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Kostareli E, Smilevska T, Stamatopoulos K, et al. 
Chronic lymphocytic leukaemia: an immunobiology approach. [Journal Article]
Srp Arh Celok Lek 2008 May-Jun; 136(5-6):319-23.
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Jelinek DF, Tschumper RC, Geyer SM, et al. 
Analysis of clonal B-cell CD38 and immunoglobulin variable region sequence status in relation to clinical outcome for B-chronic lymphocytic leukaemia. [Journal Article]
Br J Haematol 2001 Dec; 115(4):854-61.
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Tobin G 
The immunoglobulin genes and chronic lymphocytic leukemia (CLL). [Journal Article, Review]
Ups J Med Sci 2005; 110(2):97-113.
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Oppezzo P, Dighiero G 
What do somatic hypermutation and class switch recombination teach us about chronic lymphocytic leukaemia pathogenesis? [Journal Article, Review]
Curr Top Microbiol Immunol 2005.:71-89.
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Wiestner A, Rosenwald A, Barry TS, et al. 
ZAP-70 expression identifies a chronic lymphocytic leukemia subtype with unmutated immunoglobulin genes, inferior clinical outcome, and distinct gene expression profile. [Journal Article]
Blood 2003 Jun 15; 101(12):4944-51.
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Kim SZ, Chow KU, Kukoc-Zivojnov N, et al. 
Expression of ZAP-70 protein correlates with disease stage in chronic lymphocytic leukemia and is associated with, but not generally restricted to, non-mutated Ig VH status. [Journal Article]
Leuk Lymphoma 2004 Oct; 45(10):2037-45.
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Stamatopoulos K, Belessi C, Moreno C, et al. 
Over 20% of patients with chronic lymphocytic leukemia carry stereotyped receptors: pathogenetic implications and clinical correlations. [JOURNAL ARTICLE]
Blood 2006 Sep 19.
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Ghia P, Stamatopoulos K, Belessi C, et al. 
Geographic patterns and pathogenetic implications of IGHV gene usage in chronic lymphocytic leukemia: the lesson of the IGHV3-21 gene. [Journal Article, Multicenter Study]
Blood 2005 Feb 15; 105(4):1678-85.
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Crespo M, Bosch F, Villamor N, et al. 
ZAP-70 expression as a surrogate for immunoglobulin-variable-region mutations in chronic lymphocytic leukemia. [Journal Article]
N Engl J Med 2003 May 1; 348(18):1764-75.
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