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Fetal liver tyrosine kinase 3 (FLT3) internal tandem duplications (ITDs) are powerful adverse prognostic indicators for relapse in acute myeloid leukemia (AML) but the most efficacious therapy for FLT3/ITD(+) patients is currently unknown. We evaluated outcome according to FLT3/ITD status in 1135 adult patients treated according to United Kingdom Medical Research Council (UK MRC) AML protocols: 141 received an autograft, and 170 received a matched sibling allograft in first complete remission (CR). An FLT3/ITD was detected in 25% of patients and was an independent predictor for relapse (P < .001). It remained prognostic for increased relapse in patients who received a transplant (odds ratio [OR] = 1.91; 95% confidence intervals [CIs] = 1.13-3.21; P = .02), with no evidence of a difference in effect between patients who received an autograft (OR = 2.39; CIs = 1.24-4.62) and patients who received an allograft (OR = 1.31; CIs = 0.56-3.06) (test for interaction, P = .3) or between patients who did or did not receive a transplant (P = .4). These results were confirmed in an analysis of 186 patients randomized to receive or not receive an autograft in first CR and in a donor-versus-no donor analysis of 683 patients to assess the role of allograft (for latter, FLT3/ITD(-) OR = 0.70, CIs = 0.53-0.92; FLT3/ITD(+) OR = 0.59, CIs = 0.40-0.87; test for interaction, P = .5). These results suggest that at present there is no strong evidence that FLT3 status should influence the decision to proceed to transplantation.

Original publication

DOI

10.1182/blood-2005-03-1323

Type

Journal article

Journal

Blood

Publication Date

15/11/2005

Volume

106

Pages

3658 - 3665

Keywords

Adolescent, Adult, Aged, Biomarkers, Tumor, Case-Control Studies, Female, Gene Duplication, Humans, Leukemia, Myeloid, Acute, Leukemia, Promyelocytic, Acute, Male, Meta-Analysis as Topic, Middle Aged, Prognosis, Randomized Controlled Trials as Topic, Recurrence, Stem Cell Transplantation, Transplantation, Autologous, Transplantation, Homologous, United Kingdom, fms-Like Tyrosine Kinase 3