Hapten-specific T cell responses to 4-hydroxy-3-nitrophenyl acetyl. V. Role of idiotypes in the suppressor pathway.
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Contact sensitivity to azobenzenearsonate and its inhibition after interaction of sensitized cells with antigen-conjugated cellsHapten-specific T cell responses to 4-hydroxy-3-nitrophenyl acetyl. VI. Evidence for different T cell receptors in cells that mediate H-21-restricted and H-2D-restricted cutaneous sensitivity responsesRegulation of immunoglobulin E antibody synthesis in man by antiidiotypic antibodies.Functional association of idiotypic and I-J determinants on the antigen receptor of suppressor T cells.B-lymphocyte responses to trinitrophenyl-conjugated Ficoll: requirement for T lymphocytes and Ia-bearing adherent cells.Antigen- and receptor-driven regulatory mechanisms. V. The failure of idiotype-coupled spleen cells to induce unresponsiveness in animals lacking the appropriate VH genes is caused by the lack of idiotype-matched targetsAntigen- and receptor-driven regulatory mechanisms. VII. H-2-restricted anti-idiotypic suppressor factor from efferent suppressor T cellsMechanisms of regulation of cell-mediated immunity. VII. Suppressor T cells induced by suboptimal doses of antigen plus an I-J-specific allogeneic effect.Hapten-specific T cell responses to 4-hydroxy-3-nitrophenyl acetyl. VII. Idiotype-specific suppression of plaque-forming cell responsesHapten-specific T cell responses to 4-hydroxy-3-nitrophenyl acetyl. VIII. Suppressor cell pathways in cutaneous sensitivity responses.Antigen- and receptor-driven regulatory mechanisms. VIII. Suppression of idiotype-negative, p-azobenzenearsonate-specific T cells results from the interaction of an anti-idiotypic second-order T suppressor cell with a cross-reactive-idiotype-positivHapten-specific T cell responses to 4-hydroxy-3-nitrophenyl acetyl. IX. Characterization of Idiotype-specific effector-phase suppressor cells on plaque-forming cell responses in vitro.Hapten-specific T cell responses to 4-hydroxy-3-nitrophenyl acetyl. XI. Pseudogenetic restrictions of hybridoma suppressor factorsBalb/c T cells have the potential to recognize the TEPC 15 prototype antibody and its somatic variants.Hapten-specific T cell responses to 4-hydroxy-3-nitrophenyl acetyl. XII. Fine specificity of anti-idiotypic suppressor T cells (Ts2).A common idiotype on SJL and C57BL/6 anti-(4-hydroxy-3-nitrophenyl) acetyl antibodies and its relationship with lambda chain production.Analysis of T cell hybridomas. I. Characterization of H-2 and Igh-restricted monoclonal suppressor factorsAnalysis of T cell hybridomas. II. Comparisons among three distinct types of monoclonal suppressor factorsT lymphocyte-mediated suppression of myeloma function in vitro. IV. Generation of effector suppressor cells specific for myeloma idiotypes.Analysis of T cell hybridomas. IV. Characterization of inducible suppressor cell hybridomas.Hapten-reactive inducer T cells. I. Definition of two classes of hapten-specific inducer cells.A mechanism responsible for the induction of H-2 restricted second order suppressor T cellsAn antigen-specific signal is required for the activation of second-order suppressor T cells in the regulation of delayed-type hypersensitivity to 2,4,6-trinitrobenzene sulfonic acid.The role of I-J and Igh determinants on F1-derived suppressor factor in controlling restriction specificity.Igh variable region-restricted T cell interactions. Genetic restriction of an antigen-specific suppressor inducer factor is imparted by an I-J+ antigen-nonspecific molecule.Suppressor T cell growth and differentiation. Identification of a cofactor required for suppressor T cell function and distinct from interleukin 2.Suppressor factor from a T cell hybrid inhibits delayed-type hypersensitivity responses to azobenzenearsonateRegulation of delayed type hypersensitivity to host histocompatibility antigens during graft-versus-host reactions.Understanding suppressor cells: where have we gone wrong?Suppression of IgE antibodies with conjugates of haptens or allergens and synthetic hydrophilic polymers.Mechanisms of idiotype suppression. IV. Functional neutralization in mixtures of idiotype-specific suppressor and hapten-specific suppressor T cells.Activation of peripheral blood T cells via the p75 interleukin 2 receptor.Suppression of in Vitro Production of Anti-U1-Ribonucleoprotein Antibody by Monoclonal Anti-Idiotypic Antibody to Anti-U1-Ribonucleoprotein Antibody
P2860
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P2860
Hapten-specific T cell responses to 4-hydroxy-3-nitrophenyl acetyl. V. Role of idiotypes in the suppressor pathway.
description
1980 nî lūn-bûn
@nan
1980年の論文
@ja
1980年論文
@yue
1980年論文
@zh-hant
1980年論文
@zh-hk
1980年論文
@zh-mo
1980年論文
@zh-tw
1980年论文
@wuu
1980年论文
@zh
1980年论文
@zh-cn
name
Hapten-specific T cell respons ...... pes in the suppressor pathway.
@en
Hapten-specific T cell respons ...... pes in the suppressor pathway.
@nl
type
label
Hapten-specific T cell respons ...... pes in the suppressor pathway.
@en
Hapten-specific T cell respons ...... pes in the suppressor pathway.
@nl
prefLabel
Hapten-specific T cell respons ...... pes in the suppressor pathway.
@en
Hapten-specific T cell respons ...... pes in the suppressor pathway.
@nl
P2093
P2860
P356
P1476
Hapten-specific T cell respons ...... pes in the suppressor pathway.
@en
P2093
Benacerraf B
Germain RN
Weinberger JZ
P2860
P304
P356
10.1084/JEM.152.1.161
P407
P577
1980-07-01T00:00:00Z