Search PubMedSearch

Biomedical subjects

M J Fulwyler

Publications and source records attributed to M J Fulwyler.

At least 19 recordsLinked to original sources

Detection and analysis by dual-laser flow cytometry of bacteriophage T4 DNA inside Escherichia coli.

Bacteriophage T4 DNA was detected and analyzed inside E. coli by dual-laser flow cytometry using a dye combination of Hoechst 33258 (H33258) and chromomycin A3 (CA3) which bind to A-T- and G-C-rich regions of DNA, respectively. An exponentially-growing culture of E. coli ATCC 11303 was infected with T4 bacteriophage at a 1:1 multiplicity of infection. Samples were taken immediately and at 5 min intervals and placed on ice to interrupt viral replication. The samples were then centrifuged, ethanol-fixed, stained with H33258 and CA3, and analyzed by flow cytometry. Twenty-five minutes post-infection, a population of cells which contained T4 DNA began to appear on both a bivariate contour plot and a frequency histogram plot of the data. By 35 min, T4 DNA-containing cells could be distinguished from E. coli cells containing little or no T4 DNA. The ratio of CA3:H33258 fluorescence was then used to calculate the % G + C value for T4 DNA inside E. coli. A value of 35.6 +/- 0.2% was obtained, which agrees with % G + C values determined by traditional methods. These results demonstrate that dual-laser flow cytometry can be used to study viral DNA inside the bacterial host.

Base Composition

Fluorescent tetradecanoylphorbol acetate: a novel probe of phorbol ester binding domains.

Protein kinase C (PKC) has a prominent role in signal transduction of many bioactive substances. We synthesized the fluorescent derivative, phorbol-13-acetate-12-N-methyl-N-4-(N,N'-di(2-hydroxyethyl)amino)-7-n itr obenz-2-oxa-1,3-diazole-aminododecanoate (N-C12-Ac(13)) of 12-O-tetradecanoylphorbol-13-acetate (TPA) to monitor the location of phorbol ester binding sites and evaluate its potential use as a probe of PKC in viable cells. The excitation maximum wavelength of N-C12-Ac(13) is close to 488 nm, facilitating its use in argon-ion laser flow and imaging cytometry. When incubated with 100 nM N-C12-Ac(13) at 25 degrees C, P3HR-1 Burkitt lymphoma cells accumulated the dye rapidly, reaching maximum fluorescence within 25 min, 20-fold above autofluorescence. Addition of unlabeled TPA significantly decreased the fluorescence of N-C12-Ac(13) stained cells in a dose-dependent manner indicating specific displacement of the bound fluoroprobe. Competitive displacement of [3H]-phorbol-12,13-dibutyrate ([3H]-PBu2) from rat brain cytosol with N-C12-Ac(13) gave an apparent dissociation constant (Kd) of 11 nM. N-C12-Ac(13) possessed biological activity similar to TPA. Like TPA (final concentration 65 nM) N-C12-Ac(13), at a lower concentration (51 nM), induced expression of Epstein-Barr viral glycoprotein in P3HR-1 cells, differentiation of promyelocytic HL60 cells, and caused predicted changes in the mitotic cycle of histiocytic DD cells. Microspectrofluorometric images of single cells labeled with N-C12-Ac(13) showed bright fluorescence localized intracellularly and dim fluorescence in the nuclear region, consistent with dye binding mainly to cytoplasmic structures and/or organelles and being mostly excluded from the nucleus. Because of the high level of non-specific binding of N-C12-Ac(13), this probe is not ideal for visualizing PKC in intact cells, but would be a valuable fluoroprobe to investigate the kinetic properties of purified PKC. Also, knowledge gained from these studies allows us to predict structures of fluorescent phorbols likely to have less non-specific binding and, consequently, be potentially useful for monitoring PKC in viable cells.

Animals

Comparison of DMO and flow cytometric methods for measuring intracellular pH and the effect of hyperthermia on the transmembrane pH gradient.

Intracellular pH (pHi) was measured in both unheated and heated cells by the distribution of the weak acid, 5,5-dimethyl-2,4-oxazolidinedione-2-14C (14C-DMO), and by the fluorescence intensity ratio (I530/I630) of the pH sensitive fluorescent dye, 2',7'-bis(carboxyethyl)-5,6-carboxy-fluorescein (BCECF), analyzed by flow cytometry (FCM). BCECF-loaded Chinese hamster ovary (CHO) cells were analyzed by FCM after they had incubated in fresh medium at 37 degrees C for 90 min, during which time a decrease in fluorescence ratio stabilized. After stabilization, the pHi determined for CHO cells by the FCM method at pHe values of 6.0-8.1 agreed-within 0.1 pH units with that determined by the 14C-DMO method. There is a pH gradient across the plasma membrane that is not affected by heat. In CHO cells, the gradient, determined by DMO and FCM, is less or greater than pHe by 0.30 and 0.15 pH units at pHe 7.4 and 6.3, respectively, and in NG108-15 cells, the gradient determined by DMO increases to 0.50 pH units at pHe 6.3. Both cells maintained their pH gradients for at least 4 h after heating, although 99.9% of the cells were reproductively dead (survival of 10(-3)) after heating at 45.5 degrees C either at the normal pHe of 7.4 or at a low pHe of 6.4-6.7.

Adolescent

Determination of guanine-plus-cytosine content of bacterial DNA by dual-laser flow cytometry.

A dual-laser flow cytometer was used to analyse different species of bacteria for the molar percentage of guanine-plus-cytosine (% G + C) without the need for DNA extraction or purification. Ethanol-fixed bacterial cells were stained with a combination of DNA-specific fluorochromes, Hoechst 33258 and chromomycin A3, which bind to AT- and GC-rich regions of DNA, respectively. A linear relationship (r = 0.99) was demonstrated between the log of the ratio of chromomycin A3 to Hoechst 33258 fluorescence and the log of the % G + C as determined by thermal denaturation (Tm) or buoyant density centrifugation (Bd) methods. Linearity was maintained for all bacterial species tested over the range of 28-67% G + C. A standard curve was constructed using five strains whose % G + C had been determined by other methods. From the equation describing this line, the % G + C values of nine other strains with known DNA base composition, together with the five strains used to construct the curve, were calculated using the chromomycin A3 to Hoechst 33258 ratio and were in agreement with values obtained by Tm, Bd or HPLC. The reproducibility of flow cytometric analysis (mean error 0.7% G + C) compared well with the reproducibility of other methods. Mixtures containing two species were also analysed. Two cell populations could be discerned in mixtures containing two species which differed in base composition by as little as 4% G + C.(ABSTRACT TRUNCATED AT 250 WORDS)

Cytosine

The role of intracellular pH and its variance in low pH sensitization of killing by hyperthermia.

Average intracellular pH (pHi) was measured in Chinese hamster ovary (CHO) and murine NG 108-15 neuroblastoma cells by the weak acid, [14C]5,5-dimethyl-2,4-oxazolidinedione-2 [( 14C]-DMO). Intercell variance in pHi in CHO cells was determined by flow cytometry (FCM) and automated image analysis using the pH-sensitive fluorescent dye, 2',7'-bis-(carboxyethyl)-5(and-6)- carboxyfluorescein. Our results are summarized as follows: (i) When extracellular pH (pHe) ranged from 6.1 to 7.9, the relationship between pHe and average pHi was similar for both cell lines, except that pHi of NG108 cells was 0.3 to 0.2 pH units higher than that of CHO cells. (ii) When both cell lines were heated at 43.5 degrees C to give an isosurvival of 0.1 at pHe 7.2, lowering pHe (6.1-6.9) reduced survival more for CHO cells than for NG108-15 cells. However, plots of survival versus average pHi were identical for the two cell lines. (iii) Values of average pHi measured by [14C]DMO agree with those measured by FCM techniques. (iv) A distribution of pHi values was obtained for a population of cells. However, when the cells were sorted on the basis of low or high values of pHi and reanalyzed, the distributions of the sorted populations were almost identical to the distribution of the original population. These results indicated that the distribution of pHi for a cell population is much more homogeneous than that observed by FCM. (v) These observations indicate that pHi at the time of heating and not pHe is responsible for the low pH sensitization of heat killing.

Adaptation, Physiological

Physical association between MHC class I and class II molecules detected on the cell surface by flow cytometric energy transfer.

The physical association of HLA class I and class II Ag in the membranes of PGF and JY lymphoblastoid cell lines was studied using flow cytometric energy transfer. This technique measures the proximity of cell surface molecules in the nm range and provides a distribution histogram of the average proximity of molecules on each cell of a population. HLA Ag were labeled with mAb conjugated to fluorescein, serving as donor, or tetramethylrhodamine, serving as acceptor molecules. Significant fluorescence energy transfer was detected between various combinations of class I and class II molecules indicating that these molecules are within 10 nanometers of each other. Specifically, energy transfer was observed between class I molecules and DR, DQ, or DP class II HLA molecules. In addition, energy transfer between all combinations of DR, DQ, and DP molecules was observed. No transfer was observed among class I molecules or among DR or among DP molecules. Among DQ molecules, subpopulations transferred fluorescence energy to each other. The close contact measured between class I and class II Ag correlates with previous reports of cocapping and may reflect an immunologically significant interaction or the reported tendency of class I Ag to associate with other cell surface receptors, including growth factor receptors. The energy transfer between fluorescent antibodies to class II Ag suggests the existence of heterodimers formed from the different locus products, as well as possible quaternary surface interactions between alpha/beta complexes from separate loci.

Antibodies, Monoclonal

Early detection of antibodies against rDNA-produced HIV proteins with a flow cytometric assay.

There is evidence that some human immunodeficiency virus (HIV)-infected individuals have prolonged periods of seronegativity. A flow cytometric immunoreactive bead (IRB) assay is described for quantitative, simultaneous, and early detection of antibodies to HIV. Polystyrene beads of four diameters, each size coated with a different HIV recombinant DNA-produced protein (p24, p31, gp41, or gp120), bound anti-HIV antibodies detected with fluorescent antiglobulin. The IRB assay was performed on a panel of blood donor samples, many giving consistently false-positive enzyme immunoassay (EIA) and indeterminant Western blot (WB) results. The IRB assay proved as sensitive and more specific than currently licensed EIA and WB tests. Results on serial samples from eight HIV-infected individuals indicated that quantitation of anti-p24 by IRB assay may be useful in monitoring disease progression. Sequential pre- and post-EIA seroconversion sera from 35 HIV-infected homosexual men were tested by the IRB assay using IgM- and IgG-specific fluorescent probes. All 35 cases were IRB assay positive for at least one rDNA-p either before (17 of 35, 49%) or at the time of EIA positivity. Eleven cases (31%) initially had only IgM anti-HIV, primarily to gp41 (17%). In two individuals, the IgM response was detected at least 18 months before EIA seroconversion. The IRB assay is a widely applicable analytic procedure, potentially useful in pretransfusion anti-HIV screening of blood.

Flow Cytometry

Flow cytometric analysis of mature adipocytes.

Flow cytometry is an excellent method for studying the physiological function in adipocytes because their response to hormones, especially insulin, varies with cell maturity and therefore size. Adipocytes present a unique technical challenge. A freshly prepared adipocyte suspension contains cells and fat droplets ranging from 10 to greater than 120 microns in diameter. Stored fat occupies 90-98% of the cell volume, making it difficult to distinguish cells from fat droplets. Other difficulties include buoyancy, large size, fragility, and tendency to aggregate and clog the sample tube and nozzle. These obstacles were overcome by 1) maintaining the sample, sample line, sheath fluid, reservoir, and nozzle assembly at 37 degrees C; 2) using a 200 microns diameter orifice; 3) using a short, 300 microns inside diameter Teflon sample delivery line; 4) injecting the sample at constant flow rate into the sheath fluid at low pressure; and 5) using the pH-sensitive vital stain, biscarboxyethylcarboxyfluorescein (BCECF) to distinguish cells from fat droplets. Stained cells are brightly fluorescent when excited at 488 nm. Because fat droplets do not fluoresce, they can be distinguished from fat cells by gating on the BCECF emission. The cytosolic pH of intact, viable, mature adipocytes was derived from the ratio of the fluorescent emission intensities at 520 and 620 nm and was estimated to be 7.2. Unlike BCECF, several other useful fluorescent probes of cell function, e.g., the intracellular calcium indicator, indo-1, label both fat cells and fat droplets.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue

Flow cytometric analysis of Chlamydia trachomatis interaction with L cells.

Immunofluorescent staining and flow cytometric analysis have been investigated as means of studying the early stages of in vitro infection of Chlamydia trachomatis. The lymphogranuloma venereum strain of C. trachomatis was grown in vitro in L cells, fixed in p-formaldehyde, stained with fluorescein isothiocyanate (FITC)-conjugated monoclonal antibody to the chlamydial major outer membrane protein, and analyzed flow cytometrically. Infected cells stained 50-100 times more intensely than uninfected cells, and they could easily be discriminated by flow analysis. The number of infected cells and the fluorescence intensity of individual cells were proportional to the multiplicity of infection. The attachment of purified elementary bodies to L cells could be analyzed by immunofluorescence and flow cytometry. Cells exposed to 0.26 inclusion-forming units/cell could be discriminated from an unexposed population. Flow analysis of purified elementary bodies was possible after fluorescent staining with the aid of a laser-based cytometer and gating on low volume.

Animals

Flow cytometric measurements of fluorescence energy transfer using single laser excitation.

Flow cytometric energy transfer (FCET) measurements between labeled specific sites of cell surface elements (Szöllosi et al., Cytometry, 5:210-216, 1984) have been extended in a simplified form using a flow cytometer equipped with single excitation beam. This versatile and easily applicable method has several advantages over any nonflow cytometric (i.e., spectrofluorimetric) energy transfer measurements on cell surfaces: The labeled ligands can be applied in excess, without washing, thereby enabling the investigation of relatively labile receptor-ligand complexes. Contributions of signals from cell debris, from cell aggregates, or from nonviable cells can be avoided by gating the data collection on the light scatter signal. The heterogeneity of the cell population with respect to the proximity of the labeled binding sites can be studied. In the cases of homologous ligands or of ligands binding to the same molecule but at different epitopes, the determination of fluorescence resonance energy transfer efficiency values can be carried out on a cell-by-cell basis, offering data on intramolecular conformational changes. This modified FCET method enabled us to demonstrate the uniform density of glycoproteins, specific for Con A binding, in the plasma membrane of normal and Gross virus leukemic mouse cells of different sizes. The utility of this procedure has also been demonstrated by using the mean fluorescence intensities of the distribution curves in the calculation of the fluorescence energy transfer efficiency.

Antigens, Surface

Cyclosporin depolarizes human lymphocytes: earliest observed effect on cell metabolism.

Cyclosporin A (CsA) produced dose-dependent membrane depolarization of human peripheral blood lymphocytes. The phenomenon was investigated applying the membrane potential probe dihexyloxacarbocyanine iodide in a flow cytometer in combination with ionophores, hormones and monoclonal antibodies binding to different subclasses of lymphocytes and the anti-interleukin 2 receptor antibody. Human interferon-gamma abolished the depolarizing effect of cyclosporin on lymphocytes. Interleukin 2 caused depolarization and also enhanced the effect of CsA. OKT4 and OKT8 monoclonal antibodies slightly hindered depolarization by CsA while OKT3, OKT11 and OKIa1 antibodies had no such effect. Valinomycin decreased CsA's effect on the membrane potential while the ionophore A-23187 and ionomycin caused depolarizations that were additive with CsA's. CsA treatment released the isotope from 42K-loaded human lymphocytes in a dose-dependent fashion. CsA addition increased intracellular calcium content. CsA decreased the motional freedom of a spin probe in the membrane, but did not hinder the binding of fluoresceinated antibodies to the cell surface. These results suggest immediate alteration in membrane structure upon CsA treatment, causing potassium leakage and calcium ion uptake. These are the earliest detected effects of CsA on cells so far.

Antibodies, Monoclonal

Flow cytometric resonance energy transfer measurements support the association of a 95-kDa peptide termed T27 with the 55-kDa Tac peptide.

Two monoclonal antibodies (OKT27 and OKT27b) have been produced that react with distinct epitopes of a 95-kDa peptide. The T27 antigen is widely distributed, being expressed on B lymphocytes, monocytes, and adult T-leukemic cells but not on polymorphonuclear leukocytes or platelets. There was a low level of T27 expression on resting T cells that increased on T-cell activation. In preliminary studies, the OKT27b antibody coprecipitated a 55-kDa peptide, as well as the 95-kDa peptide, from the radiolabeled cells of the HuT 102B2 cell line. Preclearance with anti-Tac, a monoclonal antibody to the 55-kDa peptide of the multichain interleukin 2 receptor, removed the 55-kDa but not the 95-kDa peptide from subsequent OKT27b immunoprecipitates of HuT 102B2 extracts, suggesting the possibility that the T27 peptide was associated with the Tac peptide. However, the precipitation of the p55 Tac peptide by OKT27b was quite inconsistent. Thus, additional information was sought using a flow cytometric energy transfer technique to provide a physical estimation of the proximity between the Tac and the T27 peptides. The flow cytometric version of the fluorescence resonance energy transfer technique permits the determination of inter- and intramolecular distances at 2- to 10-nm levels on a cell-by-cell basis. Using this approach, there was a mean energy transfer of 7.3% with HuT 102B2 cells when fluorescein isothiocyanate anti-Tac served as the donor and tetramethylrhodamine isothiocyanate OKT27 served as the acceptor. In contrast, there was no energy transfer in comparable studies observed when fluorescein anti-Tac and rhodamine anti-transferrin receptor antibodies were used. These observations support the conclusion that there is a close nonrandom proximity in HuT 102B2 cells between the 95-kDa peptide identified by the OKT27 monoclonal antibody and the p55 Tac peptide of the multichain interleukin 2 receptor.

Antibodies, Monoclonal

Flow cytometric detection and quantitation of immune complexes using human C1q-coated microspheres.

A solid phase human C1q-binding fluorescent immunoassay for the measurement of immune complexes in human serum was developed. The solid phase used was 5 micron diameter polystyrene microspheres. Serum immune complexes bound to the C1q-coated microspheres were measured by flow cytometry using fluoresceinated anti-human IgG, and heat-aggregated human IgG as a standard. Patient samples were assayed and results compared to a standard fluoroimmunometric C1q-binding immune complex assay. Greater differences in circulating immune complexes were observed between the healthy control group mean and the mean of the patient values in the microsphere-flow cytometric method than were seen in the standard assay. In the microsphere-flow cytometric assay, the mean patient value was 7.5 times greater than the control mean, whereas in the standard assay the mean patient value was 2.8 times the control mean. Preliminary results suggest greater sensitivity of the microsphere-flow cytometric method over the other method.

Antigen-Antibody Complex

Accessibility of cell surface thiols in human lymphocytes is altered by ionophores or OKT-3 antibody.

The accessibility of cell surface sulfhydryl groups in human peripheral lymphocytes was investigated with 5,5'-dithiobis-(2-nitrobenzoic acid) in the presence and absence of ionophore antibiotics and the monoclonal antibody, OKT-3. Only a few accessible protein thiols have been found on the cells as demonstrated by labeling with a fluorescent non-penetrating thiol-marker, monobromotrimethyl-ammoniobimane and the subsequent gel electrophoretic analysis of the protein pattern. Difference spectrophotometric measurement of thiol-DTNB reaction revealed that ionophores altering the transmembrane potential induced an enhanced cell surface thiol-exposure on the minute time scale. The effect showed a dependence on the external concentration of the cations. The binding of monoclonal antibody, OKT-3, directed against T3 complexes, resulted in a similar, concentration-dependent increase of thiol-accessibility. These data are interpreted as early membrane-effects of ionophores and the specific antibody including changes in the conformational equilibrium or vertical displacements of certain membrane proteins. These events are likely to be coupled to the changes in the transmembrane potential of the lymphocytes.

Anti-Bacterial Agents

Flow cytometry and cell sorting.

Flow cytometry has become an important research tool in cytology, genetics, immunology, and microbiology. The information gained from cytometric instruments is quantitative and of high statistical precision, enabling resolution of cell subpopulations. Although increasing, application to cytology is hindered by inadequate appreciation of the nature of flow cytometry and the information obtained. Many cytologic questions can be reexamined from the perspective of this technology to obtain knowledge not accessible with conventional techniques. A flow cytometer and cell sorter are described. The physical, biochemical, and functional properties measurable by these systems are discussed.

Absorption

Hydrodynamic orientation of cells.

Chicken erythrocytes orient when caught in the confluence of two sheath-liquid streams. Preliminary results indicate that this phenomena might be used to align cells for morphologic analysis in flow.

Animals