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Publication Listing for the MeSH term CD4-Positive T-Lymphocytes. Found 16 abstracts

Solomos AC, O'Regan KJ, Rall GF. CD4+ T cells require either B cells or CD8+ T cells to control spread and pathogenesis of a neurotropic infection. Virology. 2016 Dec;499:196-202.   PMCID: PMC5102754
Fahl SP, Harris B, Coffey F, Wiest DL. Rpl22 Loss Impairs the Development of B Lymphocytes by Activating a p53-Dependent Checkpoint. Journal of Immunology. 2015 Jan;194(1):200-9.   PMCID: 4333014
Fang M, Remakus S, Roscoe F, Ma X, Sigal LJ. CD4+ T cell help is dispensable for protective CD8+ T cell memory against mousepox virus following vaccinia virus immunization. J Virol. 2015 Jan;89(1):776-83.   PMCID: PMC4301148
Hou P, Chen S, Wang S, Yu X, Chen Y, Jiang M, Zhuang K, Ho W, Hou W, Huang J, Guo D. Genome editing of CXCR4 by CRISPR/cas9 confers cells resistant to HIV-1 infection. Sci Rep. 2015 Jan;5:15577.   PMCID: 4612538
Koltsova EK, Grivennikov SI. IL-22 Gets to the Stem of Colorectal Cancer. Immunity. 2014 May 15;40(5):639-41.
Siciliano NA, Hersperger AR, Lacuanan AM, Xu RH, Sidney J, Sette A, Sigal LJ, Eisenlohr LC. Impact of distinct poxvirus infections on the specificities and functionalities of CD4+ T cell responses. J Virol. 2014 Sep;88(17):10078-91.   PMCID: 4136331
Lauritsen JP, Kurella S, Lee SY, Lefebvre JM, Rhodes M, Alberola-Ila J, Wiest DL. Egr2 is required for Bcl-2 induction during positive selection. J Immunol. 2008 Dec;181(11):7778-85.   PMCID: PMC2587029
He X, Kappes DJ. CD4/CD8 lineage commitment: light at the end of the tunnel?. Curr Opin Immunol. 2006 Apr;18(2):135-42.
Kappes DJ, He X. Role of the transcription factor Th-POK in CD4:CD8 lineage commitment. Immunological reviews. 2006 Feb;209:237-52.
Kappes DJ, He X. CD4-CD8 lineage commitment: an inside view. Nature immunology. 2005 Aug;6(8):761-6.
Milling SW, Sai T, Silvers WK, Mintz B. Inhibition of melanoma growth after treatment with dendritic cells in a Tyr-SV40E murine model requires CD4+ T cells but not CD8+ T cells. Melanoma Research. 2004 Dec;14(6):555-62.
Maus MV, Riley JL, Kwok WW, Nepom GT, June CH. HLA tetramer-based artificial antigen-presenting cells for stimulation of CD4+ T cells. Clin Immunol. 2003 Jan;106(1):16-22.
Carleton M, Haks MC, Smeele SA, Jones A, Belkowski SM, Berger MA, Linsley P, Kruisbeek AM, Wiest DL. Early growth response transcription factors are required for development of CD4(-)CD8(-) thymocytes to the CD4(+)CD8(+) stage. J Immunol. 2002 Feb 15;168(4):1649-58.
Patterson CE, Lawrence DM, Echols LA, Rall GF. Immune-mediated protection from measles virus-induced central nervous system disease is noncytolytic and gamma interferon dependent. J Virol. 2002 May;76(9):4497-506.
Slingluff CL, Yamshchikov G, Neese P, Galavotti H, Eastham S, Engelhard VH, Kittlesen D, Deacon D, Hibbitts S, Grosh WW, Petroni G, Cohen R, Wiernasz C, Patterson JW, Conway BP, Ross WG. Phase I trial of a melanoma vaccine with gp100(280-288) peptide and tetanus helper peptide in adjuvant: immunologic and clinical outcomes. Clin Cancer Res. 2001 Oct;7(10):3012-24.
Guo JT, Zhou H, Liu C, Aldrich C, Saputelli J, Whitaker T, Barrasa MI, Mason WS, Seeger C. Apoptosis and regeneration of hepatocytes during recovery from transient hepadnavirus infections. J Virol. 2000 Feb;74(3):1495-505.
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MeSH cloud from publications including the MeSH term CD4-Positive T-Lymphocytes

CD4-Positive T-Lymphocytes immunology CD8-Positive T-Lymphocytes metabolism cytology Mice genetics virology Inbred C57BL Mice US Gov't Support-PHS biosynthesis Cell Differentiation Signal Transduction Female Antigen Receptors-T-Cell Non-US Gov't Support Interferon Type II Molecular Sequence Data T-Lymphocyte Subsets Animal Cell Lineage Male Immunological Models Cytokines Cell Proliferation Cultured Cells Transcription Factors Thymus Gland Ectromelia virus B-Lymphocytes Transgenic Mice pathology Cell Line Knockout Mice Cytotoxic T-Lymphocytes Immunologic Memory Peptide Fragments Vaccinia virus Neoplasm Proteins Brain Measles pathogenicity Human physiology Measles virus Immunoglobulin G Comparative Study ge [Genetics] Cell Division Cell Survival adverse effects me [Metabolism] Lymph Nodes In Situ Nick-End Labeling HIV Infections HLA Antigens Macaca mulatta Monophenol Monooxygenase Microspheres Ribosomes Colorectal Neoplasms Immunologic Cytotoxicity Tests Cultured Tumor Cells Phenotype Chronic Hepatitis B Apoptosis Helper-Inducer T-Lymphocytes Cancer Vaccines Skin Tests Alleles Skin Diseases Immunoglobulin Class Switching Up-Regulation Delayed Hypersensitivity In Vitro Poxviridae Infections EC 1-14-18-1 (Monophenol Monooxygenase) HLA-A2 Antigen Flow Cytometry Dendritic Cells Hepatitis B classification Mutation Immunologic Adjuvants Neuron Neoplastic Stem Cells chemically induced Adaptive immunity Melanoma T-Lymphocyte Epitopes Genetic Transcription bl [Blood] th [Therapy] Skin Neoplasms im [Immunology] Headache Marmota Early Growth Response Protein 2 Gene Expression Regulation Disease Resistance Methyltransferases Immunotherapy Survival Analysis CD8 Antigens Middle Age 0 (Peptide Fragments) 0 (Cytokines) Lymphoid Progenitor Cells Homeodomain Proteins Tumor-Infiltrating Lymphocytes Killer Cells blood Organ Culture Liver Regeneration RNA Editing Non-US Gov't Research Support secretion 0 (Melan-A protein) Immunophenotyping embryology Trans-Activation (Genetics) Animal Disease Models Pain Virulence Proto-Oncogene Proteins c-bcl-2 Interleukins Biological Models Follow-Up Studies DNA-Binding Proteins therapy Liver Reverse Transcriptase Polymerase Chain Reaction Gene Silencing Transgenic mice 0 (Neoplasm Proteins) Treatment Outcome 0 (Immunoglobulin G) Viral DNA drug effects CXCR4 Receptors V(D)J Recombination Experimental Melanoma Jurkat Cells Th1 Cells Amino Acid Sequence Viremia Tetanus Toxoid Cell Membrane RNA-Binding Proteins Chromatin
Last updated on Friday, February 02, 2018