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Alessandro Isidori

Publications and source records attributed to Alessandro Isidori.

12 recordsLinked to original sources

Mini-ICE effectively mobilises peripheral blood stem cells after fludarabine-based regimens in acute myeloid leukaemia.

Fludarabine-based cycles severely impair mobilisation and collection of peripheral blood stem cells (PBSC) in acute myeloid leukaemia (AML). In an effort of reversing this side-effect, we studied the action on mobilisation and collection of PBSC of a low-dose regimen: 5-d Mini-ICE (oral idarubicin and etoposide; subcutaneous cytosine arabinoside) administered after fludarabine-based regimens in seven adult AML patients. Leukapheresis were started when the CD34+ cell count was more than 10/microL. The median number of harvested CD34+ cells was 8.1 x 10(6)/kg (range 3.08-15.2). All the patients were successfully submitted to PBSC transplantation. Median times to neutrophil and platelet recovery were rapid with a normal transfusional support. We suggest that the Mini-ICE programme is feasible, well tolerated and effective in terms of PBSC mobilisation and collection in low-yield AML patients previously treated with fludarabine. It is well known that a negative effect on stem cell mobilisation and harvest is observed not only after fludarabine administration in AML or low-grade lymphomas, but also after cycles based on different agents, such as thalidomide in multiple myeloma. This preliminary experience, if confirmed on larger series and/or other haematological malignancies, could open new opportunities to perform autologous PBSC transplantation in heavily pretreated cases, allowing a full source of therapeutic options before the start of the mobilisation process.

Adult↗

Autologous stem cell transplantation for acute myeloid leukemia patients in first complete remission: a 10-year follow-up study of 118 patients.

We assessed the impact of unpurged autologous stem cell transplantation (ASCT) on long-term outcome of 118 patients with acute myeloid leukemia (AML) in first complete remission (CR1). With a median follow-up of 95 months, the 10-year overall survival, disease-free survival and relapse risk are, respectively, 54%, 50% and 46%. De novo AML, the presence of a favorable karyotype and intensification of treatment prior to ASCT are independently associated with clinical outcome by multivariate analysis. Thus, a remarkable proportion of AML patients in CR1 can be cured with high-dose therapy and ASCT.

Acute Disease↗

Phase II study of a single pegfilgrastim injection as an adjunct to chemotherapy to mobilize stem cells into the peripheral blood of pretreated lymphoma patients.

BACKGROUND AND OBJECTIVES: The aim of this study was to evaluate the efficacy of pegfilgrastim, in combination with salvage chemotherapy, in mobilizing CD34(+) stem cells into the peripheral blood of pretreated lymphoma patients. DESIGN AND METHODS: This was an open-label phase II study including 25 pretreated patients (Hodgkin's disease=4; aggressive non-Hodgkin's lymphoma=21). The primary end-point of the study was the successful mobilization of a target cell dose of 2x10(6) CD34(+) cells/kg in lymphoma patients receiving ifosfamide, epirubicin and etoposide (IEV) chemotherapy and a fixed dose (6 mg) of pegfilgrastim given as single subcutaneous injection. RESULTS: Following chemotherapy, all patients had grade 4 neutropenia that lasted a median of 1.5 days (1-3). Pegfilgrastim treatment was well tolerated and only 2/25 patients required pain-control medication. CD34+ cells were mobilized in all patients. The median (range) peak value of peripheral blood CD34+ cells after IEV chemotherapy and pegfilgrastim was 141x10(6)/L (12.8-386) and occurred almost invariably on day +14 (13-16). Twenty-three of the 25 patients underwent a single standard volume leukapheresis to collect a median of 8.7x10(6) CD34(+) cells/kg (1.78-17.3). Twenty four/25 patients (96%) reached the target cell dose of 2x10(6) CD34(+) cells/kg. High concentrations of circulating CD34+ cells (> 50x10(6)/L) were observed for several days after the achievement of the peak value. All the study patients were transplanted with their pegfilgrastim-mobilized CD34(+) cells and showed a rapid and sustained engraftment after high-dose chemotherapy. INTERPRETATION AND CONCLUSIONS: Our results show that pegfilgrastim as an adjunct to chemotherapy is a predictable and highly effective mobilization regimen in pretreated lymphoma patients.

Adult↗

No preferential sensitivity of t(8;21) acute myeloid leukemias to cytosine arabinoside in vitro: is intensity of therapy or high dose Ara-C crucial for response?

Acute myeloid leukemia (AML) patients with core binding factor abnormalities [inv(16) or t(8;21)] have a relatively good prognosis, especially patients with inv(16) when treated with high-dose cytosine arabinoside (AraC) containing regimens, whereas in the case of t(8;21) evidences in favor of such regimen are contrasting. We previously demonstrated that blast cells from inv(16)-positive AML patients are characterized by an increased sensitivity to AraC with higher incorporation of 3H AraC into DNA and the increase of induced apoptosis in vitro. In the present study we tested the sensitivity of leukemic cells from 15 t(8;21)-positive AML patients to AraC and compared it with the results obtained from cells of 74 patients with inv(16), "intermediate" or "unfavourable" karyotype at diagnosis (for a total of 89 patients). The incorporation of 3H AraC into DNA in cells with t(8;21) was significantly lower than in cells with inv(16) (P = 0.02) or normal karyotype (P = 0.04). Interestingly, the incorporation of the drug into DNA in t(8;21) cells was similar to those with "unfavourable" karyotype. Furthermore, AraC induced apoptosis in t(8;21)-positive AML cells was not increased. These data suggest that the mechanism of response to chemotherapy for t(8;21)-positive cells is probably different then in AML cells with inv(16), underlining the possible importance for patients carrying the t(8;21) of repeated high-dose regimens and not necessarily of high-dose AraC based ones.

Acute Disease↗

Generation of dendritic cells from positively selected CD14+ monocytes for anti-tumor immunotherapy.

Peripheral blood CD14+ monocytes from multiple myeloma (MM) patients can be induced to differentiate into fully functional, mature, CD83+ dendritic cells (DCs) which are highly efficient in priming autologous T lymphocytes in response to the patient-specific tumor idiotype (Id). We have recently scaled up our manufacturing protocol for application in a phase I-II clinical trial of anti-Id vaccination with DCs in MM patients. Elegible patients received a series of by-monthly immunizations consisting of three subcutaneous and two intravenous injections of Id-keyhole limpet hemocyanin (KLH)-pulsed DCs (5 x -, 10 x -, 50 x 10(6) cells and 10 x -, 50 x 10(6) cells, respectively). To generate DCs, monocytes were labeled with clinical grade anti-CD14 conjugates and positively selected by immunomagnetic separation. Cells were then cultured, according to Good Manufacturing Practice guidelines, in FCS-free medium in cell culture bags, and differentiated to DCs with GM-CSF plus IL-4 followed by TNF-alpha or, more recently, by a cocktail of IL-1beta, IL-6, TNF-alpha and prostaglandin-E2. Before maturation, Mo-DCs were pulsed with the autologous Id as whole protein or Id (VDJ)-derived HLA class I restricted peptides. Ten MM patients, who had been treated with two courses of high-dose chemotherapy with peripheral blood stem cell support, entered into the clinical study. CD14+ monocytes were enriched from 16.1+/-5.7% to 95.5+/-3.2% (recovery 67.9+/-15%, viability > 97%). After cell culture, phenotypic analysis showed that 89.6+/-6.6% of the cells were mature DCs. We obtained 2.89+/-1 x 10(8) DCs/leukapheresis which represented 24.5+/-9% of the initial number of CD14+ cells. Notably, the cytokine cocktail induced a significantly higher percentage and yield (31+/-10.9 of initial CD14+ cells) of DCs than TNF-alpha alone, secretion of larger amounts of IL-12, potent stimulatory activity on allogeneic and autologous T cells. Storage in liquid nitrogen did not modify the phenotype or functional characteristics of pre-loaded DCs. The recovery of thawed, viable DCs, was 78+/-10%. Thus, positive selection of CD14+ monocytes allows the generation of a uniform population of mature pre-loaded DCs which can be cryopreserved with no effects on phenotype and function and are suitable for clinical trials. Based on these results, a DCs-based phase II trial of anti-Id vaccination with VDJ-derived HLA class I-restricted peptides and KLH is underway for lymphoma patients.

Cancer Vaccines↗

Low dose Ara-C for myelodysplastic syndromes: is it still a current therapy?

The myelodysplastic syndromes (MDS) are characterized by hemopoietic insufficiency associated with severe cytopenias, leading to serious morbidity, and acute leukemia development. MDS typically occur in elderly people, with a median age at diagnosis ranging between 60 and 75 years. The patients' prognosis, estimated according to the International Prognostic Scoring System, age and performance status should be considered before choosing among the various treatment options. A therapeutic dilemma exists in MDS, due to the multifactorial pathogenetic features of the disease, the heterogeneous stage and the elderly age of patients at diagnosis. This is underlined by the absence of a Food and Drug Administration-approved agent with an indication for this disease. The therapeutic end-points vary from symptom management (using low-intensity treatment with biological targeted agents, or only supportive therapy), to attempts to change the natural history of the disease (generally using high intensity treatment, including intensive chemotherapy and hemopoietic stem cell transplantation). The main goal of low-intensity therapies is generally to induce hematological improvements and is mainly used for low-risk disease. On the other hand, high-intensity therapies generally aims to alter the disease's natural history (improving survival, and decrease progression to acute myeloid leukemia), and are mainly used for high-risk disease. This review will focus on the current role of low-dose Ara-C therapy in the management of MDS. In fact, there is evidence that low-dose chemotherapy with Ara-C can induce responses in patients with MDS. In particular, the use in combinations with growth factors, such as G-CSF or M-CSF, looks promising, suggesting further investigations about this old new therapeutic tool.

Antimetabolites, Antineoplastic↗

Gemtuzumab ozogamicin for relapsed and refractory acute myeloid leukemia and myeloid sarcomas.

Antibody-targeted chemotherapy is a promising approach in patients with hematological malignancies. In particular, gemtuzumab ozogamicin (GO, formerly CMA-676), an anti-CD33 antibody linked to calicheamicin, has been approved for the treatment of elderly patients with acute myeloid leukemia (AML) in relapse. Nevertheless, no data are until now available concerning the possible efficacy of GO for myeloid sarcomas (MS). We treated with GO 24 AML patients, in 5 cases presenting with myeloid sarcomas of the skin or bones. The overall complete response rate was 21%. The median duration of response was 6 months. Four out of the 5 patients with myeloid sarcoma showed a regression of the masses, in two cases also obtaining a clearance of marrow blasts. The most common adverse events included thrombocytopenia, neutropenia, infections, elevation of bilirubin and hepatic transaminases. Notably, severe bleeding occurred in 5 cases (21%). VOD was documented in 1 case. We conclude that GO is effective as a single agent in AML and myeloid sarcomas. Further data are required to clarify the possible correlation between GO administration and occurrence of bleeding.

Adult↗

Autologous transplantation of granulocyte colony-stimulating factor-primed bone marrow is effective in supporting myeloablative chemotherapy in patients with hematologic malignancies and poor peripheral blood stem cell mobilization.

We assessed the hematopoietic recovery and transplantation-related mortality (TRM) of patients who had failed peripheral blood stem cell mobilization and subsequently received high-dose chemotherapy supported by granulocyte colony-stimulating factor (G-CSF)-primed bone marrow (BM). Studied were 86 heavily pretreated consecutive patients with acute leukemia (n = 21), refractory/relapsed non-Hodgkin lymphoma (n = 41) and Hodgkin disease (n = 17), and multiple myeloma (n = 7). There were 78 patients who showed insufficient mobilization of CD34+ cells (< 10 cells/microL), whereas 8 patients collected less than 1 x 106 CD34+ cells/kg. BM was primed in vivo for 3 days with 15 to 16 microg/kg of subcutaneous G-CSF. Median numbers of nucleated cells, colony-forming unit cells (CFU-Cs), and CD34+ cells per kilogram harvested were 3.5 x 10(8), 3.72 x 10(4), and 0.82 x 10(6), respectively. Following myeloablative chemotherapy, median times to achieve a granulocyte count higher than 0.5 x 10(9)/L and an unsupported platelet count higher than 20 and 50 x 10(9)/L were 13 (range, 8-24), 15 (range, 12-75), and 22 (range, 12-180) days, respectively, for lymphoma/myeloma patients and 23 (range, 13-53), 52 (range, 40-120), and 90 (range, 46-207) days, respectively, for leukemia patients. Median times to hospital discharge after transplantation were 17 (range, 12-40) and 27 (range, 14-39) days for lymphoma/myeloma and acute leukemia patients, respectively. TRM was 4.6%, whereas 15 patients died of disease. G-CSF-primed BM induces effective multilineage hematopoietic recovery after high-dose chemotherapy and can be safely used in patients with poor stem cell mobilization.

Adolescent↗

Association of 3q21q26 syndrome with different RPN1/EVI1 fusion transcripts.

BACKGROUND AND OBJECTIVES: Patients with acute myeloblastic leukemia (AML) with features of myelodysplastic syndrome and abnormalities of megakaryocytopoiesis often have cytogenetic aberrations of 3q21 and 3q26 bands involving the paracentric inversion [inv(3) (q21q26)] or a reciprocal translocation [t(3;3) (q21;q26)]. These abnormalities frequently cause inappropriate expression of the EVI1 gene located at 3q26. Other genes that have been implicated at the rearrangement breakpoint are GR6 and RPN1 (both on 3q21). The aim of this study was to investigate the expression of the EVI1 fusion genes in AML patients with 3q21q26 syndrome. DESIGN AND METHODS: We used reverse transcription polymerase chain reaction to evaluate the expression of EVI1 and GR6, and particularly of the fusion genes RPN1-EVI1 and GR6-EVI1 in 9 AML patients with either inv(3)(q21q26) (7 cases) or t(3;3)(q21;q26) (2 cases). RESULTS: EVI1 and GR6 were always expressed, as was RPN1-EVI1; GR6-EVI1 was absent. In 8/9 patients, the part of EVI1 retained in RPN1-DEVI1 contained blocks B and C of the PR domain commonly found in the MDS1-EVI1 gene. In the remaining patient [with inv(3) (q21q26)], only block C was retained: we named this variant fusion gene RPN1-DEVI1. This patient lacked the micromegakaryocytopoiesis frequently found in 3q21q26 syndrome. INTERPRETATION AND CONCLUSIONS: These findings support the hypothesis that EVI1 activation plays a dominant role in the pathogenesis of the 3q21q26 syndrome. EVI1 expression might occur either as a consequence of rearrangements leading to the formation of different fusion transcripts, such as RPN1-EVI1 and RPN1-DEVI1 or following disruption of the PR activation domain of the MDS1-EVI1 gene.

Adult↗

Real-time quantitation of minimal residual disease in inv(16)-positive acute myeloid leukemia may indicate risk for clinical relapse and may identify patients in a curable state.

The inv(16) cytogenetic subtype of acute myeloid leukemia (AML) has a relatively good prognosis. Many patients achieve complete remission (CR). The prognostic uncertainty of negative qualitative reverse transcription-polymerase chain reaction (RT-PCR) assays suggests the need to identify prognostically significant critical thresholds by real-time RT-PCR. A reliable and sensitive (10(-5)) real-time RT-PCR assay was set up for the evaluation of relevant CBFbeta-MYH11/ABL transcript ratios and was applied to the 21 patients with inv(16) AML routinely referred for cytogenetic and molecular monitoring in Seràgnoli Institute (Bologna, Italy) since 1990. Among the 18 patients who underwent ablative chemotherapy, all achieved CR with a 3-year disease-free survival probability of 63% (95% CI, 40%-87%) and no recorded events after 26 months. Five patients had relapses; 2 died of disease and 3 entered second CR. Analysis of the 125 bone marrow (or peripheral blood) samples studied by real-time RT-PCR showed that transcript ratios of samples taken during CR at any time before a relapse were always greater than 0.12%, whereas those of samples taken during first or second CR from patients who did not subsequently have relapses were always less than 0.25%. This suggests that transcript ratios greater than 0.25% may correspond to high risk for relapse, whereas ratios below 0.12% might indicate the patient is in a curable state. If confirmed, such thresholds could open the way to a new phase in post-CR therapeutic decision making for patients with inv(16) AML.

Adolescent↗