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Genomic profiling of a randomized trial of interferon-α vs hydroxyurea in MPN reveals mutation-specific responses
Trine Alma Knudsen1, Vibe Skov1, Kristen Stevenson2
1Department of Hematology, Zealand University Hospital, Roskilde, Denmark.
Abstract:
Although somatic mutations influence the pathogenesis, phenotype, and outcome of myeloproliferative neoplasms (MPNs), little is known about their impact on molecular response to cytoreductive treatment. We performed targeted next-generation sequencing (NGS) on 202 pretreatment samples obtained from patients with MPN enrolled in the DALIAH trial (A Study of Low Dose Interferon Alpha Versus Hydroxyurea in Treatment of Chronic Myeloid Neoplasms; #NCT01387763), a randomized controlled phase 3 clinical trial, and 135 samples obtained after 24 months of therapy with recombinant interferon-alpha (IFNα) or hydroxyurea. The primary aim was to evaluate the association between complete clinicohematologic response (CHR) at 24 months and molecular response through sequential assessment of 120 genes using NGS. Among JAK2-mutated patients treated with IFNα, those with CHR had a greater reduction in the JAK2 variant allele frequency (median, 0.29 to 0.07; P < .0001) compared with those not achieving CHR (median, 0.27 to 0.14; P < .0001). In contrast, the CALR variant allele frequency did not significantly decline in those achieving CHR or in those not achieving CHR. Treatment-emergent mutations in DNMT3A were observed more commonly in patients treated with IFNα compared with hydroxyurea (P = .04). Furthermore, treatment-emergent DNMT3A mutations were significantly enriched in IFNα-treated patients not attaining CHR (P = .02). A mutation in TET2, DNMT3A, or ASXL1 was significantly associated with prior stroke (age-adjusted odds ratio, 5.29; 95% confidence interval, 1.59-17.54; P = .007), as was a mutation in TET2 alone (age-adjusted odds ratio, 3.03; 95% confidence interval, 1.03-9.01; P = .044). At 24 months, we found mutation-specific response patterns to IFNα: (1) JAK2- and CALR-mutated MPN exhibited distinct molecular responses; and (2) DNMT3A-mutated clones/subclones emerged on treatment.
Insights
Somatic mutations impact myeloproliferative neoplasms (MPNs) treatment response. Interferon-alpha (IFNα) therapy showed distinct molecular responses in JAK2 and CALR mutated MPN, with DNMT3A mutations emerging during treatment.
Area of Science:
- Hematology
- Oncology
- Genetics
Background:
- Somatic mutations are crucial in myeloproliferative neoplasms (MPNs) pathogenesis, influencing disease phenotype and outcomes.
- The impact of these mutations on molecular response to cytoreductive therapies remains largely unknown.
- Understanding these dynamics is vital for optimizing MPN treatment strategies.
Purpose of the Study:
- To investigate the association between complete clinicohematologic response (CHR) and molecular response in MPN patients.
- To evaluate the impact of specific mutations (JAK2, CALR, DNMT3A, TET2, ASXL1) on treatment response to interferon-alpha (IFNα) and hydroxyurea.
- To identify mutation-specific response patterns to IFNα therapy.
Main Methods:
- Targeted next-generation sequencing (NGS) was performed on 202 pretreatment samples from MPN patients in the DALIAH trial.
- 135 post-treatment samples (24 months) were analyzed for molecular response.
- Sequential assessment of 120 genes using NGS evaluated the association between CHR and molecular response.
Main Results:
- In JAK2-mutated MPN patients treated with IFNα, CHR correlated with a significant reduction in JAK2 variant allele frequency.
- CALR variant allele frequency did not significantly decline in patients achieving CHR.
- Treatment-emergent DNMT3A mutations were more frequent with IFNα than hydroxyurea and enriched in IFNα-treated patients not achieving CHR. Mutations in TET2, DNMT3A, or ASXL1 were associated with prior stroke.
Conclusions:
- MPN patients exhibit mutation-specific molecular responses to IFNα therapy, with distinct patterns for JAK2 and CALR mutations.
- Emergence of DNMT3A-mutated clones during IFNα treatment is associated with a lack of complete clinicohematologic response.
- Specific mutations (TET2, DNMT3A, ASXL1) are linked to an increased risk of prior stroke in MPN patients.
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