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Biomedical subjects

M Absher

Publications and source records attributed to M Absher.

At least 37 records · Page 2Linked to original sources

Subpopulations of rat lung fibroblasts with different amounts of type I and type III collagen mRNAs.

A fluorescence-based method using the cell sorter has been devised to separate rat lung fibroblasts into subpopulations. Type I or type III collagen antiserum was used as the primary antibody to react with parent rat lung fibroblasts. This was followed by a fluorescein-conjugated secondary antibody. Specificity of the primary collagen antibody was determined using a monoclonal beta-actin antibody and purified IgG as the primary antibodies. The fluorescent shift of parent rat lung fibroblasts was optimized for the amount of primary collagen antibody and secondary fluorescein-conjugated antibody. An increase in slot blot intensity was observed for pro-alpha 1(I), pro-alpha 2(I), and pro-alpha 1(III) mRNAs with increasing amounts of cellular RNA. When precipitating with type I collagen antibodies, the total cellular steady-state levels of type I procollagen mRNAs were increased in the high intensity cells as compared with the low intensity cells. Alternately, when the type III collagen antibodies were used to precipitate the rat lung fibroblasts, the low intensity cells had increased type I procollagen mRNAs while the high intensity cells had increased type III procollagen mRNA. The subpopulations of rat lung fibroblasts after isolation using the fluorescent cell sorter were readily propagated for at least four passages.

Animals

Increases in endogenous antioxidant enzymes during asbestos inhalation in rats.

Although the pathogenesis of asbestos-induced pulmonary damage is still not completely understood, an important role has been attributed to active oxygen species. In the present paper we present results of a study investigating the effect of crocidolite asbestos inhalation on different lung antioxidant enzymes in rats. During the development of pulmonary fibrosis induced by crocidolite asbestos, lung superoxide dismutase, catalase and selenium-dependent glutathione peroxidase activities increased, indicating an adaptive response to increased pulmonary oxidant stress. However, this adaptive response obviously is not sufficient to protect the lung from asbestos-induced pulmonary damage. Considering the role of active oxygen species in both the fibrotic process and tumor promotion, it is hypothesized that antioxidants may also protect the lung from chronic asbestos-induced pulmonary damage such as bronchogenic carcinoma.

Animals

Alveolar type II cell response in rats exposed to aerosols of alpha-cristobalite.

Alpha-cristobalite causes pulmonary interstitial disease in humans and experimental animals. Aerosol exposure of rats to cristobalite for 8 days results in early and sustained alveolar type II cell hyperplasia in areas of inflammation characterized by the presence of macrophages and polymorphonuclear leukocytes. Irregular interstitial fibrosis and coalescence of alveoli are apparent by day 120. The inflammatory response is characterized by increased lavage cell recoveries, principally macrophages and neutrophils. Lavage recoveries of protein, nonpolar lipid, phospholipid, and saturated phosphatidylcholine also are increased. The recovery ratio for two important surfactant phospholipids, phosphatidylcholine and phosphatidylglycerol, is decreased at all points following exposure. Our morphologic analyses, together with results correlating lavage cell and lipid recoveries, point to the potential importance of macrophages and neutrophils in the epithelial cell response to cristobalite exposure.

Aerosols

Characterization of vascular smooth muscle cell phenotype in long-term culture.

Studies of bovine carotid artery smooth muscle cells, during long-term in vitro subcultivation (up to 100 population doublings), have revealed phenotypic heterogeneity among cells, as characterized by differences in proliferative behavior, cell morphology, and contractile-cytoskeletal protein profiles. In vivo, smooth muscle cells were spindle-shaped and expressed desmin and alpha-smooth muscle actin (50% of total actin) as their predominant cytoskeletal and contractile proteins. Within 24 h of culture, vimentin rather than desmin was the predominant intermediate filament protein, with little change in alpha-actin content. Upon initial subcultivation, all cells were flattened and fibroblastic in appearance with a concomitant fivefold reduction in alpha-actin content, whereas the beta and gamma nonmuscle actins predominated. In three out of four cell lines studied, fluctuations in proliferative activity were observed during the life span of the culture. These spontaneous fluctuations in proliferation were accompanied by coordinated changes in morphology and contractile-cytoskeletal protein profiles. During periods of enhanced proliferation a significant proportion of cells reverted to their original spindle-shaped morphology with a simultaneous increase in alpha-actin content (20 to 30% of total actin). These results suggest that in long-term culture smooth muscle cells undergo spontaneous modulations in cell phenotype and may serve as a useful model for studying the regulation of intracellular protein expression.

Actins

Analysis of cell division by time-lapse cinematographic studies of hydrocortisone-treated embryonic lung fibroblasts.

Hydrocortisone is a modulator of cell division and has been shown to prolong the replicative in vitro life span of human embryonic lung fibroblasts. Time lapse cinematography was used to analyze the proliferative behavior of individual cells in populations of fibroblasts exposed to hydrocortisone in young cultures during a single growth cycle and in aged cultures that had been continuously exposed to hydrocortisone. Results indicate that hydrocortisone causes a decrease in the interdivision time (IDT) of a portion of the cells in the population and this effect is augmented after continuous exposure to hydrocortisone. Hydrocortisone does not appear to increase the number of initial dividers in the population but increases growth rate in the early stages of the culture period. Analysis of mother-daughter IDT pairs further suggests that hydrocortisone exerts its effects on IDT independently for a given cell.

Cell Cycle

Characteristics of cultured lung fibroblasts from bleomycin-treated rats. Comparisons with in vitro exposed normal fibroblasts.

Bleomycin is an antineoplastic agent that causes pulmonary fibrosis. This report describes fibroblasts cultured from lung tissue explants of in vivo bleomycin-exposed and control rats. Proliferation of cultured fibroblasts from bleomycin-exposed lungs was decreased compared with that from control cultures, both in rate of growth and maximal cell yield. The diminished proliferative capacity of these fibroblasts from exposed lungs persisted over 9 wk of serial subcultivation. Fibroblast cultures from exposed lungs typically had a greater proportion of large cells exhibiting extensive cytoskeletal structures than did control cultures. Comparisons of these fibroblasts with normal fibroblasts exposed in vitro to bleomycin showed similarities in size, morphologic features, and proliferation.

Animals

Altered rates of collagen synthesis in in vitro aged human lung fibroblasts.

Absolute rates of protein and collagen synthesis based on prolyl-tRNA as the precursor were determined in two age groups of IMR-90 human lung fibroblasts. Compared with midrange fibroblasts [population doubling level (PDL) = 20 to 30] aged fibroblasts (PDL greater than 40] were larger in size in terms of protein and RNA per cell, generally proliferated more slowly, exhibited different steady state [3H] proline transfer RNA (tRNA) precursor pool specific radioactivities, synthesized collagen at a substantially lower rate, and exhibited a reduction in the percent commitment to collagen synthesis. Total protein synthetic rates were reduced slightly in aged versus midrange fibroblasts but the difference was not statistically significant. Proliferative capacity (PDL/wk) correlated better with these changes than cumulative PDL. Cell size (protein/cell) was the variable that had the highest correlation with the reduction in collagen synthesis observed in human lung fibroblasts. Thus, an important differentiated function of human lung fibroblasts, collagen synthesis, is greatly diminished in vitro in large, slowly dividing fibroblasts.

Cell Line

Time-lapse cinematographic analysis of beryllium--lung fibroblast interactions.

The proliferative response to beryllium chloride of cells in a population of human lung fibroblasts was quantitatively assessed using time-lapse cinematography. A dose of 0.02 microgram Be/ml, known to decrease the growth rate of fibroblasts, affects an estimated 75% of the cells in the population, increasing their interdivision time (IDT) by approximately 5 hr. The differences in mean 1n(IDT) between treated and control cells were essentially constant for comparable culture sizes ranging from 25 to 250 cells. There was no correlation between mother and daughter cell IDTs in control or treated culture at any culture size. IDTs of sister pairs were highly correlated in control cultures at selected culture sizes while sister pair IDTs of treated cultures were not. The data suggest that while beryllium alters the IDT of fibroblasts, an effect not related to culture size, any given cell affected by beryllium does not impart effects of the mineral to its progeny.

Beryllium

Proliferation of pulmonary endothelial cells: time-lapse cinematography of growth to confluence and restitution of monolayer after wounding.

A fundamental characteristic of vascular endothelium is that it exists as a monolayer, a condition that must be met in both vascular growth and repair. Maintenance of the monolayer is important both for the exchange of nutrients and for interactions between blood solutes and endothelial enzymes and transport systems. We have used time-lapse cinematography to compare proliferative behavior of bovine pulmonary endothelial cells in (1) establishment of a monolayer from a low-density seed (7.5 X 10(4) cells in a 60 mm dish) and (2) restitution of a confluent monolayer (approx. 2.9 x 10(6) cells in a 60 mm dish) following a mechanical wound (removal of cells from an area 5 x 15 mm by scraping). Culture 2 was not refed after wounding. In culture 2, approx. 30% of the cells accounted for repopulation (confluence in 40 hr). In culture 1, all cells entered into division. Participating cells of culture 2 began division immediately (69 divisions/filmed area in 10 hr, vs. four divisions in culture 1). Interdivision times (IDT) were longer and relatively constant in culture 1 until near confluence; none were less than 10 h, whereas in 2, 24% of the IDT's were less than or equal to 10 hr. Remarkably, IDTs of culture 2 decreased steadily until confluence was re-established. Cell migration in culture 1 was multidirectional while direction of migration in culture 2 was always into the wound area. Mean migration rate (MIG) in culture 2 was related to the site of origin of the cells, those dividing farthest from the unwounded area had fastest MIGs. Neither culture formed more than a single layer of cells. Although the cell kinetics of cultures 1 and 2 differed, the same goal, confluence, was achieved in either case.

Animals

Mathematical analysis of endothelial sibling pair cell-cell interactions using time-lapse cinematography data.

The sibling pairs from two different endothelial cell cultures were analysed by time-lapse cinematography. It was shown that wounded and regular (low density seeded) cultures differed in the behaviour patterns of their siblings. The cultures differed most significantly in the minimum interdivision time (IDT) which was 27% lower for the wounded culture. In the wounded culture there was a greater correlation of IDT values between sibling pairs. IDT values recorded both for paired and for unpaired cells were shorter for the wounded than for the regular culture. The mean IDT for unpaired cells was longer than the mean IDT for paired cells in the regular culture. Thus paired cells in the regular culture, had shorter IDTs, but not as short as in the wounded culture. It was significant that in the wounded culture the first generation of siblings were very close (less than 150 microns apart) at division. Overall the behaviour differences between the two cultures resulted in a higher rate of increase in cell numbers, and thus faster repair, of the wounded monolayer.

Animals

Pulmonary macrophages alter the collagen phenotype of lung fibroblasts.

Cultured lung fibroblasts produced and secreted interstitial collagen types I and III. The relative proportion of type III collagen increased as a linear function of cell density, with confluent cultures producing 8.6% type III collagen. When human lung fibroblasts were cultured in the presence of newly harvested lung macrophages, the proportion of type III collagen secreted rose to 15.5%. This high level of type III collagen synthesis was greater than could be induced by withdrawal of serum, a perturbation known to alter the proportion of types I and III collagen synthesized by fibroblasts. This effect on fibroblast phenotype was independent of cell density, as both low and high density cultures of fibroblasts responded similarly when cultured with macrophages. There was no evidence that fibroblasts synthesize new or different collagen types (such as type I trimer) in response to macrophages. Optimal conditions for eliciting an effect on fibroblast connective tissue metabolism required interaction of the two cell types for 5-8 days. These in vitro changes are analogous to the sequence of interactions and changes in connective tissue metabolism seen during recovery from tissue injury.

Cell Communication

Comparison of pulmonary endothelial cell and fibroblast proliferation using time-lapse cinematographic analysis.

Time lapse cinematography was used to study and compare the proliferation and migration activity of pulmonary endothelial cells and fibroblasts, two cell types with very different structural and functional properties. Endothelial cells were found to have a more rapid growth rate than fibroblasts. Contributing to the shorter population doubling time of the endothelial cells were lower interdivision times and a tendency for these cells to remain in division cycle with successive generations of growth. Striking differences between endothelial cells and fibroblasts were seen in migration behaviour. Endothelial cells had lower migration rates and tended to remain within a restricted growth area, whereas fibroblasts migrated freely throughout the growth area.

Animals

Lung cell population density determines the ratio of type III to type I collagens.

Cultured human lung fibroblasts produced 26 to 68% more type III collagen at confluency than at low cell density. This phenomenon occurred in cell lines from normal embryonic and adult lung tissue as well as in cultures established from fibrotic lung tissue. Modulation of the proportions of individual collagen types may be important in the genesis of pulmonary fibrosis.

Adult

Effect of silica on the proliferative behavior of human lung fibroblasts.

We show that silica enhances the proliferation of some but not all lung derived fibroblastlike cells (FLC) of fetal and adult origin. Cultures were obtained from lung biopsy and lavage of normal individuals and patients with interstitial lung disease. The responses of these cell lines were heterogeneous; some cultures were stimulated to proliferate in the presence of silica and others were not stimulated. There was no apparent correlation between source of the cell lines and the effects of silica. The proliferative capacity of the cells appeared to be an important determinant of the effect of silica on the growth of the cultures.

Adult