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Biomedical subjects

Andrea Biondi

Publications and source records attributed to Andrea Biondi.

At least 19 recordsLinked to original sources

Blinatumomab for Replacing Chemotherapy in Pediatric Acute Lymphoblastic Leukemia.

BACKGROUND: Blinatumomab, a bispecific T-cell engager targeting the CD19 antigen on B cells, may offer an option to safely replace cycles of traditional chemotherapy in pediatric patients with newly diagnosed high-risk B-cell acute lymphoblastic leukemia (ALL). METHODS: We randomly assigned, in a 1:1 ratio, children with high-risk B-cell ALL to receive two cycles of blinatumomab (blinatumomab group) or two cycles of chemotherapy (control group) after consolidation. The primary end point was event-free survival as evaluated in a time-to-event analysis; the duration of event-free survival was defined as the time from randomization to the first event among resistance to protocol treatment, relapse, second cancer, or death from any cause. Our primary objective was to evaluate whether the 4-year event-free survival would be 10 percentage points higher in the blinatumomab group than in the control group. RESULTS: Overall, 709 of 768 eligible patients (92.3%) underwent randomization; 358 were assigned to the blinatumomab group and 351 to the control group. A planned interim analysis at a median follow-up of 2.9 years showed an estimated 4-year event-free survival of 83.0% (95% confidence interval [CI], 77.4 to 87.4) in the blinatumomab group and 70.3% (95% CI, 63.8 to 75.9) in the control group (P&#x2009;=&#x2009;0.0002 in an intention-to-treat analysis). The estimated hazard ratio for a primary end-point event (blinatumomab vs. control) was 0.51 (95% CI, 0.35 to 0.73) as assessed with a Cox model. Infection related to the trial treatment occurred in 23.9% of patients in the blinatumomab group and in 69.4% of those in the control group (P<0.001). Life-threatening adverse events occurred in 2 patients (0.5%) in the blinatumomab group, including one (in 0.3%) that was fatal, and in 16 patients (4.7%) in the control group. Neurotoxic events were reported in 12.0% and 3.2%, respectively (P<0.001). Cytokine release syndrome of grade 2 or higher occurred in 1.1% of patients in the blinatumomab group. CONCLUSIONS: In children with newly diagnosed high-risk B-cell ALL, replacement of two cycles of highly toxic conventional chemotherapy with blinatumomab resulted in a significantly greater percentage of patients with event-free survival at 4 years. (Funded by Deutsche Krebshilfe and others; AIEOP-BFM ALL 2017 EudraCT number, 2016-001935-12; EU Clinical Trials number, 2023-509856-32-00; and ClinicalTrials.gov number, NCT03643276.).

Adolescent↗

Optimized GMP-grade production of non-viral Sleeping Beauty-generated CARCIK cells for enhanced fitness and clinical scalability.

BACKGROUND: Strict adherence to GMP guidelines and regulatory compliance is crucial when transitioning from research to clinical-grade production of ATMPs like CAR T cells. The success of CAR T cell therapy in treating hematological malignancies highlights the need for closed or automated systems to ensure quality and efficacy. Recent evidence also suggests that ex vivo culture conditions can significantly impact CAR T cell functionality. METHODS: We present our optimized methodology for expanding Sleeping Beauty transposon-engineered Chimeric Antigen Receptor-Cytokine-Induced Killer (CARCIK) cells using G-Rex devices and evaluate its impact on CARCIK cell phenotype and T cell fitness. RESULTS: Building on our previously validated protocol, we introduced key simplifications to optimize the CARCIK differentiation process. Delaying the nucleofection step eliminated the need for feeder cells while maintaining efficient CAR expression and high cell viability. Transitioning from T-flasks to G-Rex bioreactors reduced operator hands-on time from 21 to 28 days to 14-17 days and resulted in a less differentiated CARCIK cell product. Metabolic and transcriptional analyses showed that the novel protocol improves CARCIK cell fitness and in vivo efficacy against B-cell lymphoma. The novel method was validated in Good Manufacturing Practices (GMP) conditions at our two Cell Factories and yielded enough numbers of CARCIK-CD19 cells for clinical use. CONCLUSIONS: Optimizing non-viral CARCIK cell production using G-Rex bioreactors and refined timing adjustments has streamlined the workflow, enhanced cell fitness, and resulted in a highly effective therapeutic product with demonstrated in vivo efficacy in mice. These improvements reduced manipulation and contamination risks, while optimizing logistics and space efficiency, facilitating allogeneic CARCIK generation for a current phase I/II clinical trial (NCT05869279) in patients with R/R CD19&#x2009;+&#x2009;non-Hodgkin Lymphoma (B-cell NHL) and Chronic Lymphocytic Leukemia (CLL), confirming the approach's scalability and clinical potential.

Humans↗

Protocol-based treatment for children with cancer in low income countries in Latin America: a report on the recent meetings of the Monza International School of Pediatric Hematology/Oncology (MISPHO)--part II.

Pediatric cancer programs in low-income countries (LIC) can improve outcomes. However, treatment must be tailored to the patient's living conditions and the availability of supportive care. In some cases, a more intense regimen will decrease survival since the increase in death from toxicity may exceed any decrease in relapse. Attempts to practice evidence-based pediatric oncology are thwarted by the lack of evidence derived from local experience in LIC to determine optimal therapy. This report summarizes treatment regimens used by pediatric oncologists from 15 countries of the Caribbean, Central and South America who participate in the Monza International School of Pediatric Hematology/Oncology (MISPHO). Patients with hepatoblastoma, Wilms tumor, and histiocytosis treated on unmodified published protocols had outcomes comparable to those in high-income countries (HIC). Those with rhabdomyosarcoma, osteosarcoma, Hodgkin lymphoma, and acute myeloid leukemia treated with unmodified regimens had event-free survival estimates 10%-20% lower than those reported in HIC due to higher rates of toxic death, abandonment of therapy, and relapse. Treatment of retinoblastoma is complicated by advanced stages and extraocular disease at diagnosis; improved outcomes depend on education of pediatricians and the public to recognize early signs of this disease. Use of unmodified protocols for Burkitt lymphoma and acute lymphoblastic leukemia have been associated with unacceptable toxicity in LIC, so MISPHO centers have modified published regimens by giving lower doses of methotrexate and reducing use of anthracyclines. Despite the use of all-trans-retinoic acid during induction for acute promyelocytic leukemia, the incidence of fatal hemorrhage remains unacceptably high.

Adolescent↗

Assessment of submicroscopic genetic lesions by single nucleotide polymorphism arrays in a child with acute myeloid leukemia and FLT3-internal tandem duplication.

The same FLT3-internal tandem duplication (ITD) positive clone was detected at diagnosis and relapse, but not at birth, in a child with M1 acute myeloid leukemia. Single nucleotide polymorphism arrays demonstrated that chromosome 13 acquired uniparental disomy, in association with del(9q), represented a progressive event in the course of the disease, and it was responsible for the homozygous FLT3-ITD at relapse.

Child↗

Role of treatment intensification in infants with acute lymphoblastic leukemia: results of two consecutive AIEOP studies.

Fifty-two infants with acute lymphoblastic leukemia (ALL) enrolled in the AIEOP ALL-91 and ALL-95 studies were treated with the intermediate or high risk protocols according to their presenting features and early response to treatment. The 5-year event-free survival was 33.3% (95% CI 12.1-54.5), 53.5% (95% CI 35.7-71.3) and 45.0% (95% CI 31.3-58.7) in the ALL-91 and ALL-95 studies and in the overall cohort, respectively. In the ALL-95 high-risk group (BFM therapy intensified by three blocks and double protocol II) nine of 17 patients treated with chemotherapy only and three of four transplanted patients were alive and in complete remission. The corresponding figures for patients treated in the ALL-91 high-risk protocol (reduced induction and nine blocks) were one of seven patients treated with chemotherapy only and none of two who were transplanted.

Antineoplastic Combined Chemotherapy Protocols↗

Both carboxy-terminus NES motif and mutated tryptophan(s) are crucial for aberrant nuclear export of nucleophosmin leukemic mutants in NPMc+ AML.

We recently identified aberrant cytoplasmic expression of nucleophosmin (NPM) as the immunohistochemical marker of a large subgroup of acute myeloid leukemia (AML) (about one-third of adult AML) that is characterized by normal karyotype and mutations occurring at the exon-12 of the NPM gene. In this paper, we have elucidated the molecular mechanism underlying the abnormal cytoplasmic localization of NPM. All 29 AML-associated mutated NPM alleles so far identified encode abnormal proteins which have acquired at the C-terminus a nuclear export signal (NES) motif and lost both tryptophan residues 288 and 290 (or only the residue 290) which determine nucleolar localization. We show for the first time that both alterations are crucial for NPM mutant export from nucleus to cytoplasm. In fact, the cytoplasmic accumulation of NPM is blocked by leptomycin-B and ratjadones, specific exportin-1/Crm1-inhibitors, and by reinsertion of tryptophan residues 288 and 290, which respectively relocate NPM mutants in the nucleoplasm and nucleoli. NPM leukemic mutants in turn recruit the wild-type NPM from nucleoli to nucleoplasm and cytoplasm. These findings indicate that potential therapeutic strategies aimed to retarget NPM to its physiological sites will have to overcome 2 obstacles, the new NES motif and the mutated tryptophan(s) at the NPM mutant C-terminus.

Active Transport, Cell Nucleus↗

Aortic arch surgery: thoracoabdominal perfusion during antegrade cerebral perfusion may reduce postoperative morbidity.

BACKGROUND: This study aimed to assess the results of the introduction of thoracoabdominal perfusion (TAP) in the surgical strategy for aortic arch replacement with cerebral protection. METHODS: Two hundred two arch procedures performed with moderate hypothermia (22 degrees to 26 degrees C) and antegrade cerebral perfusion (ACP) were the objects of retrospective investigation. Acute type A dissection was the indication in 164 patients, aortic aneurysm in 38. In 80 patients, during ACP, the thoracoabdominal aorta was perfused either in an antegrade fashion through proximal descending aorta endoluminal cannulation (in 62 dissections), or retrograde through femoral artery cannulation with proximal descending aorta endoluminal occlusion (in 18 aneurysms). Hospital mortality and morbidity rates were compared between the two treatments (group A: ACP only, 122 patients; group B: ACP plus TAP, 80 patients) and the underlying aortic disease (dissection/aneurysm) was stratified. RESULTS: Cerebral perfusion (p = 0.008) and cardiopulmonary bypass times (p = 0.035) were significantly longer in group B. No complication related to the TAP technique was observed in group B. Overall hospital mortality was 12.9%, without significant difference between groups. No differences were found in terms of permanent neurological dysfunction between groups A (9.3%) and B (9.1%; p = 0.58). Group B patients showed lower rates of respiratory failure (18.2% versus 30.5% in group A; p = 0.038), shorter mechanical ventilation times (18.1 +/- 26 hours versus 57.9 +/- 70.1; p < 0.001) and lower incidence of acute renal failure (6.5% versus 18.6%; p = 0.012). Shorter intensive care and hospital stays were observed in group B (p = 0.02). CONCLUSIONS: The adjunction of TAP to ACP was associated with lower rates of end-organ complications, even in more extensive and time-consuming procedures.

Aortic Dissection↗

Characterization of in vitro migratory properties of anti-CD19 chimeric receptor-redirected CIK cells for their potential use in B-ALL immunotherapy.

OBJECTIVE: Cytokine-induced killer (CIK) cells are ex vivo expanded cells enriched in CD3(+)CD56(+) natural killer T (NKT) cells with major histocompatibility-unrestricted cytotoxicity against several tumoral targets, except B-lineage acute lymphoblastic leukemia (B-ALL). We redirected CIK cells cytotoxicity toward B-ALL with a chimeric receptor specific for the CD19 antigen and then explored if modified-CIK cells maintain the same chemotactic properties of freshly isolated NKT cells, whose trafficking machinery reflects their preferential localization into the sites of B-ALL infiltration. MATERIAL AND METHODS: CIK cells were expanded ex vivo for 21 days and analyzed for expression of adhesion molecules and chemokine receptors regulating adhesion and homing toward leukemia-infiltrated tissues. CIK cells were then transduced with the anti-CD19-zeta-internal ribosomal entry site-green fluorescent protein retroviral vector and characterized for their cytotoxicity against B-ALL cells in a (51)Cr-release assay and for their trafficking properties, including chemotactic activity, adhesion and transendothelial migration, and metalloproteases-dependent invasion of Matrigel. RESULTS: Similarly to freshly isolated NKT cells, CD49d and CD11a were highly expressed on CIK cells. Moreover, CIK cells expressed CXCR4, CCR6, and CCR7 (mean expression 72%, 60%, and 32%, respectively), presenting chemotactic activity toward their respective ligands. Anti-CD19 chimeric receptor-modified CIK cells became cytotoxic against B-ALL cells (mean lysis, 60%) and showed, after exposure to a CXCL12 gradient, high capacity to adhere and transmigrate through endothelial cells and to invade Matrigel. CONCLUSION: The potential capacity to localize into leukemia-infiltrated tissues of anti-CD19 chimeric receptor-redirected CIK cells, together with their ability to efficiently kill B-ALL cells, suggests that modified-CIK cells represent a valuable tool for leukemia immunotherapy.

Antigens, CD↗

Monitoring of minimal residual disease in leukemia, advantages and pitfalls.

The term 'minimal residual disease' (MRD) defines the level of disease detectable in patients in clinical remission during therapy, below the detection limit of conventional methods. Very sensitive methods can be used, able to identify one leukemic cell out of 10,000 normal lymphocytes. In vivo measurements of leukemia cytoreduction reflect the combined effect of clinical and biological variables, thus providing direct information on the effectiveness of treatment in each patient. Thus, these methods can potentially be used for tailoring treatment and personalize the cure. Although MRD studies are becoming an integral part of the modern management of patients with leukemia, several parameters are critical for the application and interpretation of MRD studies, including therapeutic context, timing of sampling, target genes and sensitivity of the polymerase chain reaction (PCR) assay, inter-laboratory standardization (particularly relevant in multicenter studies), selection of patients, retrospective or prospective nature of the study. Methodologies and pitfalls as well as results of clinical uses of MRD will be reviewed in this article by selecting significant examples of its clinical impact in the management of patients with leukemia.

Flow Cytometry↗

Diagnosis and monitoring of PML-RARA-positive acute promyelocytic leukemia by qualitative RT-PCR.

The t(15;17) is the diagnostic hallmark of acute promyelocytic leukemia (APL). As a result, the RARA and the promyelocytic leukemia (PML) genes are fused. The use of reverse-transcription polymerase chain reaction (RT-PCR) for the detection of the PML-RARA and RARA-PML fusion genes is the only technique that defines the PML breakpoint type and that allows the definition of a correct strategy for subsequent minimal residual disease (MRD) monitoring. Standardized conditions for RT-PCR analysis of fusion transcripts from chromosome aberrations in acute leukemia, including APL, have recently been reported in the context of the Biomed-1 Concerted Action, and are described in detail in this chapter.

Chromosomes, Human, Pair 15↗

The sensitivity of acute lymphoblastic leukemia cells carrying the t(12;21) translocation to campath-1H-mediated cell lysis.

BACKGROUND AND OBJECTIVES: Campath-1H is used in conditioning regimens and more recently as an anti-leukemic therapy in acute lymphoblastic leukemias (ALL). We therefore investigated CD52 expression and campath-1H-mediated lysis of ALL cells in vitro. DESIGN AND METHODS: Complement-mediated cytotoxicity assays were performed on freshly isolated neoplastic cells and cell lines using human serum. Antibody-dependent cellular cytotoxicity (ADCC) was performed by calcein-AM release assays. RESULTS: CD52 was expressed in four out of eight ALL cell lines studied. Among 61 freshly isolated ALL samples CD52 was expressed at varying levels in 87% of cases. Whereas ADCC was equivalent in different CD52+ lines, complement-dependent cytotoxicity (CDC) was variable. The REH cell line bearing the t(12;21) translocation showed 47-60% lysis when treated with 10 microg/mL campath-1H compared to 0-6% for the other cell lines expressing equivalent amounts of CD52. Furthermore all nine ALL samples with t(12;21) showed very high CDC (mean 97%) compared to the other 24 CD52+cases (mean 24%)(p<0.0001). In t(12;21) samples, efficient CDC was obtained with as little as 1 microg/mL campath-1H. CDC correlated in part with CD52 levels, suggesting that CD52 expression and other yet undefined factors contribute to the particular sensitivity of t(12;21) cells. The resistance of non t(12;21) ALL cases could be overcome to a limited extent by increasing the concentration of campath-1H, blocking the CD55 and CD59 complement inhibitors, and more effectively by combining campath-1H with fludarabine. INTERPRETATION AND CONCLUSIONS: We conclude that most ALL samples express CD52 to a variable level and that campath-1H has cytotoxic activity against CD52+ALL, alone or in combination with cytotoxic drugs.

Adolescent↗

TEL/ARG induces cytoskeletal abnormalities in 293T cells.

We previously identified TEL/ARG as a novel fusion transcript consisting of the oligomerization domain of TEL and the kinase domain of ARG, in a case of acute myeloid leukemia. We report here the existence of an alternatively spliced TEL/ARG transcript lacking part of a F-actin binding domain of ARG, and the phenotype of TEL/ARG expressing 293T cells. In 293T cells, both TEL/ARG forms co-localized with the cellular beta-actin and were associated with a morphologic change of the cells, consisting in cell rounding and detachment from the tissue culture plastic. We identified the Rho inhibitor p190RhoGAP, a critical regulator of cellular adhesion, as a target of the aberrant kinase.

Alternative Splicing↗

Immunogenotype changes prevail in relapses of young children with TEL-AML1-positive acute lymphoblastic leukemia and derive mainly from clonal selection.

PURPOSE: Variations of the immunogenotype and TEL deletions in children with TEL-AML1+ acute lymphoblastic leukemia support the hypothesis that relapses derive from a persistent TEL-AML1+ preleukemic/leukemic clone rather than a resistant leukemia. We aimed at elucidating the relationship between the immunogenotype patterns at diagnosis and relapse as well as their clinical and biological relevance. PATIENTS AND METHODS: Immunoglobulin and T-cell receptor gene rearrangements were analyzed in 41 children with a TEL-AML1+ acute lymphoblastic leukemia and an early (up to 30 months after diagnosis; n = 12) or late (at 30 months or later; n = 29) disease recurrence by a standardized PCR approach. RESULTS: In 68% of the patients (group I), we identified differences in the immunogenotype patterns, whereas no changes were observed in the remaining 32% (group II). The divergence resulted more often from clonal selection than clonal evolution and consisted predominantly of losses (0-6, median 5) and/or gains (0-4, median 1) of rearrangements. The frequency and number of clonal immunoglobulin/T-cell receptor rearrangements in group I was higher at diagnosis (2-13, median 5) than at relapse (2-7, median 4), whereas it was the lowest in group II (1-5, median 3). Although group I children were younger at diagnosis, there was no correlation between particular immunogenotype patterns and remission duration. CONCLUSION: These findings imply that the clonal heterogeneity in younger children most likely reflects an ongoing high recombinatorial activity in the preleukemic/leukemic cells, whereas the more uniform repertoire observed in older children mirrors end-stage rearrangement patterns of selected cell clones that evolved during the prolonged latency period.

Adolescent↗

Nucleophosmin mutations in childhood acute myelogenous leukemia with normal karyotype.

Nucleophosmin (NPM) is a nucleocytoplasmic shuttling protein involved in leukemia-associated chromosomal translocations, and it regulates the alternate reading frame (ARF)-p53 tumor-suppressor pathway. Recently, it has been demonstrated that mutations of the NPM1 gene alter the protein at its C-terminal, causing its cytoplasmic localization. Cytoplasmic NPM was detected in 35% of adult patients with primary non-French-American-British (FAB) classification M3 acute myeloid leukemia (AML), associated mainly with normal karyotype. We evaluated the prevalence of the NPM1 gene mutation in non-M3 childhood AML patients enrolled in the ongoing Associazione Italiana di Ematologia e Oncologia Pediatrica (AIEOP-AML02) protocol in Italy. NPM1 mutations were found in 7 (6.5%) of 107 successfully analyzed patients. NPM1-mutated patients carried a normal karyotype (7/26, 27.1%) and were older in age. Thus, the NPM1 mutation is a frequent abnormality in AML patients without known genetic marker; the mutation may represent a new target to monitor minimal residual disease in AML and a potential candidate for alternative and targeted treatments.

Adolescent↗

A wide role for NOTCH1 signaling in acute leukemia.

NOTCH1 is involved in the pathogenesis of T-acute lymphoblastic leukemia (T-ALL) carrying the very rare translocation t(7;9)(q34;q34.3). We analyzed the expression of genes belonging to NOTCH pathway, in acute leukemia primary samples and lymphoblastoid cell lines. NOTCH1 pathway activation represents a common feature of T-ALL when compared to acute myelogenous leukemia (AML) and B-cell precursor acute lymphoblastic leukemia. The contemporary expression of NOTCH1 and its ligands on cell surface contributes to high levels of pathway activity. AML primary samples show high levels of JAGGED1 expression despite the low NOTCH1 pathway activation, consistent with an autonomous JAGGED1 signaling in myeloid leukemogenesis.

Burkitt Lymphoma↗

GIMEMA-AIEOPAIDA protocol for the treatment of newly diagnosed acute promyelocytic leukemia (APL) in children.

The role of all-trans retinoic acid (ATRA) in pediatric acute promyelocytic leukemia (APL) is the topic of several ongoing studies. The results of the Italian pediatric experience with the multicentric Gruppo Italiano per le Malattie Ematologiche dell'Adulto (GIMEMA)-Italian Pediatric Hematology and Oncology Group (AIEOP) "AIDA" (ATRA and idarubicin) trial are presented. Of the 983 patients with APL enrolled in this protocol between January 1993 and June 2000, 124 (13%) had younger than 18 years. Treatment consisted of ATRA and idarubicin induction followed by 3 polychemotherapy consolidation courses. Molecular response by reverse transcriptase-polymerase chain reaction (RT-PCR) was assessed after consolidation and patients who were PCR- were randomized for different maintenances. One hundred and seven children were eligible and evaluable for induction: 103 (96%) achieved a hematologically complete remission. Overt ATRA syndrome was observed in 2 patients and pseudotumor cerebri was observed in 10 patients. Ninety-four patients were evaluable for RT-PCR analysis at the end of consolidation: 91 (97%) proved PCR+ and 3 PCR-. The overall survival and event-free survival (EFS) are 89% (95% confidence interval [c.i.]: 83%-95%) and 76% (c.i.: 65%-85%), respectively, at more than 10 years. A white blood cell (WBC) count at diagnosis of greater than 10 x 10(9)/L had a significant impact on EFS (59% vs 83% at 10 years). These results highlight the efficacy and feasibility of the AIDA protocol in the pediatric APL population.

Adolescent↗

CD34+ stem cell recovery after positive selection of "overloaded" immunomagnetic columns.

Techniques for CD34+ cell enrichment of hematopoietic progenitor cells in grafts destined for transplantation of certain patients with the aim of lowering the amount of infused T lymphocytes and subsequently decreasing the risk of graft versus host disease (GVHD) have been well developed. Adaptations of these techniques should be useful for isolation of other phenotypically defined stem cells. However, a major limitation of techniques now available consists of the number of total nucleated cells or phenotypically defined stem cells that can be processed in a single procedure. Here, we show that recommended levels are much lower than the levels of cells that can be effectively processed by immunomagnetic sorting. Twenty-nine procedures were performed using the Clini- MACS (Miltenyi Biotec) device, which is recommended for processing <6x10(10 )total nucleated cells or <6x10(8) CD34+ cells. Procedures were divided in groups according to their total cellular or CD34+ cell content. We achieved a median CD34+ cell recovery of 68.60% with a median purity of 98.56%, regardless of the loading dose when samples possessing 2-10x10(10) total nucleated cells and 0.8-12.5x10(8) CD34+ cells were applied to a single column. The median levels of CD3+ cells and CD19+ cells in the final product were depleted by 5 logs and 3.8 logs, respectively; no differences were noted when the initial loading dose was increased. Moreover, we found no correlation between the total number nucleated or CD34+ cells loaded and the resultant CD34+ cell recovery. In conclusion, levels of both total nucleated cells and CD34+ can be processed in a single procedure with satisfactory and similar CD34+ cell recovery when these columns are loaded with up to two times as many cells as recommended.

Antigens, CD34↗

Somatic PTPN11 mutations in childhood acute myeloid leukaemia.

Somatic mutations in PTPN11, the gene encoding the transducer SHP-2, have emerged as a novel class of lesions that upregulate RAS signalling and contribute to leukaemogenesis. In a recent study of 69 children and adolescents with de novo acute myeloid leukaemia (AML), we documented a non-random distribution of PTPN11 mutations among French-American-British (FAB) subtypes. Lesions were restricted to FAB-M5 cases, where they were relatively common (four of 12 cases). Here, we report on the results of a molecular screening performed on 181 additional unselected patients, enrolled in participating institutions of the Associazione Italiana Ematologia Oncologia Pediatrica-AML Study Group, to provide a more accurate picture of the prevalence, spectrum and distribution of PTPN11 mutations in childhood AML and to investigate their clinical relevance. We concluded that PTPN11 defects do not represent a frequent event in this heterogeneous group of malignancies (4.4%), although they recur in a considerable percentage of patients with FAB-M5 (18%). PTPN11 lesions rarely occur in other subtypes. Within the FAB-M5 group no clear association of PTPN11 mutations with any clinical variable was evident. Nearly two third of the patients with this subtype were found to harbour an activating mutation in PTPN11, NRAS, KRAS2 or FLT3.

Acute Disease↗