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S Serke

Publications and source records attributed to S Serke.

At least 73 records · Page 4Linked to original sources

Incomplete functional differentiation of HL-60 leukemic cells by synthetic lipopeptides. Partial inhibition by pertussis toxin of enhanced superoxide formation.

In human neutrophils, the synthetic lipopeptide, N-palmitoyl-S-[2,3- bis(palmitoyloxy-(2RS)-propyl]-(R)-cysteinyl-(S)-seryl-(S)-lysyl-( S)-lysyl-(S) -lysyl-(S)-lysine [Pam3CysSer(Lys)4], activates NADPH-oxidase catalyzed superoxide (O2-) formation through pertussis-toxin-sensitive and pertussis-toxin-insensitive mechanisms (Seifert, R., Schultz, G., Richter-Freund, M., Metzger, J., Wiesmüller, K.-H., Jung, G., Bessler, W. G. & Hauschildt, S. (1990) Biochem. J. 267, 795-802). We studied the effects of lipopeptides on differentiation of HL-60 leukemic cells. Pam3CysSer(Lys)4 enhanced phorbol-12-myristate-13-acetate-induced O2- formation (presumably through the expression of components of NADPH oxidase) in a concentration-dependent manner with a half-maximal effect at 100 ng/ml and a maximum at 1 microgram/ml. The effect of the lipopeptide was evident after 24 h and reached a plateau after 48 h. (2S,6S)-2-Palmitoylamino-6,7- bis(palmitoyloxy)heptanoyl-(S)-seryl-(S)-lysyl-(S)-lysyl-(S) -lysyl-(S)-lysine enhanced O2- formation as well. The effects of Pam3CysSer(Lys)4 were potentiated by dibutyryl cAMP, dimethyl sulfoxide, retinoic acid, 1,25-dihydroxyvitamin D3, interferon-gamma and tumor-necrosis-factor-alpha. Pertussis toxin, but not its B-oligomer, partially inhibited enhanced O2- formation induced by Pam3CysSer(Lys)4. O2- formation induced by arachidonic acid and gamma-hexachlorocyclohexane were more sensitive to inhibition by pertussis toxin than O2- formation induced by phorbol 12-myristate 13-acetate. Enhanced O2- formation induced by dibutyryl cAMP was not affected by pertussis toxin. Unlike ATP, histamine, prostaglandin E1 and the beta-adrenergic agonist, isoproterenol, Pam3CysSer(Lys)4 did not increase cytosolic Ca2+ [( Ca2+]i) in undifferentiated HL-60 cells. Histamine but not lipopeptides stimulated high-affinity GTPase of guanine-nucleotide-binding proteins in membranes of undifferentiated HL-60 cells. In Pam3CysSer(Lys)4-differentiated HL-60 cells, the responsiveness to the [Ca2+]i-increasing agonists, N-formyl-L-methionyl-L-leucyl-L-phenylalanine, C5a and leukotriene B4, was increased, whilst the responsiveness to prostaglandin E1 and isoproterenol was decreased. Pam3CysSer(Lys)4 did not inhibit proliferation of HL-60 cells but decreased transferrin receptor expression and increased C3bi receptor expression. Pertussis toxin did not affect proliferation and expression of transferrin and C3bi receptors. Dibutyryl cAMP was considerably more effective than Pam3CysSer(Lys)4 at inducing alterations in the above parameters. Our results suggest that (a) Pam3CysSer(Lys)4 induces incomplete functional differentiation of HL-60 cells through a mechanism which does not depend on a rise in [Ca2+]i and is different from that of other differentiation-inducing substances and (b) the mechanism by which Pam3CysSer(Lys)4 induces differentiation involves pertussis-toxin-sensitive and pertussis-toxin-insensitive mechanisms.

Bucladesine↗

Mobilization of circulating haemopoietic cells (blood stem cells) by GM-CSF in patients with malignancies.

Autologous reinfusion of circulating haemopoietic progenitor and stem cells (blood stem cell transplantation) has emerged as an alternative to autologous bone marrow transplantation in a variety of malignant diseases. Major obstacles associated with harvest of blood stem cells by leukapheresis are: 1. relatively high costs, and 2. discomfort caused to the patient, as generally five to ten settings of leukapheresis are necessary to harvest a number of blood stem cells sufficient for haemopoietic restitution following myeloablative therapy. GM-CSF recently has been shown to effectively increase circulating haemopoietic cells, when given subsequent to even highly-toxic therapy. This report summarizes our data on mobilization of blood stem cells by GM-CSF cells in multiple myeloma patients.

Combined Modality Therapy↗

Acute parvovirus B19 infection mimicking myelodysplastic syndrome of the bone marrow.

A 36-year-old, previously healthy woman was referred to our institution with pancytopenia and splenomegaly for suspected acute leukemia. Bone marrow aspiration showed marked dysplastic changes, excess of blasts, and only spurious red blood cell precursors. Action was taken to prepare allogeneic bone marrow transplantation from an HLA identical sibling for myelodysplastic syndrome. Repeat cytological examination of the bone marrow revealed striking hyperplasia of the red cell line with presence of abnormal giant proerythroblasts. Acute parvovirus B19 infection was suspected and confirmed by detection of anti-B19 IgM and B19 DNA. The underlying disease for this transient aplastic crisis was a formerly unknown hereditary spherocytosis.

Adult↗

Heat stability of parvovirus B19: kinetics of inactivation.

Heat inactivation of parvovirus B19 (B19) was studied in a culture of hematopoietic progenitor cells generated in vitro from peripheral human blood. After inoculating cell cultures with identical volumes of plasma (MII) containing B19 (B19-MII) heat-treated (60 degrees C) for various periods of time, a time-dependent inactivation of the input virus was determined by a decrease of viral DNA replication. No B19 DNA was detected after infection with B19-MII heat-treated for 20 min or more by Southern blot. Viral B19 protein production decreased time-dependently and was not detected after infection with samples treated for 12 min at 60 degrees C or more determined by the enzyme immunoassay. This study indicates that infectivity of B19 virus in plasma can be reduced in vitro by heat-treatment (60 degrees C). However, this does not mean that the heat treatment completely inactivated B19 virus.

Cells, Cultured↗

Identification of CD71 (transferrin receptor) expressing erythrocytes by multiparameter-flow-cytometry (MP-FCM): correlation to the quantitation of reticulocytes as determined by conventional microscopy and by MP-FCM using a RNA-staining dye.

Reticulocytes express the CD71-defined antigen, the transferrin receptor. This report describes how by means of dual-colour immunofluorescence using MP-FCM (multiparameter-flow-cytometry) CD71+ erythrocytes can be detected regularly in blood of healthy adults. Percentages of these CD71+ erythrocytes were compared to the percentages of reticulocytes as determined by conventional microscopy using brilliant cressyl blue, and to the percentages of erythrocytes with high RNA content, as detected by MP-FCM using a RNA-staining dye (thiazole-orange). Only about two-thirds of the percentages determined by the two latter methods were detected by MP-FCM using the CD71 expression for definition of reticulocytes. Studying clinical samples, however, including both specimens with very low and very high numbers of reticulocytes, almost identical percentages were determined by all the three methods described. Studying reticulocytes in vitro, a rapid decline of the expression of the transferrin receptor was observed on reticulocytes. Due to the differential expression of the transferrin receptor on reticulocytes, different subsets of reticulocytes could be identified. The dual-colour MP-FCM method described allows for the characterization and enumeration of immature erythrocytes, representing the major subset of reticulocytes as determined by conventional methods. Furthermore, it allows for subset dissection of reticulocytes.

Antibodies, Monoclonal↗

Replication of parvovirus B19 in hematopoietic progenitor cells generated in vitro from normal human peripheral blood.

Erythroid progenitor cells generated in vitro from peripheral human blood in the presence of interleukin-3 and erythropoietin were infected with human parvovirus B19. B19 virus DNA replication was highest 48 to 72 h after infection, and maximum levels of B19 virus proteins were detected in culture supernatants at 72 to 96 h after infection. B19 virus propagated in vitro was infectious. This cell culture system with peripheral blood cells facilitates studies in vitro of B19 virus replication.

Blood↗

Bone marrow purging prior to autologous transplantation.

Our data suggest that ex vivo bone marrow purging using monoclonal antibodies (MoAbs) and sheep-anti-mouse immunobeads (SAM beads) prior to autologous bone marrow transplantation (ABMT) allows satisfactory tumor cell reduction without critical stem cell losses. Nevertheless, there is only a reduction but no elimination of tumor cells. The consequences will have to be clinically discussed.

Antibodies, Monoclonal↗

[Effect of leukocyte depleting polyester filters on thrombocytapheresis concentrates].

We studied platelet loss, leukocyte depletion, T/B cell ratio, platelet morphology and platelet function (aggregation, hypotonic shock reaction, retention and retraction) prior to and after filtration through two different polyester filters (Sepacell PL-5A, Pall PL100) as well as the posttransfusional platelet increment 1 h after transfusion in 8 pairs of single-donor platelet concentrates (Cobe Spectra, Fresenius AS 104). Leukocyte depletion was effective (>99.9%) and platelet loss acceptable in both filters, all tests showing no indication of a diminished platelet function by filtration.

Blood Component Transfusion↗

[Lymphocytic infiltrations of the orbit in MRT and CT. Lymphoma, pseudolymphoma and inflammatory pseudotumor].

MR and CT examinations of 16 patients with lymphoma, pseudolymphoma and inflammatory pseudotumours were analysed to describe morphologic features of lymphocytic infiltration. Density and signal did not allow for differentiation, but localisation was the most important criterion: lymphoma and pseudolymphoma were located in the anterior superior orbit, inflammatory pseudotumours being retrobulbar lesions. Differentiation is of clinical importance, since both lymphoma and pseudolymphoma are accompanied by generalised malignant lymphoma while inflammatory pseudotumours are localised. Imaging of topographic relations of lens, optic nerve and lesion on sagittal MR images was found helpful for radiation therapy planning.

Adult↗

Productive infection of in vitro generated haemopoietic progenitor cells from normal human adult peripheral blood with parvovirus B19: studies by morphology, immunocytochemistry, flow-cytometry and DNA-hybridization.

Parvovirus B19 exerts a highly selective cytopathic effect on erythroid progenitor cells. Studies so far on the pathogenesis of B19-infection have been performed using bone marrow samples providing large amounts of erythroid progenitor cells. Extensive study, however, has been hampered by the limited access to bone marrow samples. We have designed a liquid culture method allowing the generation of large numbers of erythroid progenitor cells, initiating cultures with CD3- and CD14-poor peripheral blood mononuclear cells. Following a 12 d preincubation in liquid cultures containing recombinant human interleukin 3 (rhIl-3) and recombinant human erythropoietin (rhEpo), cells harvested from the liquid cultures were exposed to B19-containing plasma, followed by a further cultivation in liquid culture for up to 96 h. Cells expressing the CD13 and the glycophorin A (GlyA) antigens, respectively, were monitored sequentially by flow-cytometry, demonstrating a selective inhibition of GlyA-positive cells following B19-inoculation. Typical morphological changes were observed on cytocentrifuge-spots, and typical giant-cells were identified as staining for GlyA. Productive infection by B19 was demonstrable, as B19-DNA increased by about x 100 after 72 h of culture. The liquid culture method generating erythroid target cells for effective infection by B19 virus promises to be a useful and easily accessible tool for further research on B19 infection of haemopoietic cells.

Cells, Cultured↗

Multiparameter flow-cytometrical quantitation of circulating CD34(+)-cells: correlation to the quantitation of circulating haemopoietic progenitor cells by in vitro colony-assay.

A multiparameter flow-cytometrical method for the quantitation of CD34(+)-cells present in adult human peripheral blood cells (PBMC) has been developed. PBMC from 13 healthy adult subjects were analysed for CD34(+)-cells by flow-cytometry, with only the lymphoid population of cells negative for anti-CD3-moAb included in the analysis. At the same time mononuclear cells from the same individuals were depleted of CD3(+)- and CD14(+)-cells by immunomagnetic purging. These cells were cultured for haemopoietic colonies. A correlation coefficient of 0.92 was calculated by regression analysis of CD34(+)-cells number versus the numbers of colonies (CFU-GM, BFU-E). Purging with anti-CD34-moAb abrogated colony-growth. The flow-cytometrical method for the determination of circulating CD34(+)-cells was used for the determination of circulating haemopoietic progenitor cells in one patient, in order to time leukapheresis for subsequent autologous reinfusion following high-dose chemotherapy. Determination of CD34(+)-cells from human adult peripheral blood by multiparameter flow-cytometry promises to be a useful tool for monitoring circulating haemopoietic progenitor cells as identified by anti-CD34-moAb.

Adult↗

A liquid culture method for the in vitro growth of hemopoietic progenitor cells from normal human adult peripheral blood allowing for analysis by multiparameter flow-cytometry.

A liquid culture method has been developed allowing for the in vitro growth of peripheral blood-derived hemopoietic progenitor cells of myeloid, erythroid, monocytic and megakaryocytic lineages. Adherent cell- and CD21-positive cell-depleted PBMC from normal subjects have been cultured in the presence of rhEPO, rhGM-CSF or rhIl-3. Culturing cells in liquid cultures and in plasma clots, a similar dose-response was observed for granulocytic cells/liquid culture and granulocytic colonies/plasma clot with rhGM-CSF, and also for erythroid cells/liquid culture and erythroid colonies/plasma clot with rhEPO. Comparing serum- liquid cultures to serum+ liquid cultures, the ratio of CD13+ cells to CD15+ cells was higher in serum- cultures, indicating a maturation arrest of myecloid cells with serum deprivation. Using dual-colour flow-cytometry, cell-cycle analysis of CD13+ cells, comparing the effects of rhGM-CSF to those of rhIl-3, have been performed. The liquid culture method promises to be a useful tool for the study of in vitro differentiation and proliferation of hemopoietic progenitor cells.

Adult↗

Phenotyping of peripheral blood hemopoietic progenitor cells--in vitro cultures using CD34-/CD33-immunomagnetic purging.

In contrast to many detailed studies on the antigenic profile of hemopoietic progenitor cells from human bone marrow, sparse information, so far, has been gathered with regard to the antigen expression of hemopoietic progenitors present in peripheral blood. Previous studies by multiparameter flow-cytometry have revealed substantial differences of the coexpression of the CD33-, CD19-, and CD74- antigens, respectively, on CD34-positive cells from blood versus those from bone marrow, respectively. Immunomagnetic purging with monoclonal antibodies detecting the CD34-, and the CD33- antigen, respectively, has been used to further characterize the expression of these antigens on day 8 and d-14 granulocyte/macrophage and erythroid colonies as grown from circulating progenitor cells. Purging with CD34 monoclonal antibody abrogated all colony formation, whereas purging with CD33 antibody led to differential inhibition of the various progenitors. Purging bone marrow cells with CD34 antibody, an inhibition of only about 25% was observed with regard to erythroid colonies, whereas an inhibition of about 85% was observed for CFU-GM. These findings reinforce the view that circulating progenitor cells represent relatively immature stages of differentiation, when compared to bone marrow progenitors. Particularly, d-8 erythroid colonies from blood do not represent the equivalent of the genuine CFU-E as described from bone marrow, but they seem to be early stages of BFU-E development.

Adult↗

Leukotriene B4 and tumor necrosis factor release from leukocytes: effect of peritoneal dialysate.

The effect of peritoneal dialysate on the capacity of peripheral blood polymorphonuclear (PMNL) and mononuclear leukocytes (MNC) to release leukotriene B4 (LTB4) and tumor necrosis factor alpha (TNF alpha) was investigated in vitro. Following density gradient separation, aliquots of 5 x 10(6) PMNL or MNC were incubated in peritoneal dialysis fluid containing 1.5% glucose or Hanks' buffer (= control) for 1-2 h at 37 degrees C. TNF alpha and LTB4 production was stimulated with Escherichia coli lipopolysaccharide (LPS) and calcium ionophore A23187, respectively. MNC incubated in buffer and LPS produced (mean +/- SD) 1,006 +/- 522 pg TNF alpha/5 x 10(6) cells; no significant amounts of TNF alpha were detectable in the presence of dialysate. An inhibition of TNF alpha release was also observed in MNC exposed to bicarbonate-buffered dialysates (pH 7.40) and 4.25% and 1.5% glucose solution with physiologic osmolality. Incubation of PMNL in Hanks' buffer followed by A23187 stimulation led to production of 29.1 +/- 19.2 ng LTB4/5 x 10(6) cells, whereas glucose-incubated cells were refractory to ionophore stimulation (less than 0.1 ng LTB4/5 x 10(6) cells). The failure of dialysate-exposed leukocytes to release inflammatory mediators in response to adequate stimuli may contribute to the impairment of cellular host defense in the setting of continuous ambulatory peritoneal dialysis.

Calcimycin↗

Effects of various recombinant human hemopoietic growth factors (rhEpo, rhG-CSF, rhGM-CSF, rhIl-3) on the growth of peripheral blood progenitor cells (BFU-E, CFU-GM).

The effects of rhEpo 1, rhG-CSF, rhGM-CSF and rhI1-3 on the growth of both CFU-GM and BFU-E from normal human adult peripheral blood have been studied in plasma clot cultures. Using optimal concentrations of all growth factors, alone and in combination with all other factors, rhI1-3 showed the highest activity in regard to growth of both CFU-GM and BFU-E, whereas rhGM-CSF treatment resulted only in half-maximal colony growth compared to rhI1-3. No synergism or additive effect was seen with the combination of rhI1-3 and rhGM-CSF. Treatment with rh-G-CSF had no additional effect with optimal concentrations of rhI1-3 and/or rhGM-CSF. When suboptimal concentrations of rhGM-CSF and rhI1-3 were applied, however, they showed a marked synergism on both BFU-E and CFU-GM. RhG-CSF, added to a suboptimal concentration of rhGM-CSF, resulted in a marked growth increase of CFU-GM but had no effect on BFU-E.

Adult↗

Binding of mitogenic plant lectins to human lymphocytes. Flow cytometric analysis.

Several plant lectins, such as phytohaemagglutinin (PHA), pokeweed mitogen (PWM), concanavalin A (ConA), Maclura pumifera (MPA) and Pisum sativum agglutinin (PSA), are potent mitogens for human lymphocytes. The pattern of activation induced, however, is not uniform for all mitogenic lectins. The different biological effects following lectin activation of human lymphocytes might be due at least in part to a differential binding of the various lectins to lymphocyte subsets. We have therefore studied the binding of five mitogenic plant lectins, namely PHA, PWM, ConA, MPA and PSA to three major human lymphocyte subsets as defined by anti-CD4, anti-CD8 and anti-CD16 monoclonal antibodies. Dual colour, flow cytometric analysis employing PE-conjugated monoclonal antibodies and FITC-conjugated lectins revealed that all subsets uniformly show high binding of PHA, whereas two different populations, one high binding and the other low binding, can be detected with PWM, ConA, MPA and PSA.

Antigens, Differentiation↗