Age dependency and mutual relations in T and B lymphocyte abnormalities in common variable immunodeficiency patients
Jazyk angličtina Země Velká Británie, Anglie Médium print
Typ dokumentu časopisecké články, práce podpořená grantem
PubMed
16412063
PubMed Central
PMC1809591
DOI
10.1111/j.1365-2249.2006.02999.x
PII: CEI2999
Knihovny.cz E-zdroje
- MeSH
- aktivace lymfocytů imunologie MeSH
- antigeny diferenciační B-lymfocytární imunologie MeSH
- B-lymfocyty imunologie MeSH
- běžná variabilní imunodeficience klasifikace imunologie MeSH
- biologické markery analýza MeSH
- CD antigeny imunologie MeSH
- CD4-pozitivní T-lymfocyty imunologie MeSH
- CD8-pozitivní T-lymfocyty imunologie MeSH
- diferenciační antigeny T-lymfocytů imunologie MeSH
- dospělí MeSH
- imunoglobulin D imunologie MeSH
- imunoglobulin M imunologie MeSH
- lidé středního věku MeSH
- lidé MeSH
- podskupiny B-lymfocytů imunologie MeSH
- průtoková cytometrie metody MeSH
- stárnutí imunologie MeSH
- T-lymfocyty imunologie MeSH
- Check Tag
- dospělí MeSH
- lidé středního věku MeSH
- lidé MeSH
- mužské pohlaví MeSH
- ženské pohlaví MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- antigeny diferenciační B-lymfocytární MeSH
- biologické markery MeSH
- CD antigeny MeSH
- diferenciační antigeny T-lymfocytů MeSH
- imunoglobulin D MeSH
- imunoglobulin M MeSH
Common variable immunodeficiency (CVID) is primary hypogammaglobulinaemia with an unknown aetiopathogenesis. Although various abnormalities of T and B cells have been described, their pathogenetic roles are unclear. We determined T and B lymphocyte subsets known to be abnormal in CVID in order to disclose possible relations between numerical abnormalities in those cells. Markers associated with B cell development (CD21, CD27, IgM, IgD) were determined on B lymphocytes (CD19+); T lymphocyte development (CD45RA, CD45RO, CD62L) and activation markers (CD25, CD27, CD28, CD29, CD38, CD57, HLA-DR) were determined on CD4+ and CD8+ T lymphocytes in 42 CVID patients and in 33 healthy controls. Abnormalities in CD4+ T lymphocyte activation markers (increase in CD29, HLA-DR, CD45RO, decrease in CD27, CD62L, CD45RA) were observed particularly in patients with a decreased number of memory (CD27+) and mature (CD21+) B cells (group Ia according to the Freiburg group's classification), while abnormalities observed in CD8+ cells (increase in CD27 and CD28 and decrease in HLA-DR, CD57 and CD38) did not depend upon grouping patients together according to B lymphocyte developmental subpopulations. We observed correlations between immature B cells (IgM+ CD21-) and expression of CD27, CD62L, CD45RA, CD45RO and HLA-DR on CD4+ T cells in CVID patients but not in the control group. The expression of CD27 and CD45RA on CD4+ T lymphocytes, such as the percentage of IgD+ CD27- and IgD+ CD27+ cells in B lymphocytes, showed age dependency to be more significant than in the control group. Our study demonstrates that T and B lymphocyte abnormalities in CVID are partially related to each other. Some of those abnormalities are not definite, but may evolve with age of the patient.
Zobrazit více v PubMed
Conley ME, Notarangelo LD, Etzioni A. Diagnostic criteria for primary immunodeficiencies. Clin Immunol. 1999;93:190–7. PubMed
Cunningham-Rundles C, Bodian C. Common variable immunodeficiency: clinical and immunological features of 248 patients. Clin Immunol. 1999;92:34–48. PubMed
Mellemkjaer L, Hammarström L, Andersen V, et al. Cancer risk among patients with IgA deficiency or common variable immunodeficiency and their relatives: a combined Danish and Swedish study. Clin Exp Immunol. 2002;130:495–500. PubMed PMC
Ferrer JM, Iglesias J, Hernandez M, Matamoros N. Alterations in interleukin secretion (IL-2 and IL-4) by CD4 and CD4 CD45RO cells from common variable immunodeficiency (CVI) patients. Clin Exp Immunol. 1995;102:286–9. PubMed PMC
Thon V, Wolf HM, Sasgary M, et al. Defective integration of activating signals derived from the T cell receptor (TCR) and costimulatory molecules in both CD4+ and CD8+ T lymphocytes of common variable immunodeficiency (CVID) patients. Clin Exp Immunol. 1997;110:174–81. PubMed PMC
Thon V, Eggenbauer H, Wolf HM, et al. Antigen presentation by common variable immunodeficiency (CVID) B cells and monocytes is unimpaired. Clin Exp Immunol. 1997;108:1–8. PubMed PMC
Holm AM, Aukrust P, Aandahl EM, Muller F, Tasken K, Fröland SS. Impaired secretion of IL-10 by T cells from patients with common variable immunodeficiency involvement of protein kinase A type I. J Immunol. 2003;170:5772–7. PubMed
North ME, Webster AD, Farrant J. Primary defect in CD8+ lymphocytes in the antibody deficiency disease (common variable immunodeficiency): abnormalities in intracellular production of interferon-gamma (IFN-gamma) in CD28+ (‘cytotoxic’) and CD28–(‘suppressor’) CD8+ subsets. Clin Exp Immunol. 1998;111:70–5. PubMed PMC
Punnonen J, Kainulainen L, Ruuskanen O, Nikoskelainen J, Arvilommi H. IL-4 synergizes with IL-10 and anti-CD40 MoAbs to induce B-cell differentiation in patients with common variable immunodeficiency. Scand J Immunol. 1997;45:203–12. PubMed
Baumert E, Wolff-Vorbeck G, Schlesier M, Peter HH. Immunophenotypical alterations in a subset of patients with common variable immunodeficiency (CVID) Clin Exp Immunol. 1992;90:25–30. PubMed PMC
Nordoy I, Muller F, Aukrust P, Fröland SS. Adhesion molecules in common variable immunodeficiency (CVID) – a decrease in l-selectin-positive T lymphocytes. Clin Exp Immunol. 1998;114:258–63. PubMed PMC
Farrant J, Spickett G, Matamoros N, et al. Study of B and T cell phenotypes in blood from patients with common variable immunodeficiency (CVID) Immunodeficiency. 1994;5:159–69. PubMed
Guazzi V, Aiuti F, Mezzaroma I, et al. Assessment of thymic output in common variable immunodeficiency patients by evaluation of T cell receptor excision circles. Clin Exp Immunol. 2002;129:346–53. PubMed PMC
Brouet JC, Chedeville A, Fermand JP, Royer B. Study of the B cell memory compartment in common variable immunodeficiency. Eur J Immunol. 2000;30:2516–20. PubMed
Agematsu K, Futatani T, Hokibara S, et al. Absence of memory B cells in patients with common variable immunodeficiency. Clin Immunol. 2002;103:34–42. PubMed
Warnatz K, Denz A, Drager R, et al. Severe deficiency of switched memory B cells (CD27(+) IgM(−) IgD(−) in subgroups of patients with common variable immunodeficiency: a new approach to classify a heterogeneous disease. Blood. 2002;99:1544–51. PubMed
Ferry BL, Jones EA, Bateman EA, et al. Measurement of peripheral B cell subpopulations in common variable immunodeficiency (CVID) using a whole blood method. Clin Exp Immunol. 2005;140:532–9. PubMed PMC
Piqueras B, Lavenu-Bombled C, Galicier L, et al. Common variable immunodeficiency patient classification based on impaired B cell memory differentiation correlates with clinical aspects. J Clin Immunol. 2003;23:385–400. PubMed
Winer BJ, Brown DR, Michels KM. Statistical principles in experimental design. 3. New York: McGraw-Hill; 1991.
van Baarle D, Kostense S, van Oers MH, Hamann D, Miedema F. Failing immune control as a result of impaired CD8+ T-cell maturation: CD27 might provide a clue. Trends Immunol. 2002;23:586–91. PubMed
Brenchley JM, Karandikar NJ, Betts MR, et al. Expression of CD57 defines replicative senescence and antigen-induced apoptotic death of CD8+ T cells. Blood. 2003;101:2711–20. PubMed
Bofill M, Borthwick NJ. CD38 in health and disease. Chem Immunol. 2000;75:218–34. PubMed
Mullighan CG, Read SJ, Bird AG, Kurtz JB, Chapel HM, Welsh KI. Human cytomegalovirus infection is not increased in common variable immunodeficiency. J Clin Immunol. 1996;16:272–7. PubMed
Kainulainen L, Nikoskelainen J, Vuorinen T, Tevola K, Liippo K, Ruuskanen O. Viruses and bacteria in bronchial samples from patients with primary hypogammaglobulinemia. Am J Respir Crit Care Med. 1999;159:1199–204. PubMed
Caruso AS, Licenziati M, Corulli AD, et al. Flow cytometric analysis of activation markers on stimulated T cells and their correlation with cell proliferation. Cytometry. 1997;27:71–6. PubMed
Horgan KJ, Luce GE, Tanaka Y, et al. Differential expression of VLA-alpha 4 and VLA-beta 1 discriminates multiple subsets of CD4+CD45R0+‘memory’ T cells. J Immunol. 1992;149:4082–7. PubMed
Bradley LM, Watson SR, Swain SL. Entry of naive CD4 T cells into peripheral lymph nodes requires l-selectin. J Exp Med. 1994;180:2401–6. PubMed PMC
Colonna-Romano G, Bulati M, Aquino A, et al. B cells in the aged: Cd27, Cd5, and CD40 expression. Mech Ageing Dev. 2003;124:389–93. PubMed
Nijhuis EW, Remarque EJ, Hinloopen B, et al. Age-related increase in the fraction of CD27–CD4+ T cells and IL-4 production as a feature of CD4+ T cell differentiation in vivo. Clin Exp Immunol. 1994;96:528–34. PubMed PMC
B-lymphocyte subpopulations in patients with selective IgA deficiency