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Biomedical subjects

G A Preston

Publications and source records attributed to G A Preston.

14 recordsLinked to original sources

Induction of apoptosis by c-Fos protein.

The role of c-Fos in apoptosis was examined in two Syrian hamster embryo cell lines (sup+I and sup-II) and a human colorectal carcinoma cell line (RKO), using the chimeric Fos-estrogen receptor fusion protein c-FosER. As previously reported, contrasting responses were observed when these two cell lines were placed under growth factor deprivation conditions; sup+I cells were highly susceptible to apoptosis, whereas sup-II cells were resistant. In this report, we show that the activated c-FosER protein induces apoptosis in sup-II preneoplastic cells in serum-free medium, indicating that c-Fos protein can induce apoptotic cell death in these cells. c-Fos-induced apoptosis was not blocked by the protein synthesis inhibitor cycloheximide, suggesting that the c-Fos transcriptional activation activity is not involved. This conclusion was further supported by the observation that overexpression of v-Fos, which is highly proficient in transcriptional activation but deficient in the transcriptional repression activity associated with c-Fos, did not induce apoptosis. Constitutively expressed Bcl-2 delayed the onset of low-serum-induced apoptosis in sup+I cells and enhanced survival in sup-II cells. Further, coexpression of Bcl-2 and c-FosER in sup+I or sup-II cells protected the cells from c-FosER-induced apoptosis. The possibility that c-FosER-induced apoptosis requires a p53 function was examined. Colorectal carcinoma RKOp53+/+ cells, which do not normally undergo apoptosis in serum-free medium, showed apoptotic DNA fragmentation upon expression and activation of c-FosER. Further, when the wild-type p53 protein was diminished in the RKO cells by infection with the papillomavirus E6 gene, subsequent c-FosER-induced apoptosis was blocked. The data suggest that c-Fos protein plays a causal role in the activation of apoptosis in a p53-dependent manner. This activity does not require new protein synthesis and is blocked by overexpression of Bcl-2 protein.

Animals

Apoptosis and altered redox state induced by caffeic acid phenethyl ester (CAPE) in transformed rat fibroblast cells.

Caffeic acid phenethyl ester (CAPE), which is derived from the propolis of bee hives, was shown previously to block tumor promoter- and carcinogen-generated oxidative processes in several assays and to engender differential toxicity to some transformed cells. To study the mechanisms of CAPE-induced differential cytotoxicity, nontumorigenic rat embryo fibroblasts (CREF) and adenovirus (type 5)-transformed CREF cells (Wt3A) were used. As shown by nucleosomal-length DNA degradation, morphological alterations by electron microscopy, in situ labeling of 3'-OH ends, and the appearance of a hypodiploid cell population by bivariant flow cytometry, cell death induced by CAPE in the transformed Wt3A cells was apoptosis. Under the same CAPE treatment conditions, CREF cells transiently growth arrested. Both CREF and Wt3A cells were radioresistant, suggesting deficiencies in the proteins controlling the G1 checkpoint. To explore possible mechanisms of CAPE-induced apoptosis, it was determined whether CAPE-induced toxicity was influenced by the redox state of the cells. Depletion of cellular glutathione (GSH) with buthionine sulfoximine before CAPE treatment caused CREF sensitive to CAPE-induced cell death. GSH levels were also determined in CAPE-treated CREF and Wt3A cells. The GSH level in the CREF cells was unaffected by CAPE, whereas the Wt3A cells showed a significant reduction. When the GSH levels were increased in Wt3A cells by treatment with the reducing agent, N-acetyl-cysteine before CAPE treatment, the Wt3A cells were partially rescued. Furthermore, Bcl2, which protects cells from oxidative stress, had a protective effect against CAPE-induced apoptosis in Wt3A cells. Finally, the sensitivity of Wt3A cells to a known oxidant, hydrogen peroxide (H2O2), was examined. Wt3A cells were killed by H2O2-induced apoptosis, whereas CREF cells remained resistant. When Wt3A cells were treated with catalase, a cellular enzyme that inactivates H2O2, CAPE-induced apoptosis in Wt3A cells was reduced, further proving that Wt3A cells were more sensitive than CREF cells to oxidative stress. These results suggest that CAPE can modulate the redox state of cells. Sensitivity of cells to CAPE-induced cell death may be determined by the loss of normal redox state regulation in transformed cells.

Acetylcysteine

Regulation of apoptosis by low serum in cells of different stages of neoplastic progression: enhanced susceptibility after loss of a senescence gene and decreased susceptibility after loss of a tumor suppressor gene.

A cell culture model system has been used to study the susceptibility of cells to apoptotic cell death during different stages of neoplastic progression. This system consists of normal diploid Syrian hamster embryo (SHE) cells, two preneoplastic cell lines [tumor suppressor stage I (sup +I) and non-tumor suppressor stage II (sup -II)], and hamster tumor cell lines. Stage I preneoplastic cells are nontumorigenic immortal clones that suppress tumorigenicity when hybridized to tumor cells, whereas stage II cells have lost the ability to suppress tumorigenicity in cell hybrids. We refer to these two types of preneoplastic cells as sup +I and sup -II, respectively. Neoplastic progression is generally associated with cellular alterations in growth factor responsiveness. Therefore, to study the regulation of apoptosis in the system described above, cells were cultured in low serum (0.2%) as a means of withdrawing growth factors. In low serum, normal SHE cells were quiescent (labeling index of 0.2%), with little cell death. The sup +I cells showed a relatively low labeling index (1.6%) but, in contrast to the normal cells, died at a high rate (55% cell loss after 48 h) by apoptosis, as evidenced by morphology, DNA fragmentation, and in situ end-labeling of fragmented DNA. The apoptotic cells did not go through a replicative cycle while in low serum, implying that apoptosis was initiated in the G0/G1 phase of the cell cycle. The sup -II cell line showed a high labeling index (40%) after 48 h, but cell growth was balanced by cell death that occurred at approximately the same rate. The cells died, however, predominantly by necrosis. The tumor cell lines continued to proliferate in low serum, with high labeling indices (ranging from 27% to 43%) and a low level of apoptotic or necrotic cell death. To determine the relative ability of these cells to survive in vivo, normal SHE cells, sup +I cells, and sup -II cells were injected s.c. into nude mice. At 5 or 21 days after injection, the normal SHE cells were readily retrieved from the mice and grew well in culture. In contrast, few sup +I cells were retrieved 5 days after injection and no viable cells were retrieved after 21 days. Sup -II cells were not retrieved at either the 5-day or 21-day harvest, and histological examinations of the sites of injection showed the presence of macrophages, eosinophils, and neutrophils, indicating an inflammatory response associated with necrotic cell death.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Isolation and characterization of a 1-beta-D-arabinofuranosylcytosine-resistant Chinese hamster ovary cell mutant that is also X-ray sensitive and is noncomplementary with ataxia telangiectasia cells.

In order to study the mechanism of induction of mutations and chromosome aberrations by ionizing radiations, it is particularly useful to have available radiation-sensitive mutants. While several X-ray-sensitive rodent cell lines are available, they have been selected rather nonspecifically. It was determined that selection for resistance to the DNA replication/repair inhibitor, 1-beta-D-arabinofuranosylcytosine (ara-C), would permit production of a set of X-ray-sensitive mutant cell lines that would be defective in the resynthesis step of excision or recombination repair. Such mutant cells could also be used for the isolation and characterization of human DNA repair genes. In particular, it was predicted that the repair gene defective in individuals with ataxia telangiectasia (AT) might be amenable to study with ara-C-resistant (X-ray-sensitive) mutants, since additional studies, presented here, have shown that AT cells are resistant to ara-C. In the long term, it is hoped that determining the specific defect in AT might lead to an understanding of the possible role of defective repair in tumor induction and/or progression. The general approach used to isolate ara-C-resistant Chinese hamster ovary cell mutants was to treat cells with ethyl methanesulfonate and select in increasing concentrations of ara-C. Although several mutants were isolated, one in particular, Ara-CR213, has been studied most extensively. It was selected largely because it shows the greatest sensitivity to X-rays. Ara-CR213 cells were hypersensitive to the killing effect of X-rays with an LD10 of 2.5 Gy as compared to the wild-type cells that had an LD10 of 6 Gy. The mutant showed an increased frequency of X-ray-induced chromosomal aberrations in the G1 and G2 stages of the cell cycle compared to wild-type frequencies. There was no increase in sister chromatid exchange levels. All of these observations in Ara-CR213 are very similar to those made with AT cells in our and other laboratories. Even more important, complementation analysis of Ara-CR213 x AT hybrid cells indicated that the gene responsible for X-ray sensitivity of AT is also mutated in Ara-CR213 cells. Thus, Ara-CR213 appears to have a mutant phenotype and probably genotype that is very similar to, if not exactly the same as, those of AT. This makes it quite different from other X-ray-sensitive cells that have been isolated in other laboratories.

Animals

Analysing access to nursing home care.

The aim of this study is to investigate access to nursing home care in selected regions of Australia, Canada and the United States, and to examine the common ways in which nursing homes are used. Firstly, a review of methodological considerations in measuring access to nursing home care is made. Secondly, patient turnover patterns are interpreted with a view to showing differences in nursing home use among the countries studied; aggregate turnover rates, length of stay and outcomes are compared. Thirdly, groups of patients who differ in demographic and morbidity characteristics and in their use of nursing homes are discussed. Finally a number of distributive implications of these results are raised and a framework is outlined for considering redistributive consequences of changes in the use of nursing homes. It is concluded that the rate of flow of patients through nursing homes is as important a determinant of access to nursing home care as the level of bed provision and that adoption of this dynamic view of access indicates considerable scope for redistributing use of resources within the nursing home systems of all three countries.

Aged

Dementia in elderly adults: prevalence and institutionalization.

A formula for age-specific dementia prevalence is derived using data from a New Zealand study. Six other studies of dementia prevalence selected according to certain criteria are analyzed and their results shown to be not significantly different from those expected on the basis of the formula. Moreover, the small standard error estimate for the studies in aggregate indicates that the observed results are in close agreement with those expected. Dementia prevalence is estimated in both current and projected Australian aged populations using the age-specific prevalence formula. Comparison of the number of confused persons in institutions with the estimated number in the total population suggests that almost half of the moderate or severe dementia cases may be institutionalized, a much higher proportion than reported in other studies. Variations in overall levels of institutionalization are suggested as the main reason for such differences.

Age Factors

The effect of private isolation rooms on patient care practices, Colonization and infection in an intensive care unit.

Conversion of an intensive care unit (ICU) from an open unit to isolation rooms permitted study of patient care practices, colonization and infection in both settings. Air sampling and observation of patient care practices included 99 of 410 open unit patients (168 patient-hours during nine months) and 68 of 1,022 isolation room patients matched on the basis of risk factors for infection and staff contact (113 patient-hours during 12 months). Number and type of interactions between staff and patients, and frequency of handwashing and its relationship to patient-staff interactions were recorded. All ICU patients were monitored daily for signs of and selected risk factors for infection, and material for culture for six surveillance organisms was obtained every four days. Numbers of persons interacting with a patient hour were 6.1 +/- 3.5 in the open units and 4.9 +/- 2.8 in the isolation rooms (0.05 less than P less than 0.10). Frequency of handwashing did not increase significantly in the unit providing convenient sinks, occurring in an observed to expected ratio of only 24 percent. Over-all rates of infection in the open unit and isolation rooms were 15.0 and 13.4, respectively. Half of the infections occurring in patients with complete cultures obtained on admission were caused by organisms colonizing the patient upon admission to the ICU. The isolation rooms did not appear to reduce nosocomial acquisition (P = 0.168, Mantel-Haenszel) of the six surveillance organisms. We conclude that many patient-staff interactions in an ICU are not followed by handwashing, and that the new unit design had no apparent effect upon the frequency of handwashing or over-all incidence of colonization and infection in the ICU.

Air Microbiology

The effect of temperature on times to hatching of eggs of the nematode Ostertagia circumcincta.

A delayed gamma distribution satisfactorily described the distribution of times to hatching of Ostertagia circumcincta eggs incubated in 0.1% saline at temperatures between 6 and 20 degrees C. Below 6 degree C hatching of eggs was extremely variable. The relationship between rates of development and temperature within the range 10 to 20 degrees C was more closely described by a non-linear function than a linear one. The non-linear function was incorporated into a temperature summation equation which satisfactorily predicted the hatching of eggs incubated under conditions of alternating temperatures.

Animals