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L Butterworth

Publications and source records attributed to L Butterworth.

5 recordsLinked to original sources

Role of reactive oxygen species and p53 in chromium(VI)-induced apoptosis.

Apoptosis is a programmed cell death mechanism to control cell number in tissues and to eliminate individual cells that may lead to disease states. The present study investigates chromium(VI) (Cr(VI))-induced apoptosis and the role of reactive oxygen species (ROS) and p53 in this response. Treatment of human lung epithelial cells (A549) with Cr(VI) caused apoptosis as measured by DNA fragmentation, mitochondria damage, and cell morphology. Cr(VI)-induced apoptosis is contributed to ROS generation, resulting from cellular reduction of Cr(VI) as measured by flow cytometric analysis of the stained cells, oxygen consumption, and electron spin resonance spin trapping. Scavengers of ROS, such as catalase, aspirin, and N-acetyl-L-cysteine, decreased Cr(VI)-induced apoptosis, whereas NADPH and glutathione reductase, enhancers of Cr(VI)-induced ROS generation, increased it. p53 is activated by Cr(VI), mostly by ROS-mediated free radical reactions. Cr(VI)-induced ROS generation occurred within a few minutes after Cr(VI) treatment of the cells, whereas p53 induction took at least 5 h. The level of Cr(VI)-induced apoptosis was similar in both p53-positive cells and p53-negative cells independent of p53 status in the early stage (0-3 h) of Cr(VI) treatment. However, at the later stage (3-24 h), the level of the apoptosis is higher in p53-positive cells than in p53-negative cells. These results suggest that ROS generated through Cr(VI) reduction is responsible to the early stage of apoptosis, whereas p53 contributes to the late stage of apoptosis and is responsible for the enhancement of Cr(VI)-induced apoptosis at this stage.

Apoptosis

Composition of peripheral blood lymphocyte populations during different stages of chronic infection with hepatitis B virus.

To characterize the immunological populations associated with different stages of chronic infection with hepatitis B virus (HBV), we performed flow cytometric analyses on the peripheral blood leucocytes of 29 patients with various forms of chronic hepatitis B. The clinical spectrum of the patients ranged from asymptomatic infections, in the presence of high virus production, to intermittent or recurrent exacerbations of liver injury alternating with relatively normal liver function. Patients with partial resolution of disease who experienced an initial acute flare followed by prolonged seroconversion showed decreased percentages of CD3+ cells during the seroconversion phase when levels of serum alanine transferase (ALT) had normalized. These CD3+ cells were predominantly CD4+ cells bearing the alpha beta+ T-cell receptor (TCR). In addition, we saw an increase in CD4+ and CD8+ cells bearing the gamma delta TCR in those patients who had seroconverted. No significant differences were seen between any of the groups with respect to percentage of cells with a naive (CD45RA) or memory (CD45RO) phenotype, or of cells displaying the activation markers CD38, HLA-DR or CD57. Longitudinal analyses of 15 patients failed to show any consistent pattern of changes in the immunophenotypic profile during acute flares and their resolution. Our results indicate that the turnover of circulating T lymphocytes during the apparent quiescent phase of chronic infections is higher than that during acute exacerbations, suggesting an active immunosurveillance role of T-cell subpopulations in maintaining low virus levels during seroconversion.

Adolescent

Association of the SS genotype of the L-myc gene and loss of 18q sequences with a worse clinical prognosis in colorectal cancers.

L-myc is a nuclear oncogene which is sometimes activated late in tumourigenesis. Digestion of DNA with EcoRI reveals a simple restriction fragment length polymorphism (RFLP) located in the second intron of L-myc, with allele sizes 10 kb (L-allele) and 6.6 kb (S-allele). Some studies have suggested that the presence of the S-allele in the constitutional DNA of a patient with cancer is associated with a higher risk of metastasis in lung, breast and renal cell carcinomas. The aims of this study were to determine if the S-allele was significantly associated with metastasis and also with inactivation of tumour suppressor genes in colorectal cancer. One hundred and twenty-four Caucasian colorectal cancer patients were studied for L-myc genotype, and a subgroup of these (108) had their tumours examined for allele loss at multiple loci on nine chromosomal arms (1p, 1q, 5q, 8p, 14q, 17p, 17q, 18q, 22q) and for mutations in the 12th codon of K-ras. The percentage of individuals with the SS genotype was 19% (4/21) Dukes Stage A, 19% (10/54) Dukes B, 25% (8/32) Dukes C and 40% (8/20) Dukes D. The trend observed here is significant (P < 0.05, Wilcoxon Rank Sum Test). Also, the SS genotype was significantly more common in individuals whose tumours showed allelic loss on 18q (P < 0.01, Fishers Exact Test). This work suggests that the S-allele of L-myc, or a gene in linkage disequilibrium with it, may modify the development of colorectal cancer.

Adult

Spreading the load.

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Adult