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1 ells and the regulatory mechanism underlying T cell vaccination.
2 anti-idiotypic T cell population induced by T cell vaccination.
3 anti-idiotypic humoral responses induced by T cell vaccination.
4 role in the regulatory mechanism induced by T cell vaccination.
5 ocol, with substantial advantages over DC or T cell vaccination.
6 hese findings are of potential importance to T cell vaccination.
7 CD4(+) regulatory T cell response induced by T cell vaccination.
8 by antigen-triggered CD4(+) TH1 cells during T cell vaccination and, in vitro, distinguish mature TH1
10 utoimmune encephalomyelitis (EAE) induced by T cell vaccination depends on CD8(+) T cells, and myelin
13 nti-idiotypic Ab responses can be induced by T cell vaccination in humans and that their regulatory p
15 atory role of anti-idiotypic Abs elicited by T cell vaccination in patients with multiple sclerosis.
16 e evaluate the protective benefits of CD4(+) T-cell vaccination in the LCMV model system; in contrast
17 zation with irradiated MBP-reactive T cells (T cell vaccination) induces anti-idiotypic T cell respon
18 zation with irradiated autoreactive T cells (T cell vaccination) induces anti-idiotypic T cell respon
19 nization with irradiated autologous T cells (T cell vaccination) is shown to induce regulatory T cell
20 lls to A. fumigatus and suggests that CD4(+) T cell vaccination may be able to overcome defective ant
21 zation with attenuated autoreactive T cells (T cell vaccination, or TCV) can induce T cell-dependent
25 tivated autoantigen-reactive CD4(+) T cells (T cell vaccination, TCV) has been shown to induce protec
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