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D R van Bockstaele

Publications and source records attributed to D R van Bockstaele.

10 recordsLinked to original sources

Direct effects of 13-cis and all-trans retinoic acid on normal bone marrow (BM) progenitors: comparative study on BM mononuclear cells and on isolated CD34+ BM cells.

The effects of both 13-cis-and all-trans retinoic acid (RA) on colony formation of normal bone marrow (BM) progenitors were investigated in semi-solid (methylcellulose) assays, using either isolated CD34+ cells or BM mononuclear cells. Single cell liquid cultures were performed to further discriminate between direct and indirect effects. RA action results in significant decrease of colony forming units (CFUs). This effect is more pronounced starting from CD34+ progenitors than starting from total BM. This overall decrease in CFUs is due to selective inhibition of CFU-M (macrophage) and erythroid colonies (BFU-E). At the single cell level the CFU-M inhibition is confirmed with--in addition--a significant inhibition of CFU-GM (granulocyte-macrophage) and a marked stimulation of CFU-G (granulocyte)s. Both retinoids exert the above-mentioned effects. All-trans RA, however, is effective at a tenfold lower concentration (10(-7)M) than 13-cis RA (10(-6)M). Results on CD34+ BM fractions (substantially reduced in accessory cells) demonstrate that the described effects can probably be attributed to the direct action of RA on these progenitors; single progenitor (CD34+) cell liquid cultures further prove this point.

Antigens, CD↗

Effects of interleukin-4 (IL4) on myelopoiesis: studies on highly purified CD34+ hematopoietic progenitor cells.

We studied the effects of interleukin 4 (IL4) on myelopoiesis supported by either granulocyte colony-stimulating factor (G-CSF), granulocyte-macrophage CSF (GM-CSF) or IL3 on purified CD34+ bone marrow progenitor cells. IL4 stimulates the colony-forming unit granulocyte (CFU-G) induced by G-CSF and inhibits all colony types supported by either IL3 and GM-CSF, although inhibition of CFU-M (macrophage) was significantly stronger than that of CFU-G and CFU-GM. When the cells were first incubated in liquid culture for 4 days in IL4, followed by agar culture in G-CSF, there was a significant increase in the number of CFU-G compared to cells which had been incubated in medium alone for 4 days before plating out in agar containing G-CSF. The inhibitory effects of IL4 on GM-CSF or IL3 supported colony formation, however, disappear with sequential incubation in IL4 in liquid culture followed by culture in agar with either GM-CSF or IL3.

Antigens, CD↗

Flow cytometric double labeling technique for screening of multidrug resistance.

We investigated the capabilities of flow cytometry in the analysis of a multidrug resistant (MDR) human ovarian cancer cell line 2780AD and its drug sensitive parental A2780. A functional assay using daunorubicin (DNR) as a fluorescent probe was combined with an immunofluorescence assay of P-glycoprotein (P-gp) using the monoclonal antibody MRK-16. Functionally MDR could be demonstrated by the lower DNR-content of MDR cells compared to DNR-content of drug sensitive cells. When incubation was performed with DNR in the presence of verapamil, DNR-content increased in the MDR cells. However the content of the A2780 cells was never attained. Differences in DNR-content were not related to differences in DNA-content. In experimental cell lines immunofluorescence data were inversely related with those of DNR-content: MDR cells had high levels of P-gp expression and low levels of DNR-content (and vice versa in drug sensitive cells). Both assays can be easily combined in a multiparametric flow cytometric procedure to evaluate both parameters simultaneously in the same cells. Analysis of clinical samples demonstrates the existence of aberrant subpopulations which would not be detected by using a single parameter assay.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Flow-cytometric analysis of erythrocytic blood group A antigen density profile.

Blood group A antigen density on red blood cells (RBC) was studied using flow cytometry (FCM) and fluoresceinated polyclonal and monoclonal IgG anti-A antisera. Agglutination was a problem, which could only be solved by prefixation of the RBC with glutaraldehyde or formaldehyde. However, this treatment resulted in a significant reduction of the number of antigen sites as compared to the native (i.e. nonfixed) RBC. Two major new findings came out of this study: (1) A antigen density on native RBC seems to be higher than previously recognized, and (2) A antigen density distribution is probably non-Gaussian. The absolute number of A antigen sites was determined, using a human polyclonal IgG antiserum and commercially available absolute fluorescence standards. The site numbers on fixed RBC were comparable to those found by earlier radioimmunological studies (x 10(6)/RBC): A1, 1.07 +/- 0.28; A2, 0.21 +/- 0.09; A1B, 0.79 +/- 0.26 sites (mean +/- SD). The values found for native RBC were considerably higher (x 10(6)/RBC): A1, 2.86 +/- 0.95; A2, 0.47 +/- 0.29; A1B, 1.98 +/- 0.58 sites (mean +/- SD). With the 1 monoclonal and the 3 polyclonal antisera used in this study, and in contrast to Rh D, the erythrocytic A antigen density distribution of a given sample is highly asymmetrical. This non-Gaussian distribution profile does not seem to be affected by such factors as antibody heterogeneity, variability in antibody fluoresceination range, RBC density and reticulocyte content. This suggests that the asymmetrical A antigen distribution may be an intrinsic property of the RBC population.

ABO Blood-Group System↗

A quantitative and dynamic study of endothelial cells and megakaryocytes in human long-term bone marrow cultures.

The quantitative evolution of endothelial cells (ECs) in Dexter-type human long-term bone marrow cultures (HLTBMCs) was investigated. Using monoclonal antibodies directed against von Willebrand factor (vWF) and against membrane antigens (EN-4 and PAL-E), a low percentage--usually less than 1% of stromal cells--of ECs was detected in all confluent cultures established from 11 different bone marrow samples. Generally these cells are not associated directly with the areas of myelopoiesis ("cobblestone areas"). ECs cannot be demonstrated in the adherent layer of most young, non-confluent, and of some old, HLTBMCs. In some instances, morphological features suggestive of dynamic behavior were seen (sprouting, canal formation). In addition, a very low proportion of vWF-positive megakaryocytic cells was found in 4 of 11 cultures, always in direct contact with the stromal fibroblastic cells.

Bone Marrow↗

Karyotypic evidence for the leukemic involvement of the erythroblasts in erythroleukemia.

With the use of a monoclonal anti-glycophorin A antibody and flow cytometric cell sorting, an erythroleukemic bone marrow sample was separated in highly purified erythroblast and myeloblast fractions. Similar karyotypic anomalies were found in both cell populations as in the unseparated bone marrow. This study confirms that acute nonlymphocytic leukemia can originate at the level of a multipotential hemopoietic stem cell.

Antibodies, Monoclonal↗

Flow cytometric analysis of hairy cell leukemia using right-angle light scatter.

We report on an easy and reliable method for the enumeration of the typical cells present in the blood, bone marrow, and spleen of patients with hairy cell leukemia. Samples of five patients were analyzed. In three patients, the hairy cells were very accurately followed during treatment with alpha-interferon, using right-angle light scatter to differentiate them from other leukocytes present in total blood. Excellent correlation was obtained with the microscopic hairy cell enumeration. Additional verification by cell sorting and immunofluorescence studies confirmed these findings.

Cell Count↗

Flow cytometric analysis of erythrocytic D antigen density profile.

Red blood cells (RBC) were studied with flow cytometry (FCM) after staining with a directly fluoresceinated anti-D antiserum. The immunofluorescence distribution profiles were slightly asymmetrical, due to a significant, yet small skewness. This skewness was not associated specifically with D antigen positivity, making a homogeneous, normal D antigen distribution on the RBC very likely. With the exception of Du, D-positive RBC could always be distinguished from D-negative ones. FCM was successful in bringing the following phenomena to light: difference in mean fluorescence intensity between the different rhesus phenotypes, the D gene dosage effect, the depressing effect of C antigen on D antigenicity, the nonspecific attachment of IgG on (D-negative) RBC and rhesus mosaicism. The absolute number of D antigen sites could be calculated, using an absolute fluorescence standard.

Erythrocytes↗

Current challenges in human embryonic stem cell research: directed differentiation and transplantation tolerance.

Research towards potential curative transplantation of human embryonic stem (hES) cell-derived grafts in a variety of diseases has become an important topic since the successful derivation and propagation of hES cells from the inner cell mass of a blastocyst. However, clinical applicability can only be established after intensive laboratory studies that should elaborate on two major topics: A) the development of efficient, controlled and stable hES cell differentiation protocols for any specific cell type, and B) the induction of immunological tolerance against transplanted allogeneic hES cell-derived cell types. This review will briefly discuss: A) current possibilities in hES cell differentiation, followed by the development of viral, DNA and mRNA-based gene transfer strategies for hES cells, and B) possible immune modulation strategies for inducing immune tolerance against allogeneic hES cell transplants.

Cell Differentiation↗