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Biomedical subjects

H Merle-Béral

Publications and source records attributed to H Merle-Béral.

At least 19 recordsLinked to original sources

Cell-mediated autoimmunity in paraneoplastic neurological syndromes with anti-Hu antibodies.

Paraneoplastic encephalomyelitis or subacute sensory neuronopathy associated with small-cell lung cancer (SCLC) and high titers of anti-HuD antibodies, also called the "anti-Hu syndrome," is believed to result from an immune response triggered by tumor antigens and misdirected to the neurons. To further assess the issue of cell-mediated immunity in this disease, the peripheral blood lymphocyte surface phenotype was studied in 15 patients suffering from the anti-Hu syndrome (seropositive group) and in two control groups consisting of 12 seronegative SCLC patients without neurological syndrome and 15 healthy volunteers. In addition, the recombinant human HuD protein was used to stimulate in vitro peripheral blood mononuclear cells of 10 seropositive patients and of 10 patients from each control group. Phenotypic analysis of the peripheral blood lymphocytes revealed a significant increase of the memory helper (CD45RO+CD4+) T cells in the seropositive group in comparison with the two control groups. Antigen-specific proliferation of peripheral blood mononuclear cells, measured by [3H]thymidine uptake after HuD antigen stimulation, was much higher in the seropositive group than in the two control groups, and phenotypic analysis of proliferating cells revealed a significant expansion of the CD45RO subpopulation of T cells in the seropositive group. Furthermore, after HuD stimulation, a significant increase of the interferon-gamma/interleukin-4 ratio was found in culture supernatants of the seropositive group compared with seronegative SCLC patients and normal controls. Taken together, these results indicate that HuD protein is an antigenic target for autoreactive CD4+ T cells, presumably of the Th1 subtype, which could therefore be directly involved in cell-mediated injury of the nervous system as well as in antitumoral immunity.

Autoantibodies

Detection of minimal residual disease in B chronic lymphocytic leukemia (CLL).

UNLABELLED: In the absence of specific chromosomal translocations the best method for detecting minimal residual disease (MRD) in B cell malignancies is based on the uniqueness of immunoglobulin (Ig) genes rearrangement. We here report a very sensitive method for assessing MRD in complete hematological remission (CHR) chronic lymphocytic leukemia (CLL) patients as defined by the international workshop on CLL (IWCLL). PATIENTS: Twelve CLL patients in CHR and complete phenotypic remission (CPR) were included in the study. Eight of them received Fludarabine (FDR), one was treated by Chop regimen, and the remaining 3 were rescued by polychemotherapy followed by autologous bone marrow transplantation (ABMT). METHODS: DNA extracted from peripheral blood lymphocytes (PBL) of each patient was amplified with VH family specific and framework 3 primers in 5' and a consensus JH primer in 3', before treatment and sequentially after the CPR completion. When no clonal rearrangement could be detected by this assay, the CDR3 sequence specific probe of the clone was used as the 3' primer, associated to the VH family specific primer in 5'. PCR products were analyzed by classical procedures in agarose and/or acrylamide gels. RESULTS: Mixtures of leukemic cells and normal PBL showed detection of a single leukemic cell among more than 10(5) normal cells. Four out of the 12 patients achieved molecular remission (MR) when employing CDR3 amplification. All 3 autografted patients were in MR, whereas only one out of the 9 patients treated by chemotherapy alone achieved MR. When using a clone specific probe, a clonal signal was observed in all cases but one (ABMT). Results presented here confirm that MR may be achieved in a few cases of B-CLL. Further studies are needed to determine the exact relationship between MRD and clinical outcome.

Aged

Leukemic CD3+ LGL share functional properties with their CD8+ CD57+ cell counterpart expanded after BMT.

Leukemic T-LGL (large granular lymphocyte) composed of clonal CD3+ TCR alphabeta+ CD8+ CD57+ cells were compared with oligoclonally CD3+ CD8hi+ CD57- lymphocytes expanded after BMT. Leukemic CD3+ CD8hi+ CD57+ LGL showed several phenotypic differences such as an upregulation of CD16 and adhesion molecules (mainly CD11c, CD58 and CD54), activation markers and an exclusive CD45RA isoform expression. Unstimulated CD3+ CD8+ CD57+ LGL from both leukemic and BMT donors spontaneously developed an ex vivo CTL-like CD3-redirected cytotoxicity but no NK cell activity. Different stimuli (PHA, PMA or rhIL-2) induced similar cytotoxic profiles after a 6-day culture involving a CD3-redirected lysis predominating over a low NK cell activity. However, culture of leukemic LGL with these stimuli allowed either a 2 week persistence (PMA or rhIL-2) of CD8+ CD57+ LGL or their disappearance after 3 days (PHA). Furthermore, leukemic CD8hi+ CD57+ T lymphocytes produced an inhibitor of cytotoxic functions as previously described for BMT recipients' CD8+ CD57+ cells. Thus, despite some phenotypic differences between both cell sources, leukemic CD57+ T-LGL display the same functional characteristics of cytotoxic effector and immunoregulatory T cells as CD8+ CD57+ T cells from BMT recipients which might represent their normal counterpart.

Bone Marrow Transplantation

Increased sensitivity of CLL-derived lymphocytes to apoptotic death activation by the proteasome-specific inhibitor lactacystin.

Ubiquitin-proteasome-dependent protein processing appears to be an essential component in the control of radiation-induced apoptosis in human lymphocytes. This control is altered in chronic lymphocytic leukaemia (CLL), compared to that of normal human lymphocytes which mainly showed high apoptotic values after irradiation, but in some cases no sensitivity was observed. Interestingly, lactacystin activated the apoptotic pathway in both radio-resistant and sensitive CLL cells, at doses which had no effect in normal cells where significantly higher concentrations were required. Therefore the resistance of some CLL cells to apoptosis initiation by radiation does not correlate to observed increased sensitivity to lactacystin. The nuclear level of the transcription factor NF-kappaB or the cytoplasmic level of IkappaBalpha remained unaltered upon irradiation or lactacystin CLL cells treatment, suggesting that the activity of the other factors involved in apoptotic death control were altered through proteasomal inhibition. These results strongly suggest an essential role of the ubiquitin system in apoptotic cell death control in CLL lymphocytes. The inhibition of proteasome-ubiquitin-dependent processing could be a discriminatory apoptotic stimulus between normal versus malignant lymphocytes and therefore might potentially be of use in this specific human pathology.

Acetylcysteine

Intensive chemotherapy with hematopoietic cell transplantation after ESHAP therapy for relapsed or refractory non-Hodgkin's lymphoma. Results of a single-centre study of 65 patients.

This study was designed to assess the results of protracted courses of ESHAP (etoposide, cytarabine, cisplatin, methylprednisolone) therapy followed by intensive chemotherapy and hematopoietic cell transplantation (IC+HCT) for relapsed or refractory non-Hodgkin's lymphoma (NHL). Treatment consisted of 3 cycles of ESHAP; responsive patients (pts) then received 3 more cycles, and IC+HCT was used for pts in maintained partial (PR) or complete (CR) remission after the sixth ESHAP. Sixty-five pts entered the study. At enrollment, 27 pts had bone marrow (BM) and/or central nervous system (CNS) lymphomatous infiltration. Disease status was primary refractory lymphoma in 41 pts (63 %), and relapse in 24 pts (37 %). Results showed that two pts were not evaluable for the therapeutic response because of early treatment-related death. Thirty-nine (62 %) pts entered PR or CR after 3 cycles of ESHAP. Eleven pts subsequently had disease progression. Twenty-eight pts were in persistent CR or PR after 6 cycles of ESHAP. Refractory pts did not show a different response rate to relapsing pts (chi2= 1.73). Five pts were excluded from IC+HCT because of an inadequate graft or treatment-related toxicity. Twenty-three (35 %) pts completed the procedure. Five pts (22 %) relapsed after IC+HCT. The overall survival rate of the 39 responsive pts is 45 % at 60 months, with a median survival time of 30 months. Median survival among the 35 pts in whom second-line chemotherapy failed is 7.1 months, with a 4-year survival rate of 3 %. Despite the poor prognostic features of this group, 45% of pts responding to the first 3 cycles of chemotherapy are in prolonged remission, suggesting that rather than to transplant after just 2 cycles of salvage therapy, pursuing second-line chemotherapy may better discriminate between patients more likely to benefit from a subsequent transplant.

Adolescent

VH gene expression in hairy cell leukaemia.

Hairy cells are characterized by their typical morphology and expression of specific surface antigens. Although their B-cell origin is now confirmed, their exact position in B-cell development remains unclear. To better define the origin of hairy cells, we analysed the immunophenotype and the Ig VH nucleotide sequence of seven cases of hairy cell leukaemia (HCL). Six of them were typical HCL and the remaining case corresponded to a variant HCL. Analysis of sequenced VH genes revealed that the VH1 family was used in one case, VH2 in one, VH3 in two, VH4 in two and VH5 in one. No preferential usage of VH genes was observed in this small series. In five cases high rates of somatic mutations were observed, with a predominance of mutations and replacements in CDR regions for three. indicating that these cells originate from cells that have been exposed to the hypermutation mechanism. The distribution of mutations in our small series provides some evidence of a selective mutational process.

Amino Acid Sequence

Quantification of apoptosis by the Abbott CD4000 hematology analyzer.

We propose a simple and fast method of detecting apoptosis using an automated hematology analyzer. Detection is based on cellular optical light scatter properties and demonstration of the membrane fragility which characterizes cells undergoing the process of apoptosis. As part of it's routine leucocyte differential analysis, the Abbott Cell-Dyn 4000 collects multi-angle cellular light scatter data. In addition red fluorescence (FL3) emitted by cells following propidium iodide labeling is collected. This provides quantitation of both the erythroblast count and a leukocyte viability index (WVF). Fresh or cryopreserved peripheral blood cells from 17 B-chronic lymphocytic leukemia (B-CLL) patients were incubated in presence of theophylline, fludarabine or in medium alone. After 36-hrs of culture the percentage of apoptotic cells of the sample was determined from the parameters of the CD 4000 described above and thereafter this was compared with reference methods for estimation of apoptosis. The reference methods used were in situ detection of cell death on slides (TUNEL test) and also flow cytometry (Annexin V). Results showed an excellent correlation between the 3 techniques. This rapid, easy and reliable method of quantifying apoptosis may be very useful means of routinely predicting the response to chemotherapy.

Apoptosis

Early onset of immunoglobulin heavy chain gene rearrangements in normal human bone marrow CD34+ cells.

To characterize early B-cell precursors in humans, we correlated immunoglobulin heavy chain (IgH) gene rearrangement status with the CD34, CD19, and CD10 cell surface markers. Highly purified adult bone marrow (BM) cell fractions were obtained by two successive rounds of flow cytometric cell sorting, and IgH rearrangements were analyzed by polymerase chain reaction (PCR) amplification. Complete VDJH rearrangements were observed in the CD34+ CD19+ fraction, but not in the more immature CD34+ CD19- fraction. About one quarter of these rearrangements had an open reading frame, thus potentially permitting the synthesis of a mu chain. Partial DJH rearrangements were detected in both CD34+ CD19+ and CD34+ CD19- subsets, although they were less abundant in the latter. When triple labeling was used to better characterize the CD34+ CD19- population, DJH rearrangements were found to be present in the CD34(+) CD10+ CD19- fraction, but not in the more primitive CD34+ CD10- CD19-. These results indicate that IgH gene rearrangements occur in CD34+ BM cells and that they initiate in immature progenitors expressing the CD10, but not yet the CD19 surface antigen. Finally, the presence of IgH gene rearrangements in CD34+ BM cells provides a useful marker of clonality to evaluate the possible involvement of these cells in various B-cell lymphoid malignancies.

Adult

Normal Syk protein level but abnormal tyrosine phosphorylation in B-CLL cells.

One characteristic of B cells that accumulate during chronic lymphocytic leukemia (CLL) is their highly heterogeneous functional responses to B cell receptor (BCR) stimulation. Leukemic B cells with very poor responses have defective rapid tyrosine phosphorylation of numerous substrates, especially phospholipase C (PLC)gamma, as well as a defective calcium elevation on BCR stimulation. This points to a defect in BCR-associated protein tyrosine kinase (PTK). We investigated whether a defect in Syk, a PTK that is pivotal in coupling BCR to downstream signaling events, could account for these alterations. Syk tyrosine phosphorylation triggered by BCR ligation was severely impaired in B-CLL cells with low calcium responses to anti-mu stimulation. Syk associations were also defective, as concomitant tyrosine phosphorylation of a Syk-associated 145 kDa protein comigrating with PLCgamma-2 was only detected in responding B-CLL cells. By contrast, we found similar expression of the kinase regardless of B-CLL cell responsiveness. These results are consistent with the possibility that very proximal BCR signaling elements in some B-CLL cells are unable to connect with downstream biochemical events dominated by tyrosine phosphorylation and the potential docking function of Syk PTK.

Calcium

High frequency of somatic mutations in the VH genes expressed in prolymphocytic leukemia.

Prolymphocytic leukemia (PLL) is a chronic lymphoproliferative disorder, characterized by prominent splenomegaly, prolymphocytes accounting for more than 55% of circulating lymphocytes, and short-term survival. To better characterize the nature of the cellular origin in this disease, we analyzed lg heavy chain variable region (VH) genes in eleven cases of de novo PLL Leukemic cells expressed a skewed repertoire characterized by predominant use of the V3 family members (73%), with preferential use of the V3-23 gene (50% of the VH3 genes). All sequences from expressed VH genes diverged from their putative germline counterpart, and in eight cases the divergence was greater than 5%. In seven cases, which expressed the V3-23 gene and VH4 family members, nucleotide substitutions could be confidently attributed to somatic mutations. The type and distribution of these mutations clearly indicated that in three cases the cells had been subjected to an antigen selection process. Taken together, these results suggest that B-PLL cells display a skewed repertoire of lg VH regions and probably represent, at least in some instances, expansion of postgerminal center cells that have undergone antigen driven selection.

Adult

[Contribution of immunotyping in the diagnosis and in the prognosis of acute leukemia].

Characterisation of acute leukaemia has greatly progressed due to the discovery of a large number of molecules using monoclonal antibody techniques. In acute lymphoblastic leukaemia, these techniques not only demonstrate the lymphoid origin of the proliferation but also allow to distinguish between T and B lymphoblasts at various stages of differentiation. This information is useful in establishing prognosis and making therapeutic choices. In acute myeloid leukaemia, immunologic phenotyping confirms the French-American-British (FAB) classification, allowing diagnosis of undifferentiated acute myeloid leukaemia (LAM 0) and can itself constitute a prognostic element.

Acute Disease

A single-center study of 11 patients with intraocular lymphoma treated with conventional chemotherapy followed by high-dose chemotherapy and autologous bone marrow transplantation in 5 cases.

Intraocular lymphoma (IOL) is a rare form of non Hodgkin lymphoma (NHL); it has a poor prognosis and is frequently associated with central nervous system (CNS) infiltration. We report the results of a prospective study of 11 patients with IOL who received conventional chemotherapy (CT), followed by salvage high-dose (HD) CT with autologous bone marrow transplantation (ABMT) in five cases. All 11 patients had abnormal funduscopic findings and six had CNS involvement at diagnosis. The diagnosis was based on vitrectomy in 10 cases and cerebral stereotaxic biopsy in one. Pathologic studies showed large-cell NHL in all cases. These large-cell NHL were of the B-cell type in 8 cases and of the T-cell type in two. First-line therapy consisted of a combination of cisplatin 25 mg/m2 as a 24-hour IV infusion on 4 consecutive days, VP-16 40 mg/m2 for 4 days, aracytine 2 g/m2 IV on day 5, and methylprednisolone 500 mg IV daily for 5 days (ESHAP) in 5 cases; alternating courses of ESHAP and HD methotrexate (MTX) in 4 cases; and HD MTX in 2 cases. Three patients underwent ocular and whole-brain radiation therapy. Five refractory patients subsequently received intensive CT with thiotepa 750 mg/m2, busulfan 10 mg/kg and cyclophosphamide 120 mg/kg, followed by ABMT. First-line treatment failed in 10 evaluable cases. One patient died of CNS progression at 12 months. All the patients who underwent intensive CT and ABMT entered CR; two relapsed at 6 months and three are alive in CR 15, 15 and 14 months after ABMT. Six patients are alive with persistent disease at 8, 13, 14, 15, 18 and 24 months. It seems in conclusion that, high-dose thiotepa, busulfan and cyclophosphamide followed by ABMT is effective in some cases of refractory IOL.

Aged

Analysis of VH gene expression in CD5+ and CD5- B-cell chronic lymphocytic leukemia.

In contrast to highly mutated follicular lymphomas and multiple myelomas, chronic lymphocytic leukemias (CLLs) frequently express VH genes in germline configuration. It is currently unclear whether this difference is related to the expression of CD5 or to the differentiation stage of the B cell when malignant transformation occurs. We have studied the VH sequence of 11 cases of CD5- B-CLL to address the question whether CD5- B-CLL are derived from naive pregerminal B cells (low mutation pattern) or from germinal center-derived memory B cells (high mutation pattern). Among the 12 detected rearrangements (2 distinct rearrangements in 1 case) VH1 family was found in 2, VH2 in 2, VH3 in 4, and VH4 in 4. Nine different VH genes were detected among the 12 rearrangements, including 2 cases expressing V1-69 (51p1) and 1 case expressing V4-39 (VH4.18), previously reported to be overexpressed in CD5+ B-CLL. A higher mutation pattern, following a random distribution, was observed when compared with classical CD5+ B-CLL. However, as reported in normal B cells, these results appeared to be related to membrane Ig phenotype (less mutations in membrane mu delta-expressing forms in leukemias expressing exclusively membrane mu). Overall, the differences found when comparing the mutational profile with classical CD5+ B-CLL were not clearcut and might be explained more by the membrane isotype (mu v mu delta) than by CD5 expression.

Aged

Skewed rearrangement of the VH4-21 gene during pre-B acute lymphoblastic leukemia.

Thirty-six pre-B acute lymphoblastic leukemias (ALL) were studied for VH family expression. Among the 35 detected rearrangements, VH1 family genes were expressed in 7, VH2 in 1, VH3 in 18, VH4 in 6 and VH6 in 3. This expression is close to that expected according to the complexity of the system. The complete sequence of the 6 VH4 genes was examined in order to determine whether there is a skewed rearrangement of individual genes in this family. Our results indicate rearrangement of VH4-21 in 3 cases, 71-4 in one, 58P2 in one case and probably of a new germinal VH4 gene for the sixth case. All the genes were displaying an almost complete homology with their germinal VH counterparts. The 6 sequenced genes associated with 6 different D gene segments displaying a close homology with their germinal counterpart. JH4 segment was expressed in 3 cases and JH6 in the remaining 3. These results associated with previous results obtained by others indicate that there is skewed rearrangement of the VH4-21 gene in pre-B ALL. It is presently unknown whether this phenomenon is the consequence of a selective process or whether it reflects what normally occurs in the normal human functional repertoire, which could be more limited than the germline repertoire.

Adult

[In vitro induction of apoptosis in chronic lymphoid leukemia B lymphocytes by theophylline: therapeutic applications].

In a case of indolent stage A chronic lymphocytic leukemia (C.L.L.), treated for ten years only by theophylline for bronchial asthma, we observed spontaneous apoptosis of B lymphocytes (10%). As suggested by these case report, we described new properties of methylxanthine derivatives. In vitro, theophylline increased spontaneous apoptosis after 72 hours in culture of 6 patients by a mean percentage of 80-90% in B-C.L.L. blood lymphocytes (control 20%). Dose-dependent apoptosis involves cyclic nucleotides (AMPc). Using identical theophylline doses, we did not observe apoptosis of normal peripheral blood B lymphocytes. According to French ethical rules, we treated 8 patients with the same doses of theophylline than for bronchial asthma without responses. On the other hand, in 12 aggressive forms of C.L.L., resistant or in relapsed after alkylating agents, methylxanthine derivatives appeared a powerful adjuvant of chlorambucil treatment. We observed 11 responses with less dose of alkylating agents than in previous treatment: decrease in the concentration of blood lymphocytes (11 patients) and clinical remissions (8 patients). Mechanism of action and future of this new drugs combination in the treatment of C.L.L. are discussed.

Aged

Maturation of acute T-lymphoblastic leukemia cells after CD2 ligation and subsequent treatment with interleukin-2.

In this study, we have investigated the ability of various cytokines to induce the maturation of acute lymphoblastic leukemia (T-ALL) cells with early T-cell phenotype. Leukemic blasts from 17 untreated T-ALL patients were assayed for their ability to acquire mature T-cell markers, CD3/T-cell receptor (TCR) in particular, after incubation with one or a combination of recombinant human interleukin-1 (IL-1), IL-2, IL-4, IL-7, and CD2-specific monoclonal antibody (MoAb). IL-7 or IL-2 induced the proliferation of some leukemic cells, whereas sequential cell treatment with CD2-MoAb and then IL-2 promoted CD3/TCR expression on nearly all CD2+ cells (15 of 16), except for 1 T-ALL that developed into CD3-CD16+CD56+ cells. Differentiation of T-ALL cells was also evidenced through the downregulation of CD34 precursor cell antigen, the generation of CD4+ and CD8+ cells from CD4+ CD8+ precursors, and the acquisition of mature T-cell functions. CD2 ligation induced a progressive increase of surface expression of IL-2 receptor alpha (IL-2R alpha) and IL-2R beta and an accelerated in vitro death of leukemic cells. The ligation of IL-2R by IL-2 rescued T-ALL cells from death and promoted their progression toward more mature cells expressing extracellular CD3/TCR alpha beta complexes. Intracellular analysis indicates that TCR alpha transcription and membrane translocation of both TCR alpha and TCR beta were promoted in these conditions. Analysis of intracellular signals transduced during T-ALL differentiation indicated that CD2-ligation induced Ca2+ influx and that the ligation of CD2 and IL-2R induced distinct tyrosine phosphorylation patterns. The addition of inhibitors of tyrosine phosphorylation abolished T-ALL cell differentiation, which suggests the involvement of tyrosine kinases in this phenomenon. Together, we showed the constant maturation of leukemic early T cells after stimulation of surface CD2 and the high-affinity IL-2R.

Antibodies, Monoclonal