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W Knapp

Publications and source records attributed to W Knapp.

At least 127 records · Page 7Linked to original sources

Prognostic significance of surface marker expression on blasts of patients with de novo acute myeloblastic leukemia.

The prognostic significance of the expression of surface membrane antigens on the blasts of 123 consecutive patients with de novo acute myeloblastic leukemia (AML) was evaluated. For this purpose, reactivity of monoclonal antibodies (mAbs) CLB-ERY3 (antiblood-group H antigen), VIM-D5 (CD15), WT1 (CD7), MY7 (CD13), MY9 (CD33), VID-1 (antihuman leukocyte antigen locus DR [anti-HLA DR]), VIM-2 (CDw65L), VIM-13 (CD14), 63D3 (CD14) and anti-TdT with leukemic blast cell populations was prospectively analyzed with respect to the rates of complete remission (CR), continuous complete remission (CCR), and survival. The overall rate of CR was 65%, the 6-year rates of overall CCR and survival were 23% and 13%, respectively (median period of patient observation, 30 months). Of all Abs tested, four (CLB-ERY3, MY7, anti-TdT, and VIM-D5) were found to be of prognostic value. Reactivity of CLB-ERY3, MY7, and anti-TdT was predictive for CR (CLB-ERY3+, 43% v CLB-ERY3-, 73%, P less than .02; MY7+, 59% v MY7-, 91%, P less than .003; TdT+, 28% v TdT-, 71%, P less than .001, respectively) and probability of survival (significantly lower survival rates: CLB-ERY3+, P less than .02; MY7+, P less than .03; and TdT+ cases, P less than .001, respectively). Reactivity of VIM-D5 was significantly associated with a higher probability of CCR (P less than .01). Our results confirm earlier reports on the prognostic significance of expression of CD13 and TdT in AML and indicate CLB-ERY3 (antiblood-group H antibody) and VIM-D5 (CD15) as further markers predictive for the clinical outcome in patients with de novo AML.

Adolescent↗

Terminal deoxynucleotidyl transferase and CD7 expression in acute myeloid leukemias are not associated with a high frequency of immunoglobulin and/or T cell receptor gene rearrangement.

Within normal hemopoiesis, the intranuclear DNA polymerase TdT seems to be exclusively expressed by T and B lymphoid precursor cells. Double staining experiments showed that TdT can also be expressed in blast cells of certain acute myeloid leukemias. Recent reports described a very strong association between TdT expression and rearrangements of IgH and TcR genes in such AML specimens, suggesting a predominant lymphoid commitment of these TdT positive AML blasts. When submitting 24 serologically and morphologically well-characterized TdT positive AML specimens for additional genotypic analysis to determine the IgH and TcR gene configuration, we observed that only four had clonally rearranged IgH and/or TcR genes, whereas 20 had germ line configuration. This frequency is clearly lower than previously reported and not necessarily different from rearrangement frequencies reported for TdT negative AML (4-40%). It would seem to us, therefore, that the expression of TdT in otherwise well-defined AML blasts is not necessarily associated with a higher frequency of immunoglobulin and/or T cell receptor gene rearrangement.

Antigens, CD7↗

Concordant changes of pyrimidine metabolism in blasts of two cases of acute myeloid leukemia after repeated treatment with ara-C in vivo.

Though data from cell lines are abundant, the reason for the development of resistance to 1-beta-D arabinofuranosylcytosine (ara-C) in vivo remains unresolved. A broad interpatient variation of metabolic parameters has further complicated interpretation of the results. The present study compares ara-C metabolism in leukemic blasts of two patients with newly diagnosed disease, before and after repeated treatment with ara-C containing chemotherapy regimens in vivo. Membrane transport of ara-C was unchanged after treatment. In addition, cell-free extracts of blasts obtained after treatment failure showed an unchanged cytidine deaminase activity. Though deoxycytidine kinase activity in cell extracts was unaltered or increased after treatment failure, the activity in situ, measured as the rate of 1-beta-D-arabinofuranosylcytosine triphosphate (ara-CTP) formation, was decreased. This could be shown to be due to an expansion of the deoxycytidine triphosphate (dCTP) pool. The severalfold increase in dCTP pool was accompanied by a decrease in thymidine triphosphate (dTTP) pool and correlated with a decrease in deoxycytidylate deaminase (dCMP-deaminase) activity in cell free extracts. Low dCMP-deaminase activity had been shown to confer an ara-C resistant phenotype to cell lines in vitro. Data presented in this paper show that a selection for leukemic blasts with low dCMP-deaminase activity can also be favored by ara-C containing treatment regimens in vivo. Our data suggest that this mechanism might contribute to treatment failure.

Adolescent↗

CD antigens 1989.

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Antigens, Differentiation↗

[Immunofluorescence and immunocytochemical stain methods for simultaneous cytogenetic and phenotypic characterization of mitotic cells].

Cytogenetic analysis and immunological phenotyping are well established methods for characterizing leukaemic cell populations. The simultaneous evaluation of cell phenotype and karyotype has, however, been established only recently. We present immunocytochemical methods utilizing horseradish peroxidase and alkaline phosphatase monoclonal anti-alkaline phosphatase staining procedures, as well as modified immunoflurescence methods with fluorescein- and rhodamine-conjugated antibodies. Chromosomes were either stained with Giemsa and "stains-all" (immunocytochemical techniques) or chromomycin and distamycin A/DAPI for R- and C-banding (immunofluorescence techniques), respectively. The advantages and disadvantages of these methods are compared and provide representative examples of the various preparations. These methods will contribute to defining the phenotype of cytogenically-normal cells in leukaemias and to assigning different karyotypes to heterogenous cell populations, as well as supporting the search for analysis of residual blast cells.

Antibodies, Monoclonal↗

[Changes in fatty acid metabolism in dilated cardiomyopathy and hypertrophic cardiomyopathy in childhood].

The aetiology and the pathomechanisms in both types of cardiomyopathy (CM) are still unknown. In vivo measurements of myocardial metabolism in CM may be useful, but there is hardly any information on this subject. Free fatty acids (FFA) are the main source of energy for the normal myocardium. A method for external measurement of the FFA extraction rate (FFA-ER) in different myocardial regions by the simultaneous use of two isotopes has been developed. 201 TI indicates the myocardial perfusion and 15-(p-123 I-phenyl)-pentadecanoid acid (IPPA) represents the FFA uptake. The relation of IPPA/TI reflects the FFA-ER. 8 patients with hypertrophic CM (HCM), age 0.2-20 years, and 8 patients with dilated CM (DCM), age 0.2-18 years were investigated. 12 healthy adults and 4 infants after an arterial switch operation were used as a control group. All patients with HCM showed normal myocardial perfusion but the FFA uptake was strongly diminished, resulting in a reduction in FFA-ER to 42 +/- 12% of the normal value. The maximal influx rate (IR) of FFA was diminished too. In patients with DCM both the myocardial perfusion and the FFA uptake were globally reduced, resulting in a virtually normal FFA-ER. The IR was slightly increased. In HCM and DCM FFA utilisation was disturbed. The alterations were significantly different in both types of CM and different pathomechanisms can be assumed.

Adolescent↗

Time-dependent cleavage of a high-mannose form of Ii to p25 in an intracellular compartment.

The cleavage of a high-mannose form of Ii to p25 was demonstrated in an intracellular compartment of B cells. Subcellular fractions of 72 hr-activated B cells, separated by Percoll density gradient centrifugation, were immunoprecipitated with anti-class II or anti-Ii serum and characterized for 5'-nucleotidase, acid phosphatase, and radiolabeled transferrin. The cleavage of p25 from Ii as a C-terminal fragment occurred from 20 to 60 min after synthesis in an intracellular compartment which was intermediate in density between lysosomal and plasma membrane fractions and coincided with the lighter to two internalized transferrin compartments. Chloroquine or monensin treatments, at maximal nontoxic doses, which block Golgi and lysosomal functions, did not seem to alter the cleavage of Ii to p25. p25 molecules were reduced to about 10,500 daltons by treatment with endoglycosidases F or H. We conclude that p25 was generated from a high mannose form of Ii in the endoplasmic reticulum or cis-Golgi. This finding could either implicate that site for class II MHC desetope charging with foreign peptides or reflect a mechanism for degradation of "excess" Ii molecules.

Chemical Phenomena↗

Identification of activated T cells and the suppressor/inducer subset in patients suffering from severe aplastic anemia.

In patients with severe aplastic anemia (SAA), lymphocyte subpopulations were examined for the presence of HLA-DR and 2H4 (suppressor/inducer subset) antigen-expressing cells by flow cytometric analysis. Investigations were performed on peripheral blood lymphocytes before and after therapy with antithymocyte globulin (ATG) and methylprednisolone (MP), as well as on bone-marrow lymphocytes before therapy. Before treatment, only the absolute numbers of CD4+ T cells and the CD4+HLA-DR+/CD8+HLA-DR+ activated T cell ratio were significantly decreased (p less than 0.01 and p less than 0.001, respectively). Following successful ATG/MP treatment, a decrease in the CD4+/CD8+ T cell ratio was found. Regarding the suppressor/inducer subset, only absolute numbers of CD4+/2H4+ cells were somewhat higher in treated patients; the percentages were the same in all groups of patients. Studies performed on bone-marrow lymphocytes showed significantly decreased percentages of CD4+ and CD8+ T lymphocytes, which also express HLA-DR antigen. No significant changes in the distribution of activated T cells following ATG/MP therapy were found, suggesting that these cells play no major role in the pathogenesis of the disease.

Anemia, Aplastic↗

Towards a better definition of human leucocyte surface molecules.

At the 4th International Workshop on Human Leucocyte Differentiation Antigens workers from 525 laboratories jointly evaluated and/or submitted about 1100 different monoclonal antibodies to human leucocyte surface molecules. At the final conference of the workshop agreement was reached on 35 new cluster determinants (CDs) and subclusters. In addition, seven previously established clusters were redefined. This report provides basic information concerning the molecules defined by these antibodies and some highlights of the conference.

Antibodies, Monoclonal↗

Inhibition by leupeptin and antipain of the intracellular proteolysis of Ii.

Intracellular cleavage of Ii was evaluated in immunoprecipitates of radiolabeled Raji cells treated with protease inhibitors (leupeptin, antipain, chymostatin, and pepstatin) or blockers of endosomal function (chloroquine and monensin). Immunoprecipitates with anti-class II and anti-Ii(12-28) sera and VIC-Y1 MoAb revealed Ii cleavage products of 21,000 and 10,000 daltons (p21 and p10) only in leupeptin- and antipain-treated cells. Both p21 and p10 were judged to be N-terminal products because they were recognized with anti-Ii(12-28) and not with anti-Ii(183-193) or anti-Ii(192-211) sera. p10 might be derived from p21 because its intensity was increased in inverse proportion to p21 as a function of leupeptin or antipain concentration. p21, but not p10, was recognized by anti-class II antibody and thus might originate from class II-associated Ii. In pulse-chase studies, p21 and p10 appeared at 2 hr and later after Ii synthesis. p25, an Ii C-terminal fragment, was about 60% reduced by leupeptin or antipain. Intracellular proteolytic cleavage of class II-associated Ii appeared to follow two pathways leading either to N-terminal p21 and p10 or to C-terminal p25. Such cleavages might regulate or catalyze foreign antigen binding to class II.

Antibodies, Monoclonal↗

CD antigens 1989.

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Antigens, Differentiation↗

Phenotypic and genotypic heterogeneity in infant acute leukemia. II. Acute nonlymphoblastic leukemia.

We have studied the immunophenotypic and genotypic characteristic of acute nonlymphoblastic leukemias (ANLL) in infants aged less than one year. Sixty-four percent of cases (16/25) showed a myeloid or myelomonocytic differentiation pattern and 10 of these were classified as FAB M5 (7 M5a, 3 M5b). Only seven of the latter cases expressed the CD14 antigen. Acute megakaryocytic leukemia with a high number of glycoprotein IIb/IIIa or IIIa positive blasts were identified in five patients. Erythroleukemia with a high percentage of rather mature glycophorin A positive erythroblasts were diagnosed in two infants. Cytogenetic studies were successfully performed in all 20 cases investigated. Abnormalities involving chromosome 11 were present in 10 of 17 patients with an abnormal karyotype including five cases with a t(9;11)(p21;q23). Immunoglobulin (Ig) and T cell receptor (TCR) gene analyses were performed in 20 patients. A rearrangement of Ig heavy chain sequences was detected in five cases (20%), one of whom exhibited multiple rearranged fragments. Three of these patients showed additional TCR delta-chain gene rearrangements, while Ig kappa, TCR beta- as well as TCR gamma-chain genes showed a germline configuration in all cases analyzed. Our study confirms the high incidence of myelomonocytic and monoblastic subtypes in infants with ANLL, which are particularly closely associated with chromosome 11 abnormalities. However, we also observed an unexpected high frequency of megakaryoblastic leukemias as well as erythroleukemias. As previously reported for ALL in infants, ANLL of infancy shows a similar heterogeneity regarding phenotypic and genotypic features.

Antigens, Differentiation↗

A novel carbohydrate, differentiation antigen on fucogangliosides of human myeloid cells recognized by monoclonal antibody VIM-2.

A mouse monoclonal antibody, VIM-2, specific for human blood cells of myelomonocytic lineage, was found to bind to a series of minor gangliosides isolated from the cells of patients with chronic myelogenous leukemia (Uemura, K., Macher, B.A., DeGregorio, M., Scudder, P., Buehler, J., Knapp, W., and Feizi, T. (1985) Biochim. Biophys. Acta 846, 26-36). TLC immunostaining studies with the VIM-2 antibody of gangliosides from normal human neutrophils, acute myeloid leukemia, and chronic myelogenous leukemia cells showed that the total amount and the ratio of the VIM-2 gangliosides varies among these different myeloid cells and appears to be related to the level of cellular differentiation. Purification of these gangliosides from chronic myelogenous leukemia cells was aided by a sensitive enzyme-linked immunosorbent assay procedure used in conjunction with high performance liquid chromatography. Structures for two of the immunoreactive gangliosides (a ceramide decasaccharide, VIII3NeuAcV3-Fuc-nLc8Cer and a ceramide dodecasaccharide X3-NeuAcVII3Fuc-nLc10Cer) are proposed from negative ion fast atom bombardment mass spectrometry of the native gangliosides, methylation analysis, and the combined use of glycosidase treatment and TLC immunostaining with carbohydrate sequence specific antibodies. The VIM-2 antigen was thus characterized as involving the sialofucooligosaccharide sequence.

Antibodies, Monoclonal↗

T cell stimulation via CD2 molecules is regularly accompanied by an increase in cytoplasmic pH. Different effects of lectins and CD3 antibodies.

The stimulation of different cell types with growth factors is often accompanied by a rapid intracellular alkalinization. By using mitogenic lectins, cluster of differentiation (CD)2 and CD3 mAb, as stimuli, we studied early changes of the intracellular pH in the activation process of resting human PBL. We found increases in free cytoplasmic Ca2+ levels and DNA synthesis but no intracellular alkalinization in the early activation phase upon stimulation with the mitogenic lectins, Con A, and PHA. Similarly stimulation with CD3 mAb led in most instances to no detectable pH shifts. Only in 7 out of 30 experiments was CD3 mAb-induced alkalinization observed. In contrast, stimulation with mitogenic combinations of anti-CD2 mAb led in all instances to rapid and clear-cut intracellular pH shifts very similar to those observed upon stimulation with PMA. In medium lacking sodium bicarbonate the intracellular alkalinization via the CD2 structure could be blocked by the amiloride analogue 5-(N-methyl-N-isobutyl)amiloride (MIA), which indicates that this increase in pH is mediated by the amiloride-sensitive Na+/H+ antiporter. Blockade of this antiporter had no negative effect, however, on T cell proliferation as measured by thymidine incorporation. In contrast, significantly enhanced proliferation rates were observed after stimulation with mitogenic combinations of anti-CD2 antibodies in the presence of MIA. No such effect of MIA could be observed in lectin induced T cell stimulation. These findings indicate that stimulation of the Na+/H+ antiporter via the CD2 structure is neither a prerequisite for T cell proliferation nor does it promote T cell growth. It rather seems to function in a regulatory role. In its absence, superinduction of proliferation can be achieved.

Amiloride↗

Regulation of the CD2 alternate pathway of T cell activation by CD3. Evidence for heterologous desensitization.

Normal resting T cells were stimulated through the alternate CD2 pathway. A CD3 mAb VIT3 completely blocked their proliferative response. The time interval for 50% inhibition lasted for 24 h after the onset of CD2 stimulation. Mitogen-activated cloned long term cultured T cells could also be stimulated via CD2. This proliferative response was again inhibitable by VIT3, indicating that CD3 regulates the CD2 pathway not only in resting cells, but also in lymphocytes actively involved in an Ir. T cells were further loaded with Quin2 and their free cytoplasmic Ca2+ levels were monitored in response to CD3 and CD2 stimulation. Antibodies directed against both surface R triggered a rapid elevation of Ca2+ levels. Both responses were abrogated when the cells had been treated overnight with VIT3. The free cytoplasmic Ca2+ levels of VIT3-pretreated cells, however, were not higher than those of control cells. These results point to a functional interaction between CD3 and CD2 possibly at the level of signal transducing proteins. Finally, cholera toxin was found to inhibit the Ca2+ response in Jurkat T cells. Both the CD3 and CD2 stimulation were sensitive to cholera toxin, indicating that a GTP-binding protein may be involved in signal transduction for both surface structures.

Antibodies, Monoclonal↗

A new HTC, a PLT and a PLT clone define a split of HLA-DR2 in the Austrian population.

An LD defined split of HLA-DR2, different from HLA-Dw2, Dw12 and DB9, is observed in the Austrian population. The narrow HLA-D specificity, defined by a new Austrian Homozygous Typing Cell (HTC), a primed lymphocyte (PLT) cell line and a PLT clone, is tentatively termed HLA-D"WH". Investigation of three informative families shows that HLA-D"WH" segregated together with HLA-DR2. In one family, even an individual heterozygous for HLA-DR2/Dw2 and HLA-DR2/D"WH" can be identified. A panel study including 90 non-related Austrians shows that HLA-D"WH" occurring in 6.7% of the whole panel, that is in 20% of the HLA-DR2 positive panel members, is completely included in HLA-DR2. HLA-D"WH" might be comparable to other LD specificities related to HLA-DR2, "MN2", "FJO", "AZH" or "GEN".

Austria↗

Longitudinal study of major histocompatibility complex antigen expression on hepatocytes in fine-needle aspiration biopsies from human liver grafts.

Expression of MHC class II antigens on hepatocytes is part of the natural history of liver grafts. The expression appears to be enhanced by rejection episodes but not during infection and seems to persist on higher levels in chronic rejection and multigraft recipients. Intense expression of class I antigens is a nonspecific feature of the posttransplant situation.

Biopsy, Needle↗

Further evidence for lymphokine overproduction in severe aplastic anemia.

Interferon-gamma (IFN-gamma) and tumor necrosis factor (TNF) are lymphokines with a potent hematopoietic progenitor cell suppressive capacity. In untreated and immunosuppressed patients with severe aplastic anemia (SAA) and in control individuals we measured (a) serum levels of IFN-gamma and TNF and its production by peripheral blood mononuclear cells (PBMNC); (b) serum levels of neopterin, a product that reflects endogenous IFN production; (c) resting and activated lymphocyte subpopulations; and (d) serum levels of soluble interleukin-2 receptor (IL-2R). Serum levels of IFN and TNF did not differ significantly in untreated and treated SAA patients and control individuals. Spontaneous and phytohemagglutinin-induced production of IFN and TNF by PBMNC, however, were highly increased in both untreated and treated SAA patients. Increased and decreased neopterin serum levels in untreated and treated SAA patients, respectively, suggest modulation of endogenous lymphokine release subsequent to immunosuppression. HLA-DR+ antigen was mainly expressed by CD8 T cells. Circulating numbers of activated (CD4 and CD8) T cells and serum levels of IL-2R were not increased in both untreated and treated SAA patients. The proportion of HLA-DR+ T cells in the PBMNC of untreated SAA patients correlated with the extent of lectin-induced IFN production. Although we were unable to confirm previous reports in SAA on (a) detectable IFN in blood and bone marrow serum, (b) improvement of stem cell growth upon neutralization of endogenous IFN, (c) absolutely increased numbers of circulating activated T cells, and (d) normalization of these abnormalities subsequent to successful immunosuppression, our data clearly support previous reports on abnormal lymphokine production in severe aplastic anemia. Our failure to relate this phenomenon to the severity of disease states, however, further raises doubts on the pathogenetic significance of lymphokine overproduction in SAA.

Adolescent↗