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C Le Berre

Publications and source records attributed to C Le Berre.

18 recordsLinked to original sources

Human CD34-positive hematopoietic stem cells constitute targets for carcinogenic polycyclic aromatic hydrocarbons.

Polycyclic aromatic hydrocarbons (PAHs) are major carcinogenic environmental contaminants known to exert bone marrow toxicity and to induce leukemias, suggesting that these chemicals target hematopoietic stem cells. To investigate this hypothesis, we studied the effects of PAHs on cell proliferation and differentiation in human hematopoietic CD34+ cell cultures. Benzo(a)pyrene (BP), a prototypical PAH, was shown to markedly impair CD34+ cell expansion and to inhibit CD34+ cell differentiation into various hematological cell lineages, including erythroid, granulomacrophagic, and megakaryocytic lineages. This was associated with the induction of a caspase- and mitochondrion-related apoptosis process. CD34+ progenitor cells were found to exhibit functional expression of the aryl hydrocarbon receptor (AhR), and the use of the pure AhR antagonist 3'-methoxy-4'-nitroflavone partially counteracted the deleterious effects of BP in CD34+ cell cultures, underlining the involvement of AhR in BP toxicity. Additional events such as CYP1A1/1B1-dependent PAH metabolism and adduct formation were also required since 1) 2,3,7,8-tetrachlorodibenzo-p-dioxin, a very potent ligand of the AhR that is poorly metabolized and therefore does not generate reactive metabolites in contrast to PAHs, failed to affect CD34+ cell expansion; 2) the CYP1A1/1B1 inhibitor alpha-naphthoflavone blocked both BP adduct formation and BP toxicity; and 3) benzo(a)pyrene-trans-7,8-dihydrodiol-9,10-epoxide, a highly reactive BP metabolite, exerted a marked toxicity toward CD34+ cell cultures. Overall, these data indicate that human hematopoietic CD34+ cells can bioactivate chemical carcinogens such as PAHs and, in this way, constitute targets for such carcinogenic environmental contaminants.

Antigens, CD34↗

HLA-DR mediated cell death is associated with, but not induced by TNF-alpha secretion in APC.

Tumor necrosis factor alpha (TNFalpha) is a pleiotropic cytokine involved in inflammatory responses which can trigger both cell apoptosis and cell activation. In antigen presenting cells (APC), TNFalpha increased antigen presentation, notably by up-regulation of HLA class II expression. In addition to their role in antigen presentation, HLA-DR molecules transduce intracellular signals which lead to cytokine up-regulation or cell death. We have previously observed that the susceptibility of APC to HLA-DR mediated apoptosis increase throughout their maturation. We therefore investigated the relationship between TNFalpha production and susceptibility to HLA-DR-mediated apoptosis of different APC. The hematopoietic progenitor cell line (KG1), monocytic cell line (THP-1), monocyte-derived dendritic cell (DC), and B-lymphoid cell line (Raji) have been studied. We report that apoptosis susceptibility and spontaneous TNFalpha release are correlated in these different cells. However, while autocrine TNFalpha production was critical for DC maturation, upregulation of TNFalpha release after HLA-DR crosslinking was not observed and neutralization of endogenous TNFalpha did not modify HLA-DR-mediated apoptosis. These data reveal that HLA-DR mediated apoptosis susceptibility and spontaneous TNFalpha release are regulated in a parallel manner and that while TNFalpha may induce maturation of APC to an "apoptosis sensitive" stage, there is no direct role for TNFalpha in HLA-DR-mediated apoptosis of APC.

Antigen-Presenting Cells↗

HLA-DR inhibits granulocytic differentiation without inducing apoptosis of CD34 cells.

Hematopoietic progenitors express HLA-DR molecules. However the significance of HLA-class II molecules on CD34+ cells remains unknown. The primary role of HLA-class-II molecules is antigen presentation although a second role, that of signal transduction, has been established in B cells. The role of HLA-DR in hematopoiesis was examined by determining the ability of CD34+ progenitor cells to differentiate to "Colony Forming Unit Granulocyte-Macrophage" (CFU-GM) and "Burst Forming Unit Erythrocyte" (BFU-E) in the presence of anti-HLA-DR monoclonal antibody. We observed a reduction in the number of CFU-GM which was due in part to down regulation of granulocyte rather than monocyte differentiation. These observations suggest that HLA-DR signals can regulate myelopoiesis. We point out especially the role of the HLA-DR molecule in the switch of CFU-GM between granulocyte or monocyte lineages. Although HLA-DR mediated apoptosis has been described in mature B lymphocytes apoptosis of CD34+ cells was excluded as a mechanism.

Antibodies, Monoclonal↗

Gingival biopsy in the diagnosis of giant axonal neuropathy.

We report the case of a 4-year-old child presenting with a diagnosis of giant axonal neuropathy. This rare condition was diagnosed when the child was 15 months old and was confirmed using a gingival sample removed during a dental examination. Structural and ultrastructural analyses demonstrated the presence of numerous unmyelinated fibres with distended axons and the accumulation of intermediate filaments in Schwann cells, in fibroblasts and in endothelial cells. Cytological examination of connective tissue revealed the presence of mitochondria-like particles. Scanning electron microscopic examination of hair revealed the presence of a longitudinal groove along the shaft. These characteristic features of giant axonal neuropathy demonstrate that gingival tissue can be used as an aid in its diagnosis.

Axons↗

Erythrocyte polyamine levels: an indication of successful engraftment of bone marrow in children.

We studied the evolution of erythrocyte polyamine levels after 17 autologous bone marrow transplants (BMT) in 16 children with malignant diseases. We found that the time to the end of aplasia (0.5 x 10(9) granulocytes per liter) could be divided into 2 distinct periods. The first is characterized by low erythrocyte spermidine (Spd) and spermine (Spm) levels; the second is characterized by normal levels of polyamines. Spd and Spm levels were correlated (r = 0.74) during the second period, but not during the first period or in the control group. Furthermore, the time when Spd concentration was > or = 7 nmol/8 x 10(9) erythrocytes (19 +/- 7) was correlated (r = 0.64) with the advent of end of aplasia (30 +/- 10). We found no correlation between the numbers of CFU-GM and duration of aplasia levels or the duration of period A. The establishment of normal erythrocyte spermidine levels is the earliest index of successful marrow engraftment.

Adolescent↗

[Diffuse subcortical heterotopias of the gray matter].

Three cases of diffuse subcortical gray matter heterotopias in children are reported. Generalised seizures and mild mental retardation were the most frequent signs. No specific electroencephalographic pattern was recognized. Magnetic resonance imaging scans showed the thick diffuse layer of heterotopic gray matter which was surrounded by normal white matter. Gyration was normal, and no associated malformation was observed. This neuronal migrational disorder happens between the 10th and 16th gestational week. Nineteen observations (17 girls) are reported in the literature. The filiation with agyria-pachygyria and the possible genetic transmission are discussed.

Adolescent↗

[Diagnosis of aspartylglycosaminuria in a nine year-old girl admitted to pediatric psychiatry].

A nine year-old, mentally retarded girl was admitted because of growth retardation and recurrent respiratory infections. The lysosomal storage disease was ascertained by microscopic examination of bone marrow and gum biopsies. The diagnosis was provided by urine chromatography: the glycoasparagine Glc-Nac-Asn was characteristic of patients with aspartylglycosaminuria.

Acetylglucosamine↗

[Orbital and muscular relapse of Burkitt's lymphoma].

We report the case of a child presenting with abdominal Burkitt's lymphoma in whom a relapse presented as orbital and muscle involvement. This clinical feature is extremely rare. Two muscle and one orbital biopsies were necessary to obtain proper diagnosis. A new extension check-up showed bone marrow invasion and normal cerebrospinal fluid. This relapse was successfully treated by conventional chemotherapy and consolidated with high-dose chemotherapy, total body irradiation and autologous bone marrow transplantation. Eighteen months after transplantation, the child may be considered as definitively cured.

Bone Marrow Transplantation↗