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Immune dysfunction in patients with end stage kidney disease; Immunosenescence – Review

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DROPULIC L.K., LEDERMAN H.M. Overview of Infections in the Immunocompromised Host, Microbiol Spectr. 2016 Aug;4(4):10.1128Search in Google Scholar

HOFFMAN R., BENZ E.J.Jr., SILBERSTEIN L.E., HESLOP H.E., WEITZ J.I., ANASTASI J., et al., HEMATOLOGY, BASIC PRINCIPLES AND PRACTICE, seventh edition, Elsevier Inc, Aug 15, 2017 Search in Google Scholar

MALE D., Immunology: An Illustrated Outline, Fifth Edition, Garland Science, New York, 2014Search in Google Scholar

VAZIRI N.D., PAHL M.V., CRUM A., NORRIS K., Effect of Uremia on Structure and Function of immmune System, J Ren Nutr, 2012 Jan;22(1):149–56Search in Google Scholar

SANMARCO L.M., EBERHARDT N., PONCE N.E., CANO R.C., BONACCI G., AOKI M.P., New Insights into the Immunobiology of Mononuclear Phagocytic Cells and Their Relevance to the Pathogenesis of Cardiovascular Diseases, Front Immunol. 2018 Jan 9;8:1921.Search in Google Scholar

VERMA K., OGONEK J., VARANASI P.R., LUTHER S., BUNTING I., THOMAY K., et al., Human CD8+CD57—TEMRA cells: TOO young to be called „old”, PLoS One, 2017 May 8;12(5):e0177405.Search in Google Scholar

KUMAR B.V., CONNORS T., FARBER D.L., Human T cell development, localization, and PEREZ-ANDRES M., PAIVA B., NIETO W.G., CARAUX A., SCHMITZ A., ALMEIDA J. et al., and the Primary Health Care Group of Salamanca for the Study of MBL, Human Peripheral Blood B-Cell Compartments A Crossroad in B-Cell Traffic, Cytometry B Clin. Cytom. 2010;78 Suppl 1:S47-60.Search in Google Scholar

PEREZ-ANDRES M., PAIVA B., NIETO W.G., CARAUX A., SCHMITZ A., ALMEIDA J. et al., and the Primary Health Care Group of Salamanca for the Study of MBL, Human Peripheral Blood B-Cell Compartments A Crossroad in B-Cell Traffic, Cytometry B Clin. Cytom. 2010;78 Suppl 1:S47–60Search in Google Scholar

SAPKOTA A., B Cell [B Lymphocyte]- Definition, Types, Development, Applications. https://microbenotes.com/b-cell-b-lymphocyte/ April 9, 2021.Search in Google Scholar

BEMARK M., Translating transitions-how to decipher peripheral human B cell development, J Biomed Res 2015 Jul;29(4):264–84.Search in Google Scholar

XIANG F-F., ZHU J-M., CAO X-S., SHEN B., ZOU J-Z., LIU Z-H., Lymphocyte depletion and subset alteration correlate to renal function in chronic kidney disease patients, Ren. Fail 2016;38(1):7–14.Search in Google Scholar

COHEN G., Immune Dysfunction in Uremia 2020, Toxins [Basel] 2020 Jul 5;12(7):439.Search in Google Scholar

COHEN G., HORL W.H., Immune dysfunction in Uremia – An Update, Toxins, [Basel], 2012 Oct 24;4(11):962–90.Search in Google Scholar

ISHANI A., COLLINS A.J., HERZOG C.A., FOLEY R.N., Septicemia, acces and cardiovascular diseases in dialysis patients: the URSDS wave 2 study, Kidney International, 2005 Jul;68(1):311–8.Search in Google Scholar

JENG Y., LIM P.S., WU M.Y., TSENG T-Y, CHEN C.H., CHEN H.P., et al., Proportion of Proinflammatory Monocytes Are Important Predictors of Mortality Risk in Hemodialysed Patients, Mediators Inflamm., 2017:1070959.Search in Google Scholar

ROGACEV K.S., SEILER S., ZAWADA A.M., REICHART B., HERATH E., ROTH D., et al. CD14++CD16+monocytes and cardiovascular outcome in patients with chronic kidney disease, Eur. Heart J. 2011 Jan;32(1):84–92.Search in Google Scholar

HEINE G.H, ULRICH C., SEIBERT E. SEILER S., MARELL J., REICHART B., et al., CD14++ CD16+ monocytes but not total monocyte numbers predict cardiovascular events in dialysis patients, Kidney International, 26 Dec 2007, 73(5):622–629.Search in Google Scholar

LIM W. H., KIRETA S., LEEDHAM E., RUSS G.R., COATES P.T., Uremia impairs monocytes and monocyte-derived dendritic cell function in hemodialysed patients, Kidney Internatioanal, 2007, 72(9):1138–42.Search in Google Scholar

HEINE G.H., ORTIZ A., MASSY Z.A. LINDHOLM B., WIECEK A., MARTINEZ-CASTELAO A. et al., Monocyte subpopulations and cardiovascular risk in chronic kidney disease, Nature Reviews Nephrology, 8:362–369 (2012).Search in Google Scholar

GONCALVES S., PECOITS-FILHO R., PERRETO S., BARBERATO S.H., STINGHEN A.E.M., LIMA E.G.A., et al., Associations between renal function, volume status and endotoxaemia in chronic kidney disease patients, Nephrology, Dialysis, Transplantation, 2006 Oct;21(10):2788–94.Search in Google Scholar

RASKA K.JR., RASKOVA J., SHEA S.M., FRANKEL L.M., WOOD R.H., LIFTER J. et al. T cell subsets and cellular immunity in end-stage renal disease, AM J Med 1983 Nov;75(5):734-40.Search in Google Scholar

MOLINA M., ALLENDE L.M., GUTIERREZ E., PLEGUEZUELO D.E., HERNANDEZ E.R., RIOS F., et al., CD19+ B-Cells, a New Biomarker of Mortality in Hemodialysis Patients Front Immunol 2018 Jun 15;9:1221. Search in Google Scholar

DESCAMPS-LATSCHA B., HERBELIN A., NGUYEN A.T., JUNGERS P., CHATENOUD L., Dysregulation of the immune system in chronic uremic and hemodialysed patients, Presse Med, 1995, Feb 25;24(8):405–10.Search in Google Scholar

DESCAMPS-LATSCHA B., CHATENOUD L., T cells and B cells in chronic renal failure, Semin Nephrol, 1996 May; 16(3):183–91.Search in Google Scholar

YOON J-W., GOLLAPUDI S., PAHL M.V., VAZIRI N.D., Naïve and central memory T-cell lymphopenia in end-stage renal disease Kidney Int. 2006 Jul;70(2):371–6.Search in Google Scholar

PAHL M.V., GOLLAPUDI S., SEPASSI L., GOLLAPUDI P., ELAHIMEHR R., VAZIRI N.D., Effect of end-stage renal disease on B-lymphocyte subpopulations, IL-7, BAFF and BAFF KIM K.W., CHUNG B.H., JEON E.J., KIM B.M., CHOI B.S., PARK C.W. et al., B cell-associated immune profiles in patients with end-stage renal disease (ESRD), Exp. Mol. Med. 2012 Aug 31;44(8):465–7243.Search in Google Scholar

KIM K.W., CHUNG B.H., JEON E.J., KIM B.M., CHOI B.S., PARK C.W. et al., B cell-associated immune profiles in patients with end-stage renal disease (ESRD), Exp. Mol. Med. 2012 Aug 31;44(8):465–7243.Search in Google Scholar

BOUTS A.H.M., DAVIN J.C., KREDIET R.T., MONNENS L.A.H., NAUTA J., SCHRODER C.H., Children with chronic renal failure have reduced numbers of memory B cells, Clin Exp Immunol,2004 Sep;137(3):589–94.Search in Google Scholar

CHIU Y-L., SHU K-H., YANG F-J., CHOU T-Y., CHEN P-M., LAY F-Y., et al., A comprehensive characterization of aggravated aging-related changes in T lymphocytes and monocytes in end-stage renal disease: the iESRD study, Immun. Ageing. 2018 Nov 8;15:27Search in Google Scholar

DUCLOUX D., LEGENDRE M., BAMOULID J., SAAS P., COURIVAUD C., CREPIN T., End-Stage Renal Disease-Related Accelerated Immune Senescence: Is Rejuvenation of the Immune System a Therapeutic Goal? Front. Med., 2021 Sep 3:8:720402Search in Google Scholar

BETJES M.G.H., Uremia-Associated Ageing of the Thymus and Adaptive Immune Responses, Toxins [Basel] 2020 Apr 3;12(4):224.Search in Google Scholar

FAGNONI F.F., VESCOVINI R., PASSERI G., BOLOGNA G., PEDRAZZONI M., LAVAGETTO G., et al., Shortage of circulating naive CD8[+] T cells provides new insights on immunodeficiency in aging. Blood 2000 May 1;95(9):2860-8.Search in Google Scholar

CICIN-SAIN L., SMYK-PEARSON S., CURRIER N., BYRD L., KOUDELKA C., ROBINSON T., et al., Loss of naive T cells and repertoire constriction predict poor response to vaccination in old primates. J. Immunol. 2010 Jun 15;184(12):6739–45.Search in Google Scholar

SAULE P., TRAUET J., DUTRIEZ V., LEKEUX V., DESSAINT J.P., LABALETTE M. Accumulation of memory T cells from childhood to old age: Central and effector memory cells in CD4[+] versus effector memory and terminally differentiated memory cells in CD8[+] compartment. Mech. Ageing Dev. 2006 Mar;127(3):274–81.Search in Google Scholar

NAISMITH E., PANGRAZZI L., GRASSE M., KELLER M., MIGGITSCH C., WEINBERGER B., et al., Peripheral antibody concentrations are associated with highly differentiated T cells and inflammatory processes in the human bone marrow. Immun. & Ageing 2019 Aug 22;16:21.Search in Google Scholar

BETJES M.G.H., MEIJERS R.W., DE WIT L.E., LITJENS N.H. A killer on the road: Circulating CD4[+]CD28null T cells as cardiovascular risk factor in ESRD patients. J. Nephrol. 2012 Mar–Apr;25(2):183–91.Search in Google Scholar

BETJES M.G.H., WEIMAR W., LITJENS N.H. Circulating CD4[+]CD28null T Cells May Increase the Risk of an Atherosclerotic Vascular Event Shortly after Kidney Transplantation. J. Transplant. 2013;2013:841430.Search in Google Scholar

BETJES M.G.H., DE WIT E.E., WEIMAR W., LITJENS N.H. Circulating pro-inflammatory CD4posCD28null T cells are independently associated with cardiovascular disease in ESRD patients. Nephrol. Dial. Transplant. 2010 Nov;25(11):3640–6.Search in Google Scholar

GRUVER A.L., SEMPOWSKI G.D. Cytokines, leptin, and stress-induced thymic atrophy. J. Leukoc. Biol. 2008 Oct;84(4):915–23.Search in Google Scholar

VERKADE M.A.; VAN DE WETERING J., KLEPPER M.; VAESSEN L.M.; WEIMAR W.; BETJES M.G.H. Peripheral blood dendritic cells and GM-CSF as an adjuvant for hepatitis B vaccination in hemodialysis patients. Kidney Int. 2004 Aug;66(2):614–21.Search in Google Scholar

STEWARD J.H., VAJDIC C.M., VAN LEEUWEN M.T., AMIN J., WEBSTER A.C., CHAPMAN J.R., et al., The pattern of excess cancer in dialysis and transplantation. Nephrol. Dial. Transplant. 2009 Oct;24(10):3225–31.Search in Google Scholar

LITJENS N.H., HUISMAN M., VAN DEN DORPEL M., BETJES M.G.H.Impaired immune responses and antigen-specific memory CD4+ T cells in hemodialysis patients. J. Am. Soc. Nephrol. 2008 Aug;19(8):1483–90.Search in Google Scholar

eISSN:
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Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Medicine, Clinical Medicine, Internal Medicine, other, Cardiology, Gastroenterology, Rheumatology