, and lastly determining the cytokine production by ELISA following immunomodulation with proinflammatory stimuli (lipopolysaccharide (LPS), Pam3Csk4) and the anti-inflammatory agent SsnB. We report TLR2 expression being significantly increased on neutrophils, total monocytes, and intermediate and nonclassical monocytes in children with DS (n = 20, mean age 8.8 ± SD 5.3 years, female n = 11) compared to controls (n = 15, mean age 6.2 ± 4.2 years, female n = 5). At baseline, the expression of MyD88 was significantly lower, and TRIF significantly raised in children with DS. The TLR antagonist SsnB was effective in reducing TLR2 and CD11b expression and abrogating cytokine production in both cohorts. We conclude that TLR signalling and the TLR2 pathway are dysregulated in DS, and this disparate innate immunity may contribute to chronic inflammation in DS. SsnB attenuates proinflammatory mediators and may be of therapeutic benefit.
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