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Biomedical subjects

G Leone

Publications and source records attributed to G Leone.

At least 91 records · Page 5Linked to original sources

Therapy related leukemias: susceptibility, prevention and treatment.

Acute leukemia is the most frequent therapy-related malignancy. Together with the increasing use of chemo- and radiotherapy, individual predisposing factors play a key role. Most of secondary leukemias can be divided in two well-defined groups: those secondary to the use of alkylating agents and those associated to topoisomerase inhibitors. Leukemias induced by alkylating agents usually follow a long period of latency from the primary tumour and present as myelodysplasia with unbalanced chromosomal aberrations. These frequently include deletions of chromosome 13 and loss of the entire or of part of chomosomes 5 or 7. The loss of the coding regions for tumor suppressor genes from hematopoietic progenitor cells is a particularly unfavourable event, since the remaining allele becomes susceptible to inactivating mutations leading to the leukemic transformation. The tumorigenic action of topoisomerase inhibitors is on the other hand due to the formation of multiple DNA strand breaks, resolved by chromosomal translocations. Among these, chromosome 11, band q23, where the myeloid-lymphoid leukemia (MLL) gene is located, is often involved. Frequent partners are chromosomes 9, 19 and 4 in the t(9;11), t(19;11) and t(4;11) translocations. Younger age, a mean period of latency of 2 years and monocytic subtypes are characteristic features of this type of leukemia. Among patients at risk for secondary leukemia, those with Hodgkin's disease are the most extensively studied, with the major impact of alkylating agents included in the chemotherapy schedule. The same is true for non-Hodgkin's lymphoma, while in multiple myeloma and acute lymphoblastic leukemia determinants are the dose of melphalan and of epypodophyllotoxin, respectively. Patients with breast, ovarian and testicular neoplasms are also at risk, in particular if trated with the association of alkylating agents and topoisomerase II inhibitors. According to the EBMT registry, in patients with lymphoma treated with high-dose therapy and autologous stem cell transplantation the cumulative risk of inducing leukemia at 5 years is 2.6%. Among treatment options, supportive therapy is indicated in older patients, while allogeneic stem cell transplantation, related or matched-unrelated, is feasible in younger patients. These data indicate the need for the identification of predisposing factors for secondary leukemia. In particular, frequent follow-up of patients at high-risk should be performed and any peripheral blood cytopenia should be considered suspicious. Whenever possible, the exclusion of drugs known to be leukemogenic from the treatment schedules should be considered, especially in young patients.

Acute Disease↗

A new blood donation strategy: automated blood collection (ABC).

BACKGROUND: The aim of this study was to find out if Cobe Trima, a blood cell separator that automatically collects RBC, PLT and plasma, is adequate for routine multiple blood donation by apheresis. MATERIALS AND METHODS: Eighty donors underwent multiple blood component donations by Cobe Trima. Blood counts were determined on the apheresis products to analyze their quality. RESULTS: Eighty procedures were performed collecting 193 products. The average platelet yield was 3.5x10(11) (+/- 0.46) in the 54 single product (SP) procedures and 7x10(11) (+/- 0.88) in the 26 double product (DP) procedures. WBC contamination of the PLT products was 1.7 x 10(5) (1.2-4.2). The mean platelet efficiency was 60 +/- 8.35% for SP and 66 +/- 9.59% for DP. The hemoglobin (Hb) content per unit was 46.21 g (+/- 7.84) in 8 DP and 40.82 g (+/- 6.41) in 34 SP procedures. CONCLUSION: The production of standardized blood components with good PLT yield and low WBC contamination plus high efficiency makes Trima one of the best blood cell separators of the new generation.

Adolescent↗

The association of topotecan and cytarabine in the treatment of secondary or relapsed acute myeloid leukemia.

A topotecan/cytarabine combination has been reported to be effective in patients with myelodysplastic syndromes. We report our experience with this regimen in 12 patients with relapsed or secondary acute myeloid leukemia. Extra-hematologic toxicity was low, but the response to the treatment was very poor. In our opinion, this association is not a treatment option for these patients, but the addition of other agents could improve this results.

Acute Disease↗

Blood cells diseases and thrombosis.

BACKGROUND AND OBJECTIVES: In recent years knowledge about thrombophilia and the mechanisms underlying the pathogenesis of thrombosis has increased greatly. Nevertheless the role of leukocytes and red cells in thrombogenesis is not well established and is probably underestimated. EVIDENCE AND INFORMATION SOURCES: The contribution of leukocytes and red cells to thrombogenesis has been reviewed. Moreover, the prevalence of thrombosis as a complication of hematologic diseases has been examined. The authors are involved in the investigation and management of acute and chronic hematologic diseases as well as in investigation of thrombophilia. Pub-Med was employed as a source of information. STATE OF THE ART: Thrombosis is a major problem in myeloproliferative disorders such as polycythemia vera and essential thrombocythemia. A clonal involvement of megakaryocytopoiesis resulting in elevated levels of platelet-specific proteins, increased thromboxane generation, and expression of activation-dependent epitopes on the platelet surface is regarded as the main origin of thromboembolism; nevertheless, activation of leukocytes and the consequent release of elastase and alkaline phosphatase could play an important role, determining endothelial damage. Thrombosis is a relevant problem in some hemolytic anemias such as paroxysmal nocturnal hemoglobinuria and drepanocytosis. Thrombotic events in hemolytic anemias with membrane defects have been attributed, at least in part, to hypercoagulability related to the exposure of phosphatidylserine of red cell membrane activating plasma prothrombinase and supplying a procoagulant phospholipid anionic surface. A moderate but well-established risk for thrombosis occurs in acute promyelocytic leukemia and acute lymphoblastic leukemia; this risk could be increased by antiblastic drugs affecting the procoagulant activity of cells and the production of coagulation inhibitors from the liver. PERSPECTIVES: Thrombotic complications during hematologic diseases other than thrombophilia due to plasma alteration could be decreased not only by anticoagulant and antiaggregating agents but also by drugs inhibiting activation of leukocytes and red cells and their interaction with platelets.

Animals↗

Modulation of bcl-2 and p27 in human primitive proliferating hematopoietic progenitors by autocrine TGF-beta1 is a cell cycle-independent effect and influences their hematopoietic potential.

Primitive, proliferating hematopoietic progenitors (defined as cytokine low-responding primitive progenitors; CLRPP), isolated from human CD34+ cells, expressed endoglin (CD105) and produced transforming growth factor-beta1 (TGF-beta1). Culture of CLRPP in serum-free conditions with anti-TGF-beta1 monoclonal antibody produced a substantial decrease in bcl-2 protein/RNA levels and a significant reduction of cloning and long-term culture-initiating cell (LTC-IC) activities. GATA-1 and PU.1 RNA levels were significantly up-regulated in anti-TGF-beta1-treated CLRPP, which generated an increased number of cells expressing CD15/CD11b/glycophorin-A. The described effects of TGF-beta1 neutralization were observed in the absence of any relevant effect on cell cycle; number of cell divisions; p53, c-myc, and p21 RNA levels; bcl-xL and bax protein levels; and c-myc/p16/p21/p107/Rb cell cycle-related protein levels. A relevant increase in p27 protein levels was observed in anti-TGF-beta1-treated CLRPP, suggesting a role for p27 in the regulation of the hematopoietic potential. The present study on human progenitors and previously reported data on TGF-beta1 knockout mice suggest that, at the autocrine level, the cell cycle inhibitor TGF-beta1 plays an important role in regulating the survival and differentiation of primitive proliferating hematopoietic progenitors by cell cycle-independent mechanisms.

Animals↗

Expression of cyclin-dependent kinase inhibitor p15(INK4B) during normal and leukemic myeloid differentiation.

OBJECTIVE: Expression of the cyclin-dependent kinase inhibitor p15(INK4B) frequently is altered in myeloid malignancies. We previously demonstrated that p15(INK4B) is expressed in normal myeloid cells. The aim of this study was to investigate whether p15(INK4B) expression is restricted to the granulomonocytic lineage and to evaluate its modulation during normal and leukemic myeloid differentiation. MATERIALS AND METHODS: Normal CD34(+) cells were cultured in serum-free media to obtain granulomonocytic, erythroid, or megakaryocytic unilineage differentiation. NB4 promyelocytic cell line and fresh leukemic blasts from seven patients with acute promyelocytic leukemia were cultured with all-trans retinoic acid. At different times of culture, cell samples were collected to evaluate p15(INK4B) by semiquantitative reverse transcriptase polymerase chain reaction. RESULTS: p15(INK4B) mRNA was found during granulomonocytic and megakaryocytic, but not erythroid, differentiation. In the granulomonocytic lineage, p15(INK4B) was detectable when the majority of cells were at the promyelocytic stage and increased progressively in more mature elements. In the megakaryocytic lineage, p15(INK4B) was expressed in the early phase of differentiation, before megakaryoblasts had appeared, and was mantained throughout the time of culture. NB4 cell line and five of seven leukemic samples displayed undetectable or very low level of p15(INK4B) that rapidly increased during retinoic acid-induced differentiation. Two leukemic samples (both collected from two patients developing all-trans retinoic acid syndrome) showed high basal levels of p15(INK4B), which was not modified by retinoic acid treatment. CONCLUSIONS: p15(INK4B) upregulation occurs specifically during normal granulomonocytic and megakaryocytic commitment. In acute promyelocytic leukemic blasts, p15(INK4B), which is detectable at a very low level, is promptly increased by retinoic acid. In contrast, two acute promyelocytic leukemia samples obtained from patients who developed all-trans retinoic acid syndrome showed high basal levels of p15(INK4B) that did not increase further during all-trans retinoic acid-induced differentiation.

Antigens, CD34↗

Granulocyte colony-stimulating factor perturbs lymphocyte mitochondrial function and inhibits cell cycle progression.

Sera from healthy subjects receiving recombinant human granulocyte colony-stimulating factor (rHuG-CSF) to mobilize CD34(+) peripheral blood progenitors (PBPC) have been recently shown to induce unresponsiveness of allogeneic lymphocytes to mitogenic challenge. In the present investigation, the effects of rHuG-CSF on the early stages of lymphocyte activation-induced apoptosis and on lymphocyte cell cycle entry were evaluated. Sera were obtained from HLA-identical donors receiving rHuG-CSF to mobilize CD34(+) PBPC for allogeneic transplantation. Normal peripheral blood mononuclear cells (PBMC) were challenged with phytohemagglutinin (PHA) in the presence of serum collected before (preG) or after rHuG-CSF administration (postG). Mitochondrial function, that is, incorporation of 3,3'-dihexyloxacarbocyanine iodide [DiOC(6)(3)] and generation of reactive oxygen species (ROS) as well as expression of c-Myc and Bcl-2 family members (Bcl-2, Bcl-X(L), Bax) were evaluated by multiparameter flow cytometry. The activation-induced fragmentation of genomic DNA was detected by highly sensitive LM-PCR assay.CD4(+)DiOC(6)(3)(low) and CD8(+)DiOC(6)(3)(low) T lymphocytes increased and reached 32% (range 27%-38%) and 20% (range 15%-23%) of circulating T cells, respectively, on day 4 of rHuG-CSF administration. Hypergeneration of ROS could be demonstrated in 65% (range 58%-82%) of CD4(+) T lymphocytes and in 0.4% (range 0.2%-0. 8%) of circulating CD8(+) T cells. rHuG-CSF determined no alteration of mitochondrial function if added to allogeneic PBMC in vitro, thus suggesting indirect effects mediated by soluble factors; on the contrary, when PBMC were challenged with PHA in the presence of postG serum, both perturbation of mitochondrial transmembrane potential (Deltapsi(m)) and hypergeneration of ROS were induced, and lymphocytes were predominantly arrested in a G(0) -like phase of the cell cycle and displayed genomic DNA fragmentation. Interestingly, the preincubation of PBMC with a blocking antibody directed against CD95 abrogated the perturbation of lymphocyte Deltapsi(m), suggesting that the CD95 signaling pathway might play a role in the induction of apoptosis after PHA stimulation in the presence of postG serum. Moreover, Bax protein was overexpressed in postG (median fluorescence intensity = 180, range 168-186) compared with preG cultures (median fluorescence intensity = 75, range 68-80; p < 0.01), while no differences in Bcl-2, Bcl-X(L), and c-Myc staining intensity were observed. Our findings demonstrate a humoral-mediated rHuG-CSF-induced dissipation of lymphocyte mitochondrial Deltapsi(m); these effects might be mediated by Bax overexpression, with imbalance between apoptosis-promoting and apoptosis-inhibiting Bcl-2 family members and with subsequent induction of mitochondrial permeability transition. Whether immune dysfunction will favorably impact on incidence and severity of acute graft vs host disease after allogeneic PBPC transplantation remains to be determined.

Adult↗

MiCMA: an alternative treatment for refractory or recurrent Hodgkin's disease.

BACKGROUND: We determined the response rate to MiCMA (mitoxantrone, carboplatinum, methylprednisolone and aracytin) in a group of 29 patients with Hodgkin's disease (HD) and poor prognostic factors either resistant to first line or relapsing after conventional chemotherapy and subsequently evaluated the role of autologous stem-cell transplantation (ASCT) in these patients after MiCMA. PATIENTS AND METHODS: The treatment was intended as a brief tumor debulking program before ASCT. Twenty-nine patients with primary refractory HD or relapsed HD were submitted to two courses of MiCMA (mitoxantrone 10 mg/m2 day 1; carboplatinum 100 mg/m2 days 1-4; aracytin 2 g/m2 day 5; methylprednisolone 500 mg/m2 days 1-5) and subsequently evaluated for response. Those with responding or stable disease, received one or two other courses of MiCMA followed by ASCT. RESULTS: There were 10 complete responses (34% CR), 15 partial responses (52% PR) and 4 treatment failures with disease progression (14% PD). In total there were 25 evaluable responses out of 29 patients (86% CR + PR). Myelosuppression was the main toxicity of this treatment. At this time 20 patients (69%) are alive with a median follow-up of 26.5 months (7-100), 13 patients in CR (45%), 8 patients died, 7 of them from disease progression and one due to multi-organ failure, one patient is lost to follow-up. All but one of the patients who achieved CR after MiCMA are alive. Only the number of extranodal sites was found to predict a poor response to MiCMA. CONCLUSIONS: A short pre-transplantation treatment with MiCMA is an effective tumor debulking approach in patients with refractory or relapsed HD.

Adolescent↗

Acute leukemia following a previous malignancy: do acute lymphoid leukemia and acute myeloid leukemia have common risk factors?

INTRODUCTION: Within the framework of the GIMEMA Study Group, the characteristics of acute lymphoid leukemia and acute myeloid leukemia occurring in patients who have suffered a previous malignancy were studied. Assessment was also made of the clinical course, laboratory features and overall outcome of these conditions. MATERIALS AND METHODS: A four-year, multi-center retrospective study was conducted to evaluate the effect of treatment for previous hematological malignancy on the development of secondary leukemia. The study collected in the GIMEMA Archive of Adult Acute Leukemia 3934 new cases of acute leukemia (2964 AML, 901 ALL, 60 acute biphenotypic leukemia). Among these cases, data were evaluated from patients with a personal history of a previous malignancy, and included inquiring into demographic data, history of neoplastic diseases in the 1st degree relatives, type and treatment of the previous malignancy, latency until the development of a secondary acute leukemia diagnosis, laboratory features, treatment and outcome at the onset of secondary acute leukemia. RESULTS: Approximately 200 (5.1%) patients presented a previous malignancy. Twenty-one were affected by ALL and 179 by AML. The proportion of patients with secondary AML was higher than that of patients with secondary ALL (179/2964 vs 21/901, O.R. 2.69-95% C.I. 1.66-4.39, P<0.001). The median latency, from the onset of the previous malignancy to the development of secondary ALL was 27 months and to the development of secondary AML was 52 months (P<0.05). Furthermore, of patients who previously received chemotherapy more developed a second AML (66/127 sAML vs 5/21 sALL; O.R. 3.46-95% C.I. 1.10-11.56, P<0.01). CONCLUSION: In most cases, chemotherapy treatment for a previous malignancy can play a role in the development of secondary AML. In almost all cases of secondary ALL, the role of previous drugs does not appear to be relevant. On the basis of our analysis, performed systematically for the first time on a large adult series of acute leukemia, we conclude that in these patients a biological predisposition to cancer may be suspected.

Acute Disease↗

Immune reconstitution after transplantation of autologous peripheral CD34+ cells: analysis of predictive factors and comparison with unselected progenitor transplants.

The recovery of lymphocyte count, CD4+ and CD8+ T-cell subsets, natural killer (NK) cells and CD19+ B-cells was evaluated in a cohort of 15 patients receiving autologous CD34+ peripheral blood progenitor cells (PBPCs; group A) for haematological malignancies and in 20 patients transplanted with autologous unselected PBPCs (group B). Lymphocyte count recovered in both patient cohorts, being significantly lower in group A than in group B 1 (P = 0.008) and 2 months (P = 0.0035) after progenitor cell infusion. The repopulation of CD3+ T-cells occurred more rapidly in group B than in group A (P = 0.034 on week 4); CD19+ B-lymphocytes did not return to reference ranges in either group of patients. The count of CD4+ T-lymphocytes remained < 200/microl during the study period in patients transplanted with CD34+ PBPCs, significantly lower than group B levels (P = 0.034 and P = 0.021 on weeks 4 and 8 respectively). CD8+ T-cells increased rapidly in both groups; thus, the CD4 to CD8 ratio was severely reduced. CD4+ and CD8+ T-cells displayed an activated phenotype in both groups of patients, co-expressing the HLA-DR antigen throughout the study period. NK cells followed a similar repopulation kinetics in both study groups, although their expansion was greater in group B than in group A (P = 0.014 on week 4). In the CD34+ group, post-transplant administration of granulocyte colony-stimulating factor predicted a faster lymphocyte recovery in multivariate analysis (P = 0.025); interestingly, the amount of passively transferred lymphocytes correlated inversely with time to achieve a lymphocyte count > 0.5 x 10(9)/l (r = -0.63, P = 0.01). Further investigations are necessary to characterize T-cell competence after transplantation of CD34+ PBPCs.

Adult↗

CD34+/CD105+ cells are enriched in primitive circulating progenitors residing in the G0 phase of the cell cycle and contain all bone marrow and cord blood CD34+/CD38low/- precursors.

A subset of circulating CD34+ cells was found to express CD105 antigen. Sorting experiments showed that most granulocyte-macrophage colony-forming units (GM-CFU) and burst-forming units - erythroid (BFU-E) were retained in the CD34+/CD105- fraction, whereas rare GM-CFU/BFU-E were generated from CD34+/CD105+ cells. Megakaryocytic aggregates were entirely retained in the CD34+/CD105+ fraction. Neutralizing doses of an anti-TGF-beta1 antibody demonstrated CD34+/CD105+ cells capable of colony-forming activity without any significant effect on CD34+/CD105- cells. Cloning of secondary colonies revealed that CD34+/CD105+ cells had a significantly higher secondary cloning efficiency than CD34+/CD105- cells. CD34+/CD105+ cells had a significantly higher long-term culture-initiating cell (LTC-IC) frequency than CD34+/CD105- cells. Kinetic analysis showed that 75% of CD34+/CD105+ cells consisted of DNA 2n G0Ki-67- cells whereas 82% of CD34+/CD105- were DNA 2n G1Ki-67+ cells, and this latter subset showed a RNA content consistently higher than CD34+/CD105+ cells. CD34+/CD105+ progenitors were CD25+, whereas CD34+/CD105- contained a small CD25+ subset. Three-colour analysis of bone marrow and cord blood CD34+ cells demonstrated that all the CD34+/CD38low/- primitive precursors were contained in CD34+/CD105+ cells. Extensive characterization of these CD105+ precursors indicated that they have biological properties associated with primitive haematopoietic precursors.

ADP-ribosyl Cyclase↗

High cyclin-dependent kinase inhibitors in Bcl-2 and Bcl-xL-expressing CD34+-proliferating haematopoietic progenitors.

We have previously described the isolation of primitive, slow-proliferating progenitors from normal, circulating CD34+ cells by using the fluorescent dye 5-6-carboxyfluorescein diacetate succinimidyl ester (CFDA-SE). CFDA-SE(bright) (primitive) and CFDA-SE(dim) (differentiating) cells were isolated following cytokine stimulation on the basis of their different proliferation rates. In the present work we analysed the expression levels of a number of proteins involved with differentiation, proliferation and survival/apoptosis in CFDA-SE(bright)/CD34+/slow-proliferating cells that were previously defined as progenitors capable of differentiating into different lineages. The aim of this work was to gain a better understanding of our model system in order to define some of the important parameters that regulate differentiation in haematopoietic progenitors. GATA-1 and PU.1 RNA levels were similar in freshly isolated (d 0) CD34+ and in CFDA-SE(bright) (bright) cells, whereas they increased in CFDA-SE(dim) (dim) cells. Accordingly, Nm23 was expressed at higher levels in bright cells. Moreover, bright cells had higher p21WAF1/CIP1, p27KIP1 and p16Ink4 protein levels than dim cells. Consistently, Cdc2 and Cdk2 kinase activity was much higher in the dim than in the slower proliferating bright cells. C-myc and p53 levels were higher in bright cells than in d 0 CD34+ and dim cells, and so was Bcl-xL, which followed the trend we have previously described for Bcl-2. Thus, bright cells, despite having a higher proliferation rate than the starting d 0 CD34+ population, have strikingly elevated levels of cyclin-dependent kinase inhibitors, which are likely to also act as inhibitors of differentiation.

Antigens, CD34↗