Report from the second cytomegalovirus and immunosenescence workshop
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S. J. Griffiths | D. Melzer | P. Klenerman | C. Franceschi | R. Westendorp | P. Moss | G. Pawelec | F. Kern | G. Wang | R. V. van Lier | M. Wills | C. Caruso | P. Sansoni | A. Maier | J. Sinclair | T. Fulop | R. Solana | E. Gkrania-Klotsas | N. Riddell | S. Henson | A. Akbar | P. Trzonkowski | D. Sauce | G. Colonna‐Romano | R. Vescovini | J. Nikolich-Žugich | J. Bosch | R. Macaulay | A. Hill | J. Strindhall | D. Macallan | A. Pachnio | G. Mason | D. Herndler‐Brandstetter | R. Roberts | M. Morgan | M. Beswick | A. Dutta | Joerg Goronzy | D. Herndler-Brandstetter | Gavin M. Mason
[1] A. D. de Craen,et al. Infection with cytomegalovirus but not herpes simplex virus induces the accumulation of late-differentiated CD4+ and CD8+ T-cells in humans. , 2011, The Journal of general virology.
[2] A. Lång,et al. Functional CD8 T Cell Memory Responding to Persistent Latent Infection Is Maintained for Life , 2011, The Journal of Immunology.
[3] L. Picker,et al. Cytomegalovirus-Specific T Cell Immunity Is Maintained in Immunosenescent Rhesus Macaques , 2011, The Journal of Immunology.
[4] R. Westendorp,et al. Cytomegalovirus infection and responsiveness to influenza vaccination in elderly residents of long-term care facilities. , 2011, Vaccine.
[5] G. Carcelain,et al. HIV disease progression despite suppression of viral replication is associated with exhaustion of lymphopoiesis. , 2011, Blood.
[6] Sarah E. Jackson,et al. Cytomegalovirus infection induces the accumulation of short‐lived, multifunctional CD4+ CD45RA+ CD27− T cells: the potential involvement of interleukin‐7 in this process , 2011, Immunology.
[7] D. Melzer,et al. Seropositivity to Cytomegalovirus, Inflammation, All-Cause and Cardiovascular Disease-Related Mortality in the United States , 2011, PloS one.
[8] P. Klenerman,et al. A Dominant Role for the Immunoproteasome in CD8+ T Cell Responses to Murine Cytomegalovirus , 2011, PloS one.
[9] Yan Zhang,et al. Human cytomegalovirus‐specific CD8+ T‐cell expansions contain long‐lived cells that retain functional capacity in both young and elderly subjects , 2011, Immunology.
[10] L. J. Old,et al. Minimal information about T cell assays: the process of reaching the community of T cell immunologists in cancer and beyond , 2010, Cancer Immunology, Immunotherapy.
[11] M. Drayson,et al. Latent Cytomegalovirus infection amplifies CD8 T-lymphocyte mobilisation and egress in response to exercise , 2010, Brain, Behavior, and Immunity.
[12] A. D. de Craen,et al. Hallmark Features of Immunosenescence Are Absent in Familial Longevity , 2010, The Journal of Immunology.
[13] R. Solana,et al. CD45RA expression on HCMV-specific effector memory CD8+ T cells is associated with the duration and intensity of HCMV replication after transplantation. , 2010, Clinical immunology.
[14] P. Griffiths,et al. Immunosenescence and Cytomegalovirus: where do we stand after a decade? , 2010, Immunity & Ageing.
[15] J. Dowd,et al. Cytomegalovirus antibody levels, inflammation, and mortality among elderly Latinos over 9 years of follow-up. , 2010, American journal of epidemiology.
[16] Peter N. Murakami,et al. American Journal of Epidemiology Original Contribution Cytomegalovirus Infection and the Risk of Mortality and Frailty in Older Women: a Prospective Observational Cohort Study , 2022 .
[17] A. Hill,et al. Cross-Presentation of a Spread-Defective MCMV Is Sufficient to Prime the Majority of Virus-Specific CD8+ T Cells , 2010, PloS one.
[18] P. Debré,et al. Evidence of premature immune aging in patients thymectomized during early childhood. , 2009, The Journal of clinical investigation.
[19] R. Solana,et al. Age-Dependent Association between Low Frequency of CD27/CD28 Expression on pp65 CD8+ T Cells and Cytomegalovirus Replication after Transplantation , 2009, Clinical and Vaccine Immunology.
[20] G. Pawelec,et al. Biomarkers of human immunosenescence: impact of Cytomegalovirus infection. , 2009, Current opinion in immunology.
[21] V. Burns,et al. Acute exercise mobilises CD8+ T lymphocytes exhibiting an effector-memory phenotype , 2009, Brain, Behavior, and Immunity.
[22] Stoyan Dimitrov,et al. Cortisol and epinephrine control opposing circadian rhythms in T cell subsets. , 2009, Blood.
[23] T. Strandberg,et al. Cytomegalovirus antibody level and mortality among community-dwelling older adults with stable cardiovascular disease. , 2009, JAMA.
[24] P. Moss,et al. Selective accumulation of virus-specific CD8+ T cells with unique homing phenotype within the human bone marrow. , 2008, Blood.
[25] E. Thiel,et al. CMV‐specific central memory T cells reside in bone marrow , 2007, European journal of immunology.
[26] M. Lafon. [Herpesvirus-specific COB T cell immunity in old age: cytomegalovirus impairs the response to a coresident EBV infection]. , 2007, Virologie.
[27] Lutfan Lazuardi,et al. Healthy aging and latent infection with CMV lead to distinct changes in CD8+ and CD4+ T-cell subsets in the elderly. , 2007, Human immunology.
[28] G. Pawelec,et al. Longitudinal Studies of Clonally Expanded CD8 T Cells Reveal a Repertoire Shrinkage Predicting Mortality and an Increased Number of Dysfunctional Cytomegalovirus-Specific T Cells in the Very Elderly1 , 2006, The Journal of Immunology.
[29] Louis J. Picker,et al. Broadly targeted human cytomegalovirus-specific CD4+ and CD8+ T cells dominate the memory compartments of exposed subjects , 2005, The Journal of experimental medicine.
[30] R. Würzner,et al. Long-Term Cytomegalovirus Infection Leads to Significant Changes in the Composition of the CD8+ T-Cell Repertoire, Which May Be the Basis for an Imbalance in the Cytokine Production Profile in Elderly Persons , 2005, Journal of Virology.
[31] J. Myśliwska,et al. Association between cytomegalovirus infection, enhanced proinflammatory response and low level of anti-hemagglutinins during the anti-influenza vaccination--an impact of immunosenescence. , 2003, Vaccine.
[32] C. Caruso. Immunity & Ageing , 2009 .
[33] A. Arvin,et al. EBV: immunobiology and host response , 2007 .
[34] H. Maecker,et al. A Model for Harmonizing Flow Cytometry in Clinical Trials , 2022 .