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F Belloc

Publications and source records attributed to F Belloc.

At least 55 records · Page 3Linked to original sources

Effect of pentoxifylline on apoptosis of cultured cells.

Apoptosis or programmed cell death (PCD) was measured in two human cell models by flow cytometric analysis. Blood neutrophils underwent spontaneous apoptosis in short-term culture. Pentoxifylline (PTX) inhibited spontaneous neutrophil PCD. We confirmed that granulocyte/macrophage colony-stimulating factor (GM-CSF) inhibited apoptosis of polymorphonuclear neutrophils. Treatment with both GM-CSF and PTX did not increase the inhibition of PCD by either GM-CSF or PTX alone. Because apoptosis could be due to the accumulation of H2O2 in the culture medium, and because PTX has been described to reduce peroxide production, we studied the effect of adding catalase to the medium. Catalase reduced the neutrophil apoptosis and this effect was cumulative with the effect of PTX. Camptothecin, an inhibitor of topoisomerase I, induces a block in the S-phase of the cell cycle followed by apoptosis of the U937 cell line. This drug-induced apoptosis was partially inhibited by PTX, whereas the S-phase cell block was not affected. In conclusion, PTX was found to inhibit apoptosis in two different human cell types. In neutrophils, this effect appears to occur regardless of the inhibition of phosphodiesterase activity and inhibition of H2O2 release.

Apoptosis↗

Influence of pentoxifylline on membrane thrombomodulin levels in endothelial cells submitted to hypoxic conditions.

Thrombomodulin (TM) expression at the surface of endothelial cells is upregulated by cAMP analogues, whereas hypoxic conditions induce a decrease in this expression. Pentoxifylline (PTX) enhances the intracellular levels of cAMP in human umbilical vein endothelial cells (HUVECs). We therefore investigated the influence of this drug on TM expression in cells submitted to hypoxia. TM expression was quantified at the surface of HUVECs in the presence or absence of PTX during 18 h of incubation. Membrane TM was immunolabeled with a fluorescent monoclonal antibody and the expression was quantified by flow cytometric analysis. Our preliminary data revealed that PTX at 0.01 microM significantly increased TM expression levels compared with cells in hypoxia without the drug. Therefore, at this low dose PTX appears able to counterbalance the procoagulant effect of hypoxia.

Cell Membrane↗

Specific antisense oligomer anti Bcr-abl junctions in chronic myeloid leukemia: a cell cycle analysis and CFU-GM study.

Antisense oligonucleotides were used to determine the role of the BCR-ABL gene in the proliferation of chronic myeloid leukaemia (CML) clonogenic cells. Peripheral blood Philadelphia chromosome positive cells were obtained from eight CML patients at diagnosis (chronic phase = 7; accelerated phase = 1). Mononuclear cells were incubated with synthetic antisense 18-mer oligonucleotides complementary to the two different junctions b2a2 or b3a2. The type of junction (b2a2 or b3a2) was previously determined by RT-PCR techniques. Cells incubated for 12 to 14 hours with or without sense oligonucleotides served as controls. After incubation with oligonucleotides, the cell DNA synthesis was analysed by flow cytometry using the BrdUrd/DNA method and the cell plating efficiency in methylcellulose was determined. In six of the seven patients in chronic phase, there was a significant inhibition of CFU-GM production which was only 68.4 +/- 19%; (p < .01) of that found in controls. The S phase index, which depends upon the percentage of S phase cells as well as the fluorescence intensity, was 48 +/- 29% (p < .01) of the control values for the seven patients in chronic phase. Interestingly, for the only CML patient in accelerated phase, antisense oligomers had no inhibitory effect on either the production of CFU-GM or the number of S phase cells. In improving the specificity of oligomers, it might be useful for gene-targeted anti-leukemic therapy and/or bone marrow purging.

Base Sequence↗

[Detection of the resistance to Ara-C blast cells in acute myeloid leukemia using flow cytometry].

Ara-C is currently used in the treatment of adult acute myeloid leukemia (AML). The cytotoxicity of Ara-C derives from an inhibition of DNA synthesis which can be determined using flow cytometry from the amount of bromodeoxyuridine (BrdUrd) incorporated into cells after a short exposure to BrdUrd. We developed a computer program to quantify inhibition of the rate of DNA synthesis by analysis of the distribution of BrdUrd/DNA. A resistance index (RI) was expressed as the ratio of the amount of BrdUrd incorporated into S phase cells incubated with Ara-C to that incorporated in the absence of Ara-C. In Ara-C sensitive and resistant HL60 cell lines, a linear relationship between RI and log Ara-C concentration was observed. This technique was applied to 96 bone marrow samples from patients with de novo AML treated by a regimen containing Ara-C. A first group of nine patients with high RI values included only drug resistant (DR) patients; a second group of 63 patients with low RI values included 62 patients who achieved a complete remission (CR); a third group of 24 patients with intermediate RI values included 19 CR and five DR patients. In view of these results, we think that it is possible to detect a majority of DR patients treated by Ara-C.

Adolescent↗

Radiobiological features of acute myeloblastic leukemia: comparison of self-renewal versus terminally differentiated populations.

PURPOSE: To evaluate the radiosensitivity of self-renewing progenitor cells in acute myeloblastic leukemia (AML), we have compared the radiosensitivity of the cells grown either in methylcellulose alone for 7 days, or first in suspension culture for 7 days before being plated in methylcellulose. Methylcellulose selects for terminal-dividing cells and suspension cultures have been developed because they allow self-renewal to occur: The exponential growth of the progenitors of AML cultured in suspension is due to self-renewal. METHODS AND MATERIALS: Cells were harvested from previously untreated leukemic human bone marrows. The myeloblastic lineage of the colonies was assessed by morphological, cytochemical, and immunophenotypic analysis, and by the use of growth factors that did not stimulate the growth of T-lymphocytes. The cell-cycle distribution of the blasts was analyzed by flow cytometry and was comparable for all samples. The irradiation was performed with gamma-photons at a dose-rate of 0.05 Gy/min, similar to the clinical conditions used in our institution for total body irradiation (TBI). RESULTS: The culture methods selected aggressive leukemias. There were large variations of the individual radiosensitivity whatever culture method was used. The progenitor cells capable of self-renewal were more radiosensitive than terminal dividing cells. In two cases, a shoulder was found in the initial part of the cell-survival curves of cells capable of self-renewal. In these two cases, the best fit for the data was the linear quadratic model (survival = e-alpha D-beta D2) with alpha/beta values of 1.49 Gy and 3.12 Gy, respectively. CONCLUSION: The very low values of alpha/beta suggest a reduced antileukemic effect in case of fractionated TBI, and may lead to more reliable screening methods to determine the most appropriate technique for radiation ablation of bone marrow prior to bone marrow transplantation (BMT).

Adolescent↗

A flow cytometric method using Hoechst 33342 and propidium iodide for simultaneous cell cycle analysis and apoptosis determination in unfixed cells.

A flow cytometric method to detect apoptotic cells is described. This method is based on the detection of differences in chromatin condensation with Hoechst 33342 as a probe and the detection of dead cells with propidium iodide as a probe for membrane damage. By this method it was possible to detect, in the same sample and at the same time, intact cells, cells undergoing apoptosis, and dead cells resulting from apoptotic and/or necrotic processes. The method was successfully applied to the detection of apoptotic cells in two human cell models: cultured polymorphonuclear cells and the U937 cell line treated with antitumoral drugs. Staining specificity for apoptotic cells was controlled by cell sorting of the presumed apoptotic population, followed by morphologic examination or DNA analysis of the sorted populations. The usefulness of such a method is discussed in terms of applications in the analysis of heterogeneous clinical samples, populations with low DNA degradation during apoptosis, and cell cycle position of the apoptotic cells.

Antineoplastic Agents↗

Detection of cytarabine resistance in patients with acute myelogenous leukemia using flow cytometry.

Cytarabine (Ara-C) is currently used in the treatment of adult acute myeloid leukemia (AML). To predict the results of induction chemotherapy, it could be useful to detect leukemic cells that are resistant to Ara-C in patients with AML. Using a bromodeoxyuridine/DNA (BrdUrd/DNA) staining method in flow cytometry (FCM), we have developed a cell resistance index to Ara-C (RI). The technique has been applied to 121 bone marrow (BM) samples from patients with de novo AML treated by a regimen containing Ara-C and daunorubicin (DNR). Ninety-seven patients achieved a complete remission (CR), and 24 patients did not and were considered drug-resistant (DR). The BM cells collected at diagnosis were cultured for 48 hours and underwent BrdUrd/DNA analysis. Among 25 patients with no or very low proliferative activity (<3% of cells in S-phase), the proportion of DR patients (nine of 25) was significantly higher than in a second group of 96 patients with detectable proliferative activity (15 of 96) (P < .025). Within this second group, there was a first group of nine patients with high RI values, which included only DR patients; a second group of 63 patients with low RI values, which included 62 CR patients; and a third group of 24 patients with intermediate RI values, which included 19 CR and five DR patients. In view of this series, our results show that it is possible to detect a majority of DR patients treated by Ara-C.

Acute Disease↗

Fluorescence energy transfer as a probe for nucleic acid structures and sequences.

The primary or secondary structure of single-stranded nucleic acids has been investigated with fluorescent oligonucleotides, i.e., oligonucleotides covalently linked to a fluorescent dye. Five different chromophores were used: 2-methoxy-6-chloro-9-amino-acridine, coumarin 500, fluorescein, rhodamine and ethidium. The chemical synthesis of derivatized oligonucleotides is described. Hybridization of two fluorescent oligonucleotides to adjacent nucleic acid sequences led to fluorescence excitation energy transfer between the donor and the acceptor dyes. This phenomenon was used to probe primary and secondary structures of DNA fragments and the orientation of oligodeoxynucleotides synthesized with the alpha-anomers of nucleoside units. Fluorescence energy transfer can be used to reveal the formation of hairpin structures and the translocation of genes between two chromosomes.

Aminoacridines↗

The labelling of proliferating cells by Ki67 and MIB-1 antibodies depends on the binding of a nuclear protein to the DNA.

The antigen Ki-67 Ag, regarded as a marker for proliferating cells, was identified as a protein(s) (pKi-67) which can exist free or associated with DNA as evidenced by DNA digestion of cells before or after immunolabeling with Ki-67. The dual nature of this antigen was also supported by reconstitution of Ki-67 Ag from purified DNA and nuclear proteins extracted from the K562 cell line. The immunoreactivity of the resulting complexes was examined in solution using Ki-67 and MIB-1 antibodies. The interaction between Ki-67 or MIB-1 antibodies and pKi-67 was enhanced in the presence of undegraded ds DNA, indicating that ds DNA modulates the conformation of pKi-67 and that the altered conformation of pKi-67 is more reactive than the pure protein to both Ki-67 and MIB-1 antibodies.

Antibodies↗

Flow cytometric study of idarubicin and daunorubicin accumulation and the effect of verapamil in leukemic cell lines and fresh cells from patients with acute non-lymphoblastic leukemia.

By using flow cytometry, the intracellular accumulation (Acc) of idarubicin (IDA) and daunorubicin (DNR) and the effect of verapamil (VRP) on both anthracycline accumulation (VRP index) were studied in leukemic cell lines (K562 and HL60 and their two DNR-resistant subclones) and fresh leukemic cells. IDA accumulated more than DNR in both parental (K562: p < 0.03 and HL60: 0.09) and resistant cell lines (p < 0.01 for both cell lines) irrespective of whether or not they were treated with VRP. VRP index was higher for DNR than for IDA (p < 0.05). Similar results were observed in fresh leukemic blasts from 25 patients with ANLL (IDA Acc superior to DNR Acc: p < 0.0001; higher VRP index for DNR than for IDA: p < 0.01). The higher Acc of IDA than DNR seen in fresh leukemic cells could explain the better clinical efficacy of IDA reported in patients with ANLL.

Adolescent↗

Cell proliferation markers in acute leukemia.

Cell proliferation of blast cells in acute myeloid leukemia (AML) plays a major role in determining response to therapy. Therefore, studies of leukemic cell growth and related factors have been very numerous involving many techniques. They have used a wide panel of proliferation markers but despite their close correlation, we consider here markers assessing cell cycle parameters and those related to cell proliferation.

Biomarkers↗

Daunorubicin (DNR) accumulation in fresh leukemic cells: correlation with clinical and biological features.

The DNR accumulation (DNR Acc) and the verapamil (VRP) index (percent increase of VRP on DNR accumulation) was studied by using flow cytometry. Fresh leukemic mononuclear bone marrow blasts from 80 unselected ANLL patients' samples were incubated with DNR in the presence or absence of VRP. The DNR accumulation was determined by flow cytometry. The median DNR Acc was 28 (range: 4-101) and the median VRP index was 4% (range 0-53). VRP significantly enhanced DNR Acc in 42 of the ANLL samples (52.5%). DNR Acc or VRP index were not influenced by age, sex, or WBC counts. Only the FAB subclassification and the blast immunophenotyping were found to influence the parameters studied here. The lowest DNR Acc was found in M0 and M6 blast cells (15 range 0-46 and 10.5 range 8-13 respectively). M4 and M5 ANLL samples accumulated significantly more DNR than M0 and M6 blast cells. The VRP index was significantly higher in M0 compared with M1 and M2 samples, as well as in M4 compared with M1 samples. A slightly positive correlation was found between the percentage of CD34-positive cells in the CD34-positive samples and DNR Acc. In this study, DNR Acc and the VRP index were not significantly correlated with the response to chemotherapy or survival. In conclusion, this study shows that ANLL leukemic cells differ in anthracyclin accumulation and response to VRP in vitro.

Acute Disease↗

Flow cytometric estimation of poly(A)+ RNA by fluorescent in situ hybridization.

A method for the detection of poly(A)+ RNA in cell suspensions by in situ hybridization and flow cytometry is described. The hybridizing properties of oligothymidylate o(dT) was well preserved after coupling to fluorescein. This fluorescent oligonucleotide was used as a probe to determine the poly(A)+ RNA content of fixed HL60 leukemic cells by flow cytometry. Labeling was considerably reduced by treating the cells with RNAse, and by competitive hybridization with either poly(U) or free poly(A). Labeling was also decreased in a time-dependent fashion by incubating the cells with actinomycin D prior to fixation. This method represents an improvement on the methods measuring total RNA and could be of value in investigations on the effect of drugs on RNA metabolism.

Dactinomycin↗

Treatment of relapsed acute myeloid leukemia using GM-CSF before intensive chemotherapy.

Ten patients with acute myeloblastic leukemia (AML) in first relapse were treated with high-dose cytosine-arabinoside (ara-C, 3 g/m2/12 hours x 4) and amsacrine (150 mg/m2/day x 5). In order to prime the cells, the patients were given rh-GM-CSF (3 micrograms/kg/d) for four days, the first infusion starting 48 hours before chemotherapy. Two patients died during the aplastic phase, seven patients achieved a second complete remission (CR2) and one patient remained leukemic. The median duration of aplasia was 17 days (14-21). These results were comparable to those obtained in our previous series of 27 patients treated for AML in first relapse with the same chemotherapy but without GM-CSF (66% CR2). After 48 hours of GM-CSF infusion, (before chemotherapy was started), seven patients had an increase in the white blood cell count with an increase in the absolute number of blast cells in five of these cases. Marrow blast cells percentages increased in 3 of the 8 patients analysed. Six of seven patients tested showed an increase in the percentage of cells in S-phase (studied by flow cytometry using the bromodeoxyuridine (BrdU/DNA) labelling technique and BrdU incorporation). GM-CSF used to prime leukemic cells may be safely administered but its clinical usefulness needs to be further evaluated.

Adolescent↗

Interferon gamma is effective for BM purging in a patient with CML.

We report a case of Ph-positive CML where the BM was incubated for 24 h with 10(3) IU/ml IFN gamma and then cultured in liquid media for 4 weeks. After 24 h incubation, there was no differential sensitivity of CML CFU-GM to IFN gamma compared with untreated BM. Subsequent long-term culture (LTC) of the IFN gamma treated CML BM, however, demonstrated a 75% inhibition of production of CFU-GM from the second week onwards. Using PCR, we were able to demonstrate two types of BCR-ABL transcript in the diagnostic BM. After 4 weeks of LTC, the J(bcr b3/ABL II) RNA transcript persisted in the untreated BM, whereas neither BCR/ABL RNA transcripts were detected in the culture established with IFN gamma-treated CML BM. This study has two points of interest with the demonstration of (1) a possible antileukaemic effect of IFN gamma on the progenitors generated in the LTC system, and (2) the use of highly sensitive PCR technology to evaluate the effectiveness of IFN gamma to purge CML BM of Ph-positive cells.

Bone Marrow↗