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Biomedical subjects

K A Ault

Publications and source records attributed to K A Ault.

At least 19 recordsLinked to original sources

Detection of granulocyte reactive oxygen species formation in whole blood using flow cytometry.

We have developed a technique for analysis of granulocyte reactive oxygen species formation in whole blood using flow cytometry and two color immunofluorescence. This technique relies upon the use of specific fluorescent dye (LDS-751) to stain nucleated cells, eliminating erythrocytes from analysis. Using LDS-751, forward angle light scatter, and 90 degrees side scatter, a granulocyte gate, monocyte gate, and lymphocyte gate were identified. Analysis with multiple FITC conjugated monoclonal antibodies demonstrated greater than 95% purity of a flow cytometrically identified granulocyte population in whole blood without physical manipulation of the blood. Utilizing 2'7' dichlorofluorescein diacetate (DCFH-DA), we were able to measure granulocyte intracellular reactive oxygen species production. Dose response curves were obtained for the effect of granulocyte agonists phorbol myristate acetate, FMLP, and heat fixed Staphylococcus aureus on reactive oxygen species production. The techniques described in this paper should be useful for measuring granulocyte activation in vivo with flow cytometry.

Cell Separation

The significance of platelets with increased RNA content (reticulated platelets). A measure of the rate of thrombopoiesis.

Direct flow cytometric measurement of nucleic acid content in individual platelets is possible using the fluorescent dye Thiazole Orange (Becton-Dickinson, San Jose, CA). When applied to studies of thrombocytopenic patients, platelets with elevated nucleic acid content ("reticulated platelets") can be identified and quantitated. Labeling of these platelets is saturable and is abolished by treatment with RNAse. It has been suggested that, similar to the erythrocyte reticulocyte response to anemia, the number of these platelets appearing in the circulation may provide an estimate of the rate of thrombopoiesis. The authors studied 229 thrombocytopenic patients, measuring both reticulated platelets and platelet-associated immunoglobulin. The results show that for the subset of patients with normal levels of platelet-associated immunoglobulin, the average absolute number of reticulated platelets is independent of platelet count and remains in the normal range. For those with elevated levels of platelet-associated immunoglobulin, the absolute number of reticulated platelets increases in patients who are moderately thrombocytopenic (60 to 100 x 10(9)/L) but decreases to normal or subnormal levels as thrombocytopenia worsens. The latter finding has been duplicated in studies of mice made thrombocytopenic by injection of anti-platelet antiserum. These results are consistent with the hypothesis that reticulated platelets are subject to peripheral destruction at the same rate as mature platelets, and that in the severely thrombocytopenic patient their level may decrease despite an appropriate marrow thrombopoietic response.

Animals

Dynamics of leukocyte-platelet adhesion in whole blood.

The dynamics of leukocyte-platelet adhesion and platelet-platelet interaction in whole blood are not well understood. Using different platelet agonists, we have studied the whole blood kinetics of these heterotypic and homotypic interactions, the relative abilities of different leukocyte subsets to participate in platelet adhesion, and the ligands responsible for adhesion. When platelet aggregation was inhibited by the Arg-Gly-Asp-Ser (RGDS) peptide, thrombin stimulation of whole blood resulted in platelet expression of granule membrane protein 140 (GMP-140) and, simultaneously, a marked increase in the percentage of monocytes and neutrophils (PMN) binding platelets, as well as an increase in the number of platelets bound per monocyte and PMN. Lymphocytes were unaffected. Monocytes bound more platelets and at an initially faster rate than PMN. This increase in monocyte and PMN adhesion to platelets was completely inhibited by the blocking monoclonal antibody (MoAb), G1, to GMP-140. When the combination of epinephrine and adenosine diphosphate (epi/ADP) was used as a less potent agonist in the presence of RGDS, GMP-140 expression per platelet was less, and while monocyte-platelet conjugates formed, PMN-platelet conjugates did not. With epi/ADP in the absence of RGDS, there was an immediate, marked decrease in the percentage of all leukocytes with bound platelets, simultaneous with an increase in the percentage of unbound platelet aggregates. As these platelet aggregates dissociated, the percentage of monocytes and PMN with adherent platelets increased, with monocytes again binding at a faster initial rate than PMN. This recovery of monocyte and PMN adhesion to platelets was also inhibited by the G1 MoAb. We conclude that: (1) monocytes and PMN bind activated platelets in whole blood through GMP-140; (2) monocytes have a competitive advantage over PMN in binding activated platelets, particularly when less potent platelet agonists are used; and (3) platelet aggregate formation initially competes unactivated platelets off leukocytes; subsequent aggregate dissociation allows the now activated platelets to readhere to monocytes and PMN through GMP-140. These studies further elucidate the dynamic interaction of blood cells and possible links between coagulative and inflammatory processes.

Adenosine Diphosphate

Activated and unactivated platelet adhesion to monocytes and neutrophils.

To examine the possible receptor-ligand pairs mediating adhesion of activated and "unactivated" platelets to leukocytes and the kinetics of leukocyte-platelet binding, we developed a flow cytometric assay using isolated cell fractions to accurately measure heterotypic cell adhesion, including both total leukocyte-platelet conjugate formation as well as the number of platelets bound per leukocyte. We have shown that (1) activated platelet binding to both polymorphonuclear leukocytes (PMN) and monocytes is dependent on both a specific epitope (blocked by monoclonal antibody G1) of granule membrane protein-140 (GMP-140) and the presence of divalent cations; (2) unactivated platelets bind to 87% of viable, resting monocytes but to only 34% of PMN; (3) the receptor(s) on unactivated platelets that mediate adhesion to PMN and monocytes do not require divalent cations and become nonfunctional after thrombin activation; and (4) the kinetics of platelet adhesion to monocytes and PMN indicate that monocyte adhesion is favored over neutrophil adhesion. We conclude that platelet-heterotypic cell adhesion is a dynamic process reflecting the activation status of the platelet and differential binding abilities of leukocytes.

Antibodies, Monoclonal

Progressive platelet activation with storage: evidence for shortened survival of activated platelets after transfusion.

Platelets are known to become activated during storage, but it is unclear whether such activation affects recovery or survival after platelet concentrate (PC) transfusion. With the use of flow cytometry to determine the percentage of platelets expressing the alpha-granule membrane protein 140 (GMP-140), a known adhesive ligand appearing on the platelet surface after activation, several studies were conducted. These investigations evaluated 1) the occurrence of significant platelet activation over time in PCs (n = 46) stored under standard blood bank conditions; 2) the correlation between platelet activation and platelet recovery in normal subjects after PC storage (n = 12), as assessed by the recovery of Indium-labeled platelets; and 3) the recovery of activated and unactivated platelets in thrombocytopenic cancer patients transfused with standard PCs (n = 11). It was determined 1) that an increasing duration of storage of PC was associated with increasing platelet activation as measured by the percentage of platelets expressing GMP-140, progressing from a mean of 4 +/- 2 percent (SD) on the day of collection to a mean of 25 +/- 8 percent by 5 days of storage: 2) that, in normal subjects, posttransfusion recovery of autologous platelets stored for 2 to 4 days and then labeled with In111 was inversely correlated with the percentage of activated platelets in the transfused PC (r = -0.55, p = 0.05); and 3) that, when thrombocytopenic patients were transfused with standard PCs, the recovery of the activated platelets in the transfused PCs averaged only 38 +/- 15 percent of the number predicted by the absolute platelet increment.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal

Flow cytometric assessment of platelet function in patients with peripheral arterial occlusive disease.

This study compared new and traditional measures of platelet function in 16 patients with severe peripheral arterial occlusive disease and 15 age-matched controls. Circulating platelets were characterized by the use of fluorescence flow cytometry to assess platelet aggregate formation and expression of the secretion-dependent alpha granule membrane protein GMP-140, by measurement of plasma beta-thromboglobulin (beta-TG), and by performance of platelet-rich plasma aggregation studies. In addition, blood samples were treated with graded concentrations of adenosine diphosphate (ADP; 0 to 10 mumols/L) to characterize by fluorescence flow cytometry the secretory and aggregatory responses to mild stimulation. No differences were detected between the two groups with regard to platelet function in unstimulated circulating blood by use of these techniques. Values (mean +/- SEM) observed were: GMP-140-positive platelets, 11% +/- 3% versus 13% +/- 2%; platelet aggregates in circulating whole blood, 4% +/- 1% versus 9% +/- 3%; plasma beta-TG, 92 +/- 12 versus 94 +/- 22 ng/ml; and ED50 (concentration of ADP required to produce half maximal aggregation), 3.8 +/- 1.1 versus 3.1 +/- 0.5 mumol/L in the patients with peripheral arterial occlusive disease and controls, respectively. Treatment with ADP caused a dose-related increase in GMP-140 expression in both groups, without significant differences in this parameter between the groups at any given concentration. However, stimulation with ADP concentrations greater than 1 mumol/L resulted in more frequent aggregate formation in the control than in the peripheral arterial occlusive disease group (25% +/- 4% versus 11% +/- 2%, respectively at 5.0 mumols/L, p = 0.002).(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Diphosphate

Modulation of platelet surface adhesion receptors during cardiopulmonary bypass.

Alterations in platelet receptors critical to adhesion may play a role in the pathogenesis of the qualitative platelet defect associated with cardiopulmonary bypass. Using flow cytometry, we measured changes in the following platelet surface adhesive proteins: the von Willebrand factor receptor, glycoprotein Ib; the fibrinogen receptor, glycoprotein IIb/IIIa; the thrombospondin receptor, glycoprotein IV; the adhesive glycoprotein granule membrane protein 140, whose expression also reflects platelet activation and alpha-granule release; and, as a control, the nonreceptor protein HLA, A,B,C. Glycoprotein Ib decreased during cardiopulmonary bypass (P less than 0.05) and reached a nadir at 72% (P less than 0.05) of its baseline value at 2-4 h after bypass. This decrease correlated (r = 0.76) with the magnitude of platelet activation (alpha-granule release) in any given patient, but even platelets that were not activated demonstrated a decrease in glycoprotein Ib expression. Glycoprotein IIb/IIIa also decreased in both the activated (47% of baseline, P less than 0.01) and unactivated (63% of baseline, P less than 0.01) subsets of platelets at the end of cardiopulmonary bypass. Glycoprotein IV and HLA A,B,C did not decrease, but instead increased 2-4 h after cardiopulmonary bypass (P less than 0.05). We conclude that cardiopulmonary bypass produces selective decreases in surface glycoproteins Ib and IIb/IIIa as well as in platelet activation; that these two alterations are temporally but not necessarily mechanistically linked; and that these changes have the potential to adversely affect platelet function.

CD36 Antigens

Establishing optimal lymphocyte gates for immunophenotyping by flow cytometry.

It is possible accurately to distinguish lymphocytes from other leukocyte populations in peripheral blood using the combination of fluorescence associated with CD45/CD14 and forward and orthogonal light scatter. By identifying the cell population of interest based on immunofluorescence, a light scattering window can then be drawn to include all (greater than or equal to 98%) of the lymphocytes. In this manner, maximal recovery of the lymphocytes within a sample can be consistently obtained. The combination of light scattering and immunofluorescence can also be used to define the purity of the gate. The identification of nonlymphocytes within the light scattering gate can then be used to establish an accurate denominator for the percent lymphocytes stained. Once the optimal data acquisition gate has been established and characterized, it is possible to correct subsequent analyses with that particular sample since the reactivity of monoclonal antibodies on monocytes and granulocytes can be accounted for once the nonlymphocytes have been identified as being within the acquisition gate.

Antigens, CD

Production of monoclonal antibodies specific for platelet activation antigens and their use in evaluating platelet function.

Monoclonal antibodies (MAb) were used to identify platelet membrane molecules that are expressed after platelet activation. Balb/C mice were immunized with fixed thrombin-activated human platelets and their spleen cells were fused with the murine myeloma cell line NS1-Ag4/1. The resulting hybridomas were screened for antibody production against fixed thrombin-activated platelets and fixed resting platelets by flow cytometry. Two MAbs 2C8 (an IgM) and 1E3 (an IgG2a) demonstrated significant binding to fixed thrombin-activated platelets while reacting minimally with fixed resting platelets. The reactivity of 2C8 and 1E3 were compared to MAb's S12 and AC1.2, both of which have known specificity for an alpha-granule membrane protein (GMP-140) expressed on the surface of activated platelets. In radioimmunoprecipitation studies, both 2C8 and 1E3 immunoprecipitated a protein of approximately 140 kDa similar to that precipitated by S12 and AC1.2. Immunodepletion studies, with S12, AC1.2, 1E3, and 2C8 confirm that they all react with the same antigen. 2C8 may recognize the same epitope as S12, whereas 1E3 appears to recognize a different epitope of the same molecule. The use of these MAbs to measure platelet activation in whole blood correlates well with the results of conventional platelet aggregometry.

Animals

The flow cytometric crossmatch and early renal transplant loss.

Data from this retrospective study indicate that a positive two-color T and/or B cell flow cytometric crossmatch (FCXM) is predictive of early renal allograft loss (less than 2 months) in cadaveric kidney donor recipients who had a negative crossmatch by the antihuman globulin complement-dependent cytotoxicity technique. Among 90 cadaveric kidney donor recipients (67 primary, 23 regrafts), 14 (8 primary, 6 regrafts) lost their renal allografts within 2 months, and 10 of the 14 were FCXM positive and HLA sensitized. The remaining 76 allografts survived beyond 2 months, 12 of which were FCXM-positive. Thus, the FCXM sensitivity rate for detecting early graft loss was 71%, and the specificity rate was 84%. Cadaveric graft-loss rates at 2 months were 33% for primary and 60% for FCXM-positive regrafts in contrast to 7% for primary and 0% for FCXM-negative regrafts. The difference in early graft loss between FCXM-positive and FCXM-negative recipients was statistically significant (P less than 0.0001). Subset analyses of FCXM-positive graft recipients indicate: (1) previous early graft loss contraindicates transplantation of an FXCM-positive regraft (P = 0.03); and (2) panel reactive antibody (PRA) less than or equal to 10% at crossmatch is not associated with early graft loss (P = 0.04). There was no significant difference in 1-year graft survival between primary and regrafts in either FCXM-negative recipients (85% vs. 77%, respectively) or FCXM-positive recipients (67% vs. 40%). All 12 of the FCXM-positive primary and regrafts that survived 2 months continued to function at 2 years. Stepwise logistic regression analysis of 5 independent predictor variables (FCXM status, gender, primary vs. regraft status, PRA level, and HLA mismatched antigens) indicated that the FCXM test was the best predictor of early graft loss. When FCXM results of the 90 cadaveric graft recipients were ranked in three groups, an FCXM channel shift of 29 or greater (third tertile) on a 1024 channel log scale was associated with a 7.0-fold (95% confidence interval 1.9-25.5) increased risk of early graft failure when compared to the first two tertiles. These data indicate that the FCXM offers an additional approach for identifying sensitized patients at risk of early renal allograft loss.

Antigens, Differentiation, T-Lymphocyte

Cyclophosphamide, carmustine, and etoposide with autologous bone marrow transplantation in refractory Hodgkin's disease and non-Hodgkin's lymphoma: a dose-finding study.

Cyclophosphamide, carmustine (BCNU), and etoposide (VP-16) (CBV) is a widely used conditioning regimen in autologous bone marrow transplantation (ABMT) of patients with refractory and relapsed lymphoma. However, the maximum-tolerated dose (MTD) of these agents when used in combination has not been systematically explored. We treated 58 patients (28 with non-Hodgkin's lymphoma [NHL], 30 with Hodgkin's disease [HD]) at seven dose levels of CBV. Doses were cyclophosphamide 4,500 to 7,200 mg/m2, BCNU 450 to 600 g/m2, and VP-16 1,200 to 2,000 mg/m2. The MTD was cyclophosphamide 7,200 mg/m2, BCNU 450 mg/m2, and VP-16 2,000 mg/m2. Six hundred milligrams per square meter of BCNU was associated with five of 18 cases of interstitial pneumonitis versus two of 40 at 450 mg/m2 (P = .02). Treatment-related mortality was 5% at dose levels less than or equal to the MTD and 22% at the highest dose. In this heavily pretreated patient population, most of whom had high volume residual disease, complete responses (CRs) to CBV and ABMT occurred in 25% of assessable patients with NHL and 43% of patients with HD. Thirteen of 28 patients with NHL and 14 of 30 with HD remain free from disease progression with median follow-up of 212 and 215 days, respectively. CBV can be administered with acceptable toxicity over a wide range of doses to patients with refractory and relapsed lymphoma.

Adolescent

Hematopoiesis in vitro coexists with natural killer lymphocytes.

The role of natural killer (NK) lymphocytes in the regulation of human hematopoiesis is controversial. NK-mediated inhibition of colony formation of hematopoietic progenitor cells has been irregularly reported for various cell lineages. In an effort to clarify such disparate findings, we studied the interaction of clearly defined NK and partially purified progenitor cell populations. Cell sorter purified CD16 positive blood NK cells and enriched autologous marrow progenitors were co-incubated at various lymphocyte to marrow cell ratios and then cultured in methylcellulose. There was no inhibition of myeloid, erythroid, or mixed colony formation. Similarly, activation of CD16 positive lymphocytes by interleukin-2 (IL-2) before co-incubation and co-culture did not result in inhibition of colony formation. Furthermore, in a newly designed assay system, we demonstrated that NK cells, which did not modulate colony-formation, remained capable of recognizing and killing rare K562 target cells seeded within the marrow cell population. Our results indicate that unstimulated and IL-2 activated isolated blood NK cells coexist with functioning autologous marrow progenitors in vitro.

Antigens, Differentiation

Diffuse large cell lymphoma with discordant bone marrow histology. Clinical features and biological implications.

In patients with diffuse large cell lymphoma (LCL), bone marrow involvement at the time of diagnosis is a poor prognostic sign. Since 1980, the authors have encountered 13 patients LCL who had simultaneous bone marrow involvement by small cleaved cell lymphoma (11 cases) or mixed small and LCL (two cases), a phenomenon known as "discordant" or "divergent" bone marrow histology. The patients ranged in age from 33 to 85 years (median, 61 years) and presented most commonly with Stage III or IV disease, independent of bone marrow involvement. Seventy-seven percent achieved complete remission (CR) with combination chemotherapy; 50% of these eventually relapsed and died of their disease. One patient died of unrelated causes. No recurrences of low-grade lymphoma were observed, as judged either by clinical behavior or rebiopsy. The survival of the patients with discordant bone marrow histology was compared with that of patients with LCL with or without bone marrow involvement by LCL. Of the 11 patients with discordant marrow histology followed for a minimum of 2 years, four (36%) are long-term survivors; this is comparable to the 2-year survival of patients with LCL without bone marrow involvement (45%). In contrast, 89% of patients with bone marrow biopsy specimens positive for LCL died within 18 months from the time of diagnosis (mean survival, 5.7 months). All diffuse LCL tested were of B-lineage. The authors attempted to determine whether the presence of discordant bone marrow histologic types indicated an underlying low-grade B-cell lymphoma in these patients by evaluating the peripheral blood of the long-term survivors for the presence of clonal excess. Of the three surviving evaluable patients tested, one had evidence of clonal excess in the peripheral blood. For patients with LCL who have a simultaneous bone marrow biopsy positive for low-grade lymphoma (discordant marrow histology), survival is no different from that of patients with negative marrows, and markedly better than that for patients with marrows positive for diffuse LCL. The biological significance of discordant bone marrow histology is not clear at this time.

Adult

Correlated measurement of platelet release and aggregation in whole blood.

We have used a technique for the simultaneous measurement of platelet activation and aggregation in whole blood using two-color immunofluorescence and flow cytometry to study the relationship between the release reaction and aggregation. A monoclonal antibody specific for the alpha granule membrane protein GMP-140 was used to measure the release reaction, and a monoclonal antibody specific for platelet membrane glycoprotein Ib (GPIb) was used to identify platelets and platelet aggregates. Aggregates were identified as particles expressing both levels of GPIb and size larger than that of resting single platelets. Anticoagulated whole blood was incubated with platelet agonists. At various times samples of the blood were removed and immediately fixed with paraformaldehyde. Blood that had been anticoagulated with ethylenediamine tetraacetic acid showed progressive release of platelets but little or no aggregation. However, blood anticoagulated with citrate or heparin showed correlated release and aggregation. The degree of aggregation was greater in heparin than in citrate. The expression of GPIb and GMP-140 increased in direct proportion to the size of the aggregates. Aggregates were observed varying in apparent diameter up to approximately 20 microns. During prolonged incubation there was progressive disaggregation of adenosine diphosphate (ADP)-induced aggregates. After disaggregation the proportion of GMP-140 negative single platelets increased, indicating that both released and nonreleased platelets participated in the aggregation. There was little or no disaggregation of phorbol myristate acetate (PMA)-induced aggregates. The relatively small size and reversibility of platelet aggregates that we have observed in whole blood may be relevant to phenomena occurring in vivo and in extracorporeal circulation.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal

A simple and rapid method for determining the linearity of a flow cytometer amplification system.

We describe a simple and rapid method for determining the linearity of a flow cytometer amplification system. The method is based on a fundamental characteristic of linear amplifiers: The difference between two amplified signals increases linearly with increasing amplifier gain. Two populations of beads or cells, differing slightly in fluorescence intensity, are analyzed by the flow cytometer at increasing photomultiplier tube high-voltage settings. The distribution of the populations' mean difference versus mean position is a straight line intersecting the origin for linear amplifiers. Although some types of nonlinearities cannot be detected with this technique, deviations from linearity indicate nonlinear components in the flow cytometer amplification system. The correlation coefficient is used to quantify degree of nonlinearity. We also describe a method for amplifier nonlinearity compensation.

Amplifiers, Electronic

Localization of monoclonal B-cell populations through the use of Komogorov-Smirnov D-value and reduced chi-square contours.

In this study three different flow cytometric analysis techniques are woven together into a single system that permits improved detection of small percentages of monoclonal B cells in a milieu of either normal blood leukocytes or bone marrow cells. This analysis is an extension of the concept of clonal excess, which is used to detect the presence of a tumor that is a clonal expansion of B cells expressing either kappa or lambda light chains. The technique also utilizes "multiple listmode processing," which is defined in this context as the simultaneous analysis of two or more listmode files that share one or more common parameters. This type of data structure enables the segmentation of two parameter light scatter displays into regions from which numerous kappa and lambda histograms subsequently can be analyzed for their respective Komogorov-Smirnov D-values or R-values (reduced chi-square value). The final technique makes use of a calculated parameter display system. Superimposed on the light scatter dot density plot are D-value or R-value contours. The contours target the location of the population that is abnormal, thus providing information for setting optimal bitmap gates for clonal excess studies, other phenotypic analyses, or cell sorting. In experiments using model systems, the sensitivity of this assay is estimated to be between 0.25% and 2.5%. The technique's distribution information and sensitivity may prove useful for staging, treatment monitoring, and relapse detection of B-cell leukemia and lymphoma. This application illustrates the potential of combining multiple listmode processing and calculated parameter display to expand the effective dimensionality of listmode data.

B-Lymphocytes

Flow cytometric measurement of platelet-associated immunoglobulin.

The measurement of PAIg has been made very difficult by a number of technical and biological problems as outlined above. The flow cytometric approach helped to solve a number of problems. It appears to be at least as good as other techniques and better in many ways. However, it must be recognized that there remain unsolved problems. Flow cytometry has the great advantage of revealing the presence of previously unsuspected subpopulations. There is no question that such subpopulations exist, and that they are responsible, at least in part, for much of the difficulty that PAIg assays has encountered. However, at the moment we understand very little about how these subpopulations arise and what their significance is. When we can explain them it seems likely that our understanding of immune thrombocytopenia will be dramatically improved, and with it, the clinical utility of the PAIg measurement.

Antibodies, Monoclonal