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Biomedical subjects

F A Dolbeare

Publications and source records attributed to F A Dolbeare.

7 recordsLinked to original sources

The analysis and interpretation of DNA distributions measured by flow cytometry.

A principal use of flow cytometers is for the measurement of fluorescence distributions of cells stained with DNA specific dyes. A large amount of effort has been and is being expended currently in the analysis of these distributions for the fractions of cells in the G1, S, and G2 + M phases. Several methods of analysis have been proposed and are being used; new methods continue to be introduced. Many, if not most, of these methods differ only in the mathematical function used to represent the phases of the cell cycle and represent attempts to fit exactly distributions with known phase fractions or unusual shapes. In this paper we show that these refinements probably are not necessary because of cell staining and sampling variability. This hypothesis was tested by measuring fluorescence distributions for Chinese hamster ovary and KHT mouse sarcoma cells stained with Hoechst-33258, chromomycin A3, propidium iodide, and acriflavine. Our results show that: a) single measurements can result in phase fraction estimates that are in error by as much as 40% for G2 + M phase and 15-20% for G1 and S phases; b) different dyes can yield phase fraction estimates that differ by as much as 40% due to differences in DNA specificity; c) the shapes of fluorescence distributions and their interpretation are very dependent on the dye being used and on its binding mechanism.

Acriflavine

Naphthol AS-BI (7-bromo-3-hydroxy-2-naphtho-o-anisidine) phosphatase and naphthol AS-BI beta-D-glucuronidase in Chinese hamster ovary cells: biochemical and flow cytometric studies.

Conditions for the biochemical and flow cytometric assay of 7-bromo-3-hydroxy-2-naphtho-o-anisidine phosphatase and beta-D-glucuronidase activities in Chinese hamster ovary cells were studied. In the biochemical assay, the pH optimum for the phosphatase activity was pH 4.6 with a Km of 10(-5) M; the pH optimum for beta-D-glucuronidase activity was pH 5.0 with a Km of 2 x 10(-5) M. For intact cells the derived constants were 3 to 10 times higher. The rate of hydrolysis of both substrates was also examined by flow cytometry. Cellular fluorescence increased linearly for only about 15 min. Diffusion of the fluorescent product probably caused nonlinearity of the fluorescence increase and was demonstrated by mixing cells incubated with substrate with those that had not been incubated. After 15 min, cells that had not been exposed previously to product or substrate contained the fluorescent product. Cells fractionated into size classes by centrifugal elutriation also were analyzed by flow cytometry for beta-D-glucuronidase activity. The activity increased linearly with the increase in cell size corresponding to the progression from G1 through S and into G2-M phases of the cell cycle.

Animals

Flow cytometric measurement of peptidases with use of 5-nitrosalicylaldehyde and 4-methoxy-beta-naphthylamine derivatives.

Enzyme activity can be measured in single cells or in cell suspensions by either static or flow microfluorometry when a fluorogenic substrate is used. We have used amino acid derivatives of arylamines as fluorogenic substrates for tagging cellular proteinases. The liberated aromatic amine, which can diffuse from the cell, is trapped as a fluorescent insoluble Schiff-base product with 5-nitrosalicylaldehyde, with the peak of fluorescence emission shifted from lambdaem 425 nm to lambdaem 530 and 595 nm. Although the reaction is faster at pH 4 than at higher pH's, the equilibrium during the assay of certain peptidase activities is such that the liberated aromatic amine is trapped in the cell at pH values as high as 7.5. 5-Nitrosalicylaldehyde causes almost no inhibition of substrate hydrolysis at 1 mmol/liter, a concentration exceeding that required for complete trapping of reaction product. The kinetics of enzymatic reactions with four synthetic substrates are demonstrated in intact Balb 3T3 cells and sonicated preparations in the presence of 5-nitrosalicylaldehyde. Hydrolytic rates for the substrate, CBZ-ala-arg-arg-4-methoxy-beta-naphthylamine, are given for single 3T3 cells by microfluorophotometry and for suspensions of 3T3 cells by flow cytometry. The clinical value of the method is demonstrated for differentiating mixed populations of leukocytes.

2-Naphthylamine