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Biomedical subjects

François-Xavier Mahon

Publications and source records attributed to François-Xavier Mahon.

16 recordsLinked to original sources

Imatinib mesylate discontinuation in patients with chronic myelogenous leukemia in complete molecular remission for more than 2 years.

In the present study, we address the issue of the discontinuation of imatinib mesylate (Gleevec) in chronic myelogenous leukemia with undetectable residual disease for more than 2 years. Twelve patients were included. The median duration of real-time quantitative-polymerase chain reaction (RTQ-PCR) negativity and imatinib therapy were, respectively, 32 months (range, 24-46 months) and 45 months (range, 32-56 months) before imatinib interruption. Six patients displayed a molecular relapse with a detectable BCR-ABL transcript at 1, 1, 2, 3, 4, and 5 months. Imatinib was then reintroduced and led to a novel molecular response in most patients. Six other patients (50%) still have an undetectable level of BCR-ABL transcript after a median follow-up of 18 months (range, 9-24 months). We hypothesize that relapses observed within 6 months reflect the kinetics of undetectable dividing chronic myelogenous leukemia (CML) cells. Those cells may be eradicated or controlled in long-term nonrelapsing patients, as described in our study.

Adult↗

BCR/ABL oncogene directly controls MHC class I chain-related molecule A expression in chronic myelogenous leukemia.

MHC class I chain-related molecules (MIC) participate in immune surveillance of cancer through engagement of the NKG2D-activating receptor on NK and T cells. Decreased NKG2D expression and function upon chronic exposure to NKG2D ligands and/or soluble forms of MIC (sMIC) may participate in immune escape. In chronic myeloid leukemia, a malignancy caused by the BCR/ABL fusion oncoprotein, we showed cell surface expression of MICA on leukemic, but not healthy, donor hemopoietic CD34+ cells. At diagnosis, chronic myeloid leukemia patients had abnormally high serum levels of sMICA and weak NKG2D expression on NK and CD8+ T cells, which were restored by imatinib mesylate (IM) therapy. In the BCR/ABL+ cell line K562, IM decreased both surface MICA/B expression and NKG2D-mediated lysis by NK cells. Silencing BCR/ABL gene expression directly evidenced its role in the control of MICA expression. IM did not affect MICA mRNA levels, but decreased MICA protein production and release. Sucrose density gradient fractionation of K562 cytoplasmic extracts treated with IM showed a shift in the distribution of MICA mRNA from the polysomal toward the monosomal fractions, consistent with decreased translation. Among the major pathways activated by BCR/ABL that regulate translation, PI3K and mammalian target of rapamycin were shown to control MICA expression. These data provide evidence for direct control of MICA expression by an oncogene in human malignancy and indicate that posttranscriptional mechanisms may participate in the regulation of MICA expression.

Adult↗

Expression of the cell cycle regulators p14(ARF) and p16(INK4a) in chronic myeloid leukemia.

Expression of p14(ARF) and p16(INK4a) tumor suppressor genes was investigated in 109 patients with chronic myeloid leukemia (CML). The p14(ARF) and p16(INK4a) mRNA levels were significantly low in patients in chronic phase (CP) at presentation and high in patients treated with interferon-alpha (IFN-alpha), especially in non-responders. A moderate overexpression of p14(ARF) with a normal expression of p16(INK4a) was observed in imatinib-resistant patients. Although protein expression did not consistently match mRNA levels, a role for the two cell cycle regulators in the IFN-alpha signaling pathway is suggested as well as a relation with the resistance to IFN-alpha or imatinib therapy.

Cell Cycle↗

Molecular remission in chronic myeloid leukemia patients with sustained complete cytogenetic remission after imatinib mesylate treatment.

BACKGROUND AND OBJECTIVES: Imatinib mesylate induces a complete cytogenetic response (CCR) in many patients with chronic myeloid leukemia (CML). However, the ultimate goal of therapy for CML is complete elimination of Philadelphia chromosome positive cells or BCR-ABL rearrangements. We studied molecular responses in CML patients in CCR after imatinib treatment. DESIGN AND METHODS: Real-time quantitative reverse transcriptase polymerase chain reaction analysis were used to monitor BCR-ABL levels in 59 CCR patients. Negative results were confirmed by two different techniques performed in two different laboratories. Patients were considered in complete molecular remission if they had four undetectable analyses from two separate samples taken three months apart. RESULTS: The median follow-up was 41 months (17-53). The median BCR-ABL/ABL ratio at the time of CCR was 0.3 % (0-9.88). Patients were split into two groups: group A (n=43) comprised patients with a detectable BCR-ABL/ABL ratio throughout the follow-up and group B (n=16) included those with an undetectable level of BCR-ABL/ABL (< 10(-5)) i.e. in complete molecular remission. No relapses were observed in group B, while 13 group A patients lost their CCR. The probability of losing CCR in this group was 33.2 % >+/-18.0. By Cox regression analysis the best factor for predicting the probability of achieving molecular remission was having a CCR at 6 months (p=0.038) or at 3 months (p=0.024). INTERPRETATION AND CONCLUSIONS: Molecular remission after imatinib treatment, i.e. BCR-ABL/ABL< 10-5 in peripheral blood, is not a rare event, particularly in patients achieving CCR at 6 months.

Adult↗

JAK the trigger.

A somatic mutation that leads to activation of the JAK2 tyrosine kinase has recently been identified as a recurrent genetic abnormality in several different myeloproliferative disorders. A translocation generating the constitutively activated fusion protein PCM1-JAK2 has also been recently found in atypical chronic myelogenous leukemia and acute leukemia. This recent spate of independent studies (one of which is published in this issue of Oncogene) establish abnormal JAK2 activation as the underlying defect in a significant number of cases of myeloproliferative disease, and JAK2 as an important new therapeutic target.

Amino Acid Substitution↗

[Leucemogenesis of chronic myelogenous leukemia].

Chronic myelogenous leukemia is a model for the explaining between dysregulation of tyrosine-kinase and cellular transformation. BCR-ABL protein providing from the abnormal gene is the biological marker of the leukemic cells. It is the molecular counterpart of the chromosomal abnormality that is also called Philadelphia chromosome. Since BCR-ABL drives the leukemic proliferation, it became recently a specific target to develop the tyrosine-kinase inhibitors. These new specific drugs and their effects on the chronic myelogenous leukemia must be taken into account to explain the physiopathology of the disease.

Antineoplastic Agents↗

Overproduction of BCR-ABL induces apoptosis in imatinib mesylate-resistant cell lines.

BACKGROUND: Imatinib mesylate, a BCR-ABL tyrosine kinase inhibitor, induces apoptosis in chronic myeloid leukemia cells. Resistance to imatinib is currently the most important concern of this treatment. One of the main mechanisms of this resistance is overexpression of BCR-ABL. METHODS: In the current study, the authors investigated the correlation between BCR-ABL overexpression and apoptosis in BaF/BCR-ABL and LAMA84 cell lines resistant to imatinib suddenly deprived of the inhibitor, and compared with their sensitive counterpart. RESULTS: Removal of imatinib from culture medium led to a decrease in Bcr-Abl protein expression by Day 5, which was sustained for > or = 3 weeks of imatinib deprivation. Apoptosis was observed after 3 days of imatinib deprivation in resistant lines accompanied by caspase activation, loss of membrane asymmetry (annexin V staining), and alteration of mitochondrial potential (dihexyloxacarbocyanine iodide [DiOC6]). Transient activation of the STAT5/Bcl-xL pathway and Akt kinase activity preceded these responses. CONCLUSIONS: Thus, imatinib removal led to apoptosis of BCR-ABL-overexpressing leukemic cells, a phenomenon that could be exploited to sensitize imatinib-resistant cells to the cytotoxic effect of other drugs.

Antineoplastic Agents↗

Quantification of imatinib in human plasma by high-performance liquid chromatography-tandem mass spectrometry.

Imatinib, also known as Gleevec or Glivec, is a selective tyrosine kinase inhibitor currently used for the treatment of Philadelphia chromosome-positive chronic myeloid leukemia (CML) and for other malignant pathologies. We have developed a LC-MS-MS [corrected] method that could be used for imatinib therapeutic drug monitoring in plasma. After a liquid-liquid extraction, the imatinib and its deuterated internal standard were eluted on an XTerra RP18 column with a gradient of acetonitrile-ammonium formiate buffer 4 mmol/L, pH 3.2. Imatinib was detected by electrospray ionization mass spectrometry with multiple reaction-monitoring mode. The calibration curves were linear over the range 10-5000 ng/mL. The limit of quantification was set at 10 ng/mL. The bias was lower than 8%. Intra-day and inter-day precisions were lower than 8%. The extraction recovery was higher than 90%. This method is simple, adapted to routine application, and allows accurate therapeutic monitoring of imatinib. It can be used to evaluate patient adherence to daily oral therapy, drug-drug interactions, or pharmacokinetic/pharmacodynamic relationships.

Antineoplastic Agents↗

The impact of the combination of baseline risk group and cytogenetic response on the survival of patients with chronic myeloid leukemia treated with interferon alpha.

BACKGROUND AND OBJECTIVES: This study was aimed at examining major cytogenetic response (MCR) as a valid predictor of the course of chronic myeloid leukemia (CML) and at assessing the survival of CML patients treated with interferon alpha (IFN) in dependence on the combination of MCR (yes or no) with the baseline risk group of the New CML score. MCR was defined as a reduction of Philadelphia chromosome-positive bone marrow cells to <or= 35%. The New CML score discriminated three risk groups with significantly different survival probabilities. DESIGN AND METHODS: Data from individual patients with a confirmed diagnosis of Philadelphia chromosome-positive CML treated with IFN were collected from 10 prospective studies in Europe and Japan. Stratified for baseline risk group, patients with a major cytogenetic response by 21 months after the start of therapy (n=171) were compared with patients achieving a minor response or less (n=487). Survival probabilities after the landmark at 21 months were compared by using the two-sided log-rank test. RESULTS: MCR was a major predictor for low- and intermediate-risk patients (log-rank test, p <or= 0.0001), but not for high-risk patients. Ten-year survival probabilities for the low- and intermediate-risk patients who had a MCR were 75% (95 CI: 65-86%) and 56% (95 CI: 37-75%), respectively. The corresponding probabilities for patients who did not achieve a MCR were 21% (95 CI: 6-35%) and 16% (95 CI: 6-25%). INTERPRETATION AND CONCLUSIONS: Cytogenetic response per se is not a valid surrogate marker, as it is dependent on the baseline prognostic profile. The combination of risk group and cytogenetic response does, however, provide useful clinical information. The survival data presented here can serve as a benchmark for the assessment of the long-term effectiveness of imatinib.

Adult↗

Imatinib mesylate (STI571) decreases the vascular endothelial growth factor plasma concentration in patients with chronic myeloid leukemia.

Increased angiogenesis in bone marrow (BM) is one of the characteristics of chronic myeloid leukemia (CML), a clonal myeloproliferative disorder that expresses a chimeric Bcr/Abl protein. Recently, the therapeutic strategy in CML has been totally modified with the development of a new drug: imatinib mesylate (STI571), a specific inhibitor of Bcr/Abl tyrosine kinase activity. The aim of our study was to determine, in patients with CML, the capacity of imatinib mesylate to modulate one of the most potent regulators of angiogenesis, the vascular endothelial growth factor (VEGF). In newly diagnosed CML, we observed significantly increased VEGF secretion by CML BM cells and significantly increased VEGF plasma concentrations. We showed that low plasma VEGF concentrations could be one of the characteristics of complete cytogenetic remission. To understand the molecular mechanisms leading to the inhibition of VEGF production by imatinib, we focused our experiments on the human cell line K562, which is Bcr/Abl positive. We demonstrated that imatinib inhibits VEGF gene transcription by targeting the Sp1 and Sp3 transcription factors. Taken together, our results highlight the potential prognostic value of VEGF concentrations in evaluating the evolution of CML patients treated with imatinib.

Antineoplastic Agents↗

Rapid detection of phosphotyrosine proteins by flow cytometric analysis in Bcr-Abl-positive cells.

BACKGROUND: Constitutive tyrosine phosphorylation derived from Bcr-Abl kinase activity is the major characteristic of Bcr-Abl positive cells. In this study, we developed a method to detect the phosphotyrosine proteins by flow cytometry and we asked whether phosphorylation was affected by imatinib mesylate treatment. METHODS: Cells were treated or not with imatinib mesylate, fixed and permeabilized by PFA followed by saponin, then stained with anti-phosphotyrosine (p-tyr) monoclonal antibody and analyzed by flow cytometry. RESULTS: Optimal staining parameters were performed with p-tyr antibody using K562 and LAMA84 lines that displayed high levels of tyrosine phosphorylation as compared to the control line, HL60. Tyrosine phosphorylation was inhibited by imatinib in a dose-dependent manner, but not modified by other inhibitors demonstrating that the staining detected is specific to Bcr-Abl phosphorylation. The staining of imatinib-resistant cell lines such as the mutated BaF/Bcr-AblT315I cell line or resistant CML patient cells, showed that hyperphosphorylation was not affected by imatinib treatment. In one CML patient, our technique permitted us to detect a small hyperphosphorylated population resistant to imatinib that appeared hyperphosphorylated and amplified at the time of relapse. CONCLUSIONS: We have developed a flow cytometric technique presenting several advantages such as rapidity and sensitivity, which requires fewer cells than the Western blot.

Animals↗

[Origin of resistance to Imatinib mesylate: lessons learned from this experience].

For drug development and pharmaceutical research, targeting the molecular abnormalities is considered as a new challenge. A number of diseases including cancer are linked to perturbation of tyrosine kinase (TK). Imatinib (Glivec or Gleevec, Novartis), the most potent inhibitor of c-abl TK, was recently developed. This molecule has been approved in the treatment of chronic myeloid leukemia (CML). However, emergence of clinical resistance regarding a low rate of CML patients leads to intensive research. In the current article, we discuss the data and the mechanism of the resistance phenomenon. This review illustrates the important requirement to transfer back the information from patient to laboratory in order to improve future drug design.

Antineoplastic Agents↗

MDR1 gene overexpression confers resistance to imatinib mesylate in leukemia cell line models.

Inappropriate expression of the multidrug resistance (MDR1) gene encoding the P-glycoprotein (Pgp) has been frequently implicated in resistance to different chemotherapeutic drugs. We have previously generated chronic myeloid leukemia (CML) cell lines resistant to the tyrosine kinase inhibitor imatinib mesylate (STI571), and one line (LAMA84-r) showed overexpression not only of the Bcr-Abl protein but also of Pgp. In the present study, we investigated this phenomenon in other cell lines overexpressing exclusively Pgp. Thus, cells from the K562/DOX line, described as resistant to doxorubicin due to MDR1 gene overexpression, grew continuously in the presence of 1 microM imatinib, but died in 4 to 5 days if the Pgp pump modulators verapamil or PSC833 were added to the imatinib-treated culture. Analysis of cell proliferation by the MTS (3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium) assay confirmed the differential sensitivity of K562/DOX to imatinib, which was also reversed by verapamil or PSC833. Flow cytometric analysis of the total phosphotyrosine content by intracytoplasmic staining after a 2-hour incubation with escalating doses of imatinib showed that the inhibitory concentrations of 50% (IC(50)) for inhibition of cellular protein tyrosine phosphorylation were 15, 10, and 5 microM for K562/DOX, K562/DOX plus verapamil, and K562, respectively. Retroviral-mediated transfection of the BCR-ABL(+) AR230 cell line with the MDR1 gene decreased its sensitivity to imatinib, an effect that was also reversed by verapamil. The possible role of MDR overexpression in clinical resistance to imatinib remains to be defined. We therefore confirm that imatinib should be added to the extensive list of drugs that can be affected by the MDR phenomenon.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

A SIN lentiviral vector containing PIGA cDNA allows long-term phenotypic correction of CD34+-derived cells from patients with paroxysmal nocturnal hemoglobinuria.

Paroxysmal nocturnal hemoglobinuria (PNH) is a hematopoietic stem cell (HSC) disorder in which an acquired somatic mutation of the X-linked PIGA gene results in a deficiency in GPI-anchored surface proteins. Clinically, PNH is dominated by a chronic hemolytic anemia, often associated with recurrent nocturnal exacerbations, neutropenia, thrombocytopenia, and thrombotic tendency. Allogenic bone marrow transplantation is the only potentially curative treatment for severe forms of PNH but is associated with a high treatment-related morbidity and mortality. HSC gene therapy could provide a new therapeutic option, especially when an HLA-matched donor is not available. To develop an efficient gene transfer approach, we have designed a new SIN lentiviral vector (TEPW) that contains the PIGA cDNA driven by the human elongation factor 1 alpha promoter, the central DNA flap of HIV-1, and the WPRE cassette. TEPW transduction led to a complete surface expression of the GPI anchor and CD59 in PIGA-deficient cell lines without any selection procedure. Moreover, efficient gene transfer was achieved in bone marrow and mobilized peripheral blood CD34(+) cells derived from two patients with severe PNH disease. This expression was stable during erythroid, myeloid, and megakaryocytic liquid culture differentiation. CD59 surface cell expression was fully restored during 5 weeks of long-term culture.

Antigens, CD34↗

Imatinib in combination with cytarabine for the treatment of Philadelphia-positive chronic myelogenous leukemia chronic-phase patients: rationale and design of phase I/II trials.

Imatinib (Gleevec) (formerly STI571) has been shown to selectively inhibit the tyrosine kinase domain of the oncogenic BCR-ABL fusion protein of chronic myelogenous leukemia (CML) cells. In recent phase I and II studies testing this new compound in patients who had failed to respond to interferon (IFN), hematological and cytogenetic responses were reported in most of those with chronic-phase CML. However, in some patients resistance has been associated with a single amino acid substitution in a threonine residue of the Abl kinase domain. In vitro studies examining the effects of imatinib plus cytarabine (Ara-C) using CML cell lines and colony-forming assays of CML patient samples have shown synergistic antiproliferative effects of this combination. Thus several groups decided to investigate this new combination with the hypothesis that cell resistance would be less frequent. The CML French Group performed a phase II trial to determine the safety and tolerability of a combination of imatinib and Ara-C for previously untreated patients with chronic-phase CML. Treatment was administered on 28-day cycles for 12 months. Patients were treated continuously with imatinib orally at a dose of 400 mg daily. Ara-C was given on days 14 to 28 of each cycle at an initial dose of 20 mg/m(2)/d via subcutaneous injection, hydroxyurea (HU) being stopped at least 7 days before imatinib. Recently, the Dutch group decided to explore a combination of high-dose Ara-C with imatinib in patients in chronic-phase CML. Preliminary results are encouraging. However, a long follow-up is required before concluding that these strategies will overcome cell resistance.

Antineoplastic Combined Chemotherapy Protocols↗