Clonal Diversity of Ig and T-Cell–Receptor Gene Rearrangements Identifies a Subset of Childhood B-Precursor Acute Lymphoblastic Leukemia With Increased Risk of Relapse

Author:

Green Elaine1,McConville Carmel M.1,Powell Judith E.1,Mann Jillian R.1,Darbyshire Philip J.1,Taylor A. Malcolm R.1,Stankovic Tatjana1

Affiliation:

1. From the Department of Haematology/Oncology, Birmingham Children's Hospital NHS Trust, Ladywood Middleway, Birmingham; and the Division of Medical Genetics, Department of Public Health and Epidemiology, and CRC Institute for Cancer Studies, University of Birmingham, UK.

Abstract

Abstract Current prognostic indicators such as age, sex, and white blood cell count (WBC) fail to identify all children with more aggressive forms of B-precursor acute lymphoblastic leukemia (ALL), and a proportion of patients without poor prognostic indicators still relapse. Results obtained from an analysis of 65 pediatic B-precursor ALL patients indicated that subclone formation leading to clonal diversity, as detected by Ig and T-cell receptor (TCR) gene rearrangements, may represent a very useful prognostic indicator, independent of age, sex, and WBC. Disease-free survival was significantly shorter in those patients showing clonal diversity at presentation. Furthermore, clonal diversity was detected not only in the majority of high-risk patients who relapsed but was also associated with a high probability of relapse in standard-risk patients. Sixty-five percent (13/20) of standard-risk patients who also showed clonal diversity subsequently relapsed, whereas the percentage of relapses among standard-risk patients without clonal diversity was much lower at 19% (7/36). Continued clonal evolution during disease progression is an important feature of aggressive B-precursor ALL. All 5 patients with clonal diversity who were followed up in our study showed a change in the pattern of clonality between presentation and relapse. This implies an important role for clonal diversity as a mechanism of disease progression through the process of clonal variation and clonal selection. © 1998 by The American Society of Hematology.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

Reference36 articles.

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