The aim of this study was to explore the clinical features and prognostic significance of CSF3R mutations in AML patients with CEBPA double mutations (CEBPAdm). One hundred one AML patients with CEBPAdm were retrospectively analyzed in this study. Mutation status of CSF3R gene, clinical features, and long-term outcomes were analyzed. The frequency of CSF3R mutations in patients with CEBPAdm was 19.80% (20/101). Patients with CSF3R mutations were associated with a lower platelet (u = 2.728, P = 0.006) and higher leukocytes (u = 3.178, P = 0.001) compared with those with wide-type CSF3R gene. The 5-year relapse-free survival (RFS) was 18.7% in patients with CSF3R mutations, which was significantly lower than those with wide-type CSF3R (31.8%) (P = 0.015). The 5-year overall survival (OS) was also significantly different between patients with and without CSF3R mutations (17.5% versus 57.4%, P = 0.019). The prevalence of CSF3R mutations was high in AML patients with CEBPAdm, which indicated a poor prognosis, and CSF3R mutations may be a new potential candidate for prognostically re-stratifying AML patients with CEBPAdm.
The aim of this study was to profile the spectrum of genetic mutations in acute myeloid leukemia (AML) patients co-occurring with CEBPA double mutation (CEBPAdm). Between January 1, 2012, and June 30, 2017, 553 consecutive patients with de novo AML were screened for CEBPA mutations. Out of these, 81 patients classified as CEBPAdm were analyzed further by a sensitive next-generation sequencing assay for mutations in 112 candidate genes. Within the CEBPA gene itself, we found 164 mutations. The most common mutated sites were c.936_937insGAG (n = 11/164, 6.71%) and c.939_940insAAG (n = 11/164, 6.71%), followed by c.68dupC (n = 10/164, 6.10%). The most common co-occurring mutations were found in the CSF3R (n = 16/81, 19.75%), WT1 (n = 15/81, 18.52%), and GATA2 (n = 13/81, 16.05%) genes. Patients with CSF3R mutations had an inferior four-year relapse-free survival (RFS) than those with the wild-type gene (15.3% versus 46.8%, respectively; P = 0.021). Patients with WT1 mutations had an inferior five-year RFS compared with those without such mutations (0% versus 26.6%, respectively, P = 0.003). However, GATA2, CSF3R, WT1 mutations had no significant influence on the overall survival. There were some differences in the location of mutational hotspots within the CEBPA gene, as well as hotspots of other co-occurring genetic mutations, between AML patients from Chinese and Caucasian populations. Some co-occurring mutations may be potential candidates for refining the prognoses of AML patients with CEBPAdm in the Chinese population.
Retinol-binding protein (RBP) has been used as a nutritional index for children with acute myeloid leukaemia (AML) in previous studies. However, no studies have yet examined RBP levels in AML patients from all age groups. In this study, AML patients presented with lower RBP concentrations than healthy control subjects and patients with benign haematopathies. A negative association was observed between serum RBP level and peripheral white blood cell count in M4 and M5 AML patients. Moreover, patients carrying the FLT3-ITD mutation and young patients had lower RBP levels than those lacking this mutation and elderly patients. In conclusion, these observations suggest that aberrant retinol levels may be associated with AML.
This study was aimed to investigate the correlation of NPM1 and FLT3-ITD mutations with leukocyte count in peripheral blood and bone marrow blasts in patients with acute myeloid leukemia (AML). Fifty-one acute myeloid leukemia patients with normal karyotype from January 2009 to December 2011 were enrolled in this study. The clinical data of 51 cases were analyzed retrospectively. Out of 52 cases 22 were male, and 29 were female. The median age was 47 years old (ranged from 14 to 83 years old). The de novo patients were examined by bone marrow cytomorphology and blood routine analysis. Polymerase chain reaction was used to analyze the NPM1 and FLT3-ITD mutations. The results showed that the patients with NPM1 mutations had higher leukocyte count compared with those without mutations (30.7×10(9)/L vs 8.6×10(9)/L, P = 0.002). FLT3-ITD mutation was related to higher leukocyte count (42.38×10(9)/L vs 11.45×10(9)/L without mutation, P = 0.033) and blasts (74.0% vs 60.25% without mutation, P = 0.036). The leukocyte count and percentage of bone marrow blasts were lowest in the patients with neither mutations, and gradually increasing in the NPM1(-) mutation, FLT3-ITD(-) mutation, and NPM1(+) mutation, FLT3-ITDI(+) mutation, and NPM1(+)/FLT3-ITD(+) mutation groups (P < 0.05). The patients tended to have NPM1 (P = 0.002) and FLT3-ITD (P = 0.033) mutations when their leukocyte counts were more than 12.55×10(9)/L and 37.85×10(9)/L, respectively. Those with bone marrow blast more than 72.25% showed higher rate of FLT3-ITD mutation (P = 0.008). Patients with NPM1 mutations had higher complete remission rate than those without NPM1 mutation (78.13% vs 40.0%, χ(2) = 4.651, P = 0.031) after remission induction therapy. It is concluded that both NPM1 and FLT3-ITD mutations are linked to higher leukocyte count and blast percentage, suggesting that both mutations may be associated with increased proliferation of leukemia cells, and may have a synergistic function in stimulating proliferation.
Although some studies have reported relationships between cytogenetic subgroups, molecular markers and age in acute myeloid leukemia (AML), conclusions based on data from a Chinese population are lacking. In the present study, we evaluated 640 patients with de novo AML. The patients were divided into 8 age groups, i.e. 0-9, 10-19, 20-29, 30-39, 40-49, 50-59, 60-69 and ≥70 years, and were then classified into cytogenetic groups based on normal, balanced and unbalanced karyotypes.