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Biomedical subjects

M KuKuruga

Publications and source records attributed to M KuKuruga.

4 recordsLinked to original sources

Flow cytometric DNA analysis of fresh prostatic resections. Correlation with conventional prognostic parameters in patients with prostate cancer.

BACKGROUND: DNA ploidy analysis has been investigated as a prognostic indicator in prostate cancer. Most of the data is derived from retrospective studies using paraffin-embedded tissue. This method has drawbacks related to the quality of DNA histograms and uncontrolled data collection. METHODS: DNA ploidy analysis of freshly resected prostatic tissue was prospectively compared with conventional prognostic variables in 97 men treated with radical prostatectomy for localized prostate cancer. RESULTS: Regarding the patients, 31.9% were African American and 66% had pathologic Stages C or D1 disease. Only 9.6% of patients with Stages A2 and B had a prostate-specific antigen (PSA) value greater than 10 ng/ml, whereas 97% of patients with PSA values greater than 20 ng/ml had pathologic Stages C and D1. PSA levels correlated with Gleason score (P = < 0.05); 51% and 100% of patients with Gleason score 5-7 and 8-10, respectively, had PSA values greater than 10 ng/ml. Twenty-two patients (23%) had DNA aneuploid tumors. Comparisons of mechanical to enzymatic cell suspensions indicated that DNA aneuploidy was better preserved in mechanical cell preparations. DNA ploidy correlated with pathologic stage (P = < 0.05) and Gleason score (P = < 0.05). Fifteen of 79 patients (18.9%) with Gleason score 5-7 had DNA aneuploid tumors versus 71.4% of patients with Gleason score 8-10. PSA groups correlated with ploidy status (P = 0.01). Although the majority of patients (19 of 22) with DNA aneuploid tumors had elevated preoperative PSA levels, none had a PSA value greater than 50 ng/ml. CONCLUSIONS: DNA ploidy analysis correlated with established prognostic indicators in prostate cancer; however, its independent correlation with natural history and treatment outcome must be established for it to have an effect on therapeutic decisions.

Aged

A human B-cell lymphoma line with a de novo multidrug resistance phenotype.

A human diffuse large cell lymphoma line (WSU-DLCL) expressing multidrug resistance (MDR) was established from a patient with primary chemotherapy-resistant disease. This cell line has the same phenotypic features as malignant cells from the patient. The established cell line has features of a mature B-cell neoplasm with no evidence for commitment to other lineages. WSU-DLCL grows in suspension forming relatively large clumps of cells with a doubling time of 20 hours. By light microscopic examination, the cells are very large with primitive lymphoid features, have a large amount of cytoplasm containing numerous vacuoles and an irregular outline. Immunophenotypic characterization by monoclonal antibodies and flow cytometric analysis showed a monoclonal IgM kappa B-cell phenotype with high expression of the multidrug-resistant P-glycoprotein compared with either normal peripheral blood lymphocytes or cells of the REH cell line. The cells were negative for T-cell and myeloid/monocyte antigens as well as Epstein-Barr virus nuclear antigen (EBNA). In addition, the cell line expressed high levels of MDR RNA. DNA histogram generated by flow cytometry indicated a DNA index of 1.83. Cytogenetic analysis confirmed hypertriploidy and showed complex chromosomal abnormalities including 14q+. This cell line should be a valuable tool to study the role of the MDR gene in the primary resistance of lymphomas to chemotherapy and to facilitate therapeutic investigations.

Adult

Modulation of c-myc oncogene expression by phorbol ester and interferon-gamma: appraisal by flow cytometry.

A flow cytometric assay was developed to examine the expression of the cellular myc oncogene in relation to cell cycle in individual cells. C-myc-oncoprotein was detected by indirect immunofluorescence using a purified sheep polyclonal antibody, anti-human-myc. Specific binding of anti-human-myc was measured by flow cytometry. C-myc oncoprotein was detected in 90% of HL-60 and 75% of Daudi cells; human hematopoietic cell lines known to express high levels of c-myc oncogene. However, c-myc protein could not be detected in the REH cell line, normal human peripheral lymphocytes or thymocytes. Nuclear DNA content was measured simultaneously using propidium iodide staining. There was an equal level of c-myc protein in G0/G1, S and G2/M phases. The extent and kinetics of c-myc oncoprotein induction have been determined following phorbol ester, 12-O tetradecanoylphorbol 13 acetate (TPA) and interferon-gamma (IFN-gamma) exposure of both HL-60 and Daudi cells. TPA produced a gradual reduction in the level of c-myc protein and arrested the cells in G0/G1 phase in HL-60 cells. However, TPA failed to reduce c-myc protein or to change cell cycle distribution in Daudi cells. Interestingly, c-myc protein levels were stimulated by exposure of both HL-60 and Daudi cells to IFN-gamma. The results indicate that flow cytometric assay of oncogene expression is feasible, fast and requires relatively few cells. It also allows for the direct correlation of modulation of oncogene expression with cell kinetics.

Antibodies

Solid tumor preparation for flow cytometry using a standard murine model.

The application of flow cytometry (FCM) to solid human tumors has been hindered by the difficulty in producing high yield, viable, unaltered single cell suspensions. Carcinomas containing a high desmosomal content, such as well-differentiated squamous cell (SCC) cancers of the head and neck (H&N) region, are particularly difficult to prepare. The desire to employ FCM to study cellular DNA parameters of these tumors led to the use of a 3-methylcholanthrene induced murine SCC for the comparative testing of preparative techniques. Dissociation techniques, including mechanical, enucleation, chemical, single and combination enzymes methods, were comparatively tested. Of these, the combination enzyme treatment employing trypsin and collagenase produced the highest cell yields in the shortest time with the highest dye exclusion viability and the least expense. Several fixation systems including glutaraldehyde, paraformaldehyde, acetic acid, and ethanol were comparatively tested using percent of cell loss and quality of the DNA histograms produced as end points. Ethanol-water systems with added fetal calf serum provided minimal cell loss and high quality histograms which were stable for extended periods of time. A murine tumor, closely mimicking the histology of the human tumor of interest, may be used as a model for the determination of optimum techniques of solid tumor preparation for flow cytometric analysis.

Animals