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D E Rannels

Publications and source records attributed to D E Rannels.

At least 37 records · Page 2Linked to original sources

Extracellular matrix biology in the lung.

The lung and other organs are comprised of both cellular and extracellular compartments. Interaction of these components modulates physiological function at the organ, cellular, and subcellular levels. Extracellular components in the gas-exchange region of the lung include both noncellular interstitium and basement membranes. Connective tissue elements of the interstitium in part determine ventilatory function by contributions to tissue compliance and to resistance of the diffusion barrier. The basement membrane underlies cells of both the alveolar epithelium and the capillary endothelium; basement membrane components exert biological effects on adjacent cells through receptor-mediated interactions. This review emphasizes current knowledge concerning the composition and biological activity of extracellular matrix in the alveolar region of the lung. Matrix synthesis and turnover are also considered. Directions for future research are suggested in the context of current knowledge of the lung and other model systems.

Animals↗

Synthesis of fibronectin and laminin by type II pulmonary epithelial cells.

Previous investigations demonstrated that type II pulmonary epithelial cells regulate extracellular matrix deposition as a function of time in primary culture. In those studies, the matrix fraction was analyzed as a whole. The present work focused on two components of the type II cell matrix, fibronectin and laminin. These glycoproteins have differing effects on differentiation of type II cells in primary culture. Fibronectin synthesis was quantitated between day 1 and day 6 in the cells, matrix, and medium; laminin synthesis was quantitated only in the cells. Although total fibronectin synthesis was regulated as a function of time in culture, reaching its greatest value on day 2, the average proportion of newly synthesized fibronectin in the cells (35%), medium (50%), and matrix (15%) remained constant over a 6-day interval. Between day 2 and day 6, the relative abundance of fibronectin messenger RNA increased 6.5-fold. Rates of cellular laminin synthesis did not vary with time in culture. These results support a role for differential regulation of fibronectin and laminin synthesis to determine the composition of the type II cell extracellular matrix.

Animals↗

Turnover of extracellular matrix by type II pulmonary epithelial cells.

Rat type II pulmonary epithelial cells synthesize and assemble a multicomponent extracellular matrix (ECM) which can modulate cellular differentiation in primary culture. This study defines turnover of the type II cell matrix. Turnover kinetics were analyzed in two types of pulse-chase protocols based on loss of radioactive ECM components. To estimate turnover of previously synthesized ECM, type II cells were plated on extracted matrix that was radiolabeled 2, 3, or 6 days; alternatively, ECM was radiolabeled in pulse-chase experiments to measure turnover by the same cells that synthesized the matrix. Rapid initial rates of ECM turnover were evident in both cases. While overall matrix stability appeared to change with culture time, sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis showed a similar spectrum of proteins in the ECM over the course of kinetic studies. The results reveal rapid turnover of ECM by type II cells and suggest that matrix stability may be regulated. These observations provide a basis for future investigations of the physiological significance of turnover of individual ECM components by the alveolar epithelium.

Animals↗

Adrenal hormone regulation of extracellular matrix synthesis by type II cells.

Previous studies suggested an association between changes in extracellular matrix (ECM) and pulmonary epithelial cell growth and differentiation in lungs of adrenalectomized rats. The role of adrenal hormones to modulate synthesis of cell and ECM proteins by type II epithelial cells was thus investigated. In cells isolated from lungs of adrenalectomized animals, synthesis of ECM proteins was stimulated to a greater extent than was synthesis of cell proteins. This resulted in increased relative synthesis of matrix components. Conversely, dexamethasone (200 nM) treatment in vitro reduced the effects of adrenalectomy and, in control cells, decreased relative ECM synthesis. The magnitude of these effects depended on time in culture and serum conditions. For example, culture of normal cells in serum-free medium mimicked the effects of adrenalectomy, whereas there were no effects of dexamethasone in the presence of serum. These results indicate a role for adrenal steroid hormones to modulate ECM metabolism by type II pulmonary epithelial cells and suggest that consequent effects on ECM biological activity may modify epithelial cell differentiation or growth.

Adrenalectomy↗

Composition of extracellular matrix of type II pulmonary epithelial cells in primary culture.

Type II pulmonary epithelial cells in primary culture synthesize and deposit an extracellular matrix which has reciprocal biological effects on cellular differentiation. The present work establishes conditions for metabolic labeling of matrix constituents and for separation of cells from the associated matrix; it also defines matrix composition, which does not appear to change qualitatively between days 2 and 6 of primary culture. Type II cells synthesize and deposit a spectrum of radiolabeled components on the culture surface. These include fibronectin, laminin, type IV collagen, and plasminogen activator inhibitor-1, along with additional unidentified proteins. Few radiolabeled proteins in medium conditioned by type II cells bind nonspecifically to the culture surface in the absence of cells. Fibroblasts and macrophages, which may contaminate the primary cultures, do not appear to contribute substantially to the type II cell matrix. These results demonstrate that type II cells synthesize and deposit a complex multicomponent extracellular matrix. The work provides a basis for further investigations of bidirectional interactions between type II cells and the extracellular matrix.

Animals↗

Turnover of fibronectin and laminin by alveolar epithelial cells.

Type II pulmonary epithelial cells in primary culture synthesize and assemble a multicomponent extracellular matrix which exhibits biological activity in vitro. Simultaneously, the pneumocytes degrade components of the underlying matrix, such that matrix composition may be determined by the balance of synthesis and turnover. The present work defines turnover of the specific matrix glycoproteins, fibronectin and laminin, both in the type II cell and in its extracellular matrix. Pulse-chase experiments demonstrate that both fibronectin and laminin, identified by immunoprecipitation, turn over rapidly in the cell and extracellular matrix compartments, with half-lives < 10 h. In the cell compartment, initial rates of laminin turnover are more rapid than those of fibronectin on culture day 2, but these rates are similar on day 6. Matrix fibronectin also turns over rapidly, with similar rates on day 2 and day 6. During the chase interval, small but increasing amounts of immunoprecipitable fibronectin are detected in the medium, suggesting that a portion of the glycoprotein may be released to the extracellular compartment, rather than degraded. Alternatively, release of immunoreactive glycoprotein may involve ongoing processing and secretion of residual radiolabeled fibronectin by the cells. The results suggest that matrix composition may be determined by turnover, as well as synthesis, of its components.

Animals↗

Extracellular matrix synthesis by coal dust-exposed type II epithelial cells.

Although integrity of the alveolar basement membrane may influence progression of lung injury induced by inhaled particulates, little is known about direct effects of coal dusts on the alveolar epithelium or its extracellular matrix (ECM). Effects of dust on synthesis of cell and ECM proteins by type II cells (T2P) was thus investigated. Three coal dusts (anthracite no. 867; bituminous no. 1451 and no. 1361) and mine dust MIT-3, of respirable size, were studied as a function of dose and time over 3 days of primary T2P culture. On day 1, 750 micrograms/ml of 867 were required to increase relative synthesis of ECM proteins (ECM/cell). MIT-3, 1451, and 1361 were without effect. By day 3, 867 or MIT-3 increased ECM/cell 60-100% at 300 micrograms/ml; 1451 produced modest, dose-dependent stimulation, whereas 1361 remained without effect. None of the dusts caused significant cytotoxicity. The results show dose- and time-dependent effects of well-characterized coal and mind dusts to modify partitioning of newly synthesized proteins into the ECM and suggest that coal dust exposure may modulate structure or function of the subepithelial basement membrane.

Animals↗

Extracellular matrix synthesis and turnover by type II pulmonary epithelial cells.

Both type I and type II pulmonary epithelial cells contact the extracellular matrix (ECM). Type II cell-ECM interactions are bidirectional; they involve matrix-mediated modulation of type II cell differentiation, as well as cellular synthesis and deposition of ECM components. The present experiments examine the kinetics of accumulation of newly synthesized proteins in cell and matrix fractions from primary cultures of type II pneumocytes. Cycloheximide-sensitive incorporation of [3H]leucine into total protein of both the cell and ECM fractions was linear for 24-30 h, when steady-state labeling was reached and maintained to at least day 8. Over this interval, the cells enlarged but did not divide. Newly synthesized proteins recovered in the matrix fraction averaged 1-2% of those in the cells. Relative rates of radiolabeling of matrix proteins peaked at culture day 2 and increased in the absence of serum. In short-pulse studies, initial rates of protein synthesis were equal on culture days 1 and 3; this suggested that the steady-state labeling kinetics above reflected protein turnover. This was supported by rapid loss of radioactivity from the ECM after fresh type II cells were seeded on a prelabeled, cell-free matrix surface. Fresh or conditioned Dulbecco's modified Eagle's medium containing 10% fetal calf serum had little effect on matrix stability. These results demonstrate regulated deposition and turnover of a complex ECM by type II cells and provide a basis for further investigations of factors that control these processes.

Animals↗

ADP ribosylation of type II pulmonary epithelial cell G proteins.

Secretion of pulmonary surfactant by type II pulmonary epithelial cells (T2P) is regulated by receptor-mediated mechanisms. In other systems, coupling of receptor-linked signals to intracellular events involves guanine nucleotide-binding proteins (G proteins), but the specific role of G proteins in T2P signaling pathways is poorly defined. The present studies begin to address the role of G proteins in transmembrane signaling in these pneumocytes. Membrane preparations from purified T2Ps demonstrated ADP ribosylation of specific substrates by pertussis, cholera, and botulinum toxins (PT, CT, and BT, respectively). Toxin-dependent T2P substrate labeling from 32P-labeled NAD was dependent on time and membrane protein concentration. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis and autoradiography showed ADP ribosylation of membrane substrates of the following molecular masses: PT, 40/41 kDa; CT, 47/51 kDa; BT, 22 kDa. BT-dependent ADP ribosylation of a 22-kDa cytosolic substrate was also observed. Pretreatment of cultured T2P with the individual toxins led to ADP ribosylation of their respective specific substrates in a time-dependent fashion. In cells pretreated with PT or CT, substrates for the complimentary toxins remained available for subsequent ADP ribosylation in vitro. This result supports the specificity of the toxin effects. Basal secretion of the major phospholipid of pulmonary surfactant, disaturated phosphatidylcholine (DSPC) was unaffected in T2P treated with PT, but was stimulated in cells exposed to CT or BT. Neither CT nor BT altered release of lactate dehydrogenase. In cells treated with AMP or with isoproterenol DSPC secretion was stimulated six- to eightfold; preexposure of the cells to CT reduced the response to either agonist by 70%.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Diphosphate Ribose↗

Type II pneumocyte proliferation in vitro: problems and future directions.

In adult animals, the type II pneumocyte is progenitor of both the type I and type II alveolar epithelium. In primary culture, however, the fate of this cell is uncertain. Type II cells in culture lose their differentiated properties and eventually resemble type I cells, but a lack of specific markers has complicated the characterization of the phenotype acquired in vitro. Furthermore, limited proliferation of these cells in vitro has precluded definition of the relationship between type II cell proliferation and differentiation. Recent work in this laboratory has involved the correlation of flow cytometric cell cycle analysis with phenotype markers. Initial results indicate that isolation of type II cells induces cell cycle block similar to that sustained by other cell types in response to stress. In addition, preliminary evaluation of phenotype suggests that traditional markers become ambiguous beyond the 1st day of primary culture. These results raise concern related to the interpretation of experiments conducted in vitro. This report discusses the implications of these findings and directions for future work.

Animals↗

DNA distribution analysis of type II pneumocytes by laser flow cytometry: technical considerations.

Optimal conditions were established for determination of cell cycle phase fractions of freshly isolated or cultured adult rat type II pneumocytes (T2P). Propidium iodide staining of ethanol-fixed cells treated with ribonuclease (RNase) consistently yielded histograms with low coefficients of variation. Contaminating cells and cell clumps were eliminated during data acquisition through electronic gating based on anti-vimentin immunofluorescence and peak red fluorescence, respectively. Failure to delete contaminants, clumps or RNA resulted in overestimation of S or G2/M phase fractions by as much as 20-fold. When T2P were cultured on plastic at an initial density of 2.5 x 10(5)/cm2, the S phase fraction did not change over a culture interval in which thymidine incorporation rates increased almost 10-fold. In contrast, a significant increase in the G2/M phase fraction by day 2 of culture occurred with no significant increase in cell number. These results support the hypothesis that adult rat T2P, when subjected to customary conditions of primary culture, undergo cell cycle block in G2/M phases. The data also indicate that under these in vitro conditions, net thymidine incorporation by T2P may vary independently of the S phase fraction. The methods described in this report address basic considerations crucial to future applications of flow cytokinetics to the study of T2P proliferation and differentiation.

Animals↗

Cellular changes in the lungs of adrenalectomized rats following left pneumonectomy.

The time course and nature of the cellular response to left pneumonectomy, with or without prior adrenalectomy, were evaluated in the right lungs of male Sprague-Dawley rats using morphometric techniques. Animals were studied at days 2, 5, and 14 following pneumonectomy, intervals prior to, during the course of, and following significant compensatory changes in right lung mass. The postoperative increase in right lung mass and volume in pneumonectomized animals involved minimal changes in the ratios of most tissue components, when compared to the lungs of sham-operated controls. A transient disproportionate increase in type II cell volume and epithelial thickness was evident on day 14. Postpneumonectomy changes in the type II epithelium were accentuated in the lungs of adrenalectomized-pneumonectomized animals. Adrenalectomy 5 days prior to pneumonectomy resulted in a substantial increase in the volume of all right lung tissue components, associated with thickening of the alveolar wall and with increases in the volume of both cellular and noncellular interstitium. Effects of adrenalectomy on the endothelium also were evident. In both adrenal-intact and adrenalectomized animals, pneumonectomy increased alveolar number by day 14 but had no effect on the volume of individual alveoli. These results confirm a coordinated pattern of compensatory growth following pneumonectomy in the adrenal-intact rat. The data further suggest that in adrenalectomized animals compensatory lung growth is more poorly synchronized, with pronounced postoperative elevations in volume of the interstitial and type II epithelial compartments leading to increased thickness of the alveolar wall. Adrenal hormones thus appear to be required for coordination and control of compensatory lung growth and for rapid restoration of normal tissue structure.

Adrenal Glands↗

Effect of diet-induced sodium deficiency on normal and compensatory growth of the lung in young rats.

Sodium deficiency is associated with decreased muscle growth and protein synthesis. We investigated the influence of diet-induced sodium deficiency on the rate and extent of compensatory growth of the right lung after left pneumonectomy in young rats of 83 +/- 1 g body weight. Starting 1 wk before surgery, all rats were fed a diet deficient only in sodium (2-9 mumol Na+/g of food) ad libitum. Sodium-deficient rats were supplied with distilled water, whereas sodium-replete controls were supplied water containing 37 mM NaCl. After 7 d on the experimental diets, both groups were divided and subjected either to sham thoracotomy (Sham) or to left pneumonectomy (PNX). Somatic growth and both normal and compensatory growth of the lungs were assessed 3, 4, and 7 d later. Sodium-deficient animals grew more slowly than control animals. In control PNX rats, right lung weight to body weight ratio (LW/BW) increased to equal that of the combined LW/BW in control Shams by postoperative d 4, and remained at the Sham combined LW/BW value on postoperative d 7. Compensatory lung growth was less rapid in sodium-deficient PNX animals. At postoperative d 4, right LW/BW was low relative to combined LW/BW of sodium-deficient Shams. This ratio approached but did not reach the sodium-deficient Sham combined LW/BW value by d 7. Sodium deficiency thus reduced the rate of compensatory growth of the right lung.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗