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B Mayall

Publications and source records attributed to B Mayall.

27 records · Page 2Linked to original sources

Preliminary correlations of clinical outcome with in vitro chemosensitivity of second passage human breast cancer cells.

These studies describe the clinical correlations of 63 in vitro chemosensitivity assays on breast cancer cells after short-term monolayer culture. Forty-five of the assays were single agent correlations. Based on cut-off values determined empirically, the test accurately predicted resistance for 36 of 41 patients (88%) who did not respond to the drug. It also predicted sensitivity with a high degree of accuracy: 21 of 22 patients (95%) who responded to the drug tested had a sensitive assay. In five cases, two biopsies were evaluated from the same patient. Whenever assays were performed before and after treatment with a given drug, tumor cells from the second biopsy were more resistant in vitro if the patient failed on therapy. If the patient did not fail, but stopped therapy for other reasons, or if there was no intervening therapy with the tested drug, the two biopsies remained similar in drug sensitivity. These results suggest that in vitro chemosensitivity assays which accurately predict both sensitivity and resistance can be obtained with breast cancer cells after short-term culture and that further prospective trials are warranted.

Antineoplastic Agents↗

Health visitors as educators.

This paper describes some models of health education as a context for considering data from a recent study of mothers' and health visitors' perspectives on good child health care. Most health visitors favoured an individualistic top-down approach aimed at changing mothers' behaviour. Mothers preferred a dialogue which started from their own priorities.

Adult↗

Cell dissociation techniques in human breast cancer--variations in tumor cell viability and DNA ploidy.

Approximately 70% of breast cancers contain cell populations with hyperdiploid (greater than G0/G1) DNA content; however, cells cultured from breast cancers have only diploid DNA contents and karyotypes. Mechanically dissociated cells rarely, if ever, grow in culture, while enzymatically dissociated cells do grow in most cases. To determine if cell dissociation techniques used to prepare cells for culture and other laboratory procedures select for cells with specific features, and if tumor cells are killed in the process, breast cancer cells obtained by mechanical dissociation and by enzymatic dissociation were examined for DNA content and cell viability (measured by dye exclusion). Mechanical dissociation yielded more dead cells and cells with hyperdiploid (greater than G0/G1) DNA than did enzymatic dissociation. Hyperdiploid cells were also found in the dye-excluding population with each dissociation technique, suggesting that the hyperdiploid cells were not always dead. We conclude that, in vivo, tumors contain cellular subpopulations with low viability and hyperdiploid (greater than G0/G1) DNA patterns. The extent to which these subpopulations are present in a sample depends on the dissociation technique employed. That only diploid cells are found in cultures of primary breast cancers may be because enzymatic dissociation, used to prepare cells for culture, yields predominantly diploid cells. These observations also have important implications for interpreting measurements made on dispersed cells, e.g., viability, DNA content, and other cytochemical markers.

Breast Neoplasms↗

Chromosome heteromorphism quantified by high-resolution bivariate flow karyotyping.

Maternal and paternal homologues of many chromosome types can be differentiated on the basis of their peak position in Hoechst 33258 versus chromomycin A3 bivariate flow karyotypes. We demonstrate here the magnitude of DNA content differences among normal chromosomes of the same type. Significant peak-position differences between homologues were observed for an average of four chromosome types in each of the karyotypes of 98 different individuals. The frequency of individuals with differences in homologue peak positions varied among chromosome types: e.g., chromosome 15, 61%; chromosome 3, 4%. Flow karyotypes of 33 unrelated individuals were compared to determine the range of peak position among normal chromosomes. Chromosomes Y, 21, 22, 15, 16, 13, 14, and 19 were most heteromorphic, and chromosomes 2-8 and X were least heteromorphic. The largest chromosome 21 was 45% larger than the smallest 21 chromosome observed. The base composition of the variable regions differed among chromosome types. DNA contents of chromosome variants determined from flow karyotypes were closely correlated to measurements of DNA content made of gallocyanin chrome alum-stained metaphase chromosomes on slides. Fluorescence in situ hybridization with chromosome-specific repetitive sequences indicated that variability in their copy number is partly responsible for peak-position variability in some chromosomes. Heteromorphic chromosomes are identified for which parental flow karyotype information will be essential if de novo rearrangements resulting in small DNA content changes are to be detected with flow karyotyping.

Bisbenzimidazole↗

Hemolysis due to chemical contamination of clinical perfusion apparatus.

A chemical contaminant found on the interior surface of the extracorporeal apparatus manufactured by the William Harvey Corporation was believed to have caused severe hematuria in 2 children. The biological activity of the contaminant was tested by mixing 50 ml of whole blood in contaminated cardiotomies; after 5 minutes of exposure lysis of one-sixth of the red blood cells was found. This hemolytic agent was concluded to be bisphenol A dissolved in an organic solvent, but the mechanism of contamination was never found.

Benzhydryl Compounds↗