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Updated: Aug 8, 2026

Generation of Human Alloantigen-specific T Cells from Peripheral Blood
Published on: November 21, 2014
Antigen-independent pathways of T-cell activation are functional in human immature thymocytes
1Istituto Nazionale per la Ricerca sul Cancro, Genoa, Italy.
Insights
Immature thymocytes lacking the T-cell receptor complex can proliferate. Signaling via CD28 and CD2 molecules, not CD3, drives this T-cell activation, indicating alternative functional pathways.
Area of Science:
- Immunology
- Cell Biology
Background:
- Immature thymocytes (CD1+CD3-) typically lack the T-cell receptor (TCR) complex.
- Understanding their functional capacity and activation pathways is crucial for T-cell development.
Purpose of the Study:
- To investigate the signal requirements for proliferation of CD1+CD3- immature thymocytes.
- To determine if CD1+CD3- cells can function independently of the CD3/TCR complex.
Main Methods:
- Stimulation of CD1+CD3- thymocytes with anti-CD28 and anti-CD2 monoclonal antibodies.
- Use of phorbol-13-myristate-12-acetate and recombinant interleukin-2.
- Calcium mobilization assays to assess signaling pathways.
Main Results:
- CD1+CD3- cells proliferated upon stimulation with anti-CD28 and anti-CD2 antibodies, in conjunction with phorbol-13-myristate-12-acetate and/or interleukin-2.
- Anti-CD3 antibody did not induce proliferation in CD1+CD3- cells.
- Highly purified CD1+CD3- cells showed calcium mobilization via CD3, suggesting a trace presence of CD3+ cells, but preferential expansion of CD3-CD8+ cells occurred via CD28 and CD2 signaling.
Conclusions:
- Alternative signaling pathways through CD28 and CD2 can induce proliferation in CD1+CD3- immature thymocytes.
- These findings suggest functional capabilities in immature thymocytes independent of the canonical CD3/TCR complex.
Abstract:
The signal requirements for proliferation of CD1+CD3- immature thymocytes have been studied in order to define whether this immature cell population could function despite the lack of the CD3/T-cell receptor complex. We found that CD1+CD3- cells proliferate upon stimulation with anti-CD28 monoclonal antibody as well as with a pair of anti-CD2 monoclonal antibodies in the presence of low doses (0.5 ng/ml) of phorbol-13-myristate-12-acetate and/or recombinant interleukin-2. A minor fraction of CD3+ cells (15%-20%) was also present in the proliferating cell population originating from CD1+CD3- thymocytes stimulated with phorbol-13-myristate-12-acetate and recombinant interleukin-2, either in the presence or in the absence of specific monoclonal antibodies. We further observed that the anti-CD3 monoclonal antibody did not induce the proliferation of CD1+CD3- cells, as expected, and efficiently triggered unfractionated or CD1+CD3+ thymocytes only if exogenous recombinant interleukin-2 was provided. Unexpectedly, we noted that highly purified (greater than 99%), CD1+CD3- immature thymocytes could mobilize calcium via CD3, besides CD2 and CD28 surface molecules, suggesting that a minor undetectable fraction (less than 1%) of CD3+ cells was still present in the purified CD3- population. Nevertheless, the preferential expansion of CD3-CD8+ cells (about one-third of proliferating cells) after triggering via CD28, and to a lesser extent via CD2, support the notion that the alternative pathways of T-cell activation are actually functional in CD1+CD3- immature thymocytes.
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