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R C Wolley

Publications and source records attributed to R C Wolley.

15 recordsLinked to original sources

Calcium ion concentrations and DNA fragmentation in target cell destruction by murine cloned cytotoxic T lymphocytes.

To investigate the destruction of target cells by murine CTLs, we examined intracellular Ca2+ concentrations ([Ca2+]i) and DNA fragmentation in target cells. Changes in [Ca2+]i were followed by flow cytometry by loading the cells with indo-1, a Ca2+-binding fluorescent dye, and determining the ration of fluorescence intensities at 405 nm (emission maximum for Ca2+-bound dye) over 480 nm (emission maximum for the free dye). Within minutes after interacting with the cytolytic granule fraction that had been isolated from CTLs, [Ca2+]i in target cells was strikingly increased. A pronounced increase in [Ca2+]i was also observed in target cells when they were specifically recognized by intact CTLs. Since ionomycin, a Ca2+ ionophore, caused a similar increase in [Ca2+]i and lysed cells (provided that extracellular Ca2+ was present), it appears that a sustained high level of [Ca2+]i is cytolytic. In contrast with other cells, CTLs, which have been shown to be refractory to granule-mediated lysis and to be poor targets for other CTLs, did not manifest an elevation in [Ca2+]i when they were similarly loaded with indo-1 and treated with isolated granules. The characteristic cleavage of target cell DNA into nucleosome-sized fragments was also induced by isolated granules as well as by valinomycin, a K+ ionophore, but not by ionomycin. The results support the view that lysis of most target cells by cloned CTLs is due primarily to target cell membrane changes that are fundamentally equivalent to the formation of nonspecific ion channels. The resulting large increase in [Ca2+]i is probably responsible for target cell lysis; and changes in intracellular ion concentrations also appear to be responsible for DNA fragmentation, probably by activating endogenous target cell endonucleases.

Animals↗

Caution on the use of lymphocytes as standards in the flow cytometric analysis of cultured cells.

Flow cytometry was used to compare the fluorescence intensity of the G0/G1 peak of a diploid (WI-38), a hypodiploid (C4I) and a heteroploid (KB) human cell line with that of nonstimulated human lymphocytes. With all three cultured cells the fluorescence intensity was substantially higher than that of lymphocytes. These results, obtained with three different DNA-intercalating fluorochromes, suggest that lymphocytes may not be the standard of choice for flow cytometric studies of the DNA distribution in human cell cultures and that diploid cells such as WI-38 may be more appropriate for this purpose.

Cell Line↗

DNA distribution in human colon carcinomas and its relationship to clinical behavior.

Striking differences in outcome of surgically treated colon adenocarcinomas were observed in 33 patients according to the DNA distribution patterns in tumor nuclei, measured by flow cytometry. As discussed and defined in the text and confirmed by appropriate control studies, the tumors were classified into 2 groups: predominantly diploid (20 tumors) and predominantly nondiploid (13 tumors). During the follow-up period of 3-5 years, 12 of the 13 patients with "nondiploid" tumors died of disease within 4-34 months, and the 1 patient still alive after 59 months has extensive metastases. Only 6 of the 20 patients with "diploid" tumors died of disease, sometimes after a slow, protracted clinical course. There were 14 patients with no evidence of disease for periods ranging from 30 to 60 months; 1 of these patients died of other causes. Histologic grading and Dukes' staging appeared to play a relatively limited role in the outcome, although lymph node metastases and vascular invasion were more often observed in the nondiploid tumors. These observations suggest that the determination of DNA distribution in colon carcinomas may prove to be of prognostic value.

Adenocarcinoma↗

[Flow cytometric studies of human brain tumors. Part 2: Human benign brain tumors (author's transl)].

This report compares the DNA content distribution of normal human brain tissue and of benign tumors of the brain. The cells were obtained from seven normal specimens and from fourteen types of benign brain tumors of 79 patients. The DNA content was determined by flow cytometry on single cell suspensions. Propidium iodide was used as DNA-intercalating fluorochrome. Normal, non-stimulated lymphocytes served as diploid controls. The proportions of diploid cells in G1 ranged from 78% to 93% and from 80% to 95% in the normal cortex and normal white matter, respectively. In the specimens of benign brain tumor the range was from 70% to 98%. Histograms with a single, diploid peak was obtained with the specimens from cases of lipoma, plasmacytoma, most meningiomas and around one-half of the cases of neurinomas and astrocytomas. Two peaks were seen with a few cases of meningioma and the remaining cases of neurinomas and astrocytomas. With the pituitary adenomas and craniopharyngiomas, in addition to the diploid peak, cells in the 4C and 8C ranges were also observed.

Brain Neoplasms↗

Flow cytometric analysis of the DNA content in cultured human brain tumor cells.

Analysis of DNA content in cultured cells derived from 5 benign and 8 malignant human brain tumors was performed by flow cytometry, using propidium iodide as fluorochrome. Normal, non-stimulated human lymphocytes were used as controls. Cells harvested from the first confluent subculture had DNA distribution histograms similar to those of a replicating, non-synchronous population of diploid cells. This observation was made on all cultures, regardless of the DNA distribution patterns in the original tumors, including two metastatic tumors which originally had a predominantly triploid DNA content. After 3 to 5 transfers an increase in the proportion of cells with a wide range of DNA content was observed in some cultures. These changes were usually associated with a loss of cell viability. These observations suggest that in the experimental setting described, in vitro proliferation of human tumor cells may be selectively associated with cells with diploid amounts of DNA.

Adenoma↗

Desmosome development in an in vitro model.

A model has been devised to study the in vitro formation of desmonsomes. The model is based on the differential labeling of two subpopulations of a desmosome-forming human cancer line (C4I). The labeled subpopulations are dispersed, preincubated separately on a shaking water bath for 24 h to allow the internalization of desmosome fragments and the repair of the cell surface, and then mixed, and allowed to aggregate. Aliquots of the mixed suspension are fixed at various intervals. The time between mixing and fixation represents the maximum age of any junction between dissimilarly labeled cells. The beginnings of desmosome formation were observed within a few minutes after the beginning of aggregation. Close apposition of cell membranes was seen immediately after mixing, followed within 15 min by the appearance of a submembrane density in one or both of the interacting cells. Intracytoplasmic filament formation takes place at between 15 and 30 min. Desmosome formation is complete by 90 min. The process is accompanied by a progressive widening of the extracellular space and the desification and organization of the extracellular material and the submembrane plaques.

Cell Adhesion↗

[Flow cytometric studies of human brain tumors. Part I: Human malignant brain tumors (author's transl)].

This report concerns the distribution of the DNA content in cells obtained from seven nonneoplastic, human brain tissue specimens and from eight different kinds of malignant human brain tumors of 30 patients. Analysis was carried out by flow cytometry suing suspensions of single separated cells stained with propidium iodide as DNA-intercalating fluorochrome. Normal, non-stimulated lymphocytes served as diploid controls. An average of 91% of the cells from non-neoplastic brain tissue was diploid (2C) and these cells were presumable in G0 or G1 stage of the cell cycle. In specimens from malignant brain tumors the proportion of diploid cells in G0 or G1 stage varied between 35 and 89%. In these specimens polyploid (including triploid, tetraploid and hypertetraploid) cells were frequently observed. From the distribution of their DNA content the 14 specimens of glioblastomas were classified into 3 types. Specific patterns were noted in type III-b which was characterized by two peaks having the same heights. The cerebral metastasis displayed the greatest variations in ploidy and these tumors, on basis of their DNA distribution were divided into 3 types. As shown in the present study the cytofluorometric analysis of malignant brain tumors revealed characteristic features: 1) multiple DNA peaks, 2) wide ploid variations ranging from 2C to 8C, 3) variability of DNA content patterns and distribution, 4) relatively large portions of cells in S and G2 + M phase of the cell cycle, 5) presence of heteroploid and polyploid cells. Because flow cytometry has distinct advantages over other methods in permitting rapid analysis of large populations of cells with a high degree of reproducibility, results obtained with this technique may be of significant clinical importance.

Brain Neoplasms↗

Flow cytometric analysis of the DNA distribution in human brain tumors.

Flow cytofluorometric analysis was used to determine the distribution of the DNA content in cells from selected areas of normal human brain and in benign and malignant brain tumors. Propidium iodide was employed as DNA fluorochrome and the analysis was carried out on a suspension of single cells. Normal, nonstimulated human lymphocytes were used as diploid controls. With nonneoplastic tissue an average of 91% of the cells were diploid (presumably in G0 or G1 stage of the cell cycle). The cells of most benign tumors were mainly diploid (77-98%), nine specimens of pituitary adenomas had large numbers of aneuploid cells. In glioblastoma multiforme the proportion of diploid cells was significantly diminished and polyploid cells were frequently seen. Similar results were obtained in other malignant tumors, with metastatic tumors showing the greatest ploidy variation, which included triploid, tetraploid, and hypertetraploid cells. The analytical method used provides valuable information of significant clinical importance on the DNA distribution in brain tumor cells.

Aneuploidy↗

Flow-through cytometry of meningiomas and cultured meningioma cells.

Flow cytometric techniques were used to compare the DNA content, size and viability of meningioma cells obtained directly from surgical specimens with the same cells after a period of culture. Cells isolated from the original meningiomas and cells in primary culture was similar with regard to size and DNA content, regardless of the histologic subclassification of tumor. The cell populations were essentially diploid with a small proportion of tetraploid cells. Viable cells were smaller and more uniform in size than the nonviable cells. An increase in the number of cells having an elevated DNA content was seen with cultures repeatedly transferred. The latter results suggest that any transfer of information from long-term cultured meningioma cells to the in vivo situation must be done with caution.

Aged↗

Flow-microfluorometric analysis of nuclei isolated from various normal and malignant human epithelial tissues. A preliminary report.

In order to obviate some of the technical problems associated with preparation of monocellular cell suspensions required for flow fluorometry, isolation of nuclei from several types of benign and malignant human tissues was undertaken. Satisfactory preparations of nuclei were obtained from epithelia of the uterine cervix and colon and from lung tissue using the citric acid method. The sucrose method was effective with colonic epithelium only. Distribution of deoxyribonucleic acid content in these nuclei was measured based on green fluorescence of acridine orange and red fluorescence of propidium iodide in a Bio-Physics Cytofluorograph. Essentially diploid patterns of deoxyribonucleic acid distribution were observed for all benign samples regardless of tissue origin whereas the malignant samples gave histograms suggestive of abnormal deoxyribonucleic acid distribution. Preliminary observations on distribution of single-stranded nucleic acids using acridine orange red fluorescence showed marked differences between populations of benign and malignant nuclei. Isolated nuclei appear to be suitable for flow-through microfluorometric analysis and offer some significant advantages over intact cells.

Autoanalysis↗

The use of a slide spinner in the analysis of cell dispersion.

A simple and reliable method of determining the degree of dispersion of a cell suspension has been developed using the Perkin-Elmer Uni-Smear Spinner. Optimum conditions regarding rate and duration of spin, etc., were first ascertained using dispersed cell cultures including human cervical cancer cells as well as gynecologic samples. After spinning, single cells in suspension appeared as isolated cells on the slides. Cell aggregates, on the other hand, remained together. Therefore, the distribution of cells in various sized aggregates could be easily quantitated and the slides retained for future review. This method was used to evaluate the dispersing effects of trypsin, ethylenediaminetetraacetate and and syringing human on human gynecology samples obtained by routine cervical scrapes. None of the dispersion methods has, so far, produced an adequate monodispersed cell suspension without unacceptable cell loss.

Autoanalysis↗

The fine structure of exfoliated cervical and vaginal cells.

In order to understand the means by which cellular aggregates were maintained in gynecologic samples, the fine structure of samples derived from a number of women of various ages was examined with special attention paid to the intercellular junctions. Most cells in the samples were squamous cells containing numerous intercellular fibrils and glycogen granules. Parabasal or intermediate cells were also seen as well as occasional endocervical cells. All of these cell types were often found as parts of aggregates and, while other cell junctions were present, desmosomes were the most prominent. It was concluded that desmosomes were probably responsible for maintaining the aggregated state of many of the cells found in gynecologic samples.

Adult↗

The monodisperse cervical smear: quantitative analysis of cell dispersion and loss with enzymatic and chemical agents.

The proper utilization of flow-through instruments for the automatic detection of malignant cells in human cervical specimens requires that the cells be in the form of a monodisperse suspension. Information regarding the degree of cell dispersion and of cell loss is therefore of critical importance in the evaluation of any procedure used to render cervical specimens monodispe automatic detection of malignant cells in human cervical specimens requires that the cells be in the form of a monodisperse suspension. Information regarding the degree of cell dispersion and of cell loss is therefore of critical importance in the evaluation of any procedure used to render cervical specimens monodispe automatic detection of malignant cells in human cervical specimens requires that the cells be in the form of a monodisperse suspension. Information regarding the degree of cell dispersion and of cell loss is therefore of critical importance in the evaluation of any procedure used to render cervical specimens monodisperse. We have devised a simple method for the simultaneous assessment of these two parameters using smears prepared with the Perkin-Elmer Uni-Smear Spinner. Our quantitative evaluation indicates that none of the 15 enzymatic and chemical agents tested to disperse cervical specimens produced an adequate monodispersed cell suspension without unacceptable cell loss. Electron microscopic evidence is used to illustrate the deleterious effects of some of the agents employed.

Amylases↗