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Biomedical subjects

C Melani

Publications and source records attributed to C Melani.

47 records · Page 3Linked to original sources

Adjuvant adoptive immunotherapy with IL2 and lymphocytes from tumor-bearing mice: in vitro tumor-stimulated lymphocytes are more effective than LAK cells.

In order to determine whether lymphocytes with therapeutic potential can be obtained from colon carcinoma (C26)-bearing (TB) mice, splenocytes were activated either in mixed lymphocyte-tumor cell (MLTC) cultures in the presence of 5 and 10 U/ml IL2 or 250 and 100 U/ml IL2 (LAK effectors). The therapeutic efficacy, as well as functional and phenotypic features of such lymphocytes, was then compared in an adjuvant immunotherapy setting. Comparisons of the antigenic phenotype, cytotoxic and proliferative activities, and of transcription of different cytokine genes (IFN gamma, TNF alpha, IL4, IL6) between lymphocytes activated in MLTC and LAK failed to reveal major differences. However, the in vitro lysis of C26 by MLTC-activated but not by LAK TB lymphocytes was significantly blocked by anti-T3 and anti-Lyt2 monoclonal antibodies, suggesting that a fraction of specific antitumor effectors was present in the MLTC bulk population. Moreover, the amount of IFN gamma (but not of other cytokines) produced by MLTC-derived lymphocytes after stimulation with C26 cells was shown to be 10-fold higher than that produced by LAKs. When combined with low-dose IL2 administration as an adjuvant treatment in C26-operated mice, MLTC effectors showed a higher therapeutic activity than LAKs obtained from the same pool of lymphocytes from TB donors. In the same setting, MLTC-activated lymphocytes obtained from TB or tumor-excised (TE) mice, combined with IL2, were equally effective (76 and 74% survivors, respectively, vs. 27% of the surgery control group and 26% of the group given IL2 only), whereas LAK cells from TE but not from TB animals resulted in the cure of a significant fraction of mice.

Animals↗

A new glucose-6-phosphate dehydrogenase variant with congenital nonspherocytic hemolytic anemia (G6PD Genova). Biochemical characterization and mosaicism expression in the heterozygote.

A new deficient variant of glucose-6-phosphate dehydrogenase (G6PD) causing severe congenital nonspherocytic hemolytic anemia (CNSHA) is described. The variant enzyme, characterized by slow electrophoretic mobility, extreme in vivo and in vitro lability, high Km for G6P and strongly acidic pH optimum, appears to be unique, and has been designated G6PD Genova. Investigation of an obligate heterozygote using various cytochemical, biochemical and recombinant-DNA techniques showed G6PD mosaicism in the erythrocytes and leukocytes. Therefore, the presence of a disadvantageous mutation at one Gd locus did not determine selection in favor of the normal allele in the heterozygote's hemopoietic cells.

Anemia, Hemolytic, Congenital↗

Ras activation in myelodysplastic syndromes: clinical and molecular study of the chronic phase of the disease.

We studied N-ras and Ki-ras point mutations respectively at codons 12-13 and 12 in 15 patients with myelodysplastic syndromes (MDS) using the polymerase chain reaction (PCR) method for DNA amplification, and slot blot hybridization to allele specific oligonucleotide (ASO) probes. We analysed peripheral blood and bone marrow samples collected at diagnosis and repeatedly during the chronic phase of the disease to define when the activation occurred and in which haemopoietic cell populations, in order to establish possible relationships between clinical and molecular features. In three cases the N-ras oncogene was mutated at codon 12 in every cell population, both at diagnosis and throughout the chronic phase. Point mutations were not seen at the 12 codon of the Ki-ras oncogene. In patients lacking activated ras oncogene at diagnosis, mutations were not discovered during the entire period of observation. Therefore in our cases disease progression and leukaemic transformation did not correlate with the presence of the activated N-ras. Our data suggest that ras activation occurs early in the pathogenesis of MDS and involves a haemopoietic progenitor with multiple differentiative capacity, without however conferring an apparent proliferative advantage on its progeny.

Chronic Disease↗

Clonal B lymphocytes lack bcr rearrangement in Ph-positive chronic myelogenous leukaemia.

Philadelphia (Ph) chromosome-positive chronic myelogenous leukaemia (CML) was studied in a subject heterozygous for the X chromosome-linked alloenzyme system of glucose-6-phosphate dehydrogenase (G6PD). Determination of G6PD mosaicism showed homogeneous expression in granulocytes, erythrocytes and platelets. Cytogenetic studies showed the typical Ph translocation in all metaphases from bone marrow and peripheral blood myeloid cells, bcr rearrangement was detected in bone marrow and in granulocytes. B cells were stimulated with Epstein-Barr virus (EBV) in order to evaluate involvement of lymphocytes, EBV-transformed lymphoblastoid cells expressed a single G6PD phenotype and therefore probably derived from the leukaemic stem cell. However they had a normal karyotype and a constitutional bcr restriction pattern. Molecular analysis in this case of CML clarifies the differentiative potential of cells belonging to the leukaemic clone, by demonstrating that clonal Ph-negative B cells maintain normal differentiative capacity and have a bcr gene sequence which is not rearranged.

B-Lymphocytes↗

Molecular analysis of the bcr rearrangement in a case of Ph'-negative blastic crisis of Ph'-positive chronic myelogenous leukemia.

We describe here a patient with Ph'-positive chronic myelogenous leukemia (CML) who developed a Ph'-negative blastic crisis. The blast DNA was analyzed on two different occasions, at the beginning of the blastic phase and at the end, shortly before the patient's death. Although cells from both samples had no Ph' chromosome marker (not even a masked one) we could detect a rearrangement of the bcr gene in the second DNA sample, using a '3'-bcr' probe. The same probe and a '5'-bcr' probe failed to detect any rearranged band in the first DNA sample. No rearrangement was identified at the c-myc and N-ras loci, while a slight c-myc amplification was evident in both DNA samples tested.

Blast Crisis↗

A case of ataxia telangiectasia with unbalanced glucose 6-phosphate dehydrogenase mosaicism in the granulocytic/monocytic lineages.

Ataxia telangiectasia is a genetically determined disease with multi-system abnormalities and a high incidence of neoplasia. In order to define the nature of the association between ataxia telangiectasia and malignancy, we investigated a patient with the disease and heterozygote for the Mediterranean variant of the X-linked marker glucose 6-phosphate dehydrogenase. Enzymatic mosaicism in hemopoietic and nonhemopoietic cells was evaluated with the 2-deoxy glucose 6-phosphate technique. While erythrocytes, platelets, and lymphocytes expressed the same double-enzyme phenotype as tissues of nonhemopoietic origin, granulocytes and monocytes expressed almost exclusively the Mediterranean-type enzyme. We suggest that, as the result of genetic instability at the hemopoietic stem-cell level, the granulocytic/monocytic progeny enjoyed a proliferative advantage and became the predominant clone.

Ataxia Telangiectasia↗

Clonal development from a progenitor with restricted differentiative expression in acute lymphoblastic leukemia.

Three patients with acute lymphoblastic leukemia (ALL) and heterozygous for the Mediterranean variant of glucose-6-phosphate dehydrogenase (G6PD) have been investigated with the 2-deoxyglucose-6-phosphate (2dG6P) method to determine the number and type of progenitor cells in which the disease arose. A monoclonal origin was established for the lymphoblasts, while the other hemopoietic cell lines were not involved in the leukemic process.

Child↗

DNA vaccination against the ovarian carcinoma-associated antigen folate receptor alpha (FRalpha) induces cytotoxic T lymphocyte and antibody responses in mice.

Human folate receptor alpha (FRalpha) is a folate-binding protein that is selectively overexpressed in ovarian carcinoma and has been regarded as a suitable target antigen for immunotherapy purposes. To study the possible use of this antigen in DNA vaccination, FRalpha cDNA was ligated into the VR1012 (Vical) expression vector under the transcriptional control of the cytomegalovirus promoter. A total of 100 microg of purified plasmid DNA was injected intramuscularly in BALB/c mice three times at 14-day intervals. At 10 days after the second injection, the sera of the animals (100%) displayed significant antibody titers (by indirect immunofluorescence and fluorescence-activated cell sorter analysis) against syngeneic C26 cells transduced with FRalpha, but not against unmodified C26 cells. Immunoglobulin G2a was the predominant isotype. In addition, specific cytotoxic T lymphocyte activity against FRalpha-transduced C26 cells could be detected in splenocytes from all immunized animals. Coinjection of a plasmid containing interleukin-2 cDNA increased both antibody titers and cytotoxic T lymphocyte activity. Challenge by subcutaneous injection with FRalpha-transduced C26 cells (performed 10 days after the third injection) showed a statistically significant delay in tumor growth. Vaccination with the FRalpha and interleukin-2 cDNA mixture, which was performed after an intravenous injection of FRalpha-transduced cells, enhanced the mean survival time and reduced the number of lung metastases, thus suggesting that such vaccination is effective even against preexisting tumor cells.

Animals↗

Cytokine gene transduction in tumor cells: interleukin (IL)-2 or IL-4 gene transfer in human melanoma cells.

Cytokine gene transfer into mouse tumor cells has been shown to stimulate a strong immune response resulting in the rejection of the transduced tumor when injected in vivo. Therefore, retroviral vectors containing the human interleukin (IL)-2 or IL-4 gene have been constructed to transduce human melanoma cells to explore whether their immunogenicity can be increased both in vitro and in vivo. Our preliminary results indicate that retroviral vectors can efficiently transduce the IL-2 and or IL-4 gene into melanoma clones, inducing production of either cytokine in the range of 0.5-2 ng/ml/10(5) cells in 48-72 h. No modifications of the growth rate, morphology and antigenicity of the transduced tumor cells were found.

Cytotoxicity Tests, Immunologic↗