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Biomedical subjects

H W Tyrer

Publications and source records attributed to H W Tyrer.

11 recordsLinked to original sources

Accuracy of electronic deposition of cells onto microscope slides using a cytometric positioning system.

The Cell Deposition System (CDS) analyzes and deposits biological cells to specific locations on microscope slides. This research will determine the accuracy of the CDS by comparing the stored computer data with the cells placement on the microscope slide. Two independent maps (Control 1 and Control 2) of cell placement for each slide were made, each map to provide a control for the other. The fluorescence data (cell sequence data) was compared to each of the control maps. For the slide, CT4, the error between maps was 13.6% mismatches, between Control 2 and the fluorescence data 32.1% mismatches. Comparing the maps 3/16 rows were perfectly matched; Whereas, comparing fluorescence data to maps 1/16 express perfect matches. Depositing cells in this manner is remarkable accurate. Nevertheless work remains to prevent the "disappearance" of cells, their adjacent positional invasion, and their clustering. This technique provides a superior preparative method for sample archival storage and for further automated multiparametric microscope assessment.

Animals

Automatic cell identification and enrichment in lung cancer: V. Adenocarcinoma and large cell undifferentiated carcinoma.

The aims of this study were to develop a protocol for the identification and enrichment of cancer cells from sputum obtained from patients with adenocarcinoma of the lung (n = 6) and large-cell undifferentiated carcinoma of the lung (n = 2), and to compare these findings with the results from our previous studies on other cell types from lung cancer. The hypotheses tested were: Cancer cells in sputum can be preserved following flow sorting. Enrichment for cancer cells from acridine orange (AO)-stained specimens can be achieved. Discrimination of cancer cells from noncancer cells is by AO green fluorescence and discrimination of lymphocytes from other cell types is by AO red fluorescence. Cancer cells are consistently enriched in the AO high green and red fluorescence region, although, for a given cell type, maximal enrichment is patient-dependent. Finally, cancer cell enrichment and lymphocyte exclusion can be done simultaneously. Cells from sputum were initially fixed, stained with AO, sorted on a dual parameter flow sorter, and classified into six groups corresponding to two ranges of green and three ranges of red fluorescence intensities. Cells of each region were stained by the method of Papanicolaou and differential counts were performed to determine the relative frequencies (i.e., purities) of leukocytes, macrophages, squamous cells, and cancer cells, in sorted and unsorted (i.e., control) samples. The average purity of leukocytes (81%), macrophages (6%), squamous cells (11%), and cancer cells (2%) varied markedly from sample to sample. However, the largest enrichment values (i.e., ratio of purity of a cell type in a sorted sample to its purity in the unsorted control sample) achieved for cancer cells consistently occurred for each patient sample in the region corresponding to high green and high red fluorescence intensities. Experimentally, a cancer cell average enrichment of sixteen-fold was obtained by this method. Additionally, fluorescence intensity ranges which increased the enrichment for macrophages by cell sorting typically excluded leukocytes and squamous cells, and vice versa. Finally, red fluorescence intensity was the primary discriminatory parameter for all cell types studied, although the additional use of green fluorescence intensity significantly increased cancer cell enrichment rates.(ABSTRACT TRUNCATED AT 400 WORDS)

Acridine Orange

Immune depression in trypanosome-infected mice. II. Characterization of the spleen cell types involved.

Spleen cells from Trypanosoma congolense-infected mice showed a drastic depression in their capacity to respond to B and T lymphocyte mitogens and to allogeneic spleen cells in mixed lymphocyte cultures. Spleen cells from infected mice were also poor stimulators in mixed lymphocyte cultures. The poor responsiveness or stimulation capacity was not due simply to dilution of relevant B or T lymphocytes by the large number of null cells found in the spleens of infected animals. These null cells expressed approximately eight times more H-2 antigen than spleen cells from normal (uninfected) mice and were devoid of Ia antigens.

Animals

Cell sorter analysis of carcinogen metabolites in human tissues.

A fluorescence -activated cell sorter (FACS-II) was used to examine biochemical parameters in a heterogeneous population of cultured human lymphocytes. Incubation of cells in the presence of benz(a)anthracene (BA) during culture was employed to induce the enzyme system which metabolizes carcinogens. Carcinogen metabolism was assayed directly by measuring the phenolic metabolites of cells exposed to benzo(a)pyrene (BP). Metabolism of benzo(a)pyrene was measured in single cells and was determined to be greater in the larger cells than in the smaller cells of the cultures. For a given size of cells, the enzyme activity was greater in those exposed to benz(a)anthracene during culture. In some studies, viable cells were first sorted by size and subpopulations assayed for the o-deethylation of the compound, ethoxyresorufin, which measures more specifically the activity of cytochrome P-448. Larger cells had higher levels of enzyme activity than smaller cells in agreement with the direct determinations above. It is possible to measure carcinogen metabolism in other tissues by using the techniques described here.

Aryl Hydrocarbon Hydroxylases

Automatic cell identification and enrichment in lung cancer. I. Light scatter and fluorescence parameters.

Two physical parameters were investigated to automatically recognize cells in sputum from human squamous cell carcinoma of the lung and to separate them for preparation by the Papanicolaou methods, for human interactive identification and for automated high resolution image analysis. The two parameters, 0.5-15.0 degrees forward argon-ion laser light scatter to estimate total cell size and 546 nm Acridine orange fluorescence to approximate total cell DNA content, were measured in a flow-through fluorescence activated cell sorting system. Enrichment for neoplastic cells in three cases of squamous cell carcinoma of the lung averaged 7.8-fold over the original sputum when only green fluorescence was used and 10.5-fold using green fluorescence and forward light scatter. The average enrichment for neoplastic cells was 65.6-fold relative to polymorphonuclear deenrichment.

Carcinoma, Squamous Cell

Automatic cell identification and enrichment in lung cancer. II. Acridine orange for cell sorting of sputum.

Fluorescence spectra were obtained from cells from sputum and pleural effusions stained with different fluorescent dyes and fixed by alternate methods. The spectra were referenced to a standard allowing for fluorescence comparisons of unstained and stained cells under various conditions. The metachromasia of acridine orange-stained cells offers nuclear/cytoplasmic differentiation in a single stain; mithramycin and propidium iodide do not. Unstained cells have an appreciable amount of green (546 nm) fluorescence, as does Carbowax in Saccomanno's preservative. Cytoplasm stained with acidine orange also has appreciable green fluorescence. Consequently, cells with much cytoplasm have high total fluorescence. Cytoplasmic fluorescence is negligible with mithramycin or propidium iodide. The metachromasia of acridine orange-stained cells is altered by alcohol and Carbowax levels in fixatives, keeping other factors constant.

Acridine Orange

Automatic cell identification and enrichment in lung cancer. III. Light scatter and two fluorescence parameters.

Two fluorescence parameters and size are used in a flow through system to enrich sputum specimens for cancer cells. Human cells in sputum which are stained with acridine orange show a characteristic distribution of red and green fluorescence from which cancer cells can be localized. The peak enrichment is obtained by selectively sorting cells with the largest values of red and green fluorescence. Cancer cells located in other distribution regions having smaller fluorescence intensities show progressively diminished nuclear and cytoplasmic tinctorial features by Papanicolaou stain, consistent with the decreased intensity of red and green fluorescence.

Carcinoma, Squamous Cell

Fluorescence-activated separation of cervical abnormal cells using herpesvirus antigenic markers.

Antisera to total HSV-2 (G) viral antigens (Ra-2) and to increasingly purified viral antigenic fractions ("crude" and "pure" AG-e) specifically stain HSV-2-(G)- or HSV-1-(F)-infected HEp-2 cells in indirect immunofluorescence. Anti-"crude" AG-e sera induced by HSV-1 (F) or HSV-2 (G) produce a single precipitin band of identity when reacted in gel immunodiffusion against soluble antigenic mixtures from HSV-2-infected cells (HSV-2 (G) SAM). These reactivities are lost following adsorption of the sera with HSV-1 or HSV-2-infected cells or with pelleted or dextran gradient purified virions. Ra-2 and anti-"crude" or "pure" AG-e sera stain exfoliated cervical cells from patients with herpetic cervicitis as well as atypical cells from patients with atypia, carcinoma in situ or invasive cancer. Normal squamous cells do not stain. HSV-2 viral antigens recognized by the Ra-2 and anti-AG-e sera appear to constitute specific and sensitive markers for the separation of atypical cells in a fluorescence-activated cell sorter.

Antigens, Viral

Microfluorometric quantitation of size, deoxyribonucleic acid and viral antigenic determinants in cells productively infected with HSV-2.

The interaction of herpes simplex virus type 2 (HSV-2) with the eukaryotic human cell line (HEp-2) was investigated by flow microfluorometric analysis. The three parameters that were quantitated include cell size, deoxyribonucleic acid content and the expression of virus-specific antigens. Productively infected cells are always smaller than uninfected ones, and they resolve into two populations with respect to viral antigenic content. Consistent with viral replication, one of these two populations, displaying a higher viral antigenic content, shows morphologic features characteristic of cell degeneration. On the other hand, the second population, with a relatively lower content of viral antigens, displays morphologic features consistent with increased cell growth. Indeed, microfluorometric measurements of the HSV-2-infected cells with respect to DNA content and expression of viral antigenic determinants resolves four cell populations. Of them, one displays the lowest level of viral antigens with the highest (equivalent to 8N) DNA content, features consistent with transformation. The results demonstrate the great potential of this technique for the detection, separation and quantitation of statistically significant cell populations not otherwise identified and for the analysis of virus-host cell interactions resulting in different pathologic outcomes.

Antigens, Viral