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Bacterium-host cell interactions at the cellular level: fluorescent labeling of bacteria and analysis of short-term bacterium-phagocyte interaction by flow cytometry.

Flow cytometry is a potentially powerful tool for analyzing the interactions of facultative intracellular bacteria and macrophages on a cellular level, particularly when fluorochromes are used to label the bacteria. We labeled Listeria monocytogenes and Salmonella typhimurium with a lipophilic dye, PKH-2, and used flow cytometry to investigate phagocytosis by J774A.1 cells and short-term bacterial survival. Labeled and unlabeled bacteria were identical in terms of viability, growth kinetics, and survival within macrophages, although recovery per macrophage was much greater for L. monocytogenes than for S. typhimurium. Using L. monocytogenes as a prototypical facultative intracellular bacterium, we estimated bacterial survival during phagocytosis on the basis of linear fluorescence measurements of infected J774A.1 cells and recovery of L. monocytogenes from sorted cells. The lower percentage of surviving L. monocytogenes in macrophages containing higher bacterial loads indicated the accumulation of nonviable bacteria within phagocytes. Removal of the external source of viable bacteria by washes and gentamicin treatment reduced the percentage of surviving intracellular L. monocytogenes to a baseline level, and all baseline levels were similar, regardless of bacterial load. Listeria enrichment recoveries, derived from individually sorted J774A.1 cells, demonstrated the heterogeneity of macrophages in intracellular bacterial survival, especially within heavily infected cells. These results indicated that survival of L. monocytogenes was dependent on the adaptations of a small fraction of bacteria within a population of macrophages which permit intracellular growth.

Adaptation, Physiological↗

Rapid identification of Streptococcus pyogenes by flow cytometry.

Flow cytometry combined with immunofluorescence of Streptococcus pyogenes was used to assay bacteria suspended in buffer solution and in saliva derived from throat swabs of healthy volunteers. The method allowed the enumeration of as few as 5 X 10(3) and 5 X 10(4) CFU per milliliter of buffer and saliva respectively. Controls including Streptococcus salivarius instead of Streptococcus pyogenes or buffer instead of specific antibodies confirmed the specificity of the detection of Streptococcus pyogenes in the samples. The results suggest that flow cytometry may serve as a basis for an automated reliable method for the diagnosis of streptococcal infections.

Culture Media↗

Update on the concept of the cell cycle: the contribution of flow cytometry.

Flow cytometry has been extensively used to provide accurate estimates of the relative amounts of various cellular constituents (DNA, RNA, proteins) for cell kinetic studies. Multiparametric analysis also supports the recent concept that cell growth and the DNA division cycle may be under distinct regulatory mechanisms. Moreover, metabolic subcompartments of the cell cycle, distinguished by flow cytometry, have offered a highly sensitive cell classification in comparison with the conventional distinction of the four main phases of the cell cycle. Finally, a new sensitive and powerful technology, BrdU/DNA analysis, represents a remarkable maturing of a very useful alternative for the study of DNA synthesis and cell cycle traverse.

Animals↗

Interaction study between synthetic glycoconjugate ligands and endocytic receptors using flow cytometry.

Flow cytometric analysis of synthetic galactosyl polymers, asialofetuin and LDL derivatives labeled with FITC (Fluorescein Isothiocyanate) was carried out to determine the phenotypes of endocytic receptors, such as asialoglycoprotein (ASPG) and the LDL receptor, on various types of cells. When FITC-labeled galactosyl polystyrene (GalCPS), being a synthetic ligand of ASPG, was applied to rat hepatocytes and human cancer cells (Hep G2 and Chang Liver), surface fluorescence intensities varied according to receptor expression on the cells. The fluorescence intensity originates from the calcium-dependent binding of the FITC-labeled GalCPS. Although unaltered by pre-treatment with glucosyl polystyrene (GluCPS), fetuin and LDL, the fluorescence intensity was suppressed by pre-treatment with (non-labeled) GalCPS and asialofetuin. Flow cytometry allowed us to demonstrate that the calcium-dependent binding of FITC-labeled LDL (prepared from rabbits) upon the addition of 17alpha-ethinyl estradiol enhances LDL receptor expression, and the expression is suppressed upon the addition of a monoclonal antibody to the LDL receptor. The binding efficiency based on the combination of FITC-labeled ligands suggests a possible application for the classification of cell types and conditions corresponding to endocytic receptor expression without the need for immuno-active antibodies or radiolabeled substances. Furthermore, the synthetic glycoconjugate (GalCPS) is shown to be a sensitive and useful marker for classification based on cell phenotype using flow cytometry.

Animals↗

Brefeldin A, but not monensin, completely blocks CD69 expression on mouse lymphocytes: efficacy of inhibitors of protein secretion in protocols for intracellular cytokine staining by flow cytometry.

Flow cytometry is increasingly used for cytokine detection where it serves to complement ELISA (enzyme-linked immunosorbent assay) and ELISPOT assays. Since it is possible to stain both extracellular epitopes and intracellular cytokines on the same cells, this is a powerful technique for analysing cytokine expression in defined cell populations. However unstimulated cells do not express cytokines. Thus, appropriate stimulation is a prerequisite for studying cytokine expression. Here phorbol 12-myristate 13-acetate (PMA)/ionomycin in vitro stimulation has been applied. In order to accumulate the cytokines within the cells, protein secretion needs to be inhibited, by the addition of reagents that inhibit protein secretion during the stimulation. The two most widely used reagents are monensin and brefeldin A (BFA). These reagents differ somewhat in their mode of action, which might explain their different effects. Monensin is an inhibitor of trans-Golgi function, while BFA inhibits protein transport between the endoplasmic reticulum (ER) and the Golgi. CD69, a very early activation marker on lymphocytes and neutrophils, was monitored in order to measure the efficacy of the protein secretion inhibition. Here we report that: (a) BFA, but not Monensin, is able to completely block extracellular CD69 expression on mice splenocytes after in vitro stimulation with PMA/ionomycin; (b) Monensin is more toxic than BFA and increases the relative amount of CD4+ cells due to a more profound increase in dead cells in the CD4- population; (c) CD69 is a useful marker when setting up intracellular staining of cytokines for flow cytometry.

Animals↗

Estimating percentage constitutive heterochromatin by flow cytometry.

Flow cytometry is a powerful method for the assessment of both plant and animal genomes. One of the most interesting aspects is the analysis of chromatin structure. By using intercalating and base pair-specific fluorochromes, the chromatin structure in various cell cultures and microorganisms has been determined. In this study, several maize lines of known heterochromatic composition were analyzed. The nuclei of each line were isolated and stained with DAPI (base pair specific) and PI (intercalator) separately. For each maize line, the PI/DAPI ratio was determined. A significant negative correlation was observed between C-band number and PI/DAPI ratio (r = 0.920) and between percentage heterochromatin and PI/DAPI ratio (r = 0.997). Flow cytometry with use of the fluorochromes DAPI and PI was found to be a rapid and efficient method of determining heterochromatin amount in maize.

Chromosome Banding↗

Separation of pigmented and albino melanocytes and the concomitant evaluation of endogenous peroxide content using flow cytometry.

Flow cytometry (FCM) has been used extensively to analyze various biological properties of the cell. In this report, we describe a method by which FCM was used to determine the light scattering profile of a mixed population of pigmented and non-pigmented melanocytes, plus its subsequent use for the sorting and separation of the two cell types. In addition, the relative peroxide content in pigmented and non-pigmented melanocytes was compared by flow cytometry. Cultured avian melanocytes from a pigmented control and from three genetically distinct albino sources were studied. FCM analysis of forward versus side light scatter within a mixed suspension of pigmented and amelanotic melanocytes distinguished two overlapping populations of cells. Sorting of these two populations demonstrated that the population exhibiting much side and minimal forward light scatter was primarily pigmented melanocytes, while conversely the population exhibiting less side and more forward scatter was principally non-pigmented cells. These two melanocyte types also demonstrated differences in levels of endogenous peroxides. The intracellular content of peroxide in the two subpopulations of cells was measured utilizing the nonfluorescent compound, 2',7'-dichlorofluorescein diacetate (DCFH-DA), which within the cell is oxidized by intracellular peroxides to a fluorescent dichlorofluorescein (DCF). Non-pigmented albino melanocytes had the highest quantity of endogenous peroxides, while heavily pigmented cells had considerably less peroxide-related fluorescence. The amount of this DCF fluorescence could be enhanced by increasing concentrations of DCF used in the assay. These flow cytometric methods are useful for isolating and culturing subpopulations of melanocytes expressing various pigment levels and to investigate the relationship between melanin and its precursors with hydrogen and lipid peroxides in melanocytes.

Animals↗

New applications of flow cytometry.

Flow cytometry and cell sorting have become established technologies in cell biology. A large number of methods for staining and measuring properties of individual cells are available. New protein and DNA dyes have made it possible to analyze large number of cells individually for multiple properties. These techniques have had a large impact on cellular immunology and the study of cell proliferation. New fluorescent molecules that report on intracellular conditions are used increasingly to study cell physiology. Chromosome analysis and sorting by flow cytometry is becoming a valuable tool and refinements in the techniques for manipulating small quantities of DNA will increase the application of chromosome sorting in molecular biology. The analysis of rare cell populations is still hampered by shortcomings in the present generation of commercial instruments. Rare even analysis will be improved when high-resolution, high-speed sorters are available. Future technology will make use of non-linear effects in fluorescence induction. An improved understanding of non-linear phenomena will lead to new techniques for single-cell analysis.

Animals↗

Quantitative characterization of crude synaptosomal fraction (P-2) components by flow cytometry.

Flow cytometry, which definitively identifies each particle as positive or negative with respect to fluorescent markers, is used to characterize the P-2 fraction (crude synaptosomal fraction) with respect to primary components, size, and intactness. Particle size ranged from a few tenths of a microm to greater than 4.5 microm. The viable dye calcein AM labeled 90% of the preparation, indicating that the majority of particles were intact and esterase-positive. 66% of the P-2 fraction is neuronal in origin, as demonstrated by labeling with an antibody directed against SNAP-2. An antibody directed against glial fibrillary acidic protein (GFAP) labeled 35% of the particles in this preparation. The mitochondrial dye nonyl acridine orange (NAO) stained 74% of particles, indicating intra- and extrasynaptosomal mitochondria. Gating analysis reveals that SNAP-25 is enriched in the larger particles. These results suggest that flow cytometry may be used to take advantage of the increased viability, yield, and convenience of the P-2 fraction for studies of nerve terminal function.

Animals↗

Primary squamous cell carcinoma of the male urethra: nuclear deoxyribonucleic acid ploidy studied by flow cytometry.

Flow cytometry analysis was performed on 30 primary male urethral squamous cell carcinoma specimens. Nuclei were extracted from paraffin-embedded archival material and isolated nuclei were stained with propidium iodide. Bulbomembranous urethral tumors had a higher incidence of abnormal deoxyribonucleic acid ploidy patterns than penile urethral tumors (69 and 29 per cent, respectively). Of the tumors exhibiting a deoxyribonucleic acid diploid pattern and an abnormal (deoxyribonucleic acid tetraploid or aneuploid) histogram 18 and 93 per cent, respectively, showed tumor progression (p less than 0.001). None (0 per cent) of the low grade (grade 1 or 2) tumors with a deoxyribonucleic acid diploid pattern developed local recurrence or distant metastases, whereas 90 per cent of the low grade tumors with an abnormal deoxyribonucleic acid pattern progressed (p less than 0.002). Patients with tumors exhibiting deoxyribonucleic acid diploid ploidy had 5 and 10-year rates free of disease of 85 per cent. In contrast, patients with tumors with abnormal deoxyribonucleic acid ploidy patterns had 5 and 10-year rates of 20 and 0 per cent, respectively (p less than 0.001). Determination of deoxyribonucleic acid ploidy pattern by flow cytometry provides important prognostic information for male patients with primary squamous cell carcinoma of the urethra.

Adult↗

Detection of Mycobacterium-specific interferon-gamma-producing human T lymphocytes by flow cytometry.

Flow cytometry has proven to be a useful tool for the investigation of cytokine synthesis by selected cell subpopulations. While most reports have used mitogen stimulation or long-term cultures with antigen, we describe here a novel method to allow the detection of rare mycobacterial antigen-specific cytokine synthesizing cells within one day. The most important feature of this method is the use of an FITC-conjugated isotype-matched control antibody to identify and exclude cells which fluoresce non-specifically. With this technique, we demonstrate interferon-gamma (IFN-gamma) staining in 785 cells per 1 x 10(5) T cells counted, in mycobacterial antigen-stimulated peripheral blood mononuclear cells from a BCG-vaccinated subject. In comparison, only 14 IFN-gamma-staining T cells were seen in the cultures not stimulated by mycobacterial antigen. Less than 10 cells per 1 x 10(5) T cells are stained by an irrelevant control antibody. Specific responses are detectable after 12 h of in vitro culture, and peak at 24 h. In volunteer health care workers, IFN-gamma staining correlated with IFN-gamma production using a published ELISPOT assay (r=0.927). IFN-gamma staining was also higher in PBMC from mantoux skin test-positive volunteers, compared to cells from skin test-negative subjects (p=0.0045). Flow cytometry following short-term culture can thus be used for enumeration of antigen-specific IFN-gamma synthesizing cells.

Adult↗

Bovine beta-lactoglobulin receptors on transformed mammalian cells (hybridomas MARK-3): characterization by flow cytometry.

Flow cytometry was used to demonstrate the presence of beta-lactoglobulin (betaLG) receptors on living murine hybridoma MARK-3 cells using a fluorescein isothiocyanate-betaLG conjugate (FITC-betaLG: molar ratio of 5:1). A site occupation curve was produced using a shift in the mean channel fluorescence at various concentrations of FITC-betaLG. The binding of labelled ligand was concentration dependent and was inhibited by unlabelled betaLG. The on-rate constant was 3.2x10(2) M(-1) min(-1) and the off-rate constant was 0.002 min(-1). Scatchard plot analysis gave a dissociation constant (K(d)) of 44+/-21x10(-7) and 39+/-24x10(-5) M (n=3). Flow cytometry indicated that at least 15% of the FITC-betaLG were internalized for 5 min and that internalization was temperature- and time-dependent. The internalization was confirmed by 3-D fluorescence microscopy (CELLScan system).

Animals↗

In vivo expression of rubella antigens on human leucocytes: detection by flow cytometry.

Flow cytometry has been used to detect in vivo expression of rubella antigens on human leucocytes. Sequential samples of peripheral blood were obtained from four volunteers with naturally acquired rubella and five persons immunised with RA27/3 rubella vaccine. Leucocytes were stained for rubella antigens using a pool of rubella monoclonal antibodies. Rubella antigens were detected on the leucocytes of all four volunteers with naturally acquired rubella between 1 and 13 days after onset of illness. Viral antigens were expressed more frequently on the monocyte (9-51%) than the lymphocyte (less than 1-4%) and granulocyte (less than 1-3%) populations. Among the vaccines, rubella antigens were detected on the leucocytes of four of the five volunteers between 5 and 12 days after immunisation. The expression of viral antigens was more transient and the proportion of cells exhibiting rubella-specific fluorescence considerably lower following vaccination (1-12%) than natural infection (9-51%). Our results demonstrate that flow cytometry provides a rapid and sensitive analytical technique for detecting viral antigens on leucocytes from infected persons. Leucocytes may play an important role in the pathogenesis of rubella infection.

Adult↗

Assessment of ploidy stability of the somatic embryogenesis process in Quercus suber L. using flow cytometry.

Flow cytometry analyses were used to verify the ploidy stability of Quercus suber L. somatic embryogenesis process. Leaf explants of two adult cork oak trees (QsG0 and QsG5) of the North of Portugal were inoculated on MS medium with 2,4-D and zeatin. After 3 months, calluses with embryogenic structures were isolated and transferred to fresh MS medium without growth regulators and somatic embryo evolution was followed. Morphologically normal somatic embryos (with two cotyledons) and abnormal somatic embryos (with one or three cotyledons) were used in this assay. Flow cytometry combined with propidium iodide staining was employed to estimate DNA ploidy levels and nuclear DNA content of somatic embryos and leaves from mother plants. No significant differences (P< or =0.05) were detected among embryos, and between the embryos and the mother plants. Also, after conversion of these embryos, no significant morphological differences were observed among the somatic embryo-derived plants. These results and further studies using converted plantlet leaves and embryogenic callus tissue indicate that embryo cultures and converted plantlets were stable with regard to ploidy level. As no major somaclonal variation was detected our primary goal of "true-to-type" propagation of cork oak using somatic embryogenesis was assured at this level. The estimation of the 2C nuclear DNA content for this species is similar to the previously obtained value.

Flow Cytometry↗

Analysis of cell cycle activity and population dynamics in heterogeneous plant cell suspensions using flow cytometry.

Flow cytometry was used to measure cell cycle parameters in Solanum aviculare plant cell suspensions. Methods for bromodeoxyuridine (BrdU) labeling of plant nuclei were developed so that cell cycle times and the proportion of cells participating in growth could be determined as a function of culture time and conditions. The percentage of cells active in the cell cycle at 25 degrees C decreased from 52% to 19% within 7.6 d of culture; presence of a relatively large proportion of non-active cells was reflected in the results for culture growth. While the maximum specific growth rate of the suspensions at 25 degrees C was 0.34 d-1 (doubling time: 2.0 d), the specific growth rate of active cells was significantly greater at 0.67 d-1, corresponding to a cell cycle time of 1.0 d. A simple model of culture growth based on exponential and linear growth kinetics and the assumption of constant cell cycle time was found to predict with reasonable accuracy the proportion of active cells in the population as a function of time. Reducing the temperature to 17 degrees C lowered the culture growth rate but prolonged the exponential growth phase compared with 25 degrees C; the percentage of cells participating in the cell cycle was also higher. Exposure of plant cells to different agitation intensities in shake flasks had a pronounced effect on the distribution of cells within the cell cycle. The proportion of cells in S phase was 1.8 times higher at a shaker speed of 160 rpm than at 100 rpm, while the frequency of G0 + G1 cells decreased by up to 27%. Because of the significant levels of intraculture heterogeneity in suspended plant cell systems, flow cytometry is of particular value in characterizing culture properties and behavior.

Bromodeoxyuridine↗

Analysis of chondrocyte functional markers and pericellular matrix components by flow cytometry.

Flow cytometry has been used as a procedure to characterize the phenotype and function of human articular cartilage cells cultured as monolayers or in gelled artificial matrices. Procedures allowing intact cells with their cell-associated matrix, to be obtained have been described. Appropriate monoclonal antibodies have allowed plasma membrane-associated proteins, e.g., growth factors and cytokine receptors, as well as the cell-associated extracellular matrix macromolecules, to be studied. Intracellular compounds have been traced in permeabilized cells after blocking of their intracellular transport and secretion mechanisms. We report the use of fluorescent dye-labeled monoclonal antibodies or specific binding proteins against extracellular matrix compounds such as hyaluronan, aggrecan, types I and II collagen, and fibronectin. The autocrine and paracrine growth factor and cytokine pathways considered include the insulin-like growth factor-1 (IGF-1)/IGF receptor I (IGFRI), and the transforming growth factor-beta1 (TGF-beta1)/TGF-beta receptor II (TGF-betaRII) cascades, as well as the interleukin-1alpha/beta (IL-1alpha/beta)/interleukin-1 receptors I and II (IL-1RI and II) systems. Catabolic enzymes that mediate extracellular matrix turnover, e.g., some matrix metalloproteinases and their natural inhibitors, were also studied. Finally, flow cytometry was used to assess the results of some pharmacological interventions on the aforementioned variables in cultured chondrocytes.

Antibodies, Monoclonal↗

Relative efficiency of leucocyte removal procedures for the production of leucocyte-poor red cell concentrates assessed by flow cytometry.

Flow cytometry was used to: (1) determine residual leucocyte numbers in red cell suspensions following the range of leucocyte depletion procedures used in our organisation, and (2) to characterize phenotypically the leucocytes using direct immunofluorescence with monoclonal antibodies to cell surface receptors. Under the conditions used, a lower limit of detection of 2.5 leucocytes per microliter (equivalent to 3.43 log10 or 99.96% removal) could be achieved. Filtration through polyester filters was found to remove up to > 99.96% of the initial leucocytes; however, a significant differential efficacy was observed between filters from different manufacturers even when filters with similar costs were compared. The order of filter brands with respect to leucocyte removal found was Pall BPF4 = Erypur Optima G-O > Sepacell R500 > Pall RC50. Phenotyping revealed that increasing filtration efficacy was associated with a preferential removal of lymphocytes; conversely, a second filtration over one brand of filter allowed proportionately more lymphocytes to pass through compared with the first filtration. A saline wash following filtration removed a further 0.5% of the initial leucocyte content, and was associated with a preferential loss of granulocytes. Freeze-thawing the red cell suspension removed fewer leucocytes (96.3%) than did filtration (98.74% to > 99.6%) or filtration followed by washing (99.22%), and also led to preferential loss of granulocytes. Flow cytometry provides a reliable tool for the quality control of leuco-depleted red cells, and allows a qualitative assessment of the residual leucocytes. This information is of value in choosing procedures aimed at decreasing the risk of alloimmunisation and post-transfusion reactions.

Cell Separation↗

Analysis of the genetic stability of Eucalyptus globulus Labill. somatic embryos by flow cytometry.

Flow cytometry was used to measure the nuclear DNA content of Eucalyptus globulus Labill. somatic and zygotic embryos and leaves in order to determine if somatic embryogenesis induces DNA content and ploidy changes in this species. Mature zygotic embryos derived from open-pollination orchard families were collected from a location in the centre of Portugal. One group was kept for nuclear DNA content and ploidy analysis, and the other group was used for establishing embryogenic cultures. Mature zygotic embryos were grown on Murashige and Skoog (MS) medium supplemented with 3% (w/v) sucrose and 3 mg l(-1) alpha-naphthaleneacetic acid (NAA) for 3 weeks and then transferred to MS medium without growth regulators. Globular somatic embryos from approximately 8-month-old embryogenic cultures were used in the assay. DNA ploidy levels and the nuclear DNA content of mature zygotic embryos, somatic embryos and leaves from the mother field tree were determined using flow cytometry combined with propidium iodide staining. Zygotic embryos had a nuclear DNA content of 1.32 pg/2C, somatic embryos had a nuclear DNA content of 1.39 pg/2C and leaves from the field tree had a nuclear DNA content of 1.40 pg/2C. The values estimated for the somatic embryos and mother plant did not differ statistically from each other (P < or = 0.05), but both differed from those of the zygotic embryos (P < or = 0.05). These results clearly indicate that no changes were induced during the embryogenic process. However, the differences found between the field plants and zygotic embryos did suggest that some aspects must be evaluated carefully, as propidium iodide fluorescence may potentially be influenced by the presence of secondary compounds (e.g. anthocyanins, tannins) in E. globulus somatic embryos and mature leaves. Therefore we believe that the somatic embryogenesis methodology used did not induce major genetic changes in the somatic embryos and that our primary goal of "true-to-type" propagation was assured.

Analysis of Variance↗