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R Foa

Publications and source records attributed to R Foa.

At least 37 records · Page 2Linked to original sources

Microsatellite analysis in childhood acute lymphoblastic leukemia.

BACKGROUND AND OBJECTIVE: Genetic alterations, including genomic instability, represent possible steps towards a malignant transformation. One approach to delineate replication errors in cancer cells is to determine alterations of microsatellites that are short tandem repeat sequences dispersed throughout the human genome. We have investigated whether genomic instability may be a possible event in the leukemogenic process by evaluating the pattern of instability in 41 cases of childhood acute lymphoblastic leukemia (ALL). MATERIALS AND METHODS: Eighty-two samples of genomic DNA (41 at diagnosis and 41 at remission) were analyzed by PCR with microsatellite markers chosen on five different chromosomes (2, 10, 11, 13, 18) known to be frequently involved in tumors of various origins. Since deletions of the short arm of chromosome 12 are relatively common in children with ALL, we also analyzed one region flanked by the microsatellite marker D12S308 on 12p. This area encompasses a genetic locus which contains the putative suppressor gene KIP1. RESULTS: A pattern of MI at one or two loci on different chromosomes could be documented in 4 of the 41 cases analyzed (9.7%). Three were common ALL and 1 was a T-ALL. One case showed two concomitant sites of instability, while 1 revealed two additional bands by using simultaneously microsatellite markers D2S123 and D18S58. INTERPRETATION AND CONCLUSIONS: These results indicate that genetic instability of microsatellite repeat sequences occurs in a proportion of childhood ALL. Mismatched repair errors documented in hereditary and sporadic solid tumors may thus be involved in hematological malignancies. While in such cases the pattern of genomic instability appears indicative of a mutator phenotype and of a potential predisposition towards a leukemic transformation, other genomic loci close to cytogenetic and molecular alterations known to occur in ALL need to be investigated in depth in cases with an apparently non mutated phenotype.

Child↗

Transfer of the interleukin-2 gene into human cancer cells induces specific antitumor recognition and restores the expression of CD3/T-cell receptor associated signal transduction molecules.

Normal peripheral blood mononuclear cells (PBMC) were co-cultured with a human lung cancer cell line (LC89) transduced with the interleukin-2 (IL-2), IL-7, granulocyte-macrophage colony-stimulating factor (GM-CSF), and tumor necrosis factor-alpha (TNF-alpha) genes to evaluate the capacity of the engineered cells to: allow survival of CD3+ and CD56+ cells, generate cytotoxic effectors with HLA class I restricted and unrestricted antitumor activity, and interfere in the molecular organization of the CD3/T-cell receptor associated signal transduction machinery. When PBMC were cultured up to 3 weeks with IL-2 releasing LC89 cells (LC89/IL-2), the number of viable CD3+ and CD56+ lymphocytes was much greater than in cultures with parental cells or with LC89 cells transduced with the other cytokine genes. After 1 week of coculture, a variable degree of restricted and unrestricted killing directed against different targets was observed. When the cultures were prolonged up to 3 weeks, LC89/IL-2 cells induced a marked increase in specific cytotoxic activity, which was coupled to a further enhancement of unrestricted lytic function. In the presence of LC89/IL-7 cells the degree of specific lysis remained unchanged, whereas unrestricted effectors were markedly decreased. No cytotoxic activity could be induced by LC89/GM-CSF and LC89/TNF-alpha cells in the few lymphocytes surviving after 3 weeks of culture. Coculture of parental LC89 cells with PBMC was consistently associated with a downmodulation in the expression of the CD3 zeta chain, as well as of the tyrosine kinases p56ick and ZAP-70. On the contrary, LC89/IL-2 cells, and not LC89 cells transduced with the IL-7, GM-CSF, or TNF-alpha gene, were capable of reverting the immunosuppressive effect exerted by the tumor cells. This protective effect could be maintained in cultures prolonged up to 4 weeks. When the same cultures were set up in Transwell, ie, with a membrane separation between cancer cells and PBMC, the expression of the CD3 zeta chain and of the p56ick and ZAP-70 tyrosine kinases remained unchanged under all culture conditions, indicating that the downmodulation of T-cell signal transduction molecules requires a direct cell to cell contact. These results show that transfer of the IL-2 gene into the DNA of human cancer cells promotes both restricted and unrestricted antitumor activity, and is capable of restoring and maintaining the expression of molecules involved in the process of T-cell mediated tumor cell recognition, thus underlining the potential role of the IL-2 gene in the design of vaccination protocols with cytokine gene transduced cancer cells.

Adenocarcinoma↗

Immunophenotype of adult and childhood acute lymphoblastic leukemia: changes at first relapse and clinico-prognostic implications.

The immunologic features of leukemic cells at the time of 1st hematologic relapse were compared to those obtained at initial diagnosis in 128 patients (69 children and 59 adults) with acute lymphoblastic leukemia (ALL) treated at a single institution. An immunophenotypic change was observed in 59 cases (46%), more frequently in T (20/25) than in B (39/103) lineage ALL (80 vs 38%, P=0.0008), but with a similar incidence in adults and children. Of these cases, 34 (24 B- and 10 T-ALL) changed at relapse their intralineage subgroup affiliation, although no complete shift from B to T lineage ALL, or vice versa, was observed. The myeloid antigens CD13 and/or CD33 were frequently lost (2/5 cases) or acquired (12/123 cases) at relapse. In 21 cases, the immunophenotype at relapse was more undifferentiated than at diagnosis, while it was more differentiated in 13 cases. Initial treatment intensity or preceding treatment with teniposide did not affect the phenotypic profile at relapse. Complete response (CR) rate to salvage therapy and event-free survival were not influenced by the immunophenotypic shifts, nor by the presence, at relapse, of leukemic cells expressing the myeloid antigens CD13 and/or CD33. Univariate analysis suggested that prognosis after relapse was dependent on the duration of 1st CR, patients' age and immunophenotype at the time of diagnosis, with a worse outcome for patients with T lineage ALL and for patients with the less differentiated subgroup of B lineage ALL (CD19+ and CD10-). Multivariate analysis showed that only two factors, duration of 1st CR and grade of immunologic differentiation at diagnosis, have independent prognostic value in relapsed ALL.

Adolescent↗

Interleukin-8 induces the accumulation of B-cell chronic lymphocytic leukemia cells by prolonging survival in an autocrine fashion.

Several cytokines have been suggested to play a regulatory action on the neoplastic clone of patients with B-cell chronic lymphocytic leukemia (B-CLL) by interfering in the differentiation, proliferation, or death/survival pathways. Interleukin-8 (IL-8) is a chemoattractant protein constitutively expressed at the mRNA level and released by B-CLL cells. In view of the presence of the IL-8 receptor mRNA and of specific IL-8 binding, confirmed also by Scatchard analysis using 125I-IL-8, the study was extended to evaluate the possible regulatory role of this cytokine on B-CLL cells. IL-8 failed to show any in vitro proliferative effect on leukemic B-CLL cells. By contrast, the propidium iodide (PI) staining of the DNA content showed that IL-8 could prolong the survival of resting B-CLL cells in 11 of 16 cases studied. In the remaining 5 cases, 90.6% +/- 4.39% SD of the cells after culture remained viable and IL-8 could exert a significant death protection action after pretreatment with 10(-4) mol/L hydrocortisone, which reduced the percentage of viable B-CLL cells. The dose range of IL-8 capable of inducing the prolonging survival effect is comparable with the levels of IL-8 released constitutively by B-CLL cells, indicating that the death protection action is exerted at physiologic doses. The in vitro rescue from death induced by IL-8 is reflected by an increased expression of bcl-2 mRNA in B-CLL cases incubated in the presence of IL-8. These findings were further confirmed at the protein level, because in B-CLL cells that displayed a bimodal bcl-2 intracytoplasmatic protein expression IL-8 was capable of upmodulating the bcl-2high expression peak. The potential autocrine regulatory action exerted by IL-8 is supported by the evidence that exogenous IL-8 can upregulate IL-8 mRNA in B-CLL cells. These results, together with the demonstration that antibody-mediated neutralization of endogenous IL-8 could induce a significant in vitro reduction in the number of living cells, further support the hypothesis that, in B-CLL, the physiologic doses of IL-8 released constitutively by the leukemic clone may play an autocrine role in the process of cell accumulation characteristic of this disease.

Antigens, CD↗

Retroviral vector-mediated transfer of the tumor necrosis factor alpha gene into human cancer cells restores an apoptotic cell death program and induces a bystander-killing effect.

Tumor necrosis factor alpha (TNFalpha) may induce tumor cell death by apoptosis, the physiologic program of cell death usually lost during neoplastic progression. However, many tumor cells are resistant to its effect unless high doses are administered. By retroviral vector-mediated gene transfer, we have transduced the TNFalpha gene into the DNA of human tumor cells to investigate whether the indefinite neoplastic cell proliferation could be blocked and the lost physiologic program of cell death restored. Evidence is provided that high-TNFalpha-producing clones generated from a human lymphoma T-cell line (ST4) can undergo apoptosis following transduction of the TNFalpha gene. Internucleosomal DNA cleavage was documented by May-Grünwald-Giemsa and by propidium iodide staining, as well as by gel electrophoresis. The induced apoptotic phenomenon is TNFalpha-mediated, since it can be reverted following incubation with anti-TNFalpha monoclonal antibodies (MoAbs), and it occurs with cytokine levels released in the supernatant by the engineered cells much lower(>100 times) than those required to promote the same effect on parental ST4 cells following administration of exogenous recombinant TNFalpha. The process is associated with a downregulation of the apoptosis-preventing gene, bcl-2, while the expression of bax and p53, genes usually involved in promoting apoptosis, persists. Mixed-culture experiments performed coincubating TNFalpha-transduced and untransduced ST4 cells allowed documentation of a bystander-killing effect on the parental cells. This phenomenon still occurred at transduced to parental cell ratios as low as 1:20 and was blocked in the presence of an anti-TNFalpha MoAb. These findings indicated that TNFalpha may play a regulatory role in the proliferation of human tumor cells, and suggest potential new antitumor therapeutic strategies based on the direct delivery of the TNFalpha gene into cancer cells.

3T3 Cells↗

Role of prolactin in the in vitro development of interleukin-2-driven anti-tumoural lymphokine-activated killer cells.

Exogenous prolactin (PRL) has been shown to synergize with low-dose interleukin-2 (IL-2) and induce the proliferation and lymphokine-activated killer (LAK) maturation of natural killer (NK) cells. PRL itself can also generate LAK activity. Here we show that its local production occurs during, and is necessary for, LAK development. IL-2-stimulated peripheral blood mononuclear cells (PBMC) and purified NK cells were exposed to anti-human (h)PRL antiserum, and residual LAK activity was measured on day 7 against the promyelocytic leukaemia cell line HL-60. Inhibition of LAK activity was much more evident in PBMC compared with NK cell cultures (47% decrease. P - 0.013 and 18.5% decrease. P = 0.048, respectively). Up-modulation of a 32S-methionine-labelled 27,000 MW protein was detected in the lysates and supernatants of IL-2-stimulated PBMC immunoprecipitated with an anti-PRL antiserum. By contrast, the cytoplasmic PRL immunoreactivity observed in freshly isolated NK cells and in IL-2-stimulated, but not unstimulated, NK cell cultures was not associated with PRL gene activation, and can thus be referred to internalized PRL. Preferential re-uptake of externally derived PRL by IL-2-stimulated NK cells was also indicated by up-modulation of the PRL receptor. These data, as a whole, indicate that the PRL promotion of LAK differentiation is mainly mediated by paracrine secretion, with a minor contribution from internalized PRL.

Cell Differentiation↗

Interleukin-2 for the treatment of advanced acute myelogenous leukemia patients with limited disease: updated experience with 20 cases.

Since 1988 we have treated a first group of 14 patients with recombinant interleukin-2 (rIL-2), which was previously published, and 6 other consecutive patients affected by refractory or relapsed acute myelogenous leukemia (AML) with >5% and < or = 30% bone marrow blasts, but not suitable for further chemotherapy. The rIL-2 schedule consisted of four 5-day high-dose cycles administered by continuous infusion with a 72-hour rest period between each cycle. Patients who achieved a response received a lower dose of subcutaneous rIL-2 maintenance treatment administered for 5 days every month. Following high-dose rIL-2, 11/20 patients (55%) obtained a complete remission (CR). Six remain in persistent CR after a median follow-up time of 50 months (9, 33, 49, 51, 52, 87 months, respectively); the length of remission is the longest in the natural history of the disease for each individual patient. One patient with stable disease at the end of rIL-2 induction is alive and well, with a stable number of blasts in the bone marrow, 18 months later. These 7 patients continue maintenance treatment with subcutaneous rIL-2. Close clinical and laboratory monitoring reveal that side effects are acceptable and no toxic deaths have been recorded. This update confirms the feasibility and antileukemic activity of high dose rIL-2 in advanced AML patients with limited disease, and suggests a potential clinical role of prolonged rIL-2 maintenance treatment.

Acute Disease↗

Regulatory action of prolactin on the in vitro growth of CD34+ve human hemopoietic progenitor cells.

The pituitary hormone prolactin (Prl) is known to act as a local regulator of immune cell function, and Prl-binding receptors (Prl-R) have been described to share distinctive features with the members of the newly described cytokine/hemopoietin receptor superfamily. Here we show that the hormone can functionally interact with lineage-specific hemopoietic factors. When highly purified progenitor cells (CD34+ve) were seeded in semisolid methylcellulose cultures in the presence of interleukin (IL)-3, granulocyte-macrophage colony stimulating factor (GM-CSF), and erythropoietin (Epo), a selective enhancing effect of Prl on the formation of colony forming unit-granulocyte (CFU-G) and burst forming unit-erythroid (BFU-E) colonies was observed. The effect of the hormone was plotted as a bell shaped curve, with the optimal response at the supraphysiological concentration of 50 ng/ml. Limiting dilution analysis showed that Prl acted directly on hemopoietic progenitors. This was confirmed by the observation on the CD34+ve cells of Prl-binding sites reacting with the specific monoclonal antibodies (mAbs), U5 and PrR-7A. Immunoprecipitation of the metabolically labeled CD34+ve cells with the PrR-7A mAb revealed a structure of 43 kD under reducing conditions. Analysis of the early events associated with the Prl/Prl-R interaction showed an increased number of cells engaged in DNA and hemoglobin synthesis. Enhanced erythroid differentiation of CD34+ve cells in the presence of Prl was secondary to upmodulation of receptors for the lineage-specific factor Epo. Together these data demonstrate the existence of a functional interplay between Prl and hemopoietic factors.

Antibodies↗

The IL-2 receptor complex: expression and function on normal and leukemic B cells.

The interleukin 2 receptor (IL-2R) is composed of at least three different chains that may be variably expressed on normal and neoplastic lymphocytes. While considerable knowledge has been gained on the expression of the IL-2R alpha chain on human leukemic cells of different origin, less is known of the beta and gamma chains. In view of the highly pleiotropic functions exerted by IL-2, the IL-2-IL-2R interactions may play an important role in various leukemias. In this review we focus on the expression and function of the IL-2R complex on human normal and leukemic B cells. Possible implications in the expansion of the neoplastic clone and in the clinical course of the disease are discussed.

B-Lymphocytes↗

Intestinal T-cell lymphoma with massive tissue and blood eosinophilia mediated by IL-5.

A case of enteropathy associated T-cell lymphoma (EATCL) in a 62-year-old female with a previous history of coeliac disease, complicated during the clinical course by massive blood and tissue eosinophilia is described. The patient's serum contained a factor capable of stimulating the in vitro growth of eosinophilic colonies (CFU-Eo), that was absent in the serum of normal donors. We suggest that such factor was Interleukin-5 (IL-5), as indicated by the presence in the monoclonal tumor T cells of IL-5 encoding mRNA, usually absent in the normal enterocytes of the jejunum.

Cell Division↗

IL-2 gene-transduced human HLA-A2 melanoma cells can generate a specific antitumor cytotoxic T-lymphocyte response.

This study was designed to assess whether transfer of the interleukin-2 (IL-2) gene into human tumor cells could generate cytotoxic T lymphocytes (CTL) directed specifically against the autologous tumor. Two HLA class I+ melanoma cell lines, one (TOM) A2+ and the other (CLB-M) A2-, obtained from living patients were transduced with the IL-2 gene. The patients' peripheral blood lymphocytes (PBL) were incubated with irradiated IL-2 gene-transduced autologous tumor cells for up to four weeks. After seven days, PBL from both patients showed non-specific cytotoxic activity against the K562 cell line. When the co-culture incubation time was prolonged to 28 days, PBL from patient TOM (A2+) developed a lytic activity directed specifically against the autologous tumor cells. In contrast, after 28 days of incubation, PBL from CLB-M (A2-) displayed only non-specific cytotoxic activity. Inhibition experiments demonstrated that the specific lytic function observed with TOM cells transduced with the IL-2 gene could be reversed following incubation with monoclonal antibodies directed against HLA class I and CD8. The evidence that K562 cells were incapable of blocking the PBL killing capacity in a cold-target inhibition assay further confirmed that engineered TOM cells induced the generation of specific CTL. This study indicates that retroviral vector mediated transfer of the IL-2 gene into human melanoma cell lines can lead to the amplification of the autologous cytotoxic compartment and to the generation of specific antitumor CTL, and that the A2 allele may play an important role in the process of tumor recognition.

Animals↗

Interleukin-2 may induce prolonged remissions in advanced acute myelogenous leukemia.

The administration of interleukin-2 (IL-2) may induce complete remissions in acute myelogenous leukemia (AML) patients with a low proportion of residual bone marrow (BM) blasts. To confirm this preliminary observation, we treated 14 AML patients with advanced disease and with a residual BM blastosis that ranged between 7% and 24% with repeated 5-day cycles of high-dose recombinant IL-2 administered by daily continuous intravenous infusion. Patients who responded have been subsequently submitted to a monthly maintenance scheme with subcutaneous IL-2 at lower doses. While using this schedule and closely monitoring clinical and laboratory conditions, side effects were acceptable and no toxic deaths recorded. Eight of the 14 patients treated with high-dose IL-2 obtained a complete remission (CR). Five remain in persistent CR (four in third CR and one in fourth CR) after a median follow-up time of 32 months (14, 30, 32, 33, and 68 months, respectively). In all five patients, the IL-2-induced remission is the longest in the natural history of the disease. These findings show that IL-2 displays an antileukemic effect in AML with limited residual disease, and suggest that IL-2 should be considered a therapeutic option for resistant or relapsed AML patients.

Adolescent↗

Cytokine gene expression in B-cell chronic lymphocytic leukemia: evidence of constitutive interleukin-8 (IL-8) mRNA expression and secretion of biologically active IL-8 protein.

To extent our knowledge on the cytokines possibly involved in the pathophysiology of B-cell chronic lymphocytic leukemia (B-CLL), the mRNA expression of a panel of 10 cytokines was investigated on purified B-CLL cells using a reverse-transcriptase polymerase chain reaction method. Whereas negative RT-PCR signals were recorded for interleukin-1 alpha (IL-1 alpha), IL-2, IL-3, IL-4, IL-5, IL-7, tumor necrosis factor beta (TNF beta), and granulocyte-macrophage colony-stimulating factor, we detected the expression of IL-1 beta, IL-6 and TNF alpha. Furthermore, the constitutive expression of IL-8 mRNA was observed in all 17 B-CLL samples analyzed. mRNA expression was associated with the capacity of the leukemic cells to release IL-8 both constitutively (4.6 +/- 8.1 SD ng/mL) and, to a further extent, after stimulation (14.5 +/- 19.4 ng/mL). The circulating levels of IL-8 were also evaluated in 12 untreated B-CLL sera samples and the overall mean level was significantly higher (P < .01) than in normal sera. In addition, supernatants of purified B-CLL cells cultured in the presence of 12-O-tetradecanoylphorbol-13-acetate showed chemotactic activity towards neutrophils; this activity was neutralized in the presence of an anti-IL-8 antiserum. The mRNA for IL-8 was absent in five B-cell preparations from hairy cell leukemia cases and in four B-cell lines. Normal tonsil CD5+ B cells showed a low expression of IL-8 mRNA only in two of the nine preparations tested and the overall quantity of IL-8 released by these cells after 3 days' incubation was significantly lower compared with that released by B-CLL cells (0.4 +/- 0.3 and 1.6 +/- 0.9 ng/mL under basal and stimulated conditions, respectively). These findings point to an involvement of a member of the proinflammatory chemokine supergene family in human CD5+ B lymphocytes. The different IL-8 behavior observed between B-CLL cells and their normal counterpart is likely to reflect an activation state of the leukemic population.

Antigens, CD↗

A potential role for antigen selection in the clonal evolution of Burkitt's lymphoma.

Burkitt's lymphoma (BL) is a monoclonal lymphoproliferative disorder characterized by the presence of specific chromosomal translocations that involve the c-myc proto-oncogene. Two subtypes of BL exist (endemic and sporadic) that differ in the prevalence of EBV genome expression. Although EBV infection may promote cellular proliferation in endemic BL, little is known about the forces that drive clonal expansion and evolution in the majority of EBV-negative sporadic BL. This study on an EBV-negative sporadic BL cell line derived from an AIDS patient provides evidence that antigenic stimulation may play a role in the development and/or expansion of such tumors. This cell line (BRG-P) contained a series of cellular clones that elaborated both IgM and IgA. Southern blot analyses of the line and its sublines indicated that both the IgM+ and IgA+ cells had identical c-myc and Ig JH gene rearrangements, indicating that they were derived from a common precursor, some of which eventually underwent an isotype switch. Ig VH gene sequence analyses of 21 molecular clones derived from the parental BRG BL line and two of its sublines demonstrated that all the clones used the same VH3 gene. Five unique intraclonal variants were identified at four distinct nucleotide positions (125, 161, 355, 375), which undoubtedly represented somatic mutations. Four of these five mutations occurred within complementary determining regions; all resulted in amino acid replacements. Moreover, an identical G to A nucleotide substitution that resulted in an identical amino acid change occurred at two distinct points in clonal evolution that were separated by the isotype class switch. Thus, the locations and types of the VH gene mutations, together with the occurrence of an isotype switch, are highly suggestive of an ongoing role for Ag stimulation and selection in the evolution of the malignant clone.

Adult↗