Successful and Maladaptive T Cell Aging.
暂无分享,去创建一个
[1] David M. Moskowitz,et al. Epigenomics of human CD8 T cell differentiation and aging , 2017, Science Immunology.
[2] A. Domnich,et al. Effectiveness of MF59-adjuvanted seasonal influenza vaccine in the elderly: A systematic review and meta-analysis. , 2017, Vaccine.
[3] M. van der Burg,et al. Circulating T Cells of Patients with Nijmegen Breakage Syndrome Show Signs of Senescence , 2016, Journal of Clinical Immunology.
[4] Yufeng Shen,et al. Long-term maintenance of human naïve T cells through in situ homeostasis in lymphoid tissue sites , 2016, Science Immunology.
[5] Todd M. Allen,et al. The epigenetic landscape of T cell exhaustion , 2016, Science.
[6] S. Berger,et al. Epigenetic stability of exhausted T cells limits durability of reinvigoration by PD-1 blockade , 2016, Science.
[7] A. Lanna,et al. Senescence of T Lymphocytes: Implications for Enhancing Human Immunity. , 2016, Trends in immunology.
[8] B. Pereira,et al. Convergence of Innate and Adaptive Immunity during Human Aging , 2016, Front. Immunol..
[9] Patricia A. Lovelace,et al. Defective Signaling in the JAK-STAT Pathway Tracks with Chronic Inflammation and Cardiovascular Risk in Aging Humans. , 2016, Cell systems.
[10] S. Goodman,et al. Deficient Activity of the Nuclease MRE11A Induces T Cell Aging and Promotes Arthritogenic Effector Functions in Patients with Rheumatoid Arthritis. , 2016, Immunity.
[11] V. Appay,et al. Aging of the immune system: Focus on inflammation and vaccination , 2016, European journal of immunology.
[12] Lisa E. Wagar,et al. Defective T Memory Cell Differentiation after Varicella Zoster Vaccination in Older Individuals , 2016, PLoS pathogens.
[13] Lidia Oostvogels,et al. Efficacy of the Herpes Zoster Subunit Vaccine in Adults 70 Years of Age or Older. , 2016, The New England journal of medicine.
[14] E. Wherry,et al. Bioenergetic Insufficiencies Due to Metabolic Alterations Regulated by the Inhibitory Receptor PD-1 Are an Early Driver of CD8(+) T Cell Exhaustion. , 2016, Immunity.
[15] Matheus C. Bürger,et al. Defining CD8+ T cells that provide the proliferative burst after PD-1 therapy , 2016, Nature.
[16] Mikhail Shugay,et al. Dynamics of Individual T Cell Repertoires: From Cord Blood to Centenarians , 2016, The Journal of Immunology.
[17] J. Dushoff,et al. The Hayflick Limit May Determine the Effective Clonal Diversity of Naive T Cells , 2016, The Journal of Immunology.
[18] Marion C Lanteri,et al. Human memory T cells with a naïve phenotype accumulate with aging and respond to persistent viruses , 2016, Nature Immunology.
[19] A. Handel,et al. Mathematical Model Reveals the Role of Memory CD8 T Cell Populations in Recall Responses to Influenza , 2016, Front. Immunol..
[20] Ji-hang Ju,et al. NADPH oxidase deficiency underlies dysfunction of aged CD8+ Tregs. , 2016, The Journal of clinical investigation.
[21] S. Moschos,et al. Comparison of efficacy of immune checkpoint inhibitors (ICIs) between younger and older patients: A systematic review and meta-analysis. , 2016, Cancer treatment reviews.
[22] Gary E. Swan,et al. Diversification of the antigen-specific T cell receptor repertoire after varicella zoster vaccination , 2016, Science Translational Medicine.
[23] L. Tian,et al. Restoring oxidant signaling suppresses proarthritogenic T cell effector functions in rheumatoid arthritis , 2016, Science Translational Medicine.
[24] A. Oxenius,et al. Tumor-necrosis factor impairs CD4+ T cell–mediated immunological control in chronic viral infection , 2016, Nature Immunology.
[25] M. Mokry,et al. Neonatal thymectomy reveals differentiation and plasticity within human naive T cells. , 2016, The Journal of clinical investigation.
[26] E. Metter,et al. TCRβ repertoire of CD4+ and CD8+ T cells is distinct in richness, distribution, and CDR3 amino acid composition , 2016, Journal of leukocyte biology.
[27] J. Linden,et al. Purinergic regulation of the immune system , 2016, Nature Reviews Immunology.
[28] M. Velarde,et al. Mitochondrial Dysfunction Induces Senescence with a Distinct Secretory Phenotype. , 2016, Cell metabolism.
[29] L. Tian,et al. Expression of CD39 on Activated T Cells Impairs their Survival in Older Individuals , 2016, Cell reports.
[30] Grant Lythe,et al. How many TCR clonotypes does a body maintain? , 2016, Journal of theoretical biology.
[31] Kylie M. Quinn,et al. Heightened self-reactivity associated with selective survival, but not expansion, of naïve virus-specific CD8+ T cells in aged mice , 2016, Proceedings of the National Academy of Sciences.
[32] C. Kang,et al. Characterization of age‐associated exhausted CD8+ T cells defined by increased expression of Tim‐3 and PD‐1 , 2016, Aging cell.
[33] Eva K. Lee,et al. Systems Analysis of Immunity to Influenza Vaccination across Multiple Years and in Diverse Populations Reveals Shared Molecular Signatures. , 2015, Immunity.
[34] Richard A. Olshen,et al. High-throughput sequencing insights into T-cell receptor repertoire diversity in aging , 2015, Genome Medicine.
[35] S. Robson,et al. NADH oxidase-dependent CD39 expression by CD8+ T cells modulates interferon gamma responses via generation of adenosine , 2015, Nature Communications.
[36] K. Stiasny,et al. Reduced naïve CD8+ T‐cell priming efficacy in elderly adults , 2015, Aging cell.
[37] A. Thiel,et al. Low Thymic Activity and Dendritic Cell Numbers Are Associated with the Immune Response to Primary Viral Infection in Elderly Humans , 2015, The Journal of Immunology.
[38] P. Klenerman,et al. CD39 Expression Identifies Terminally Exhausted CD8+ T Cells , 2015, PLoS pathogens.
[39] D. Laydon,et al. Estimating T-cell repertoire diversity: limitations of classical estimators and a new approach , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.
[40] Ji-hang Ju,et al. Age-Associated Failure To Adjust Type I IFN Receptor Signaling Thresholds after T Cell Activation , 2015, The Journal of Immunology.
[41] Neha R. Deshpande,et al. Self-recognition drives the preferential accumulation of promiscuous CD4+ T-cells in aged mice , 2015, eLife.
[42] Thierry Mora,et al. Fluctuating fitness shapes the clone-size distribution of immune repertoires , 2015, Proceedings of the National Academy of Sciences.
[43] Sarah E. Jackson,et al. The Characterization of Varicella Zoster Virus-Specific T Cells in Skin and Blood during Aging. , 2015, The Journal of investigative dermatology.
[44] N. Riddell,et al. Blockade of PD‐1 or p38 MAP kinase signaling enhances senescent human CD8+ T‐cell proliferation by distinct pathways , 2015, European journal of immunology.
[45] D. Jacobs,et al. Transcriptomic profiles of aging in purified human immune cells , 2015, BMC Genomics.
[46] A. Desnoyer,et al. DUSP4-mediated accelerated T-cell senescence in idiopathic CD4 lymphopenia. , 2015, Blood.
[47] M. Delorenzi,et al. Long-lasting stem cell–like memory CD8+ T cells with a naïve-like profile upon yellow fever vaccination , 2015, Science Translational Medicine.
[48] Mark M. Davis,et al. Cytomegalovirus infection enhances the immune response to influenza , 2015, Science Translational Medicine.
[49] Samit R. Joshi,et al. Prolonged proinflammatory cytokine production in monocytes modulated by interleukin 10 after influenza vaccination in older adults. , 2015, The Journal of infectious diseases.
[50] L. Ferrucci,et al. Telomere Length as an Indicator of the Robustness of B- and T-Cell Response to Influenza in Older Adults. , 2015, The Journal of infectious diseases.
[51] Luigi Ferrucci,et al. Age-associated telomere attrition of lymphocytes in vivo is co-ordinated with changes in telomerase activity, composition of lymphocyte subsets and health conditions. , 2015, Clinical science.
[52] S. Loi,et al. Adenosine Receptor 2A Blockade Increases the Efficacy of Anti–PD-1 through Enhanced Antitumor T-cell Responses , 2015, Cancer Immunology Research.
[53] C. Cancrini,et al. In vivo tracking of T cells in humans unveils decade-long survival and activity of genetically modified T memory stem cells , 2015, Science Translational Medicine.
[54] J. Borghans,et al. Lymphocyte maintenance during healthy aging requires no substantial alterations in cellular turnover , 2015, Aging cell.
[55] Y. Naumov,et al. Narrowing of Human Influenza A Virus-Specific T Cell Receptor α and β Repertoires with Increasing Age , 2015, Journal of Virology.
[56] S. Sell,et al. Intraepithelial T-cell cytotoxicity, induced bronchus-associated lymphoid tissue, and proliferation of pneumocytes in experimental mouse models of influenza. , 2014, Viral immunology.
[57] Yufeng Shen,et al. Spatial Map of Human T Cell Compartmentalization and Maintenance over Decades of Life , 2014, Cell.
[58] D. Dolfi,et al. Circulating CXCR5+PD-1+ Response Predicts Influenza Vaccine Antibody Responses in Young Adults but not Elderly Adults , 2014, The Journal of Immunology.
[59] E. Slagboom,et al. Latent Infection with Cytomegalovirus Is Associated with Poor Memory CD4 Responses to Influenza A Core Proteins in the Elderly , 2014, The Journal of Immunology.
[60] J. Nikolich-Žugich,et al. Aging of the T Cell Compartment in Mice and Humans: From No Naive Expectations to Foggy Memories , 2014, The Journal of Immunology.
[61] S. J. Griffiths,et al. p38 signaling inhibits mTORC1-independent autophagy in senescent human CD8⁺ T cells. , 2014, The Journal of clinical investigation.
[62] Richard A. Olshen,et al. Diversity and clonal selection in the human T-cell repertoire , 2014, Proceedings of the National Academy of Sciences.
[63] A. Lanna,et al. The kinase p38 activated by the metabolic regulator AMPK and scaffold TAB1 drives the senescence of human T cells , 2014, Nature Immunology.
[64] John Earl,et al. Efficacy of high-dose versus standard-dose influenza vaccine in older adults. , 2014, The New England journal of medicine.
[65] A. Larbi,et al. Cellular signaling in the aging immune system. , 2014, Current opinion in immunology.
[66] M. Smyth,et al. Antimetastatic effects of blocking PD-1 and the adenosine A2A receptor. , 2014, Cancer research.
[67] C. Franceschi,et al. New advances in CMV and immunosenescence , 2014, Experimental Gerontology.
[68] Sudhir Gupta. Role of dendritic cells in innate and adaptive immune response in human aging , 2014, Experimental Gerontology.
[69] Burton E. Barnett,et al. B Cell Antigen Presentation in the Initiation of Follicular Helper T Cell and Germinal Center Differentiation , 2014, The Journal of Immunology.
[70] Olga V. Britanova,et al. Age-Related Decrease in TCR Repertoire Diversity Measured with Deep and Normalized Sequence Profiling , 2014, The Journal of Immunology.
[71] Jeffrey Kaye,et al. Aging and Cytomegalovirus Infection Differentially and Jointly Affect Distinct Circulating T Cell Subsets in Humans , 2014, The Journal of Immunology.
[72] Tao Wu,et al. Lung‐resident memory CD8 T cells (TRM) are indispensable for optimal cross‐protection against pulmonary virus infection , 2014, Journal of leukocyte biology.
[73] P. Doherty,et al. Reproducible selection of high avidity CD8+ T-cell clones following secondary acute virus infection , 2014, Proceedings of the National Academy of Sciences.
[74] A. Larbi,et al. Downregulation of inhibitory SRC Homology 2 Domain-containing Phosphatase-1 (SHP-1) leads to recovery of T cell responses in elderly , 2014, Cell Communication and Signaling.
[75] M. Linterman. How T follicular helper cells and the germinal centre response change with age , 2014, Immunology and cell biology.
[76] C. Weyand,et al. T-cell aging in rheumatoid arthritis , 2014, Current opinion in rheumatology.
[77] M. Smithey,et al. Two Separate Defects Affecting True Naive or Virtual Memory T Cell Precursors Combine To Reduce Naive T Cell Responses with Aging , 2014, The Journal of Immunology.
[78] D. Farber,et al. Human memory T cells: generation, compartmentalization and homeostasis , 2013, Nature Reviews Immunology.
[79] D. Palmer. The Effect of Age on Thymic Function , 2013, Front. Immunol..
[80] I. Bartha,et al. Closing the gap between T-cell life span estimates from stable isotope-labeling studies in mice and humans. , 2013, Blood.
[81] C. Weyand,et al. Phosphofructokinase deficiency impairs ATP generation, autophagy, and redox balance in rheumatoid arthritis T cells , 2013, The Journal of experimental medicine.
[82] M. Smyth,et al. Blockade of A2A receptors potently suppresses the metastasis of CD73+ tumors , 2013, Proceedings of the National Academy of Sciences.
[83] D. Goldstein,et al. Impact of aging on antigen presentation cell function of dendritic cells. , 2013, Current opinion in immunology.
[84] D. Su,et al. Immunosenescence: a product of the environment? , 2013, Current opinion in immunology.
[85] L. Partridge,et al. The Hallmarks of Aging , 2013, Cell.
[86] A. Falsey,et al. AS03-adjuvanted versus non-adjuvanted inactivated trivalent influenza vaccine against seasonal influenza in elderly people: a phase 3 randomised trial. , 2013, The Lancet. Infectious diseases.
[87] A. Lustig,et al. T Cell Aging: A Review of the Transcriptional Changes Determined from Genome-Wide Analysis , 2013, Front. Immunol..
[88] C. Weyand,et al. Understanding immunosenescence to improve responses to vaccines , 2013, Nature Immunology.
[89] E. Montecino-Rodriguez,et al. Causes, consequences, and reversal of immune system aging. , 2013, The Journal of clinical investigation.
[90] J. Campisi,et al. Cellular senescence and the senescent secretory phenotype: therapeutic opportunities. , 2013, The Journal of clinical investigation.
[91] M. Sykes,et al. Distribution and compartmentalization of human circulating and tissue-resident memory T cell subsets. , 2013, Immunity.
[92] C. Katlama,et al. Lymphopenia-Driven Homeostatic Regulation of Naive T Cells in Elderly and Thymectomized Young Adults , 2012, The Journal of Immunology.
[93] Rustom Antia,et al. Peripheral selection rather than thymic involution explains sudden contraction in naive CD4 T-cell diversity with age , 2012, Proceedings of the National Academy of Sciences.
[94] M. Ventresca,et al. The Polyfunctionality of Human Memory CD8+ T Cells Elicited by Acute and Chronic Virus Infections Is Not Influenced by Age , 2012, PLoS pathogens.
[95] Ivan K. Chinn,et al. Changes in primary lymphoid organs with aging. , 2012, Seminars in immunology.
[96] E. Krishnan,et al. Decline in miR-181a expression with age impairs T cell receptor sensitivity by increasing DUSP6 activity , 2012, Nature Medicine.
[97] M. Levin. Immune senescence and vaccines to prevent herpes zoster in older persons. , 2012, Current opinion in immunology.
[98] N. Riddell,et al. Properties of end-stage human T cells defined by CD45RA re-expression. , 2012, Current opinion in immunology.
[99] P. Moss,et al. Classical Ataxia Telangiectasia Patients Have a Congenitally Aged Immune System with High Expression of CD95 , 2012, The Journal of Immunology.
[100] M. Horton,et al. Enhancement of tumor immunotherapy by deletion of the A2A adenosine receptor , 2012, Cancer Immunology, Immunotherapy.
[101] P. Doherty,et al. T Cell Receptor αβ Diversity Inversely Correlates with Pathogen-Specific Antibody Levels in Human Cytomegalovirus Infection , 2012, Science Translational Medicine.
[102] C. Weyand,et al. Immune aging and autoimmunity , 2012, Cellular and Molecular Life Sciences.
[103] P. Klenerman,et al. A novel method for autophagy detection in primary cells , 2012, Autophagy.
[104] C. Weyand,et al. Signal inhibition by the dual-specific phosphatase 4 impairs T cell-dependent B-cell responses with age , 2012, Proceedings of the National Academy of Sciences.
[105] B. Pulendran,et al. Distinct TLR adjuvants differentially stimulate systemic and local innate immune responses in nonhuman primates. , 2012, Blood.
[106] F. Miedema,et al. Maintenance of peripheral naive T cells is sustained by thymus output in mice but not humans. , 2012, Immunity.
[107] Sean C. Bendall,et al. Cytometry by time-of-flight shows combinatorial cytokine expression and virus-specific cell niches within a continuum of CD8+ T cell phenotypes. , 2012, Immunity.
[108] L. Battistini,et al. Reversible Senescence in Human CD4+CD45RA+CD27− Memory T Cells , 2011, The Journal of Immunology.
[109] E. Wherry. T cell exhaustion , 2011, Nature Immunology.
[110] S. Henson,et al. Are senescence and exhaustion intertwined or unrelated processes that compromise immunity? , 2011, Nature Reviews Immunology.
[111] C. Weyand,et al. DNA-dependent protein kinase catalytic subunit mediates T-cell loss in rheumatoid arthritis , 2010, EMBO molecular medicine.
[112] C. Carlson,et al. Overlap and Effective Size of the Human CD8+ T Cell Receptor Repertoire , 2010, Science Translational Medicine.
[113] C. Weyand,et al. Promoter choice and translational repression determine cell type-specific cell surface density of the inhibitory receptor CD85j expressed on different hematopoietic lineages. , 2010, Blood.
[114] Ruth R. Montgomery,et al. Age-Associated Decrease in TLR Function in Primary Human Dendritic Cells Predicts Influenza Vaccine Response , 2010, The Journal of Immunology.
[115] Z. Jia,et al. Age‐related alterations of gene expression patterns in human CD8+ T cells , 2010, Aging cell.
[116] Abigail Wacher,et al. Comprehensive assessment of T-cell receptor beta-chain diversity in alphabeta T cells. , 2009, Blood.
[117] S. Swain,et al. Age-associated increase in lifespan of naïve CD4 T cells contributes to T-cell homeostasis but facilitates development of functional defects , 2009, Proceedings of the National Academy of Sciences.
[118] Robin Callard,et al. Quantifying Thymic Export: Combining Models of Naive T Cell Proliferation and TCR Excision Circle Dynamics Gives an Explicit Measure of Thymic Output1 , 2009, The Journal of Immunology.
[119] H. Friess,et al. From the Cover: CD39 deletion exacerbates experimental murine colitis and human polymorphisms increase susceptibility to inflammatory bowel disease. , 2009, Proceedings of the National Academy of Sciences of the United States of America.
[120] Ramon Arens,et al. Recruitment of Antigen-Specific CD8+ T Cells in Response to Infection Is Markedly Efficient , 2009, Science.
[121] C. Weyand,et al. Deficiency of the DNA repair enzyme ATM in rheumatoid arthritis , 2009, The Journal of experimental medicine.
[122] Rustom Antia,et al. Quantifying the development of the peripheral naive CD4+ T-cell pool in humans. , 2009, Blood.
[123] Lutfan Lazuardi,et al. Microarray analysis reveals similarity between CD8+CD28− T cells from young and elderly persons, but not of CD8+CD28+ T cells , 2009, Biogerontology.
[124] C. Weyand,et al. Telomerase insufficiency in rheumatoid arthritis , 2009, Proceedings of the National Academy of Sciences.
[125] Li-Sheng Lu,et al. Human CD4+ T cell recent thymic emigrants are identified by protein tyrosine kinase 7 and have reduced immune function , 2009, The Journal of experimental medicine.
[126] M. Salmon,et al. The kinetics of CD4+Foxp3+ T cell accumulation during a human cutaneous antigen-specific memory response in vivo. , 2008, The Journal of clinical investigation.
[127] Y. Belkaid,et al. Functional Regulatory T Cells Accumulate in Aged Hosts and Promote Chronic Infectious Disease Reactivation1 , 2008, The Journal of Immunology.
[128] L. Lefrançois,et al. Endogenous naive CD8+ T cell precursor frequency regulates primary and memory responses to infection. , 2008, Immunity.
[129] J. Ouslander,et al. T cell subset-specific susceptibility to aging. , 2008, Clinical immunology.
[130] T. Randall,et al. Age-associated decline in T cell repertoire diversity leads to holes in the repertoire and impaired immunity to influenza virus , 2008, The Journal of experimental medicine.
[131] J. Phair,et al. Homeostasis of the Naive CD4+ T Cell Compartment during Aging1 , 2008, The Journal of Immunology.
[132] L. Picker,et al. Dramatic increase in naïve T cell turnover is linked to loss of naïve T cells from old primates , 2007, Proceedings of the National Academy of Sciences.
[133] Sudhanshu Agrawal,et al. Altered Innate Immune Functioning of Dendritic Cells in Elderly Humans: A Role of Phosphoinositide 3-Kinase-Signaling Pathway1 , 2007, The Journal of Immunology.
[134] Mark M. Davis,et al. miR-181a Is an Intrinsic Modulator of T Cell Sensitivity and Selection , 2007, Cell.
[135] P. Moss,et al. The Cytomegalovirus-Specific CD4+ T-Cell Response Expands with Age and Markedly Alters the CD4+ T-Cell Repertoire , 2007, Journal of Virology.
[136] E. Remmerswaal,et al. Differential Usage of Cellular Niches by Cytomegalovirus versus EBV- and Influenza Virus-Specific CD8+ T Cells , 2006, The Journal of Immunology.
[137] Karnail Singh,et al. Uncoupling of T-cell effector functions by inhibitory killer immunoglobulin-like receptors. , 2006, Blood.
[138] P. Fink,et al. Thymic output in aged mice. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[139] S. Tangye,et al. Persistence of naive CD45RA+ regulatory T cells in adult life. , 2006, Blood.
[140] E. Matteson,et al. Modulation of CD28 expression with anti–tumor necrosis factor α therapy in rheumatoid arthritis , 2005 .
[141] V Demicheli,et al. Efficacy and effectiveness of influenza vaccines in elderly people: a systematic review , 2005, The Lancet.
[142] D. Valmori,et al. A peripheral circulating compartment of natural naive CD4 Tregs. , 2005, The Journal of clinical investigation.
[143] A. Vallejo,et al. The Influence of Age on T Cell Generation and TCR Diversity1 , 2005, The Journal of Immunology.
[144] K. Pfeiffer,et al. Insufficient protection for healthy elderly adults by tetanus and TBE vaccines. , 2005, Vaccine.
[145] I. T. Ten Berge,et al. Clinical and Immunologic Aspects of Cytomegalovirus Infection in Solid Organ Transplant Recipients , 2005, Transplantation.
[146] D. Tough,et al. Direct Measurement of T Cell Subset Kinetics In Vivo in Elderly Men and Women1 , 2004, The Journal of Immunology.
[147] G. Pantaleo,et al. De novo T-cell generation in patients at different ages and stages of HIV-1 disease. , 2004, Blood.
[148] E. Gould,et al. T cells from elderly persons respond to neoantigenic stimulation with an unimpaired IL-2 production and an enhanced differentiation into effector cells , 2004, Experimental Gerontology.
[149] Luis Villarreal,et al. Cutting Edge: Long-Term B Cell Memory in Humans after Smallpox Vaccination 1 , 2003, The Journal of Immunology.
[150] M. Levin,et al. Decline in varicella-zoster virus (VZV)-specific cell-mediated immunity with increasing age and boosting with a high-dose VZV vaccine. , 2003, The Journal of infectious diseases.
[151] S. Hansen,et al. Duration of antiviral immunity after smallpox vaccination , 2003, Nature Medicine.
[152] S. Schönland,et al. Homeostatic control of T-cell generation in neonates. , 2003, Blood.
[153] Bernhard Hemmer,et al. TCR ligand discrimination is enforced by competing ERK positive and SHP-1 negative feedback pathways , 2003, Nature Immunology.
[154] P. Moss,et al. Cytomegalovirus Seropositivity Drives the CD8 T Cell Repertoire Toward Greater Clonality in Healthy Elderly Individuals1 , 2002, The Journal of Immunology.
[155] Walther Parson,et al. Lack of Antibody Production Following Immunization in Old Age: Association with CD8+CD28− T Cell Clonal Expansions and an Imbalance in the Production of Th1 and Th2 Cytokines1 , 2002, The Journal of Immunology.
[156] L. Ferrucci,et al. Peripheral Blood Markers of Inflammation Predict Mortality and Functional Decline in High‐Functioning Community‐Dwelling Older Persons , 2002, Journal of the American Geriatrics Society.
[157] Andreas Radbruch,et al. Two Subsets of Naive T Helper Cells with Distinct T Cell Receptor Excision Circle Content in Human Adult Peripheral Blood , 2002, The Journal of experimental medicine.
[158] W. O'Fallon,et al. Value of Immunological Markers in Predicting Responsiveness to Influenza Vaccination in Elderly Individuals , 2001, Journal of Virology.
[159] A. Vallejo,et al. Down-Regulation of CD28 Expression by TNF-α1 , 2001, The Journal of Immunology.
[160] R. Hodes,et al. Lineage-Specific Telomere Shortening and Unaltered Capacity for Telomerase Expression in Human T and B Lymphocytes with Age , 2000, The Journal of Immunology.
[161] A. Casrouge,et al. A Direct Estimate of the Human αβ T Cell Receptor Diversity , 1999 .
[162] H. Sacks,et al. The Efficacy of Influenza Vaccine in Elderly Persons , 1995, Annals of Internal Medicine.
[163] S. Bandinelli,et al. CLINICAL OBSERVATIONS, INTERVENTIONS, AND THERAPEUTIC only. TRIALS The , 2004 .
[164] C. Weyand,et al. CD4+,CD28- T cells in rheumatoid arthritis patients combine features of the innate and adaptive immune systems. , 2001, Arthritis and rheumatism.