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P S Mitrou

Publications and source records attributed to P S Mitrou.

At least 19 recordsLinked to original sources

Establishment and characterization of a new, factor-independent acute myeloid leukemia line designated Ei501.

We established a factor-independent acute myeloid leukemia cell line, designated Ei501. The line has been growing in RPMI 1640 media for 18 months and can be maintained without addition of growth factors. Ei501 is positive for myeloperoxidase and negative for esterase and PAS. Cytogenetic analysis revealed the FAB M3 associated t(15;17) translocation and a translocation of the chromosomes 7 and 8: 46 XX, -7, +t(7;8)(q32;q13), t(15;17)(q22;q12). This karyotype was confirmed by fluorescence in situ hybridization. Ei501 cells express AML-associated surface markers such as CD13, CD33 and CD38. Although 42% of the patient's blast cells were CD34-positive, the line lacks surface expression of CD34. Furthermore the line has a number of characteristics which are detectable in blasts from AML patients, such as surface adhesion molecules, cytokines such as TGF-beta, cytokine receptors such as the IL-2 receptor beta and gamma chains or the IL-4 receptor and the genes for the transcription factor wt-1 (Wilms' tumor gene) and for the proto-oncogene bcl-2, both shown to be present in the majority of patients with AML. Additionally the line can be used as target in cytotoxicity assays using IL-2 activated cytotoxic lymphocytes as effector cells. In conclusion, besides a rare karyotype the Ei501 cell line has several features common in AML, and may therefore be used as a model to study pathogenetic mechanisms in acute myeloid leukemia.

Adolescent

The Wilms' tumor gene is expressed in a subset of CD34+ progenitors and downregulated early in the course of differentiation in vitro.

The Wilms' tumor gene (wt1) is strongly expressed in malignant blasts of acute myeloid leukemia (AML) in approximately 80% of all cases. However, the role of wt1 expression in non malignant hematopoietic cells remains unclear. To characterize the expression of wt1 in differentiating hematopoietic progenitors, we isolated and cultured CD34+ progenitor cells from four healthy bone marrow donors with stem cell factor (SCF) and granulocyte colony stimulating-factor (G-CSF) to induce differentiation into granulocytes. Four different cultures were carried out for 12 days. During culture, wt1 mRNA expression was analyzed by defining its ratio relative to beta-actin using reverse transcriptase polymerase chain reaction (RT-PCR). To monitor the stage of differentiation, expression of cell surface markers and peroxidase was analyzed daily. The initial purity of CD34+ cells ranged between 80% and 90%; after 12 days, the frequency of neutrophil bands and segmented neutrophils was approximately 60%. Using RT-PCR to determine the ratio of wt1 to beta-actin expression, we reproducibly detected maximum expression of wt1 mRNA at day 0 in two cultures and at day 1 in two other CD34+ cell cultures; at both these time points nearly all cells fulfilled the morphological and immunephenotypical criteria of early hematopoietic blast cells. Wt1 expression dropped rapidly at day 1 and 2, respectively, in these two pairs of cultures, and was accompanied by an increase of cells expressing CD33 surface antigen. Our data suggest that wt1 expression is restricted to a subset of CD34+ progenitors and downregulated in later stages of differentiation in vitro.

Antigens, CD34

Peripheral T-cell lymphomas respond well to vincristine, adriamycin, cyclophosphamide, prednisone and etoposide (VACPE) and have a similar outcome as high-grade B-cell lymphomas.

Peripheral T-cell lymphomas (PTCL) represent a heterogeneous group of T-cell malignancies including subentities with favourable (large cell anaplastic) or unfavourable (pleomorphic) prognosis. The clinical outcome of PTCL has been controversially discussed, but a worse prognosis than high-grade B-cell Non-Hodgkin's lymphomas (NHL) has been postulated by most authors. In this report we summarize the results of a prospective comparative study investigating the therapy outcome of 27 patients (pts) with PTCL and 55 pts. with high grade B-cell NHL and give an overview of therapy studies in PTCL. The histological subtypes were 14 pleomorphic, 8 large-cell anaplastic (Ki-1+), 2 angioimmunoblastic (AILD) and 3 other PTCL. In three patients the PTCL was associated with non-tropical sprue (11%). Nineteen patients presented with an advanced stage of disease (stage III and IV, 70%), 17 (63%) pts. had B-symptoms. The patients were treated with vincristine 2 mg d1, adriamycin 25 mg/m2 d1-3, cyclophosphamide 800 mg/m2 d1, prednisone 60 mg/m2 d1-7 and etoposide 120 mg/m2 d1-3 (VACPE). In 77% of pts. with PTCL and 84% of patients with high-grade B-cell NHL a complete remission (CR) was achieved. 75% of the complete responders with PTCL and 70% with B-NHL are still in ongoing CR. The subgroup of large-cell anaplastic attained a CR in 88%. The median observation time is 44 months (1(+)-77+). The probability of 1-, 3- and 5-year overall and disease-free survival for the T-cell group were 76%, 54%, 48% and 76%, 62%, 62%, respectively according to Kaplan-Meier. There was no significant difference regarding the remission rate, the overall-, event-free or disease-free survival compared to high-grade B-cell lymphomas. In conclusion, the VACPE regimen is an effective and feasible regimen in the management of PTCL achieving complete remissions in a large proportion of patients.

Adolescent

Simultaneous radiochemotherapy with paclitaxel in non-small cell lung cancer: a clinical phase I study.

Paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) is one of the most active single agents available for the treatment of non-small cell lung cancer (NSCLC), with reported response rates of 21% to 24%. Its observed radiosensitizing effect is attributed to its interruption of cell development at the G2/M phase of the cell cycle, when cells are most sensitive to the killing effects of ionizing radiation. This phase I study of paclitaxel and simultaneous radiation therapy in patients with previously untreated, locally advanced inoperable stage IIIA/B NSCLC was designed to determine the maximum tolerated paclitaxel dose, to define the safety and toxicity of this combined modality, and to obtain preliminary data on its activity. Patients received a fixed dose of radiotherapy (1.8 Gy/d, 5 days a week, in shrinking-field technique, for a total dose of 59.4 Gy) and concomitant chemotherapy with a 3-hour infusion of paclitaxel once weekly on day 1, initially at a dose of 45 mg/m2, for 3 weeks. This dose remained constant during study levels 1 to 3, with the number of weeks of treatment increasing to 5 and 7 at levels 2 and 3, respectively. At dose level 4, the paclitaxel dose was increased to 55 mg/m2 over 7 weeks. Of 22 NSCLC patients who entered the study, 18 are evaluable for toxicity and response. Responses included one complete and 10 partial remissions; the other seven patients had minimal improvement. The therapy was well tolerated; no severe adverse events were associated with paclitaxel or radiotherapy. This combined modality appears to be a practicable and effective treatment for NSCLC. The maximum tolerated paclitaxel dose has not yet been reached, and dose escalation is planned.

Adult

Paclitaxel and simultaneous radiation in locally advanced stage IIIA/B non-small cell lung cancer: a clinical phase I study.

Paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) is one of the most active single agents for the treatment of non-small cell lung cancer, with response rates of 21% to 24%. We present a phase I study with paclitaxel and simultaneous radiation in previously untreated, locally advanced, inoperable, stage IIIA/B non-small cell lung cancer. The aims of the study were to determine the maximum tolerated dose, define the safety and toxicity, and obtain preliminary data about the activity of the combined modality. Patients received a fixed dose of radiotherapy (1.8 Gy/d, 5 days a week for 6.5 weeks, for a total dose of 59.4 Gy) and concomitant chemotherapy with paclitaxel 45 mg/m2 days 1, 8, and 15 in level 1; days 1, 8, 15, 22, and 29 in level 2; and days 1, 8, 15, 22, 29, 36, and 43 in level 3. The paclitaxel dosage was increased to 55 mg/m2 on days 1, 8, 15, 22, 29, 36, and 43 in level 4. Paclitaxel was administered as a 3-hour continuous intravenous infusion. Dexamethasone, clemastine, and ranitidine were given for hypersensitivity prophylaxis. Twenty-two patients (18 men and four women) entered the study; their median age was 66.5 years (age range, 38 to 74 years). Disease stage was IIIA in six of 22 patients and stage IIIB in 16. Six patients were treated at level 1, five at level 2, five at level 3, and six at level 4. There were 18 patients evaluable for toxicity and response. Side effects generally were moderate during the treatment period. One patient withdrew by request after the first course, one patient died of tumor bleeding after five courses, one patient died of progressive disease (lymphangiosis carcinomatosa of both lungs) after the sixth course, and one patient is too early for evaluation. Among the 18 patients evaluable for response, there were one complete and 10 partial remissions; seven patients reached a minor response. It is concluded that the therapy was well tolerated in these patients. Importantly, no severe adverse events were observed that could be associated with paclitaxel or radiotherapy. This combined modality appears to be a practicable and effective treatment of non-small cell lung cancer. The maximum tolerated dose has not yet been reached, and dose escalation is planned.

Adult

Lactate dehydrogenase-release assay: a reliable, nonradioactive technique for analysis of cytotoxic lymphocyte-mediated lytic activity against blasts from acute myelocytic leukemia.

Treatment of patients in remission of acute myelocytic leukemia using immunotherapy with interleukin 2 is a new approach to prolonging remission duration in this disease. As an important mechanism for the pathophysiology of eradication of residual myelocytic blast populations, activation of cytotoxic effector lymphocytes has frequently been discussed. However, the associated immunological research has been complicated to some extent, because in conventional chromium 51-release assays, blast cells frequently fail to incorporate sufficient amounts of 51Cr and/or spontaneously release high amounts of 51Cr. Recently, we established a culture system which promotes the outgrowth of cytotoxic T lymphocytes in bone marrow-derived mononuclear cells cultured in IL-2. To study cytotoxicity and the responsible mechanisms of the obtained T-cell lines and clones, we modified a previously described cytotoxicity assay, based on the release of lactate dehydrogenase (LDH-release assay) for use in cryopreserved blasts obtained from the bone marrow of patients with acute myelocytic leukemia. Using this assay, we were able to detect cytotoxicity of IL-2-activated peripheral blood lymphocytes from three healthy controls against a number of blast samples obtained from the bone marrow of patients with AML (up to more than 40% lysis at an effector target cell ratio of 20:1). However, a minority of AML blasts seem to be resistant to lysis by IL-2-activated lymphocytes. In bone marrow-derived T-cell lines from patients with AML we detected lytic activity against autologous blasts in three of seven cases tested by LDH release, ranging from 29 to 63% at an effector target ratio of 10:1. Additionally, T-cell clones with different phenotypes were established which were able to mediate cytotoxicity against autologous blast cells. Thus, cytotoxicity against freshly isolated blasts from patients with acute myelocytic leukemia can be analyzed reliably, reproducibly, and without the use of isotopes by the LDH-release assay.

Blast Crisis

High-dose cytosine arabinoside and daunorubicin postremission therapy in adults with de novo acute myeloid leukemia. Long-term follow-up of a prospective multicenter trial.

A total of 149 consecutive de novo AML patients aged 50 years or less (median age = 37 years) were enrolled in this prospective multicenter trial initiated in May 1985. All patients received the same induction and early consolidation therapy with daunorubicin (DNR), cytosine arabinoside (Ara-C), and etoposide (DAV). High-dose Ara-C/DNR therapy included Ara-C at 3 g/m2, in 12 doses (HD-Ara-C/DNR I) and eight doses (HD-Ara-C/DNR II), followed by DNR 30 mg/m2 for 3 days. A complete remission (CR) was achieved in 104 (70%) patients; 61 complete responders received at least one cycle with HD-Ara-C/DNR. If those patients who were transplanted in first CR (n = 26), were not considered, the median relapse-free-survival (MRFS) of the remaining 78 patients was 15 months, with a probability of relapse-free survival (RFS) at 116 months of 30% (95% CI, 20-40%) after a median follow-up of 95 months. The MRFS of the HD-Ara-C/DNR consolidated patients was 25 months, with a probability of RFS at 116 months of 37% (95% CI, 24-50%). If all patients who were transplanted (n = 44) were not considered, the median survival time (MST) was 18 months with a probability of being alive at 118 months of 24% (95% CI, 16-33%). MST of the HD-Ara-C/DNR consolidated patients was 58 months with a survival probability of 46% (95% CI, 31-60%) at 118 months. Prognostic factor analysis did not reveal any significant influence of age, sex, FAB subtype, white blood cell count, hemoglobin level, thrombocyte count, LDH, or response to the first induction course on RFS of the HD-Ara-C/DNR consolidated patients. In summary, HD-Ara-C/DNR consolidation can improve the long-term outcome of a subgroup of de novo AML patients. Further improvement of the outcome seems to depend on the identification of patients with an inferior outcome under that strategy who might benefit from alternative treatment strategies.

Adolescent

Bone marrow-derived T-cell clones obtained from untreated acute myelocytic leukemia exhibit blast directed autologous cytotoxicity.

The eradication of minimal residual blast populations by activation of autologous cytotoxic cells with interleukin 2 (IL-2) is a new promising tool in the treatment of acute myelocytic leukemia (AML). However, the immunological effector cells are not yet clearly defined. The present study was designed to investigate the presence of cytotoxic precursor cells in active AML and to identify phenotypical and functional characteristics of autologous anti-leukemic cytotoxic effector cells. For this purpose, mononuclear cells (MNC) containing at least 70% leukemic blasts were isolated from bone marrow of untreated AML and cultured in the presence of 3000 IU/ml recombinant IL-2 (rIL-2) for 6-8 weeks. Under these conditions, T-cells were selected in the bone marrow cultures and overgrew the leukemic blasts. The resulting T-cell populations were cloned by limiting dilution and the clones obtained were characterized for their phenotypical and functional patterns. Totally, cloning resulted in 68 clones and a few cell lines. The clonality was verified by RT PCR analysis of TCR V beta gene expression. All clones obtained stained positive for CD2, CD3, DR and CD56. The vast majority (68%) of T-cell clones/lines was CD4+, a few clones expressed CD8 (19%) or CD4 and CD8, and four clones were of TCR gamma delta origin. Seven of 15 clones tested, including three CD4+, two CD8+ and two TCR gamma delta(+)-clones were found to be cytotoxic against autologous leukemic blast cells. All except one clone expressed oncolytic activities against allogeneic blasts too. One of the TCR gamma delta(+)-clones demonstrated NK activity by lysis of K562 targets. The majority of the T-cell-clones released IL-2, IL-8, TNF-alpha, GM-CSF but only a few IFN gamma and expressed high levels of mRNA for IL-2, TGF-beta and IL-10. None of the clones was found to produce IL-3, IL-4, IL-7 and TNF-beta. The data provide evidence of the existence of T-cell precursors in untreated AML bone marrow differentiating to cytotoxic cells with activity against autologous and allogeneic AML blast cells.

Bone Marrow Cells

AML blasts variably express interleukin 2 receptor alpha, beta or gamma chains without measurable effects on proliferation, cytokine message expression or surface expression of adhesion molecules upon stimulation with interleukin 2.

Preliminary clinical studies including interleukin 2 (IL-2) in chemotherapy strategies for treatment of acute myeloblastic leukemia (AML) suggest that IL-2 may improve the disease-free survival of the patients. Because of reports showing interleukin 2 receptor expression on AML blasts, it is important to know whether IL-2 may directly influence these leukemic cells. In initial studies using flow cytometry to analyze surface expression of interleukin 2 receptors (IL-2R), we found expression of the IL-2R alpha chain on blast cells in 26% and of the IL-2R beta-chain in 81% of the patients. To confirm these results at the transcriptional level, we studied the expression of RNA of the IL-2R alpha, beta, and gamma chains by RT-PCR in the bone marrow of 38 newly diagnosed patients with AML and in three AML-derived cell lines. RNA of the alpha chain was detectable in 11/38 patients, the beta chain in 10/38 patients and the gamma chain in 30/38 patients with AML. Blast cells obtained from colonies growing in semisolid media expressed mRNA for IL-2R. RNA for all three IL-2R chains was expressed in lines KG1, HEL 92.1.7 and K562. In comparison with unstimulated cell lines, incubation of the three lines with various amounts of IL-2 over 3 and 14 days did not increase their growth or change message expression of IL-2R, IL-10, and TGF-beta and surface expression of the adhesion molecules CD 11, CD 18, CD 29 and CD 54. In conclusion, despite expression of IL-2 receptors, AML blasts do not respond to IL-2 by proliferation, message expression for various cytokine genes and surface expression of cellular adhesion molecules.

Base Sequence

Recombinant human granulocyte-macrophage colony-stimulating factor after combined chemotherapy in high-grade non-Hodgkin's lymphoma--a randomised pilot study.

High-grade non-Hodgkin's lymphomas (NHL) can potentially be cured with combination chemotherapy, although the optimum schedules still have to be defined. Clinical trials with intensive chemotherapy are predominantly limited by myelosuppression. Here, haematopoetic growth factors open up the possibility of reducing chemotherapy-associated toxicities. In this randomised pilot study, we investigated the effects of a recombinant human granulocyte-macrophage colony-stimulating factor (rhGM-CSF) following combined chemotherapy with vincristine, doxorubicin, cyclophosphamide, prednisone and etoposide (VACPE). A total of 35 patients with high-grade NHLs were randomised to receive either rhGM-CSF or placebo during the first two chemotherapy cycles and rhGM-CSF for all following cycles. rhGM-CSF was administered at a dosage of 5 micrograms/kg for 10 days or until neutrophils were > 1/nl following chemotherapy. The analyses revealed a significant reduction of neutropenia and duration of neutropenia in the rhGM-CSF group. Adverse events were rare and generally mild apart from one anaphylactoid reaction. No effects of rhGM-CSF were observed concerning the platelet nadir or duration of thrombocytopenia. The benefit of rhGM-CSF for response induction and survival via rhGM-CSF-supported dose intensification remains to be determined.

Adolescent

Vincristine, doxorubicin, cyclophosphamide, prednisone and etoposide (VACPE) in high-grade non-Hodgkin's lymphoma--a multicenter phase II study.

BACKGROUND: Patients with high-grade non-Hodgkin's lymphoma (NHL) can potentially be cured by intensive chemotherapy. However, many patients still die of their disease, which underscores the need to define patient groups with different long-term prognoses and for more effective and possibly risk-adapted treatment approaches. PATIENTS AND METHODS: In this phase II study we investigated the feasibility and efficacy of a polychemotherapy consisting of 2 mg vincristine (V) on day 1, 25 mg/m2 doxorubicin (A) days 1-3, 800 mg cyclophosphamide (C) day 1, 60 mg/m2 prednisone (P) days 1-7 and 120 mg/m2 etoposide (E) days 1-3. This cycle (VACPE) was repeated on day 22 for up to 5 cycles in stages I-III and 6 cycles in stage IV, respectively, followed by consolidating radiotherapy in 38/73 patients. A total of 75 patients with high-grade NHLs according to the Kiel classification were eligible, and 73 patients are evaluable for response. The predominant histological subtypes were centroblastic, pleomorphic T-cell and large-cell anaplastic lymphomas, 60% of the patients presented with stage III/IV, 55% with a poor performance status (ECOG > or = 2), 53% with B symptoms and 60% with a LDH level >200 U/l. RESULTS: 57/73 patients achieved CR (78%), and the overall response rate (CR-PR) was 95%. The median observation time is 40 months (10+-74+). The 1-, 3- and 5-year overall survivals for the entire VACPE group were 79%, 64% and 61%, respectively. Forty-one patients are in ongoing CR with a continuous complete remission rate (CCR) of 67%. Fourteen of the 16 patients who relapsed (88%) did so within the first 24 months. The predicted 1-, 3- and 5-year DFS for those patients who achieved CR is 83%, 67% and 67%, respectively. The early mortality was 3/73 (4.1%). In patients with reduced performance status the overall survival (OS) (ECOG > or = 2) was significantly reduced, with a predicted 1-, 3- and 5-year survival of 62%, 49% and 49% versus 100%, 84% and 77% in patients with favorable performance status, respectively (p = 0.001). The predicted overall survival in stages III/IV is worse than in early stages with a 1-, 3- and 5-year probability of 73%, 52% and 52% versus 90%, 86% and 78%, respectively (p = 0.02). Comparison of patient groups with cumulative risk factors shows a significant decrease in overall survival. Especially in patients with 0-2 risk factors versus those presenting with >2 risk factors, there is a significantly better 3- and 5-year survival (p = 0.002). In contrast to overall survival, there were no differences between the listed risk groups concerning the disease-free survival of complete responders. CONCLUSION: In conclusion, the VACPE regime is feasible and effective in high-grade NHLs and may also be administered on an outpatient basis. Despite encouraging data, however, a prospective randomized trial is warranted to define a possible superiority to standard CHOP. However, this regimen may be the basis for further randomized and risk adapted innovative approaches for high-grade NHLs.

Adolescent

The Wilms' tumor gene is frequently expressed in acute myeloblastic leukemias and may provide a marker for residual blast cells detectable by PCR.

BACKGROUND: The tumor suppressor gene wt-1 was isolated by cytogenetic deletion analysis of patients with Wilms' tumor (wt-1). This gene encodes for a zinc finger DNA-binding protein with transcription-repressing properties. During normal ontogenesis it is expressed in a time- and tissue-dependent manner mainly in the kidneys and gonads. Recently, the expression of wt-1 in acute leukemias (AL) was reported. Here we investigated the prognostic potential of wt-1 mRNA expression during the course of the disease using the PCR technique. PATIENTS AND METHODS: Blast cells from 83 patients with newly diagnosed AML and 20 AML patients during follow-up in complete remission were analyzed for wt-1 mRNA expression. Peripheral blood mononuclear cells (PBMNC) and bone marrow (BM) from healthy persons (n = 13) and sorted CD34-positive cells from normal donors (n = 4) were used as negative controls. RESULTS: Wt-1-specific m-RNA was detectable in 67/83 (81%) patients with AML. Normal donors did not express wt-1 m-RNA but in 1/4 sorted CD34+ cell samples a weak amplified product was observed. After achieving cytological CR 14/20 studied patients lost wt-1 expression. In 7/8 patients in morphological CR the reappearance of wt-1 expression preceded relapse of the disease, in 1/8 patients wt-1 remained positive in CR. Response to therapy, disease-free survival, overall survival and FAB-subtype did not correlate with wt-1 m-RNA expression in newly diagnosed AML before therapy. CONCLUSIONS: In the majority of acute leukemias wt-1 is expressed and probably blast cell-associated, at least in levels detectable by PCR. Wt-1 mRNA was detectable in bone marrow cells of AML patients in clinical CR. The results strongly suggest that the persistence or reappearance of wt-1 predicts relapse of the disease prior to morphological relapse.

Adult

Interleukin-2 bolus infusion as late consolidation therapy in 2nd remission of acute myeloblastic leukemia.

The activation of autologous cytotoxic cells by interleukin-2 (IL-2) may be a promising tool for elimination of minimal residual blast populations in patients with acute myelocytic leukemia (AML) to prolong disease-free survival. Here, we report the results of a phase II study using IL-2 for consolidation therapy in patients with second remission of de novo AML. All patients in 1st relapse of AML received a uniform induction therapy consisting of intermediate high-dose AraC (iHDAraC) 2 x 600 mg/m2 d1-4 and VP-16 100 mg/m2 d1-7. Patients achieving 2nd remission were treated with 4 cycles recombinant IL-2 (rIL-2) 9 x 10(6) IU/m2 administered on d1-5 and 8-12/cycle as 1h infusion every six weeks. In 37/66 (56%) evaluable patients, complete remission (CR) was achieved. So far, 21/37 patients (4 after additional autologous bone marrow transplantation (ABMT) received rIL-2 consolidation. Three patients are too early for evaluation, 4 received allogeneic BMT, 6 relapsed before IL-2 was scheduled and 4 refused treatment with rIL-2. The median disease-free survival (DFS) was 11 (4-49+) months. Up to now, in 5/21 (24%) patients the duration of 2nd remission exceeded that of 1st remission 7/21 (33%) are in ongoing 2nd remission (7+ to 49+ months). The side effects of rIL-2 were generally moderate and manageable. Only in two patients, previously treated with ABMT, severe side effects occurred; septicaemia and pneumonia in one patient and desquamative erythrodermia in the second one. In accordance with other studies rebound lymphocytosis with a marked increase of CD56(+)-cells and release of secondary cytokines such as TNF-alpha, IFN-gamma and IL-6 was observed. The schedule is feasible and the data suggest a possible benefit for DFS, which, however has to be confirmed by randomized trials.

Adult

Clinical experience with fludarabine and its immunosuppressive effects in pretreated chronic lymphocytic leukemias and low-grade lymphomas.

Fludarabine monophosphate (FAMP) is a new adenine nucleoside analogue with a promising efficacy in B-cell chronic lymphocytic leukemia (B-CLL) and low-grade non-Hodgkin lymphomas (NHLs). Here, the clinical experience and side effects with FAMP are reported in 77 patients with pretreated CLL (59 B-CLL, 2 T-CLL) and low-grade NHLs (9 immunocytic lymphomas including 5 Waldenström's macroglobulinaemia, 2 centrocytic (cc) and 5 centroblastic-centrocytic (cb-cc) NHLs). 70/77 patients are evaluable for response. All except 8 patients were pretreated with one to four different regimens and had progressive disease. FAMP was administered at a dosage of 25 mg/m2 daily for 5 days as 30 minute infusion every fifth week. Partial (PR) or complete remission (CR) was achieved in 38/56 (68%) and 3/56 (5%) of evaluable patients with CLL, respectively. In 7/8 (1 x CR, 6 x PR) evaluable patients with immunocytic lymphoma and in 3/6 (3 x PR) patients with cc or cb-cc lymphoma remissions were obtained. The probability of progression-free survival was 66% and the event-free survival was 25% and 22% at 12 and 18 months. The median progression-free survival until relapse or death, however, was only 7 months (2-20+). Major toxic effects included infections in 22 patients (grade 3 and 4 WHO), granulocytopenia (mainly grade 3) and nausea in 8 patients (mainly grade 1). 19/22 patients were in PR at the time of occurrence of infectious complications. Meanwhile, 14 patients died due to septicaemia, pneumonia or other infections. Nine patients developed severe septicaemia, 4 patients had pneumocystis carinii or aspergillus pneumonias. The high infection rate may not only be due to hypogammaglobulinaemia and granulocytopenia induced by FAMP but also to a remarkable decrease of CD4+ cells from a median of 2479 to 241 CD4+ cells/microliters after 6 cycles of FAMP. In one case a tumor lysis syndrome was observed. No CNS toxicity was noted. It is concluded that FAMP is effective even in patients with advanced CLL and low-grade NHLs refractory to multiple chemotherapy regimens. However, FAMP has a marked suppressive effect on granulocytes and T-lymphocytes, predominantly CD4+ lymphocytes.

Adult

The inhibition of lymphokine-activated killer cells in acute myeloblastic leukemia is mediated by transforming growth factor-beta 1.

In acute myeloblastic leukemia (AML), the T cell response and cytotoxic activity are impaired at time of diagnosis due to not-yet-identified soluble immunosuppressing factors. The inhibition of autologous antileukemic immune response by these factors may support immunosurveillance of AML. A well-known inhibitor of lymphokine-activated killer (LAK) cell activity is transforming growth factor-beta 1 (TGF-beta 1). To evaluate the possible significance of TGF-beta 1 for the impaired cytotoxic activity in AML at time of diagnosis, we looked for the TGF-beta 1-specific mRNA, for the production and release of TGF-beta 1, and for its relevance for immunosuppressing activities in AML. In the culture supernatants of 18 investigated AMLs, we detected various amounts of TGF-beta protein. The TGF-beta 1 and TGF-beta 2 protein concentrations were 105 pg/mL (< 50-240 pg/mL) and 32 pg/mL (< 2-91 pg/mL), respectively. In 13 of 15 patients, the leukemic blasts expressed TGF-beta 1 mRNA. To exclude possible interferences with contaminating mononuclear cells (MNC), the data were confirmed by analysis of sorted blast cells and leukemic cell lines. All investigated leukemic cell lines expressed TGF-beta 1 protein and mRNA. The culture supernatants of AMLs inhibited LAK activity strongly in a dose-dependent manner. The inhibition of cytotoxicity could be restored by the addition of neutralizing TGF-beta 1 antibodies. The data suggest TGF-beta 1 to be a relevant factor for the inhibition of cytotoxic activities in AMLs.

Adult

In vivo regulation of transforming growth factor beta 1 transcription by immunotherapy: interleukin-2 impairs interferon-alpha-stimulated increase in steady-state mRNA levels of transforming growth factor beta 1.

Recombinant interleukin-2 (rIL-2) in combination with recombinant interferon alpha (rIFN alpha) has been shown to mediate significant antitumoral effects in some patients with advanced renal cell cancer or malignant melanoma. The therapeutic effects may be partially modulated by secondarily induced cytokines, especially with regard to in vivo lymphocyte activation. To investigate possible negative effects on lymphocyte activation during immunotherapy, we designed a study on transcription of transforming growth factor beta 1 (TGF beta 1), a known inhibitor of lymphocyte function, in patients undergoing treatment with daily alternating administration of rIFN alpha and rIL-2. Here we present data on gene expression of TGF beta 1. Kinetic mRNA studies revealed an increase of TGF beta 1 mRNA in peripheral mononuclear cells 12 h after subcutaneous injection of rIFN alpha. The following intravenous rIL-2 administration significantly decreased the amounts of TGF beta 1-specific mRNA. In contrast to the effect of the first dose, subsequent application of rIFN alpha did not enhance TGF beta gene expression during rIFN alpha/IL-2 therapy. The diminished TGF beta 1 gene expression returned to pretreatment levels 1-7 days after the last rIL-2 administration. When concomitant with a decrease in TGF beta 1 transcripts. Our results indicate a complex regulatory effect on secondarily induced cytokines such as TGF beta 1 by immunotherapeutic approaches. The rIL-2-mediated down-regulation of increased TGF beta 1 steady-state mRNA levels following rIFN alpha may represent a positive immune regulatory effect on cytotoxic cells. Furthermore this effect may modulate proliferation of neoplastic tissues.

Autoradiography

The expression of the Wilms' tumor gene in acute myelocytic leukemias as a possible marker for leukemic blast cells.

The Wilms' tumor gene (wt-1) is expressed in the developing fetal kidney, gonads and in Wilms' tumors. Recently, the expression of wt-1 in leukemia-derived cell lines and cases of acute leukemias (AL) was reported. The present study was designed to investigate the potential of wt-1 as genetic marker for acute myelocytic leukemias (AML). Blast cells from 52 patients with AML, 14 patients in complete remission (CR) and four leukemic cell lines were examined for expression of wt-1 mRNA. Peripheral blood mononuclear cells (PBMNC) and bone marrow (BM) from 13 healthy persons were used as negative controls. RNA of the wt-1 gene was expressed in 41/52 (79%) patients with previously untreated AML. The majority of the 14 patients studied in CR lost wt-1 expression. In three out of the four patients in CR reappearance of wt-1 expression preceded relapse of the disease. In three of the four tested cell lines wt-1 specific transcription was demonstrated. No correlation to FAB classification, immunophenotype or response to treatment was found. Our experiments indicate wt-1 expression in the majority of AML, but not in bone marrow or PBMNC of healthy controls. Therefore, wt-1 expression may be associated with the presence of malignant blast cells and the analysis of wt-1 gene expression via PCR may be a sensitive method for the detection of leukemic blast cells.

Adult