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1.
Rinsho Ketsueki ; 65(5): 375-384, 2024.
Article in Japanese | MEDLINE | ID: mdl-38825516

ABSTRACT

Many novel agents have been developed for BCR::ABL1-negaive myeloproliferative neoplasms (MPN), namely, polycythemia vera (PV), essential thrombocythemia (ET), and primary myelofibrosis (PMF). Some of these agents not only achieve hematologic complete response, reduce spleen size, and alleviate constitutional symptoms, but also induce molecular response, which means that they reduce the allele burden of driver gene mutations. These agents also prevent and alleviate fibrosis in bone marrow, which reduces the incidence of thrombotic events and disease progression and might improve prognosis. This article discusses the latest findings and promising treatments, including ongoing clinical trials, in PV, ET, and PMF.


Subject(s)
Myeloproliferative Disorders , Humans , Myeloproliferative Disorders/genetics , Myeloproliferative Disorders/drug therapy , Myeloproliferative Disorders/therapy , Myeloproliferative Disorders/diagnosis , Mutation , Molecular Targeted Therapy
2.
Front Immunol ; 15: 1384509, 2024.
Article in English | MEDLINE | ID: mdl-38846951

ABSTRACT

Introduction: The Philadelphia chromosome-negative myeloproliferative neoplasms are a group of slowly progressing haematological malignancies primarily characterised by an overproduction of myeloid blood cells. Patients are treated with various drugs, including the JAK1/2 inhibitor ruxolitinib. Mathematical modelling can help propose and test hypotheses of how the treatment works. Materials and methods: We present an extension of the Cancitis model, which describes the development of myeloproliferative neoplasms and their interactions with inflammation, that explicitly models progenitor cells and can account for treatment with ruxolitinib through effects on the malignant stem cell response to cytokine signalling and the death rate of malignant progenitor cells. The model has been fitted to individual patients' data for the JAK2 V617F variant allele frequency from the COMFORT-II and RESPONSE studies for patients who had substantial reductions (20 percentage points or 90% of the baseline value) in their JAK2 V617F variant allele frequency (n = 24 in total). Results: The model fits very well to the patient data with an average root mean square error of 0.0249 (2.49%) when allowing ruxolitinib treatment to affect both malignant stem and progenitor cells. This average root mean square error is much lower than if allowing ruxolitinib treatment to affect only malignant stem or only malignant progenitor cells (average root mean square errors of 0.138 (13.8%) and 0.0874 (8.74%), respectively). Discussion: Systematic simulation studies and fitting of the model to the patient data suggest that an initial reduction of the malignant cell burden followed by a monotonic increase can be recapitulated by the model assuming that ruxolitinib affects only the death rate of malignant progenitor cells. For patients exhibiting a long-term reduction of the malignant cells, the model predicts that ruxolitinib also affects stem cell parameters, such as the malignant stem cells' response to cytokine signalling.


Subject(s)
Janus Kinase 2 , Myeloproliferative Disorders , Nitriles , Pyrazoles , Pyrimidines , Humans , Pyrazoles/therapeutic use , Pyrazoles/pharmacology , Pyrimidines/therapeutic use , Myeloproliferative Disorders/drug therapy , Myeloproliferative Disorders/genetics , Janus Kinase 2/genetics , Janus Kinase 2/antagonists & inhibitors , Neoplastic Stem Cells/drug effects , Models, Theoretical , Protein Kinase Inhibitors/therapeutic use , Protein Kinase Inhibitors/pharmacology
4.
Cancer Discov ; 14(5): 701-703, 2024 May 01.
Article in English | MEDLINE | ID: mdl-38690601

ABSTRACT

SUMMARY: Dunbar, Bowman, and colleagues present here a novel genetic mouse model with inducible and reversible expression of the JAK2V617F mutation in the endogenous locus. Results from this study clearly demonstrate an absolute requirement for myeloproliferative neoplasm-initiating cells for this mutation in their survival and imply that more efficacious inhibitors could be curative for these patients even in the setting of additional cooperating mutations. See related article by Dunbar et al., p. 737 (8).


Subject(s)
Janus Kinase 2 , Myeloproliferative Disorders , Janus Kinase 2/genetics , Janus Kinase 2/antagonists & inhibitors , Animals , Mice , Myeloproliferative Disorders/genetics , Myeloproliferative Disorders/drug therapy , Humans , Mutation , Disease Models, Animal , Protein Kinase Inhibitors/therapeutic use , Protein Kinase Inhibitors/pharmacology
5.
Blood Cancer J ; 14(1): 72, 2024 Apr 24.
Article in English | MEDLINE | ID: mdl-38658558

ABSTRACT

NRAS and KRAS activating point mutations are present in 10-30% of myeloid malignancies and are often associated with a proliferative phenotype. RAS mutations harbor allele-specific structural and biochemical properties depending on the hotspot mutation, contributing to variable biological consequences. Given their subclonal nature in most myeloid malignancies, their clonal architecture, and patterns of cooperativity with other driver genetic alterations may potentially have a direct, causal influence on the prognosis and treatment of myeloid malignancies. RAS mutations overall tend to be associated with poor clinical outcome in both chronic and acute myeloid malignancies. Several recent prognostic scoring systems have incorporated RAS mutational status. While RAS mutations do not always act as independent prognostic factors, they significantly influence disease progression and survival. However, their clinical significance depends on the type of mutation, disease context, and treatment administered. Recent evidence also indicates that RAS mutations drive resistance to targeted therapies, particularly FLT3, IDH1/2, or JAK2 inhibitors, as well as the venetoclax-azacitidine combination. The investigation of novel therapeutic strategies and combinations that target multiple axes within the RAS pathway, encompassing both upstream and downstream components, is an active field of research. The success of direct RAS inhibitors in patients with solid tumors has brought renewed optimism that this progress will be translated to patients with hematologic malignancies. In this review, we highlight key insights on RAS mutations across myeloid malignancies from the past decade, including their prevalence and distribution, cooperative genetic events, clonal architecture and dynamics, prognostic implications, and therapeutic targeting.


Subject(s)
Mutation , Humans , Prognosis , Myeloproliferative Disorders/genetics , Myeloproliferative Disorders/therapy , Myeloproliferative Disorders/drug therapy , Molecular Targeted Therapy , Proto-Oncogene Proteins p21(ras)/genetics
7.
Hematology ; 29(1): 2340149, 2024 Dec.
Article in English | MEDLINE | ID: mdl-38626148

ABSTRACT

OBJECTIVES: Patients with myeloproliferative neoplasms (MPNs) are at higher risk of developing secondary malignancies. In this study, we focused on patients with MPNs that complicated lymphoid neoplasms. To analyze the real-world status of lymphoid neoplasm treatment in patients with pre-existing MPNs in Japan, we conducted a multicenter retrospective study. METHODS: Questionnaires were sent to collect the data on patients who were first diagnosed with either polycythemia vera, essential thrombocythemia or myelofibrosis and who later were complicated with lymphoid neoplasms defined as malignant lymphoma, multiple myeloma, or chronic lymphocytic leukemia/small cell lymphoma. RESULTS: Twenty-four patients with MPNs complicated by lymphoid neoplasms were enrolled (polycythemia vera, n = 8; essential thrombocythemia, n = 14; and primary myelofibrosis, n = 2). Among these, diffuse large B-cell lymphoma (DLBCL) was the most frequently observed (n = 13, 54.1%). Twelve (92.3%) of the patients with DLBCL received conventional chemotherapy. Among these 12 patients, regarding cytoreductive therapy for MPNs, 8 patients stopped treatment, one continued treatment, and two received a reduced dose. Consequently, most patients were able to receive conventional chemotherapy for DLBCL with a slightly higher dose of granulocyte colony-stimulating factor support than usual without worse outcomes. All 3 patients with multiple myeloma received a standard dose of chemotherapy. CONCLUSION: Our data indicate that if aggressive lymphoid neoplasms develop during the course of treatment in patients with MPNs, it is acceptable to prioritize chemotherapy for lymphoma.


Subject(s)
Leukemia, Lymphocytic, Chronic, B-Cell , Lymphoma , Multiple Myeloma , Myeloproliferative Disorders , Polycythemia Vera , Thrombocythemia, Essential , Humans , Thrombocythemia, Essential/drug therapy , Thrombocythemia, Essential/epidemiology , Retrospective Studies , Japan/epidemiology , Myeloproliferative Disorders/drug therapy , Myeloproliferative Disorders/epidemiology , Myeloproliferative Disorders/diagnosis , Lymphoma/epidemiology , Lymphoma/etiology , Lymphoma/therapy
8.
Cancer Med ; 13(7): e7166, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38572926

ABSTRACT

BACKGROUND: Studies have shown that some single nucleotide polymorphisms (SNPs) could serve as excellent markers in foretelling the treatment outcome of interferon (IFN) in myeloproliferative neoplasms (MPN). However, most work originated from western countries, and data from different ethnic populations have been lacking. METHODS: To gain insights, targeted sequencing was performed to detect myeloid-associated mutations and SNPs in eight loci across three genes (IFNL4, IFN-γ, and inosine triphosphate pyrophosphatase [ITPA]) to explore their predictive roles in our cohort of 21 ropeginterferon alpha-2b (ROPEG)-treated MPN patients, among whom real-time quantitative PCR was also performed periodically to monitor the JAK2V617F allele burden in 19 JAK2V617F-mutated cases. RESULTS: ELN response criteria were adopted to designate patients as good responders if they achieved complete hematological responses (CHR) within 1 year (CHR1) or attained major molecular responses (MMR), which occurred in 70% and 45% of the patients, respectively. IFNL4 and IFN-γ gene SNPs were infrequent in our population and were thus excluded from further analysis. Two ITPA SNPs rs6051702 A>C and rs1127354 C>A were associated with an inferior CHR1 rate and MMR rate, respectively. The former seemed to be linked to grade 2 or worse hepatotoxicity as well, although the comparison was of borderline significance only (50%, vs. 6.7% in those with common haplotype, p = 0.053). Twelve patients harbored 19 additional somatic mutations in 12 genes, but the trajectory of these mutations varied considerably and was not predictive of any response. CONCLUSIONS: Overall, this study provided valuable information on the ethnics- and genetics-based algorithm in the treatment of MPN.


Subject(s)
Myeloproliferative Disorders , Neoplasms , Humans , Myeloproliferative Disorders/drug therapy , Myeloproliferative Disorders/genetics , Treatment Outcome , Haplotypes , Germ Cells , Interferon Lambda , Interleukins/genetics
10.
Am J Hematol ; 99(6): 1040-1055, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38440831

ABSTRACT

Myeloproliferative neoplasms (MPNs), including polycythemia vera, essential thrombocytosis, and primary myelofibrosis, are clonal hematopoietic neoplasms driven by mutationally activated signaling by the JAK2 tyrosine kinase. Although JAK2 inhibitors can improve MPN patients' quality of life, they do not induce complete remission as disease-driving cells persistently survive therapy. ERK activation has been highlighted as contributing to JAK2 inhibitor persistent cell survival. As ERK is a component of signaling by activated RAS proteins and by JAK2 activation, we sought to inhibit RAS activation to enhance responses to JAK2 inhibition in preclinical MPN models. We found the SHP2 inhibitor RMC-4550 significantly enhanced growth inhibition of MPN cell lines in combination with the JAK2 inhibitor ruxolitinib, effectively preventing ruxolitinib persistent growth, and the growth and viability of established ruxolitinib persistent cells remained sensitive to SHP2 inhibition. Both SHP2 and JAK2 inhibition diminished cellular RAS-GTP levels, and their concomitant inhibition enhanced ERK inactivation and increased apoptosis. Inhibition of SHP2 inhibited the neoplastic growth of MPN patient hematopoietic progenitor cells and exhibited synergy with ruxolitinib. RMC-4550 antagonized MPN phenotypes and increased survival of an MPN mouse model driven by MPL-W515L. The combination of RMC-4550 and ruxolitinib, which was safe and tolerated in healthy mice, further inhibited disease compared to ruxolitinib monotherapy, including extending survival. Given SHP2 inhibitors are undergoing clinical evaluation in patients with solid tumors, our preclinical findings suggest that SHP2 is a candidate therapeutic target with potential for rapid translation to clinical assessment to improve current targeted therapies for MPN patients.


Subject(s)
Janus Kinase 2 , Myeloproliferative Disorders , Nitriles , Protein Tyrosine Phosphatase, Non-Receptor Type 11 , Pyrazoles , Pyrimidines , Janus Kinase 2/antagonists & inhibitors , Protein Tyrosine Phosphatase, Non-Receptor Type 11/antagonists & inhibitors , Animals , Myeloproliferative Disorders/drug therapy , Humans , Mice , Nitriles/therapeutic use , Pyrazoles/therapeutic use , Pyrazoles/pharmacology , Pyrimidines/therapeutic use , Pyrimidines/pharmacology , Cell Line, Tumor , Protein Kinase Inhibitors/therapeutic use , Protein Kinase Inhibitors/pharmacology
12.
Clin Adv Hematol Oncol ; 22(2): 80-89, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38446475

ABSTRACT

The treatment landscape for BCR/ABL-negative myeloproliferative neoplasms (MPNs), driven by JAK2, CALR, and MPL mutations, has evolved significantly over the last decade. Recent regulatory approvals in polycythemia vera (PV) include the JAK inhibitor ruxolitinib, and more recently, a novel recombinant interferon alfa-2 (IFN-α) therapeutic agent. Many clinical trials have documented the safety and efficacy of IFN-α therapy in PV and essential thrombocythemia, the classical BCR/ABL-negative MPNs. Used off-label for more than 30 years as a cytoreductive agent, IFN-α therapy promotes significant clinical, hematologic, and molecular responses. In some IFN-α-treated patients, partial or complete reduction of the mutant JAK2 allele burden may lead to a durable measurable residual disease state, owing to the ability of long-term IFN-α therapy to selectively deplete mutant JAK2-harboring hematopoietic stem cells. Pegylated IFN-α forms were developed to improve the drug stability and tolerability of first-generation IFN-α therapeutics. More recently, a novel pegylated IFN-α, ropeginterferon alfa-2b, received approval for PV by the European Medicines Agency and the US Food and Drug Administration in 2019 and 2021, respectively. This article reviews the clinical research and recent advances that led to the first regulatory approval of IFN-α in a BCR/ABL-negative MPN and its future promise as a disease-modifying therapeutic agent.


Subject(s)
Myeloproliferative Disorders , United States , Humans , Myeloproliferative Disorders/drug therapy , Myeloproliferative Disorders/genetics , Interferon-alpha/therapeutic use , Immunotherapy , Neoplasm, Residual , Polyethylene Glycols/therapeutic use
13.
Int J Mol Sci ; 25(3)2024 Jan 25.
Article in English | MEDLINE | ID: mdl-38338733

ABSTRACT

Blastic plasmacytoid dendritic cell neoplasm (BPDCN) is a rare and aggressive hematologic cancer originating from the malignant transformation of plasmacytoid dendritic cell precursors. This malignancy progresses rapidly, with frequent relapses and a poor overall survival rate, underscoring the urgent need for effective treatments. However, diagnosing and treating BPDCN have historically been challenging due to its rarity and the lack of standardized approaches. The recognition of BPDCN as a distinct disease entity is recent, and standardized treatment protocols are yet to be established. Traditionally, conventional chemotherapy and stem cell transplantation have been the primary methods for treating BPDCN patients. Advances in immunophenotyping and molecular profiling have identified potential therapeutic targets, leading to a shift toward CD123-targeted immunotherapies in both clinical and research settings. Ongoing developments with SL-401, IMGN632, CD123 chimeric antigen receptor (CAR) T-cells, and bispecific antibodies (BsAb) show promising advancements. However, the therapeutic effectiveness of CD123-targeting treatments needs improvement through innovative approaches and combinations of treatments with other anti-leukemic drugs. The exploration of combinations such as CD123-targeted immunotherapies with azacitidine and venetoclax is suggested to enhance antineoplastic responses and improve survival rates in BPDCN patients. In conclusion, this multifaceted approach offers hope for more effective and tailored therapeutic interventions against this challenging hematologic malignancy.


Subject(s)
Hematologic Neoplasms , Interleukin-3 Receptor alpha Subunit , Myeloproliferative Disorders , Humans , Dendritic Cells , Hematologic Neoplasms/drug therapy , Hematologic Neoplasms/pathology , Interleukin-3 Receptor alpha Subunit/drug effects , Myeloproliferative Disorders/drug therapy , Myeloproliferative Disorders/pathology , Neoplasm Recurrence, Local/pathology , Skin Neoplasms/drug therapy , Skin Neoplasms/pathology , Stem Cell Transplantation
15.
Blood Adv ; 8(9): 2312-2325, 2024 May 14.
Article in English | MEDLINE | ID: mdl-38295283

ABSTRACT

ABSTRACT: Hyperproliferation of myeloid and erythroid cells in myeloproliferative neoplasms (MPN) driven by the JAK2-V617F mutation is associated with altered metabolism. Given the central role of glutamine in anabolic and catabolic pathways, we examined the effects of pharmacologically inhibiting glutaminolysis, that is, the conversion of glutamine (Gln) to glutamate (Glu), using CB-839, a small molecular inhibitor of the enzyme glutaminase (GLS). We show that CB-839 strongly reduced the mitochondrial respiration rate of bone marrow cells from JAK2-V617F mutant (VF) mice, demonstrating a marked dependence of these cells on Gln-derived ATP production. Consistently, in vivo treatment with CB-839 normalized blood glucose levels, reduced splenomegaly and decreased erythrocytosis in VF mice. These effects were more pronounced when CB-839 was combined with the JAK1/2 inhibitor ruxolitinib or the glycolysis inhibitor 3PO, indicating possible synergies when cotargeting different metabolic and oncogenic pathways. Furthermore, we show that the inhibition of glutaminolysis with CB-839 preferentially lowered the proportion of JAK2-mutant hematopoietic stem cells (HSCs). The total number of HSCs was decreased by CB-839, primarily by reducing HSCs in the G1 phase of the cell cycle. CB-839 in combination with ruxolitinib also strongly reduced myelofibrosis at later stages of MPN. In line with the effects shown in mice, proliferation of CD34+ hematopoietic stem and progenitor cells from polycythemia vera patients was inhibited by CB-839 at nanomolar concentrations. These data suggest that inhibiting GLS alone or in combination with inhibitors of glycolysis or JAK2 inhibitors represents an attractive new therapeutic approach to MPN.


Subject(s)
Benzeneacetamides , Glutaminase , Hematopoiesis , Janus Kinase 2 , Myeloproliferative Disorders , Animals , Mice , Myeloproliferative Disorders/drug therapy , Myeloproliferative Disorders/metabolism , Janus Kinase 2/metabolism , Janus Kinase 2/antagonists & inhibitors , Hematopoiesis/drug effects , Humans , Glutaminase/antagonists & inhibitors , Glutaminase/metabolism , Benzeneacetamides/pharmacology , Benzeneacetamides/therapeutic use , Mutation , Pyrimidines/pharmacology , Pyrimidines/therapeutic use
16.
Blood Cancer J ; 14(1): 1, 2024 01 04.
Article in English | MEDLINE | ID: mdl-38177095

ABSTRACT

Classical myeloproliferative neoplasms (MPNs) are characterized by the proliferation of myeloid cells and the risk of transformation into myelofibrosis or acute myeloid leukemia (AML) and TP53 mutations in MPN patients are linked to AML. However, JAK2V617F has been reported to impact the TP53 response to DNA damage, suggesting potential overlapping role of TP53 inactivation in MPN. We established a mouse model showing that JAK2V617F/Vav-Cre/Trp53-/- mice displayed a similar phenotype to JAK2V617F/Vav-Cre mice, but their proliferation was outcompeted in competitive grafts. RNA-Seq revealed that half of the genes affected by JAK2V617F were affected by p53-inactivation, including the interferon pathway. To validate this finding, mice were repopulated with a mixture of wild-type and JAK2V617F (or JAK2V617F/Vav-Cre/Trp53-/-) cells and treated with pegylated interferonα. JAK2V617F-reconstituted mice entered complete hematological remission, while JAK2V617F/Vav-Cre /Trp53-/--reconstituted mice did not, confirming that p53 loss induced interferon-α resistance. KEGG and Gene Ontology analyses of common deregulated genes showed that these genes were mainly implicated in cytokine response, proliferation, and leukemia evolution, illustrating that in this mouse model, the development of MPN is not affected by TP53 inactivation. Taken together, our results show that many genetic modifications induced by JAK2V617F are influenced by TP53, the MPN phenotype may not be. Trp53 loss alone is insufficient to induce rapid leukemic transformation in steady-state hematopoiesis in JAK2V617F MPN, and Trp53 loss may contribute to interferon resistance in MPN.


Subject(s)
Leukemia, Myeloid, Acute , Myeloproliferative Disorders , Humans , Mice , Animals , Tumor Suppressor Protein p53/genetics , Janus Kinase 2/genetics , Janus Kinase 2/metabolism , Myeloproliferative Disorders/drug therapy , Myeloproliferative Disorders/genetics , Mutation , Interferon-alpha/pharmacology , Genomics
17.
Cancer Discov ; 14(5): 737-751, 2024 May 01.
Article in English | MEDLINE | ID: mdl-38230747

ABSTRACT

Gain-of-function mutations activating JAK/STAT signaling are seen in the majority of patients with myeloproliferative neoplasms (MPN), most commonly JAK2V617F. Although clinically approved JAK inhibitors improve symptoms and outcomes in MPNs, remissions are rare, and mutant allele burden does not substantively change with chronic therapy. We hypothesized this is due to limitations of current JAK inhibitors to potently and specifically abrogate mutant JAK2 signaling. We therefore developed a conditionally inducible mouse model allowing for sequential activation, and then inactivation, of Jak2V617F from its endogenous locus using a combined Dre-rox/Cre-lox dual-recombinase system. Jak2V617F deletion abrogates MPN features, induces depletion of mutant-specific hematopoietic stem/progenitor cells, and extends overall survival to an extent not observed with pharmacologic JAK inhibition, including when cooccurring with somatic Tet2 loss. Our data suggest JAK2V617F represents the best therapeutic target in MPNs and demonstrate the therapeutic relevance of a dual-recombinase system to assess mutant-specific oncogenic dependencies in vivo. SIGNIFICANCE: Current JAK inhibitors to treat myeloproliferative neoplasms are ineffective at eradicating mutant cells. We developed an endogenously expressed Jak2V617F dual-recombinase knock-in/knock-out model to investigate Jak2V617F oncogenic reversion in vivo. Jak2V617F deletion abrogates MPN features and depletes disease-sustaining MPN stem cells, suggesting improved Jak2V617F targeting offers the potential for greater therapeutic efficacy. See related commentary by Celik and Challen, p. 701. This article is featured in Selected Articles from This Issue, p. 695.


Subject(s)
Janus Kinase 2 , Myeloproliferative Disorders , Animals , Humans , Mice , Disease Models, Animal , Hematopoietic Stem Cells/metabolism , Janus Kinase 2/genetics , Janus Kinase 2/metabolism , Mutation , Myeloproliferative Disorders/genetics , Myeloproliferative Disorders/drug therapy , Signal Transduction
18.
Am J Hematol ; 99(2): 236-244, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38165068

ABSTRACT

Fludarabine/busulfan and fludarabine/melphalan are viable options as conditioning regimens. However, the optimal fludarabine-based conditioning in cord blood transplantation (CBT) remains unclear. Therefore, this retrospective, registry-based study aimed to analyze the impact of five fludarabine-containing conditioning regimens on 1395 adult patients (median age, 61 years) with acute myeloid leukemia, myelodysplastic syndrome, and chronic myeloid leukemia who underwent their first CBT. Treatment outcomes of fludarabine combined with melphalan (100-140 mg/m2 ) and low-dose total body irradiation (TBI; FM140T); melphalan (80-99 mg/m2 ) and TBI (FM80T); busulfan (12.8 mg/kg) and melphalan (FB4M); busulfan (12.8 mg/kg) and TBI (FB4T); and busulfan (6.4 mg/kg) and TBI (FB2T) were compared. The 3-year survival rate was 67%, 53%, 44%, 36%, and 39%, respectively (p < .0001). The FM140T survival rate was the most favorable after adjusting for confounders, and the hazard ratios (vs. FM140T) for overall mortality were as follows: FM80T, 1.6 (95% confidence interval [CI], 1.2-2.2); FB4M, 2.1 (95% CI, 1.6-2.8); FB4T, 2.7 (95% CI, 2.0-3.7); and FB2T, 2.2 (95% CI, 1.6-3.1). The better survival observed with FM140T, regardless of the disease, disease risk, age, or transplant year, was attributed to the lower relapse rate and lower non-relapse mortality (NRM) associated with fewer infectious deaths. Conversely, FB4T was associated with a higher relapse rate and higher NRM. The findings indicate that the outcomes of CBT in myeloid malignancies were highly dependent on both the alkylating agent and its dose in combination with fludarabine. Therefore, compared with fludarabine/busulfan-based conditioning, FM140T may be the preferred regimen.


Subject(s)
Cord Blood Stem Cell Transplantation , Graft vs Host Disease , Hematopoietic Stem Cell Transplantation , Leukemia, Myeloid, Acute , Myeloproliferative Disorders , Adult , Humans , Middle Aged , Busulfan/therapeutic use , Melphalan/therapeutic use , Retrospective Studies , Vidarabine/therapeutic use , Myeloproliferative Disorders/drug therapy , Recurrence , Transplantation Conditioning
19.
Mol Cancer ; 23(1): 25, 2024 01 26.
Article in English | MEDLINE | ID: mdl-38273387

ABSTRACT

Over the past three decades, considerable efforts have been expended on understanding the Janus kinase/signal transducer and activator of transcription (JAK/STAT) signaling pathway in leukemia, following the identification of the JAK2V617F mutation in myeloproliferative neoplasms (MPNs). The aim of this review is to summarize the latest progress in our understanding of the involvement of the JAK/STAT signaling pathway in the development of leukemia. We also attempt to provide insights into the current use of JAK/STAT inhibitors in leukemia therapy and explore pertinent clinical trials in this field.


Subject(s)
Leukemia , Myeloproliferative Disorders , Humans , Janus Kinases/genetics , Janus Kinases/metabolism , STAT Transcription Factors/genetics , STAT Transcription Factors/metabolism , Myeloproliferative Disorders/drug therapy , Myeloproliferative Disorders/genetics , Signal Transduction
20.
Leuk Lymphoma ; 65(4): 503-510, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38259250

ABSTRACT

Pelabresib (CPI-0610), a BET protein inhibitor, is in clinical development for hematologic malignancies, given its ability to target NF-κB gene expression. The MANIFEST phase 1 study assessed pelabresib in patients with acute leukemia, high-risk myelodysplastic (MDS) syndrome, or MDS/myeloproliferative neoplasms (MDS/MPNs) (NCT02158858). Forty-four patients received pelabresib orally once daily (QD) at various doses (24-400 mg capsule or 225-275 mg tablet) on cycles of 14 d on and 7 d off. The most frequent drug-related adverse events were nausea, decreased appetite, and fatigue. The maximum tolerated dose (MTD) was 225 mg tablet QD. One patient with chronic myelomonocytic leukemia (CMML) showed partial remission. In total, 25.8% of acute myeloid leukemia (AML) patients and 38.5% of high-risk MDS patients had stable disease. One AML patient and one CMML patient showed peripheral hematologic response. The favorable safety profile supports the ongoing pivotal study of pelabresib in patients with myelofibrosis using the recommended phase 2 dose of 125 mg tablet QD.CLINICAL TRIAL REGISTRATION: NCT02158858.


Subject(s)
Antineoplastic Agents , Leukemia, Myeloid, Acute , Leukemia, Myelomonocytic, Chronic , Myelodysplastic Syndromes , Myeloproliferative Disorders , Humans , Myelodysplastic Syndromes/diagnosis , Myelodysplastic Syndromes/drug therapy , Myelodysplastic Syndromes/genetics , Myeloproliferative Disorders/drug therapy , Leukemia, Myelomonocytic, Chronic/drug therapy , Leukemia, Myeloid, Acute/diagnosis , Leukemia, Myeloid, Acute/drug therapy , Leukemia, Myeloid, Acute/genetics , Antineoplastic Agents/therapeutic use , Tablets/therapeutic use
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