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J Bernaud

Publications and source records attributed to J Bernaud.

26 records · Page 2Linked to original sources

[Demonstration of cell death process by apoptosis in cat lymphocytes infected by FIV (feline immunodeficiency virus)].

Feline immunodeficiency virus (FIV), the causative agent of feline AIDS, induces a disease syndrome in cats characterized by a decreased lymphocyte-proliferative response to mitogens at all stages of infection and selective depletion of CD4 lymphocyte subsets. In this work, we report that peripheral blood lymphocytes isolated from FIV-infected cats undergo a spontaneous death, in vitro, according to a programmed cell death (PCD) or apoptosis. This phenomenon has also been seen in peripheral blood lymphocytes from HIV-infected humans and SIV-infected macaques. Four different techniques were used to document PCD in FIV-infected cats. DNA gel electrophoresis has shown a DNA fragmentation pattern with DNA fragments displaying sizes corresponding to multiples of oligonucleosomes DNA length unit (180 bp). Transmission electron microscopy revealed condensation of both nuclear chromatin and cytoplasm. An increase in the percentage of fragmented DNA was demonstrated by Burton's technique. In addition, flow cytometric analysis detected a cell population with condensed chromatin. The spontaneous PCD in FIV-infected cats could not be inhibited by RNA synthesis inhibitors or protein synthesis inhibitors. Our results could have implications for understanding the pathogenesis of FIV-infection and establishing specific strategies against apoptosis in cats and humans.

Analysis of Variance↗

Immunosuppressive property of a very high purity antihaemophilic preparation: a low molecular weight component inhibits an early step of PHA induced cell activation.

Immune deficiency has been reported in haemophiliac patients receiving antihaemophilic factor VIII preparations, but the mechanisms involved in the immunosuppression are not fully understood. By using the proliferative response of peripheral blood mononuclear cells to phytohaemagglutinin (PHA) as a test system, we investigated the inhibitory influence of a very high purity antihaemophilic factor (AHF) preparation on T cell proliferation and on T lymphocyte activation molecules. We observed that this preparation reduced significantly the PHA-induced mononuclear cell proliferation, independently of the monocyte concentration. The AHF preparation did not act through a cytotoxic mechanism or a steric hindrance of PHA. The AHF preparation had no effect on the immediate expression of T lymphocyte activation molecules such as CD54 (ICAM-1). In contrast, the very high purity AHF reduced the induced expression of two early T cell activation molecules: CD25 (interleukin-2 receptor) and CD71 (transferrin receptor). The very high purity AHF also had the capacity to inhibit the up-regulation of two late activation antigens, CD38 and CD11a/CD18, and to inhibit the induced expression of HLA-DR molecule, defined also as a late T cell activation molecule. The CD45R expression level, used as a control marker, was not changed after AHF exposure. The very high purity AHF therefore influenced an early step of cell proliferation. We have also shown that the immunoregulatory properties of the preparation were not restricted to the factor VIII itself, but resulted from the presence of dialysable and low molecular weight components in the preparation.

Antigens, CD↗

Selective detection of human hepatitis B virus surface and core antigens in some peripheral blood mononuclear cell subsets by flow cytometry.

The presence of HBs and HBc antigens was investigated, by flow cytometry, on the surface of peripheral mononuclear cells (PBMC) from the following phenotype: CD3 (T lymphocytes), CD4 (T helper/inducer), CD8 (T cytotoxic/suppressor), CD19 (B lymphocytes) and CD56 (NK cells) among 8 patients suffering from chronic hepatitis B and 5 healthy HBV-negative subjects. This study demonstrated the presence of HBsAg and HBcAg on the lymphocyte surface for most of the patients. The mean percentage of labelled cells was 17% for HBsAg and 15% for HBcAg. Among the different lymphocyte subsets only B lymphocytes and the NK cells expressed HBsAg for 57% and 26% of cells, respectively. Similarly HBcAg was also detected among CD19 and CD56 cells only. PCR was used to search for the presence of HBV DNA and RNA in PBMC, using primers located in the S gene. HBV DNA was detected with variable intensity in the CD3, CD4, CD19 and CD56 subsets following their separation with a cell sorter. For HBV RNA the signal obtained after PCR and Southern blotting was higher for CD56 and CD19 cells than for CD3 cells and undetectable for CD4 cells. This study demonstrates that replication and transcription can occur in CD19 and CD56 cells. Positive signals in CD3 cells may possibly be due to contamination of this subpopulation by NK cells.

Antigens, CD↗

[Study of the immune profile of pregnant women].

During pregnancy, the fetus is an hemiallograft perfectly tolerated by the mother. With the aim of elucidating the mechanism of this tolerance, we have looked to see whether lymphocyte subsets are modified by pregnancy. Using monoclonal antibodies and flow cytometry, we have studied the changes in the immune profile of normal pregnant women and compared them with non pregnant women. In pregnant women, a significant decrease in the percentage of CD3+ cells is observed in the first trimester (61.1 +/- 14.7% versus 73.8 +/- 6.8%; p less than 0.001). The same data are obtained for CD4+ cells (38.2 +/- 10.7% versus 44.0 +/- 7.0%; p less than 0.05) and CD8+ cells (22.8 +/- 5.6% versus 28.0 +/- 8.9%; p less than 0.05). On the other hand, B lymphocytes (CD19+), monocytes (Leu M3+) and natural killer (NK) cells (Leu7+) remain stable during pregnancy. CD11a+ cells decreased during the 1st and 2nd trimesters. Lastly, activated T lymphocytes (CD3+DR+, CD8+DR+) are not modified. Using absolute numbers, a significant decrease is shown only for CD3+ cells in the 2nd and 3rd trimesters and for CD11a+ cells in the 2nd trimester of pregnancy. The decrease of T lymphocyte subsets, NK and CD11a+ cells during pregnancy partially explains the tolerance for the fetus.

Antigens, CD↗

Dextran sulfate specifically interacts with the human LFA-1 molecule (leucocyte function associated antigen-1).

We have investigated by flow cytometry the action of dextran sulfate (DxS) on the expression of the LFA-1 molecule in human lymphocytes. This work was undertaken because of the involvement of the LFA-1 molecule in HIV-1 induced syncytia and because of the role of DxS played in the inhibition of syncytia formation. Firstly we detected five distinct topographic regions (epitopes) on the LFA-1 molecule with a panel of 11 monoclonal antibodies (Mabs). Then we demonstrated that DxS interacts with some epitopes mainly present on the alpha chain of the LFA-1 molecule. This inhibition on the LFA-1 expressions by DxS occurs after 1-3 hr of incubation of either 4 or 37 degrees C with complete reappearance of LFA-1 within 1 hr of placing cells in fresh medium. In addition both 5 and 500 kDa have been found to have a similar influence on the inhibition of the LFA-1 expression, while non sulfated dextran have no effect. Other sulfated polyanion (SP) such as heparin and chondroitin sulfate have no effect on the LFA-1 expression. Further at 4 degrees C, DxS does not alter the expression of molecules recognized by Mab such as Leu3a (CD4), Leu2a (CD8), Leu4 (CD3) and Leu5b (CD2). However at 4 degrees C, DxS decreases the expression of CD45R molecule which is recognized by Mab Gap8.3. At 37 degrees C, we observe a decrease also in CD4 expression after DxS exposure. It has also been found that DxS decreases LFA-1 expression to the same extent regardless of the basal expression of LFA-1 in each selected cell subset (LFA-1 low, dim or bright). These results suggest that the inhibitory effect of DxS on the HIV-induced syncytium formation could be due partially to a specific steric hindrance of some LFA-1 determinants.

Antibodies, Monoclonal↗

Functional epitope analysis of the human CD11a/CD18 molecule (LFA-1, lymphocyte function-associated antigen 1) involved in HIV-1-induced syncytium formation.

After binding to the CD4 receptor, the human immunodeficiency virus 1 (HIV-1) may enter the T cell and induce the formation of multinucleated giant cells (syncytia). As well as the CD4 molecule, other molecules, such as the lymphocyte function-associated antigen 1 (LFA-1, CD11a/CD18) have been shown to be involved in HIV-1-mediated cell fusion. This study was designed to define regions on the human CD11a/CD18 molecule important for the HIV-1-induced syncytium formation. A CD11a/CD18 MoAb panel discriminating at least five distinct and spatially distant domains on the LFA-1 molecule was used. Comparison of the functional activity of different MoAbs demonstrated that all epitopes of the LFA-1 molecule were not of equal importance in HIV-1-induced syncytium formation between H9.III cells chronically infected with HIV-1 and uninfected CD4+ SupT1 cells. We also demonstrated that CD11a/CD18 MoAbs inhibit syncytia formation only at the level of the uninfected SupT1 cells, suggesting that the LFA-1 molecule expressed on SupT1 cells interacts with ligand(s) expressed on the infected H9.III cells. Two potential LFA-1 receptors on the H9.III cells were tested: the ICAM-1 molecule (intercellular adhesion molecule 1, CD54) and the HIV-1 transmembrane glycoprotein 41 (gp41). A CD54 MoAb (84H10) partially inhibited syncytia formation, thus demonstrating the involvement of the ICAM-1 molecule in the HIV-1-mediated cell fusion. However, the CD11a/CD18 MoAbs do not inhibit binding of the viral envelope glycoprotein gp41 to the cell surface, irrespective of the MoAb concentration used. Although we have not been successful in identifying all candidate fusion receptors for the LFA-1 molecule, these data suggest that some LFA-1 regions are important for syncytium formation and, therefore, in the cell-to-cell transmission of virus and in the spread of infection.

Acquired Immunodeficiency Syndrome↗

Phenotypic analysis of a large number of normal human bone marrow sample by flow cytometry.

Bone marrow aspirates from 48 healthy donors (34 adults, 14 children) were analyzed by flow cytometry (FACS Analyzer) after purification of low-density bone marrow cells (Ld BMC) on a density gradient (d = 1,077) and labelling with 23 anti-hematopoietic cell monoclonal antibodies. Based on physical properties, these Ld BMC could be divided into four different populations called E, My, Mo and L, which comprised 14% +/- 9%, 31% +/- 16%, 10% +/- 5% and 45% +/- 14% of these cells, respectively. The phenotypic analysis of these different populations enabled the identification in E, of erythrocytes (Glycophorin A+, Rhesus D+, but negative for early erythroid differentiation markers such as the transferrin receptor (Tf. R) and the FA6-152 antigen); in My of cells of the myeloid lineage (VIM2+, HLA DR-); in Mo of cells of the monocytic lineage (VIM2+, CD14+) plus some myeloblasts (VIM2+, CD14-, HLADR+) and finally in L of a heterogeneous population including: 1. T lymphocytes labelled to the same extent by CD2, CD3, CD5 and CD6 (28% +/- 10%), B lymphocytes assessed by CD19 and CD20 (12% +/- 8%), Pre-B cells (CD10+ = 8% +/- 7%), less than 5% of "natural killer" cells (CD16+ or Leu7+) and finally, less than 6% of myelomonocytes (CD14+ and/or VIM2+). 2. The erythroid lineage (rhesus D+ = 42% +/- 20%, Tf.R+ and FA6-152+ = 32% +/- 12%). 3. Undifferentiated cells or progenitor cells (CD34+ = 7% +/- 5%). 4. Cells unlabelled by any antibodies (approximately 6%). We observed no difference between bone marrow samples from adults or children, with respect to physical properties, and with all but four immunological markers. A significantly higher proportion of B cells (CD19+ and CD10+) (P less than 0.001) and undifferentiated cells (CD34+ and HLADR+) (P less than 0.02) was observed in children. These data, obtained from a large number of bone marrow samples, could be used to quantify the imbalance of some bone marrow disorders.

Adolescent↗

[Analysis of bone marrow by flow cytometry: morphologic and immunologic aspects].

Bone marrow aspirates from 28 healthy donors (18 adults, 10 children) were analysed by flow cytometry (FACS analyser) after purification of low density bone marrow cells (Ld BMC) on a density gradient (d = 1,077) and labeling with 23 anti-hematopoietic cells monoclonal antibodies. Based on physical properties the Ld BMC could be divided into four different populations called E, My, Mo et L including 13 +/- 8%, 33 +/- 15%, 12 +/- 5% and 42 +/- 14% of these cells respectively. The phenotypic analysis of these different populations allowed us to identify in E, erythrocytes (glycophorin A+, Rhesus D+ but negative for early erythroid differentiation markers like the transferrin receptor and/or the FA6-152 antigen); in My, the myeloid lineage (VIM2+, HLADR-); in Mo, the monocytic lineage (CD14+) and some myeloblasts (CD14-, VIM2+, HLADR+) and finally in L, an heterogeneous population including: 1) leucocyte cells, in which 27.3 +/- 9.0% are T cells labelled to the same extent by CD2, CD3, CD5 and CD6, 13.2 +/- 5.9% are B cells assessed by CD19 and CD20, 8.3 +/- 5.7% are Pré-B (CD10+), less than 5% are "natural killer" cells (CD16+ or Leu7+) and finally less than 6% are myelomonocytes (CD14+ or VIM12); 2) the erythroid lineage (Rhesus D+ = 43.7 +/- 12.9%, transferrin receptor and FA6-152+ 36.7 +/- 9.6%); 3) undifferentiated cells or progenitor cells (CD34+ = 6.5 +/- 3.5%); 4) cells unlabelled with any antibodies (approximatively 6%). We have not observed difference between adults and children bone marrow in regard to physical properties properties and all but also immunological markers. Indeed, a significant (p less than 0.02) higher proportion of B cells (CD19 and CD10) was observed in children. These data get from a large number of bone marrow could be used to quantify the imbalance of some bone marrow disorders.

Adolescent↗