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Biomedical subjects

S I Rennard

Publications and source records attributed to S I Rennard.

At least 19 recordsLinked to original sources

Induction of fibronectin gene expression by transforming growth factor beta-1 is attenuated in bronchial epithelial cells by ADP-ribosyltransferase inhibitors.

Transforming growth factor-beta (TGF-beta) exerts several effects on cultured airway epithelial cells including inhibition of proliferation and stimulation of fibronectin gene expression. ADP-ribosylation is one potential regulatory mechanism of gene expression by TGF-beta. We tested this possibility by exposing cultured bovine bronchial epithelial cells to the chemical inhibitor of ADP-ribosyl transferase enzymes, 3-aminobenzamide (3-AB) and, for comparison, 3-aminobenzoic acid (3-ABA), which is structurally similar to 3-AB but which does not inhibit ADP-ribosyl transferases. Exponential cell growth rate (1.2 doublings/day) or cellular morphology observed by phase contrast microscopy were not affected by 3 mM 3-AB or 3-ABA. Neither compound antagonized inhibition of cell division or induction of squamous morphology by TGF-beta 1. In contrast, the sixfold stimulation of fibronectin production by exposure of cells to 30 pM TGF-beta 1 for 48 h was reduced by 50% in the presence of 3 mM 3-AB, whereas 3 mM 3-ABA had no effect. The antagonistic effect was augmented by administration of 3-AB 24 h prior to induction by TGF-beta 1. Northern blot hybridization analyses demonstrated that 3-AB, but not 3-ABA, attenuated the induction of fibronectin mRNA by TGF-beta 1 by up to 50%. These observations may implicate a role of cellular ADP-ribosylation in the regulation of some gene expression by TGF-beta.

Aminobenzoates

Serum-free culture of fractionated bovine bronchial epithelial cells.

Procedures for the serum-free culture of a density fractionated population of bovine bronchial epithelial cells have been established. Epithelial cells dispersed by protease digestion were fractionated by density equilibrium centrifugation, followed by plating of the small basal-like population on type I collagen-coated culture dishes. Two or three passages of 1:4 split enriched for a population of actively dividing cells, which could be stored in liquid nitrogen for subsequent use. Clonal growth assays revealed optimum proliferation using a 1:1 mixture of medium RPMI 1640 and LHC-9, a medium employed for human bronchial epithelial cells. Cellular growth rate, which was 0.6 to 1.3 doublings per day depending on the cell preparation, was conveniently decreased by supplementing LHC-9 medium with less than 50% RPMI. In contrast to airway epithelial cell cultures from other species, serum stimulated the growth of bovine bronchial epithelial cells in this system. Transforming growth factor beta 1, however, inhibited growth and induced differentiation into a squamous phenotype. Also in contrast with other systems, the bovine cells were resistant to growth inhibition by 100 nM tetradecanoyl phorbol acetate or 1 microM calcium ionophore A23187. Combination of phorbol ester with ionophore decreased mitotic activity, although induction of squamous morphology was not observed. Therefore, growth inhibition and squamous differentiation were not tightly coupled in this system. Finally, biologically synthesized matrix deposited by these cells stimulated growth rate. This culture system will therefore be useful in assessing the activities of both soluble and matrix-associated factors in the absence of serum.

Animals

Total indoor smoking ban and smoker behavior.

METHODS: To assess smoking policy support and effects, 1,083 hospital employees (203 smokers) were surveyed by anonymous questionnaire 1 year after the announcement (5 months after implementation) of a new total indoor smoking ban. A second follow-up, limited to smoker respondents only, was conducted 2 years postannouncement. RESULTS: A total indoor smoking ban was supported by the vast majority of nonsmokers (89%) and ex-smokers (86%) and by nearly half of the then-smoking population (45%). Consistent with previous reports, the smoking ban was associated with a significant decrease in cigarette use during work hours, particularly among moderate to heavy smokers. However, the ban did not result in increased institutional quit rates. Light smokers (< 10 cig/day), compared with heavy smokers (> or = 30 cig/day), were more likely to support the no-smoking policy and had fewer problems observing the ban. They were also less apt to report a decrease in work productivity. CONCLUSION: A total indoor smoking ban had little effect on overall institutional quit rates. Heavy smokers will, predictably, experience the greatest difficulty complying with a total indoor nonsmoking policy.

Air Pollution, Indoor

Altered epithelial lining fluid parameters in old normal individuals.

Pneumonia is a leading cause of morbidity and death in older patients, and immunosenescence is believed to contribute to their susceptibility. In order to investigate whether age-related changes occur on the epithelial surfaces of the lung, bronchoscopy and bronchoalveolar lavage (BAL) were performed without complication in 19 young (27.7 +/- 4.2 yrs), 6 middle-aged (49.8 +/- 3.5 yrs), and 8 old (74.1 +/- 4.3 yrs) normal, nonsmoking subjects. BAL was performed by instilling and retrieving five 20 ml aliquots of normal saline into three sites. The returns from the first aliquots (the bronchial sample) were analyzed separately from the returns from the subsequent aliquots (the distal sample). Lavage fluid cellularity was characterized and IgA, IgG, and albumin were measured by ELISA. Lavage fluid returns were lower in the elderly group and correlated with spirometric parameters. Significantly elevated numbers of neutrophils were recovered by the bronchial sample fluid from the old group. In contrast, no consistent difference in macrophage recovery by either the bronchial or distal sample was noted. In both the bronchial and distal samples, IgG, but not IgA or albumin, was elevated in the group of old subjects. Alterations occurring in BAL fluid with aging may reflect changes in local host defenses.

Adult

Pulmonary complications of transplantation.

Improved immunosuppressive regimens, advances in surgical proficiency and techniques, and improved supportive medical care have translated into dramatic increases in graft survival in organ transplantation and in patient outcome in bone marrow transplantation. Though effective immunosuppression has also led to an increase in infectious complications, several recent advances, including the development of effective surveillance protocols and antiviral therapy and the use of prophylactic antibiotics, appear to have made a significant positive impact on the management of infections and survival of transplant recipients. In addition, a clearer understanding of noninfectious pulmonary complications, such as bronchiolitis obliterans, and continued improvement in techniques for evaluating a host of posttransplant pulmonary disorders will likely further enhance posttransplant therapy and survival.

Bronchiolitis Obliterans

Regional distribution of emphysema: correlation of high-resolution CT with pulmonary function tests in unselected smokers.

High-resolution computed tomography (CT) was correlated with pulmonary function tests in the evaluation of regional emphysema in 59 smokers. The lung was divided into upper (above the carina tracheae) and lower (below the carina tracheae) zones, and the degree of emphysema was graded with a subjective and an objective measurement. Functional emphysema was defined as a diffusion capacity less than 75% of predicted and forced expiratory volume in 1 second less than 80% of predicted. Three of 15 (20%) subjects with functional emphysema had no subjective evidence of emphysema at high-resolution CT, and 10 of 25 (40%) with emphysema at high-resolution CT had no functional abnormalities consistent with emphysema. Even though the upper lung zones were more severely affected by emphysema, the degree of emphysema in the lower zones had a stronger correlation with pulmonary function abnormalities. The upper lung zones are a relatively silent region where extensive destruction may occur before functional abnormalities become known.

Aged

Acetylcholine stimulates bronchial epithelial cells to release neutrophil and monocyte chemotactic activity.

Bronchial asthma is accompanied by inflammatory cell infiltration in the airway. Increased bronchial reactivity to cholinergic stimulation is well recognized in patients with bronchial asthma. Thus, we postulated that acetylcholine (ACh) stimulates bronchial epithelial cells (BEC) to release neutrophil and monocyte chemotactic activity (NCA and MCA). To test this hypothesis, bovine BEC monolayers were tested for NCA and MCA by a blind-well chemotactic chamber technique. BEC released NCA and MCA in response to ACh in a dose-dependent and time-dependent manner. Molecular sieve column chromatography revealed that ACh induced a single low-molecular-weight peak (near 400) for NCA and two low-molecular-weight peaks (near 12,000 and 400) for MCA. The release of NCA and MCA was inhibited by the lipoxygenase inhibitors, nordihydroguaiaretic acid and diethylcarbamazine. Cigarette smoke is a well-recognized stimulus for airway inflammation. To determine whether smoke might activate BEC to release NCA by stimulating nicotinic ACh receptors, we further characterized the ACh receptors, using nicotine and nicotinic and muscarinic receptor antagonists. Nicotine, the nicotinic receptor antagonist d-tubocurarine, and the M2 receptor antagonist gallamine did not modulate the release of NCA in response to ACh. In contrast, atropine and the M1 receptor antagonist, pirenzepine, inhibited the release of NCA. These data demonstrate that ACh stimulates BEC to release lipoxygenase-derived NCA and MCA through the muscarinic receptor.

Acetylcholine

Bronchial epithelial cells release neutrophil chemotactic activity in response to tachykinins.

The purpose of this study was to determine whether substance P (SP), neurokinin A (NKA), and neurokinin B (NKB) induce the release of neutrophil chemotactic activity (NCA) from bovine bronchial epithelial cells (BBEC) and whether neutral endopeptidase (NEP), a membrane-bound metalloenzyme that hydrolyzes tachykinins, modulates these effects. BBEC monolayers were exposed to SP, NKA, and NKB in the absence or presence of phosphoramidon (10(-6) M), a selective NEP inhibitor, for 72 h. Using a modified blind-well in vitro neutrophil chemotaxis assay, we found that tachykinin-exposed BBEC culture supernatant fluids induced significant neutrophil chemotaxis compared with supernatants obtained from unstimulated BBEC. Maximal effect was observed after 48 h of incubation and at SP concentration of 10(-13) M [92 +/- 3 (SP) vs. 64 +/- 2 (media) cells/high-power field (HPF), mean +/- SE, n = 7, P less than 0.05]. Release of NCA was mediated by the COOH-terminal of the SP molecule. The rank order of potency of tachykinins in inducing release of NCA was SP greater than NKA = NKB. SP-induced response was significantly potentiated by phosphoramidon (109 +/- 3 vs. 92 +/- 3 cells/HPF, n = 7, P less than 0.05), whereas other proteinase inhibitors had no effect. The released NCA was composed of protein and lipid-soluble components. These data indicate that mammalian tachykinins induce the release of NCA from BBEC and that NEP modulates these effects. We suggest that tachykinins regulate neutrophil recruitment into the lower respiratory tract, in part, by inducing the release of NCA from airway epithelial cells.

Animals

Bronchoalveolar lavage in the assessment of primary and metastatic lung cancer.

Bronchoalveolar lavage (BAL) can provide diagnostic information in cases of primary and metastatic disease to the lung. Diagnostic material can be obtained in about 50% of primary lung cancers, with more accuracy in bronchoalveolar cell carcinoma and adenocarcinoma than in squamous cell carcinoma. The diagnostic yield for cytologic examination is comparable to that of other widely used endoscopic techniques such as transbronchial biopsy. Technical considerations for the performance of BAL for the diagnosis of cancer remain incompletely defined. These include: 1) methods to assure lavage of the appropriate segment, 2) the type of cytologic preparation and stain used, 3) conditions such as viral infections and anti-neoplastic chemotherapy, which can induce changes in airway epithelial cells very difficult to distinguish from malignancy, 4) the optimum technique for the performance of lavage. Lavage may be limited in staging patients with primary lung cancer, but may be useful in staging metastatic lung cancer. In selected clinical situations, BAL will be an important tool for the physician caring for patients in whom malignancy of the lung is suspected.

Bronchoalveolar Lavage Fluid

Role of peptidases in bradykinin-induced increase in vascular permeability in vivo.

The purpose of this study was to examine whether neutral endopeptidase and angiotensin I-converting enzyme, two membrane-bound metalloenzymes that are widely distributed in the microcirculation, play a role in bradykinin-induced increase in vascular permeability in the hamster cheek pouch. Changes in vascular permeability were quantified by counting the number of leaky sites and by calculating the clearance of fluorescein isothiocyanate (FITC)-dextran (molecular mass, 70,000 d) during suffusion of the cheek pouch with bradykinin. Bradykinin produced a concentration- and time-dependent increase in the number of leaky sites and clearance of FITC-dextran. The selective, active site-directed neutral endopeptidase inhibitors phosphoramidon (1.0 microM) and thiorphan (10.0 microM) and the selective angiotensin I-converting enzyme inhibitor captopril (10.0 microM) each shifted the concentration-response curve to bradykinin significantly to the left. During suffusion with bradykinin (1.0 microM) and phosphoramidon, the number of leaky sites increased significantly from 17 +/- 2 to 27 +/- 4 sites per 0.11 cm2 (mean +/- SEM, p less than 0.05), and FITC-dextran clearance increased significantly from 1.0 +/- 0.2 to 2.1 +/- 0.3 ml/sex x 10(-6).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Serum procollagen III peptide levels in subjects with sarcoidosis. A 5-year follow-up study.

In a prospective study, Type III procollagen N-terminal peptide was measured in the sera of 38 subjects with biopsy-proven pulmonary sarcoidosis at 6-month intervals over a period of 5 yr. The subjects were divided into four groups according to their radiologic presentation and clinical course: Group A (n = 10) subjects with sarcoidosis Type I without radiologic progression over 5 yr; Group B (n = 5) subjects with sarcoidosis Type I with radiologic progression to Stage II or III; Group C (n = 9) subjects with sarcoidosis Types II and III without progression over 5 yr; and Group D (n = 14) subjects with sarcoidosis Types II and III with radiologic progression. Lung function tests (FVC, FEV1, and DLCO), chest roentgenograms, and measurements of serum angiotensin converting enzyme (S-ACE) were performed concurrently with the S-PCP-III levels. Significantly higher levels of S-PCP-III were found in group B (Type I, progressive) (18.2 +/- 1.09 ng/ml) and in group D (Type II/III, progressive) (13.9 +/- 1.2 ng/ml) compared with those of Group A (Type I, stable) (9.1 +/- 1.09 ng/ml) and Group C (Type II/III, stable) (7.6 +/- 1.1 ng/ml) or normal volunteers (9.4 +/- 4 ng/ml) (p less than 0.001 for all comparisons). Changes in S-PCP-III levels tended to parallel the clinical course, and steroid treatment resulted in a significant decrease in S-PCP-III concentrations (p less than 0.001). In contrast, serum angiotensin converting enzyme (S-ACE) levels did not correlate with either the clinical course or radiologic changes.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Aerosolized beclomethasone in chronic bronchitis. Improved pulmonary function and diminished airway inflammation.

Chronic bronchitis is associated with airways obstruction and inflammation. In order to determine whether aerosolized beclomethasone can modulate airway inflammation and diminish airway obstruction, subjects with chronic bronchitis performed spirometry and underwent bronchoalveolar lavage (BAL) before and after receiving 6 wk of therapy (five puffs four times a day) with either aerosolized beclomethasone (n = 20) or placebo (n = 10) in a double-blinded, randomized fashion. All subjects received aerosolized albuterol before each use of the study medications. Before BAL, the airways were visually assessed for the appearance of inflammation and assigned a score, the bronchitis index. BAL was performed by instilling five 20-ml aliquots of saline into each of three sites and pooling and separately analyzing the returns from the first aliquots to yield a "bronchial sample." The bronchial lavages were repeated in an additional three sites to increase the volume of fluid available for analysis. The fluid was prepared for cytologic examination by cytocentrifugation. Albumin (as a measure of epithelium permeability) and lactoferrin and lysozyme (as measures of serous cell activity) were measured in unconcentrated BAL fluid by enzyme-linked immunosorbent assay, and concentrations in epithelial lining fluid were estimated using urea as an internal marker for dilution. After treatment, the beclomethasone group, but not the placebo group, showed improvement in FVC (p = 0.02), FEV1 (p = 0.002), and 25 to 75% forced expiratory flow (p = 0.006). Associated with the improvement in spirometry, the bronchitis index fell (13.5 +/- 1.0 versus 10.75 +/- 1.1, p = 0.02) in the beclomethasone-treated group, but not the placebo-treated group.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Inhalation

Observations of development of resistance to detachment of cultured bovine bronchial epithelial cells in response to protease treatment.

Protease injury of the bronchial epithelium may play an important role in the pathogenesis of many airway diseases including asthma and chronic bronchitis. We hypothesized that neutrophil elastase can cause significant injury to the bronchial epithelium leading to detachment of bronchial epithelial cells. This detachment might be prevented if elastase is released into the airway lumen and the bronchial epithelium forms a barrier preventing access to the basal attachment sites. To assess this, the detachment of bronchial epithelial cells by elastase from extracellular matrix was measured. An increase in the resistance to detachment with time in culture was observed. The resistance to detachment was confirmed in bronchial epithelial cells, which were grown to electrically resistant monolayers on millipore filters and exposed to trypsin and elastase applied to both the apical and basal surfaces. Significantly greater detachment occurred when the proteases were applied at the basal surface versus the apical surface. Injury to the bronchial epithelium may enhance the proteolytic effect on the epithelium by disrupting epithelial barrier function. This was tested by exposing bronchial epithelial cell cultures to cigarette smoke extract before exposure to trypsin and elastase. The detachment of the bronchial epithelial cells exposed on the apical surface was increased greatly after smoke exposure. These data suggest that an intact bronchial epithelium can act as a barrier against proteolytic injury. Such a mechanism might protect the airway epithelium during intraluminal inflammation, and, if defective, might potentiate cigarette smoke-induced airway injury.

Animals

Transforming growth factor-beta stimulates the expression of desmosomal proteins in bronchial epithelial cells.

Transforming growth factor-beta 1 (TGF-beta 1) has been shown to induce squamous differentiation of cultured airway epithelial cells. It has also been shown to increase expression of matrix proteins and integrin receptors in cell culture of these and other cells. However, it is unknown if TGF-beta 1 affects expression of genes encoding intercellular junctional proteins. Therefore, we have investigated the effect of TGF-beta 1 on the expression of proteins and mRNAs for desmoplakins (DPs) I and II, desmosomal plaque proteins. Fibronectin, known to be induced by TGF-beta 1 was used as a positive control and tubulin as a negative control. Twenty-four hours after TGF-beta 1 stimulation, DP I and II mRNA levels assessed by Northern blotting analysis had increased significantly (DP I mRNA, 1.8-fold, P less than 0.05; DP II mRNA, 2.4-fold, P less than 0.04), thereby indicating pretranslational regulation of DP expression. By comparison, mRNA for fibronectin increased 8.1-fold whereas mRNA for tubulin was unchanged. Immunofluorescence using the monoclonal anti-DP I and II antibodies revealed dramatic increased expression of punctate DP structures after exposure to TGF-beta 1. Immunoblot analyses with polyclonal anti-DP I antibodies showed increased levels of both DP I (250 kD) and DP II (215 kD), with the DP I increase being more pronounced (DP I, 2.5-fold; DP II, 1.4-fold at 48 h relative to controls), suggesting translational regulation by TGF-beta 1. This study therefore demonstrates the ability of TGF-beta 1 to alter cellular phenotype by altering expression of proteins involved in intercellular junctions.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Modulation of neutrophil and mononuclear cell adherence to bronchial epithelial cells.

Neutrophils and mononuclear cells have been associated with the lower respiratory tract inflammation observed in both acute and chronic bronchitis. In order to transit into and remain within the airways, neutrophils and mononuclear cells would likely need to adhere to bronchial epithelium. To test this hypothesis, bovine bronchial epithelial cells (BBECs) were isolated and cultured on a round coverslip. After 7 to 10 days, 51Cr-labeled neutrophils and mononuclear cells were evaluated for their capacity to adhere to the BBEC monolayer. Both neutrophils and mononuclear cells readily bound to the BBEC monolayer (10.8 +/- 1.2% bound neutrophils; 40.5 +/- 2.8% bound mononuclear cells). Stimulation of the neutrophils and mononuclear cells with phorbol 12-myristate 13-acetate (PMA) increased the adherence (45.8 +/- 10.6% bound neutrophils, P less than 0.01 compared with unstimulated cells; 58.7 +/- 6.2% bound mononuclear cells, P less than 0.01 compared with unstimulated cells). Importantly, stimulating the BBEC monolayer with PMA, bacterial lipopolysaccharide, or a cigarette smoke extract for 4 to 72 h also increased the adherence of both cell types (P less than 0.01, all comparisons at 24 h). The adherence was not decreased by exposure of either the BBEC monolayer, the neutrophils, or the mononuclear cells to cycloheximide or to the anti-CD11/CD18 monoclonal antibody 60.3 (P greater than 0.05). However, exposure of the BBEC monolayer to trypsin before addition of the neutrophils significantly decreased adherence (P less than 0.05). Because neutrophils and mononuclear cells are thought to mediate cell cytotoxicity by adhering to the target cells, BBECs were labeled with 51Cr, and 51Cr release was measured as an index of cytotoxicity. There was a modest increase in 51Cr release by the addition of unstimulated neutrophils and mononuclear cells, and culturing the BBEC monolayer with PMA before the addition of the neutrophils or mononuclear cells resulted in a further modest enhancement of 51Cr release (P less than 0.05). Similar results were obtained using lactate dehydrogenase release as a measure of cytotoxicity. These results demonstrate that inflammatory cells can adhere to BBECs and may be capable of mediating cytotoxicity and adherence and cytotoxicity can be increased by stimulating BBECs.

Animals

Modulation of fibronectin production of bovine bronchial epithelial cells by transforming growth factor-beta.

Regulation of airway repair after injury is poorly understood but is thought to be important in the development of airway diseases such as chronic bronchitis and asthma. There is evidence that fibronectin (Fn), an extracellular matrix glycoprotein, has a role in repair processes. In addition, transforming growth factor-beta (TGF-beta) is also likely involved in would healing and is known to influence extracellular matrix constituents in other cell systems. We postulated that TGF-beta may effect airway repair by modulating Fn production from airway epithelial cells. To examine this hypothesis, we studied the effect of TGF-beta 1 on Fn production by bovine bronchial epithelial cells in culture. Fn, released into the media of cultures exposed to TGF-beta 1, increased in a dose- and time-responsive fashion. Fn in the cell layer also increased in response to TGF-beta 1. De novo protein synthesis was demonstrated by an increase in [35S]methionine incorporation into Fn immunoprecipitated from media of TGF-beta-treated cultures. TGF-beta 1 also induced an increase in expression of Fn mRNA from cultured bronchial epithelial cells, suggesting that TGF-beta modulates Fn production of these cells, at least in part, through modulation of Fn gene expression. These data support a role for TGF-beta in airway repair through modulation of Fn production by airway epithelium.

Animals

Spontaneous production of transforming growth factor-beta 2 by primary cultures of bronchial epithelial cells. Effects on cell behavior in vitro.

The ability of airway epithelial cells to produce transforming growth factor-beta (TGF-beta) may be an important mechanism for the control of growth, differentiation, and repair of the airway epithelium. To determine whether airway epithelial cells are capable of producing TGF-beta, we examined primary cultures of bovine bronchial epithelial cells. Using a bioassay, TGF-beta activity was detected readily in media conditioned by bovine bronchial epithelial cells. Neutralizing antisera to TGF-beta 1 and TGF-beta 2 were used to demonstrate that the majority of the activity was of the TGF-beta 2 isoform. Interestingly, some of the TGF-beta activity was present in the conditioned media as "active" TGF-beta, not requiring acid activation. The production of TGF-beta was variable, depending on cell density and the presence of retinoic acid. The presence of endogenously produced active TGF-beta in the culture media was shown to modulate the behavior of the cell cultures as evidenced by the effects of TGF-beta-neutralizing antisera on cell size and fibronectin production. Our results suggest that active TGF-beta produced by airway epithelial cells may function in an autocrine or paracrine manner to modulate epithelial cell behavior.

Animals