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Primary myelofibrosis: 2021 update on diagnosis, risk-stratification and management
1Division of Hematology, Department of Medicine, Mayo Clinic, Rochester, Minnesota, USA.
Disease Overview:
Primary myelofibrosis (PMF) is a myeloproliferative neoplasm (MPN) characterized by stem cell-derived clonal myeloproliferation that is often but not always accompanied by JAK2, CALR, or MPL mutations. Additional disease features include bone marrow reticulin/collagen fibrosis, aberrant inflammatory cytokine expression, anemia, hepatosplenomegaly, extramedullary hematopoiesis (EMH), constitutional symptoms, cachexia, leukemic progression, and shortened survival.
Diagnosis:
Bone marrow morphology is the primary basis for diagnosis. Presence of JAK2, CALR, or MPL mutation, expected in around 90% of the patients, is supportive but not essential for diagnosis; these mutations are also prevalent in the closely related MPNs, namely polycythemia vera (PV) and essential thrombocythemia (ET). The 2016 World Health Organization classification system distinguishes "prefibrotic" from "overtly fibrotic" PMF; the former might mimic ET in its presentation. Furthermore, approximately 15% of patients with ET or PV might progress into a PMF-like phenotype (post-ET/PV MF) during their clinical course.
Adverse Mutations:
SRSF2, ASXL1, and U2AF1-Q157 mutations predict inferior survival in PMF, independent of each other and other risk factors. RAS/CBL mutations predicted resistance to ruxolitinib therapy.
Adverse Karyotype:
Very high risk abnormalities include -7, inv (3), i(17q), +21, +19, 12p-, and 11q-.
Risk Stratification:
Two new prognostic systems for PMF have recently been introduced: GIPSS (genetically-inspired prognostic scoring system) and MIPSS70+ version 2.0 (MIPSSv2; mutation- and karyotype-enhanced international prognostic scoring system). GIPSS is based exclusively on mutations and karyotype. MIPSSv2 includes, in addition, clinical risk factors. GIPSS features four and MIPSSv2 five risk categories.
Risk-Adapted Therapy:
Observation alone is advised for MIPSSv2 "low" and "very low" risk disease (estimated 10-year survival 56%-92%); allogeneic hematopoietic stem cell transplant (AHSCT) is the preferred treatment for "very high" and "high" risk disease (estimated 10-year survival 0%-13%); treatment-requiring patients with intermediate-risk disease (estimated 10-year survival 30%) are best served by participating in clinical trials. In non-transplant candidates, conventional treatment for anemia includes androgens, prednisone, thalidomide, and danazol; for symptomatic splenomegaly, hydroxyurea and ruxolitinib; and for constitutional symptoms, ruxolitinib. Fedratinib, another JAK2 inhibitor, has now been FDA-approved for use in ruxolitinib failures. Splenectomy is considered for drug-refractory splenomegaly and involved field radiotherapy for non-hepatosplenic EMH and extremity bone pain.
New Directions:
A number of new agents, alone or in combination with ruxolitinib, are currently under investigation for MF treatment (ClinicalTrials.gov); preliminary results from some of these clinical trials were presented at the 2020 ASH annual meeting and highlighted in the current document.
Insights
Primary myelofibrosis (PMF) is a bone marrow cancer. New risk stratification systems (GIPSS and MIPSSv2) guide treatment, from observation to stem cell transplant, improving outcomes for patients with this myeloproliferative neoplasm.
Area of Science:
- Hematology
- Oncology
- Genetics
Background:
- Primary myelofibrosis (PMF) is a myeloproliferative neoplasm (MPN) characterized by clonal stem cell proliferation, bone marrow fibrosis, and constitutional symptoms.
- Key mutations (JAK2, CALR, MPL) are common but not essential for diagnosis, which relies on bone marrow morphology.
- PMF diagnosis can be challenging due to overlap with essential thrombocythemia (ET) and polycythemia vera (PV), with some patients progressing to a PMF-like phenotype.
Purpose of the Study:
- To summarize the current understanding of primary myelofibrosis (PMF), including diagnosis, prognostic factors, and risk-adapted therapies.
- To highlight recent advancements in risk stratification and emerging therapeutic strategies for PMF management.
Main Methods:
- Review of diagnostic criteria based on bone marrow morphology and molecular mutations.
- Analysis of prognostic implications of specific mutations (SRSF2, ASXL1, U2AF1-Q157, RAS/CBL) and karyotype abnormalities.
- Evaluation of newly introduced risk stratification systems: GIPSS and MIPSSv2.
- Summary of risk-adapted therapeutic approaches, including observation, allogeneic stem cell transplant, and pharmacologic interventions.
Main Results:
- Bone marrow morphology is central to PMF diagnosis, supported by genetic mutations in ~90% of cases.
- Specific mutations (SRSF2, ASXL1, U2AF1-Q157) and adverse karyotypes are associated with inferior survival.
- New prognostic systems (GIPSS, MIPSSv2) categorize patients into distinct risk groups, guiding treatment decisions.
- Risk-adapted therapy ranges from observation for low-risk disease to allogeneic stem cell transplant for high-risk disease.
Conclusions:
- Accurate diagnosis and risk stratification are crucial for effective PMF management.
- Emerging prognostic systems (GIPSS, MIPSSv2) enhance personalized treatment strategies.
- Ongoing research into novel agents offers new therapeutic avenues for PMF patients.
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