[Radionecrosis of the back of the hand].
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Biomedical subjects
Publications and source records attributed to F Lanza.
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BACKGROUND: Cluster analysis is particularly effective in detecting homogeneous subgroups among large series of observations. We applied this relatively uncommon approach to the study of prognosis in 137 patients affected by acute myeloid leukemia (AML). METHODS AND RESULTS: Employing simple presentation parameters (age, WBC, splenomegaly, hepatomegaly) we used cluster analysis to define 3 groups with different overall survival (p = 0.0019). This classification was obtained following a rescaling of the variables and principal component analysis. Validation was performed through random definition of a control group. With the same variables, univariate analysis demonstrated age was the only prognostic factor, while Cox's model was not significant. CONCLUSIONS: In our series cluster analysis allowed a better definition of prognosis than Cox's analysis. Since the 3 groups are well identifiable, each patient can be rapidly classified and his allocation confirmed by discriminant functions. For cluster 2 we were able to project a possible myelodysplastic evolution, while cluster 3 was more frequently associated with a monocytic blastic component. We think that cluster analysis deserves consideration as an alternative statistical approach in the analysis of large series of data; its usefulness lies in its power to define homogeneous prognostic or biologic subgroups and to elaborate further hypotheses for new studies.
Anti-platelet antibody measurement may be important in defining the pathogenesis of thrombocytopenic states. In this paper we compared three anti-human immunoglobulin reagents by using them to detect anti-platelet antibodies on the platelet surface and in the serum of 14 patients with chronic idiopathic thrombocytopenic purpura (ITP) and 22 thrombocytopenic disorders. Samples were analyzed by both flow cytometry and a fluorescence microscope. In ITP patients, the direct test was positive in 50% of the cases, while the indirect technique proved to be positive in a slightly higher number of those tested (56%). Furthermore, the number of positive cases was similar for the three reagents used in this study, although the mean percentage of positive platelets was higher for the kappa/lambda monoclonal reagent. These data further support the sensitivity and reproducibility of flow cytometry analysis, which was capable of detecting antiplatelet antibodies in all patients with transfused Cooley's disease (regarded as positive control), as well as in a significant number of patients with ITP or related diseases. On the basis of the data presented here, definitive proof regarding the presence of anti-platelet antibodies in patients with thrombocytopenia still has to be found, and further studies are needed in order to ascertain the autoimmune nature of these disorders.
BACKGROUND AND METHODS: Immunoglobulin (Ig) gene expression and rearrangements provide information about cell lineage, clonality and differentiation of neoplastic lymphoid cells. We performed flow cytometry and Southern blot analysis in 25 patients with chronic lymphocytic leukemia (CLL) from the Po River delta region (Northern Italy), in order to correlate surface immunological phenotype and heavy and light chain gene rearrangements with clinical stages. RESULTS: In these 25 CLL cases, as in the larger group of 165, k-positive (k+) patients were more frequent than lambda-positive (lambda +) ones by a ratio of 59:41, with a predominance of lambda + in stage II (46:54) and of K+ in stage IV (77:23). However, the survival behavior of lambda + and k+ patients was not statistically different. Ig gene rearrangements were found in all patients in accordance with the immunophenotype. When Ig gene analysis was performed on two different occasions in 7 of the 8 who received chemotherapy, there was an increase in the percentage of the germline band. This variation was inversely related to changes in WBC count. In the treated subject who showed a reduction of both WBC count and the germline, there was rapid disease progression and short survival. CONCLUSIONS: Analysis of Ig gene rearrangements in our CLL patients demonstrated: i) the monoclonality of neoplastic cells; ii) no correlation between rearrangements and clinical stages, and iii) that this analysis may be a useful tool in evaluating biological behavior in selected CLL cases showing a discrepancy between hematological data and clinical response to therapy.
The aim of this study was to investigate by flow cytometry the expression of the UPA-R (Urokinase type plasminogen activator receptor-CD87) on the blastic population of AML and ALL patients in order to evaluate whether the presence of this molecule could be associated with peculiar clinical and biologic features of leukemic cells. Five different monoclonal antibodies (MoAbs) (clones: 3B10#; VIM5*; 109#; 68#; 100#) were used in order to detect the distinct forms of this cellular receptor. Cell reactivity varied significantly from case to case, also depending on the MoAb used for the flow cytometry analysis. In brief, 3B10# and VIM5* MoAbs were found to be positive in more than 90% of monocytes and neutrophils from healthy subjects, while the number of positive cells was decreased (60%) using the 109# MoAb. However, either 68# and 100# MoAbs recognised only a low number of blood monocytes and neutrophils (8-20%), while lymphocytes were unreactive with all the five UPA-R MoAbs. ALL cells were found to be CD87 negative in all cases. Blasts from AML showed a heterogeneous pattern of expression for the UPA-R MoAbs, being the reactivity strictly dependent on the MoAb used, and, to a higher extent, on the degree and type of maturation of the blastic cells. The number of blasts recognising 3B10# and VIM5* MoAbs was significantly higher than that reacting with the remaining MoAbs irrespective of the FAB subtype. Since proteolytic enzymes, like UPA, play a key role in the dissolution of the extracellular matrix, and in facilitating the cell egress from the bone marrow, it is conceivable that the expression of the UPA-R could contribute to the invasive properties and, possibly, metastatic potential of leukemic cells.
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BACKGROUND AND OBJECTIVE: Granulocyte-macrophage colony-stimulating factor (GM-CSF) is a multilineage hemopoietic growth factor that stimulates proliferation, differentiation, and survival of progenitor cells, enhances the functional activities of mature myeloid effector cells, and plays a key role in host defense and the inflammatory process. Although the clinical use of rhGM-CSF in patients affected by lymphoid malignancies is widely accepted, its utility and safety in the management of acute myeloid leukemia (AML) and myelodysplastic syndromes (MDS) is still controversial. The three main schedules adopted for clinical application of GM-CSF in AML are as follows: A) post-chemotherapy, in order to shorten the duration of neutropenia and/or monocytopenia; B) prechemotherapy to recruit blast cells into active cell cycle phases, and to increase their sensitivity to cell cycle-dependent cytotoxic drugs; C) as a mobilizing agent to induce the release of progenitor cells from bone marrow into circulation (peripheral blood progenitor cell transplantation-PBPC). The objective of this paper is to analyze the potential clinical applications of rhGM-CSF in AML. EVIDENCE AND INFORMATION SOURCES: The material examined in the present review includes several personal papers in this field and articles and abstracts published in journals covered by the Science Citation Index. STATE OF THE ART: Based on current knowledge, it may be argued that rhGM-CSF should be used only in a subset of AML patients at high risk of infection mortality, including elderly subjects, and/or in those AML patients who relapse or are resistant to induction treatment. However, the risk of stimulating the leukemic clone following GM-CSF therapy should be kept in mind when using this growth factor in the clinical setting, even though the great majority of the reported papers on this subject have shown that GM-CSF therapy does not affect relapse rates, frequency of remissions or patient life expectancy. PERSPECTIVES: It is likely that new data from controlled clinical trials will clarify the therapeutic role of GM-CSF in myeloid-derived malignancies, allowing the establishment of consensus guidelines for its use.