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Updated: Mar 11, 2026

Analysis of T-cell Receptor-Induced Calcium Influx in Primary Murine T-cells by Full Spectrum Flow Cytometry
Published on: December 16, 2022
T Cells of Infants Are Mature, but Hyporeactive Due to Limited Ca2+ Influx
Kristin Schmiedeberg1, Hardy Krause2, Friedrich-Wilhelm Röhl3
1Department of Experimental Pediatrics, University Hospital, Otto-von-Guericke University, Magdeburg, Germany.
Abstract:
CD4 T cells in human infants and adults differ in the initiation and strength of their responses. The molecular basis for these differences is not yet understood. To address this the principle key molecular events of TCR- and CD28-induced signaling in naive CD4 T cells, such as Ca2+ influx, NFAT expression, phosphorylation and translocation into the nucleus, ERK activation and IL-2 response, were analyzed over at least the first 3 years of life. We report dramatically reduced IL-2 and TNFα responses in naive CD31+ T cells during infancy. Looking at the obligatory Ca2+ influx required to induce T cell activation and proliferation, we demonstrate characteristic patterns of impairment for each stage of infancy that are partly due to the differential usage of Ca2+ stores. Consistent with those findings, translocation of NFATc2 is limited, but still dependent on Ca2+ influx as demonstrated by sensitivity to cyclosporin A (CsA) treatment. Thus weak Ca2+ influx functions as a catalyst for the implementation of restricted IL-2 response in T cells during infancy. Our studies also define limited mobilization of Ca2+ ions as a characteristic property of T cells during infancy. This work adds to our understanding of infants' poor T cell responsiveness against pathogens.
Insights
Infant CD4 T cells show weaker IL-2 and TNFα responses due to impaired calcium (Ca2+) influx and NFATc2 translocation. This explains reduced T cell responsiveness in infants against pathogens.
Area of Science:
- Immunology
- Pediatric Medicine
- Molecular Biology
Background:
- CD4 T cell responses differ significantly between infants and adults.
- The molecular mechanisms underlying these developmental differences in T cell signaling remain unclear.
Purpose of the Study:
- To investigate the molecular basis of reduced CD4 T cell responsiveness in early life.
- To analyze key signaling events in naive CD4 T cells during the first three years of life.
Main Methods:
- Analysis of TCR- and CD28-induced signaling pathways in naive CD4 T cells.
- Measurement of Ca2+ influx, NFAT expression and translocation, ERK activation, and IL-2 response.
- Assessment of cyclosporin A (CsA) effects on NFATc2 translocation.
Main Results:
- Infants exhibit significantly reduced IL-2 and TNFα responses in naive CD31+ T cells.
- Impaired Ca2+ influx, with stage-specific patterns, limits T cell activation and proliferation.
- NFATc2 translocation is restricted but remains dependent on Ca2+ influx.
Conclusions:
- Limited Ca2+ mobilization is a key characteristic of T cells in infancy.
- Weak Ca2+ influx contributes to restricted IL-2 responses in infant T cells.
- This study enhances understanding of infants' diminished T cell immunity to pathogens.
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