Multiple productive IGH rearrangements denote oligoclonality even in immunophenotypically monoclonal CLL
Jazyk angličtina Země Velká Británie, Anglie Médium print-electronic
Typ dokumentu dopisy, práce podpořená grantem
PubMed
28937682
PubMed Central
PMC5770588
DOI
10.1038/leu.2017.274
PII: leu2017274
Knihovny.cz E-zdroje
- MeSH
- B-lymfocyty metabolismus MeSH
- chronická lymfatická leukemie genetika MeSH
- imunofenotypizace metody MeSH
- lidé MeSH
- přestavba genů pro těžké řetězce B-lymfocytů genetika MeSH
- těžké řetězce imunoglobulinů genetika MeSH
- Check Tag
- lidé MeSH
- Publikační typ
- dopisy MeSH
- práce podpořená grantem MeSH
- Názvy látek
- těžké řetězce imunoglobulinů MeSH
Zobrazit více v PubMed
Langerak AW, Davi F, Ghia P, Hadzidimitriou A, Murray F, Potter KN et al. Immunoglobulin sequence analysis and prognostication in CLL: guidelines from the ERIC review board for reliable interpretation of problematic cases. Leukemia 2011; 25: 979–984. PubMed
Stamatopoulos B, Timbs A, Bruce D, Smith T, Clifford R, Robbe P et al. Targeted deep sequencing reveals clinically relevant subclonal IgHV rearrangements in chronic lymphocytic leukemia. Leukemia 2017; 31: 837–845. PubMed
Plevova K, Francova HS, Burckova K, Brychtova Y, Doubek M, Pavlova S et al. Multiple productive immunoglobulin heavy chain gene rearrangements in chronic lymphocytic leukemia are mostly derived from independent clones. Haematologica 2014; 99: 329–338. PubMed PMC
Rassenti LZ, Kipps TJ. Lack of allelic exclusion in B cell chronic lymphocytic leukemia. J Exp Med 1997; 185: 1435–1446. PubMed PMC
Stamatopoulos K, Kosmas C, Stavroyianni N, Loukopoulos D. Evidence for immunoglobulin heavy chain variable region gene replacement in a patient with B cell chronic lymphocytic leukemia. Leukemia 1996; 10: 1551–1556. PubMed
Kriangkum J, Motz SN, Mack T, Beiggi S, Baigorri E, Kuppusamy H et al. Single-cell analysis and next-generation immuno-sequencing show that multiple clones persist in patients with chronic lymphocytic leukemia. PLoS One 2015; 10: e0137232. PubMed PMC
Mimmi S, Vecchio E, Iaccino E, Rossi M, Lupia A, Albano F et al. Evidence of shared epitopic reactivity among independent B-cell clones in chronic lymphocytic leukemia patients. Leukemia 2016; 30: 2419–2422. PubMed PMC
Sanchez ML, Almeida J, Gonzalez D, Gonzalez M, Garcia-Marcos MA, Balanzategui A et al. Incidence and clinicobiologic characteristics of leukemic B-cell chronic lymphoproliferative disorders with more than one B-cell clone. Blood 2003; 102: 2994–3002. PubMed
Visco C, Moretta F, Falisi E, Facco M, Maura F, Novella E et al. Double productive immunoglobulin sequence rearrangements in patients with chronic lymphocytic leukemia. Am J Hematol 2013; 88: 277–282. PubMed
Rose-Zerilli MJ, Gibson J, Wang J, Tapper W, Davis Z, Parker H et al. Longitudinal copy number, whole exome and targeted deep sequencing of 'good risk' IGHV-mutated CLL patients with progressive disease. Leukemia 2016; 30: 1301–1310. PubMed PMC
Klinger M, Zheng J, Elenitoba-Johnson KS, Perkins SL, Faham M, Bahler DW. Next-generation IgVH sequencing CLL-like monoclonal B-cell lymphocytosis reveals frequent oligoclonality and ongoing hypermutation. Leukemia 2016; 30: 1055–1061. PubMed
Lanasa MC, Allgood SD, Volkheimer AD, Gockerman JP, Whitesides JF, Goodman BK et al. Single-cell analysis reveals oligoclonality among 'low-count' monoclonal B-cell lymphocytosis. Leukemia 2010; 24: 133–140. PubMed PMC
Damm F, Mylonas E, Cosson A, Yoshida K, Della Valle V, Mouly E et al. Acquired initiating mutations in early hematopoietic cells of CLL patients. Cancer Discov 2014; 4: 1088–1101. PubMed
Kikushige Y, Ishikawa F, Miyamoto T, Shima T, Urata S, Yoshimoto G et al. Self-renewing hematopoietic stem cell is the primary target in pathogenesis of human chronic lymphocytic leukemia. Cancer Cell 2011; 20: 246–259. PubMed