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Biomedical subjects

E C Lucey

Publications and source records attributed to E C Lucey.

At least 19 recordsLinked to original sources

Remodeling of alveolar walls after elastase treatment of hamsters. Results of elastin and collagen mRNA in situ hybridization.

Treatment of hamster lungs with porcine pancreatic elastase (PPE) causes emphysema and a decrease in lung elastin content, which returns to control level by Day 30. To explore the mechanism of alveolar wall remodeling after elastolytic injury, we examined the expression of elastin and alpha1(I) collagen mRNAs by in situ hybridization at 1, 2, 3, 5, 7, and 30 d after intratracheal PPE. The lungs of control animals displayed weak signals for elastin and alpha1(I) collagen mRNA in pleura, large arteries, veins, and airways. There was little or no signal in respiratory air space walls. Increased expression of elastin and alpha1(I) collagen mRNA began by Day 1 after PPE and reached an asymptote by Day 3 that was maintained by elastin until Day 7; expression of alpha1(I) collagen mRNA waned earlier. Elastin and, to a lesser extent, alpha1(I) collagen mRNA were heavily expressed in pleura, blood vessels, and airways. Analysis of serial sections showed elastin message was minimal in the walls of respiratory air spaces and when present, at 3, 5, and 7 d, was primarily found at the free margins of alveolar septa. Collagen message was very sparse in respiratory air space walls. By 30 d, elastin mRNA expression was reduced but still above control levels and emphysema was widespread and severe. Rank score of elastin mRNA expression in individual subpleural air spaces showed a positive correlation with air space size. In conclusion, most expression of elastin and alpha1(I) collagen mRNA occurs in the pleura, airway, and vascular walls. In respiratory air space walls, expression of elastin mRNAs occurs in damaged tissue at free septal margins.

Animals

Localization of alpha1(I) collagen mRNA in myocardium from the spontaneously hypertensive rat during the transition from compensated hypertrophy to failure.

Spontaneously hypertensive rats (SHR) commonly develop impairment of myocardial function between ages 18-24 months. Isolated muscle studies demonstrate depressed myocardial contractility and increased passive stiffness. Studies of the extracellular matrix in SHR with failure (SHR-F) demonstrate an increased expression of genes encoding extracellular matrix components (ECM), hydroxyproline concentration and fibrosis relative to age-matched non-failing animals. In the present study, tissue sections of hearts from SHR-F, non-failing SHR (SHR-NF) and non-hypertensive Wistar Kyoto rats (WKY) were hybridized with a cDNA probe for alpha1(I) collagen mRNA, which was found by Northern blot analysis to be elevated in SHR-F relative to hearts from control animals. In situ hybridization studies demonstrate increased perivascular and interstitial collagen alpha1(I) gene expression in myocardium from the SHR relative to WKY. In addition, failing hearts from the SHR demonstrate focal alpha1(I) collagen mRNA accumulation in the endocardium and at sites of degenerating single myocardial cells.

Animals

Distribution of elastin in hamsters and the turnover rates of different elastin pools.

Desmosine (DES) and isodesmosine (IDES) concentration in the urine can be used as a noninvasive method of assessing degradation of mature elastin in normal and pathologic states. The present study was undertaken to determine the distribution of elastin among organs and tissues of normal hamsters, and to determine the turnover rates of two elastin-containing organs (lung, thoracic aorta) as a reflection of their contributions to DES and IDES excretion in the urine. Hamsters were metabolically labeled at 5 days of age with 14C-lysine and studied at 1.5, 4.5, 8, and 12 months of age. The aorta DES + IDES-associated radioactivity did not change significantly over the age span of 1.5-12 months. Lung DES + IDES-associated radioactivity decreased with a half-life of 420 days. Measurement of DES + IDES pools in other tissues, with relatively low concentrations of elastin, was carried out by the isotope dilution technique. At 12 months of age, the head and paws pool, skin, skeletal muscle, gastrointestinal tract, heart-liver-kidney-spleen pool, lungs, and thoracic aorta represented 37%, 28%, 13%, 11%, 6%, 4%, and 1%, respectively, of total body DES + IDES. The organs with the highest DES + IDES-specific radioactivity at 12 months were heart-liver-kidney-spleen, lung, and gastrointestinal tract, with 310, 217, and 217 dpm/nmol, respectively. Skin had the lowest specific radioactivity, with 90 dpm/nmol. The specific radioactivity of DES + IDES in urine was 62 dpm/nmol at 12 months, down from 251 dpm/nmol at 1.5 months. These data clearly indicate that non-lung tissues contain a high proportion of the total body DES + IDES and suggest that pathology in these other pools of DES + IDES could result in significant elevation of urinary DES + IDES. Nevertheless, the relatively high specific radioactivity of DES + IDES in lung elastin as compared with urine makes monitoring labeled urinary DES + IDES in this animal model a sensitive tool for assessing elastin degradation in experimental lung disease.

Aging

Differential expression of elastin and alpha 1(I) collagen mRNA in mice with bleomycin-induced pulmonary fibrosis.

Interstitial pulmonary fibrosis is characterized by increased production of connective tissue components, including collagen and elastin. The role of elastin turnover in pulmonary fibrosis is not clear, and it is not known whether elastin and collagen are regulated separately or together during the inflammatory process. Mice with bleomycin-induced pulmonary fibrosis were investigated to determine the temporal and spatial changes in localization of elastin mRNA expression, as well as to compare elastin mRNA expression with that of alpha 1(I) collagen mRNA expression. In control (saline-treated) lungs, elastin mRNA was detected by in situ hybridization in arterial walls. No signal was found in alveolar or airway walls or in pleura; alpha 1(I) collagen mRNA was detected in the tissue underlying the airway epithelium. An increase in elastin mRNA expression in muscular arteries was observed 3 days after bleomycin instillation. Expression was also seen in the adventitia of terminal airways and adjacent small blood vessels. Expression of alpha 1(I) collagen mRNA increased in the tissue underlying the airway epithelium. In the pleura, alpha 1(I) collagen mRNA expression was found, although no pleural thickening was evident. The alpha 1(I) collagen mRNA expression was particularly increased in the adventitia of terminal airways and in associated small blood vessels. Obvious in areas of fibrosis, elastin mRNA expression was occasionally increased in the pleura and airway wall 7 days after bleomycin treatment; alpha 1(I) collagen mRNA expression was generally stronger than elastin mRNA expression in areas of fibrosis and was frequently intense in the adventitia of airways and associated blood vessels. The fibrotic areas showed increased elastin mRNA expression 14 and 30 days after bleomycin treatment. The arteries in fibrotic areas showed normal elastin mRNA levels. In the areas of fibrosis and in the adventitia of airways and adjacent blood vessels, alpha 1(I) collagen mRNA expression was very high. In conclusion, lung elastin biosynthesis is markedly altered by bleomycin treatment. The localization and intensity of elastin mRNA expression is different from the expression of alpha 1(I) collagen mRNA.

Animals

Effect of diet on urinary excretion of desmosine and hydroxylysyl pyridinoline.

To help validate the use of urinary desmosine (DES), isodesmosine (IDES), and hydroxylysyl pyridinoline (HP) as specific markers of host elastin and collagen degradation, respectively, a study was carried out on the effect of dietary elastin and collagen on urinary DES, IDES, and HP. Ingestion of a meal of calf ligamentum nuchae containing 33 g elastin, 500 mg DES, and 400 mg IDES produced a 10-fold increase in urinary DES and an 8-fold increase in IDES. The urinary DES values remained elevated for more than 10 days following the ingestion. We estimate that about 0.3 mg, or < 0.1%, of the ingested DES was excreted in the urine. Since ligamentum nuchae is not a usual ingredient of human diets, we also determined whether a more typical source and amount of DES, IDES, and HP might affect urinary DES, IDES, or HP values. Lean ground beef (454 g) was ingested. Our analysis showed that this meal contained 4 mg DES, 2 mg IDES, and 0.9 mg HP. The meat-rich diet caused a significant increase of 16 and 34% in the creatinine and DES content of the urine, respectively. When DES, IDES, and HP values were normalized for the urine creatinine content, diet had no effect on the measured amounts. The baseline values (mean +/- SE) for the volunteers before ingestion of the beef were 8.3 +/- 0.7 micrograms DES/24 h, 8.3 +/- 0.6 micrograms IDES/24 h, and 340 +/- 48 nmol HP/24 h; 5.7 +/- 0.5 micrograms DES/g creatinine, 5.6 +/- 0.4 micrograms IDES/g creatinine, and 26.9 +/- 2.2 nmol HP/mmol creatinine.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids

Pitfalls in antiprotease therapy of emphysema.

Many individuals with emphysema are unable to stop smoking despite the best efforts of specialists in smoking cessation. Because emphysema is a slowly progressive disease, it is rational to attempt to develop drugs for it. The hope is that drug therapy will slow the rate of decline of lung function, thereby delaying the onset of disability and prolonging life. The major emphasis in drug development has been on antiproteases having the ability to inhibit neutrophil elastase. There are a number of potential pitfalls in the development of such drugs. Although there is gathering evidence that elastin degradation is a part of the development of human emphysema, it is evident from studies in experimental emphysema that protease-antiprotease imbalance is not the only pathogenetic mechanism that gives rise to emphysema. There is strong evidence that human centrilobular and panacinar emphysema are different in pathogenesis. Indeed, airspace enlargement may be considered one of the stereotyped ways that the lung heals after a variety of injuries. There is accumulating evidence that macrophages as well as neutrophils may participate in elastolysis; antiproteases designed to inhibit neutrophil elastase may not inhibit the metalloproteases produced by macrophages. Some antiproteases may serve to transport elastase into the interstitium of the lung and actually increase the risk of emphysema. A process study of antiprotease therapy, using a measure of alteration of elastase burden of the lungs and urinary elastin peptides and desmosine measurements as markers of elastin degradation is now feasible. An outcome study of antiprotease therapy of emphysema should not be undertaken unless there is evidence from a process study that an antiprotease has biochemical efficacy and no unacceptable side effects.

Animals

Oxidants from neutrophil myeloperoxidase do not enhance elastase-induced emphysema in the hamster.

Alpha-1-protease inhibitor is susceptible to oxidative impairment by the neutrophil myeloperoxidase (MPO) system. The purpose of this study was to assess the effect of the MPO oxidant system on elastase-induced emphysema in the hamster. Intratracheal instillation of 200 micrograms of human neutrophil elastase (HNE) induced a significant secretory cell metaplasia (SCM) and airspace enlargement [23% increase in mean linear intercept (MLI) as compared with control values]. Instillation of MPO system components [0.6 international units (U) of MPO, 5.5 U of glucose oxidase and glucose (0.02 M)] along with 200 micrograms HNE failed to enhance the severity of the SCM or emphysema induced by HNE alone. A second experiment was carried out using 50 micrograms of porcine pancreatic elastase (PPE) to induce emphysema. PPE produced a significant 45% increase in MLI, but the MPO system combined with PPE failed to enhance the emphysema induced by PPE alone. The MPO system alone had no measurable effect on airspace size or SCM. In vitro studies showed that PPE was partially inactivated by the MPO system; a 56% loss of elastolytic activity occurred during a 6-min incubation of PPE with the MPO system. This may explain why the MPO system did not exacerbate PPE-induced injury, but it does not explain the lack of enhancement for HNE. A 6-minute incubation of HNE with the MPO system resulted in a nonsignificant 10% decrease of elastolytic activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Relationship of secretory granule content and proliferative intensity in the secretory compartment of the hamster bronchial epithelium.

We have previously shown that normal hamster airway epithelial secretory cells have a lower proliferative intensity than basal cells, but because of their high frequency are a major contributor to cell renewal (Am. J. Respir. Cell Mol. Biol. 1990; 2:51-58). In the present experiment, the relation between proliferative intensity and secretory granule content in bronchial epithelial cells is studied. [3H]thymidine (2 microCi/g wt) was given intraperitoneally, 1 h before killing, to 5 hamsters treated 21 days earlier with intratracheal saline and to six hamsters in which secretory cell metaplasia had been induced by intratracheal treatment with 300 micrograms of human neutrophil elastase given 21 days earlier. Light microscopic autoradiograms were prepared from 2-microns-thick Epon sections of left intrapulmonary hilar bronchi. Cells were categorized as basal, ciliated, secretory, or indeterminate. Secretory cells were classified as either: S1, with 0 to 4 granules; S2, with > or = 5 granules with intervening cytoplasm; or S3, with abundant granules and no apparent supranuclear cytoplasm. Proliferative intensity was defined by the categorical labeling index (LIc) at 1 h after [3H]thymidine injection. LIc was determined by the number of labeled cells in a category as the percent of labeled and unlabeled cells of that category. LIc of each of the cell categories were similar in the elastase and saline groups. LIc was highest for basal cells, reflecting their proliferative intensity, and lowest for ciliated cells. In the saline group, LIc of S1 (0.25%) was significantly higher compared with S2 (0.13%); S3 cells were rare (0.2%) and none were labeled.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Covalently linking a peptidyl carbamate elastase inhibitor to a hydrophilic polymer increases its effectiveness in preventing emphysema and secretory cell metaplasia in the hamster.

A peptidyl carbamate, p-nitrophenyl N-(succinyl-L-alanyl-L-alanyl-L-prolyl-methyl)-N-isopropylcarbamate++ + (PCI) was tested for its ability to inhibit the elastolytic activity of human neutrophil elastase (HNE) and to prevent HNE-induced emphysema and secretory cell metaplasia in the hamster. In vitro, 50% of the elastolytic activity of 10 micrograms of HNE was inhibited by 0.9 micrograms of PCI, a molar ratio of PCI to HNE of 4.5. Bronchoalveolar lavage of hamsters receiving PCI intratracheally showed a rapid decrease in HNE inhibitory activity (4 min for 50% decrease), suggesting rapid clearance, binding, or inactivation of the PCI. Instillation of 300 micrograms of HNE combined with 100, 500, or 3,000 micrograms PCI, a 16-, 83-, and 503-fold molar excess of PCI, respectively (molar ratios of 17, 84, and 504), suppressed HNE-induced lung hemorrhage, but it did not moderate HNE-induced emphysema despite the large molar excess of inhibitor. When PCI was covalently bound to a linear hydrophilic polymer of alpha,beta-poly[N(2-hydroxyethyl)-D,L-aspartamide], producing a polymer-bound carbamate inhibitor (PPCI) of HNE, the time for a 50% decrease of PPCI functional activity from the hamster lung lavage was 421 min. Instillation of 100 micrograms of PPCI 1 h before instillation of 300 micrograms HNE resulted in significant amelioration of emphysema; 900 micrograms of PPCI was required to obtain amelioration of bronchial secretory cell metaplasia. The larger dose of PPCI also provided significant amelioration of emphysema when the interval between PPCI and HNE administration was 8 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Putative role of neutrophil elastase in the pathogenesis of emphysema.

Emphysema in humans takes several different forms: centrilobular, panacinar, paraseptal, and airspace enlargement with fibrosis. The varying morphologic and background features of these forms of emphysema suggest that they differ in pathogenesis. Elastic fiber rupture and fraying are a feature of emphysema. Experimental emphysema may be induced by human neutrophil elastase and other elastolytic enzymes but not by nonelastolytic proteases. Disruption of elastic fibers also appears to be the underlying feature of lathyrogen-induced airspace enlargement and of the emphysema in the blotchy mouse. However, there is no evidence of elastic fiber destruction in cadmium-induced airspace enlargement with fibrosis or in emphysema associated with hyperoxia or severe starvation. Thus, elastic fiber disruption is not common to all forms of experimental emphysema. We posit that airspace enlargement may be a stereotyped response of the lungs to different injuries. Emphysema can be induced in experimental animals by repeated induction of pulmonary neutrophilia. However, the evidence for involvement of neutrophil elastase in human emphysema is not clear: there are studies using a variety of approaches that weigh on both sides of the question. There is also in vitro evidence that alveolar macrophages can degrade elastin or elastic fibers with which they are in contact by means of a metalloelastase or the cooperative action of plasminogen activator and an acid cysteine protease. We conclude that the pathogenesis of emphysema is complex. Neutrophil elastase likely plays a major role in the development of some forms of emphysema, but our understanding of the interactions between the alveolar walls and neutrophils is still fragmentary.

Animals

Measurement of urinary desmosine by isotope dilution and high performance liquid chromatography. Correlation between elastase-induced air-space enlargement in the hamster and elevation of urinary desmosine.

The accuracy of methods employed to measure the elastin-specific crosslinks, desmosine (DES) and isodesmosine (IDES), has been called into question because contaminants in the urine may cause elevated values. In the present study urine samples were spiked with a known amount of [14C]DES and refluxed in 6 N HCl. Sephadex G-15 chromatography of the hydrolyzed urine employed to remove contaminants. DES and IDES were quantified by high performance liquid chromatography (HPLC) as well as by amino acid analysis. The amount of isotope recovered was used to determine losses during the overall procedure and the isotope dilution to calculate the amounts of endogenous DES and IDES originally present in the urine. Because similar values were obtained by both methods, the more rapid HPLC method was used for all succeeding analyses. In one experiment, the DES amounts in urine collected from hamsters for 3 days after intratracheal treatment with human neutrophil elastase (300 micrograms) or porcine pancreatic elastase (300 micrograms) were 0.212 +/- 0.012 (mean +/- SEM, two measurements on a single pool) and 0.816 +/- 0.005 (two measurements) microgram per hamster per day, respectively. Urine from control hamsters had a mean value of 0.074 +/- 0.008 (eight measurements) microgram per hamster per day. The HNE- and PPE-treated hamsters had mean linear intercept values of 119 and 159% of control values, respectively, giving a positive correlation between increase in airspace size and elevation of urinary DES.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Induction and exacerbation of emphysema in hamsters with human neutrophil elastase inactivated reversibly by a peptide boronic acid.

In solution, MeO-Suc-Ala-Ala-Pro-D,L-boro-Val pinacol ester (Boroval) is a highly effective but reversible inhibitor of both porcine pancreatic elastase and human neutrophil elastase (HNE) (50% inhibition with a 1.5 M ratio of Boroval to elastase). Boroval has been shown to prevent porcine-pancreatic-elastase-induced emphysema in hamsters. But with HNE-induced emphysema in hamsters, pretreatment with as much as a 170-fold M excess of Boroval, given intratracheally 1 h before 0.3 mg HNE, did not prevent emphysema. Indeed, lung volumes were larger after Boroval pretreatment than after HNE alone. Emphysema was also induced by instilling HNE that had been mixed with and inactivated by a 41-fold M excess of Boroval (a molar ratio of 42). When 0.25 or 0.5 mg of HNE were given mixed with a 41-fold M excess of Boroval, the emphysema was much more severe with the 0.5 mg dose. Two hours after instillation of 0.3 mg HNE inactivated with a 34-fold M excess of Boroval, bronchoalveolar lavage contained elastolytic activity but no evidence of hemorrhage. In contrast, hemorrhage was severe in hamsters that had been instilled with 0.3 mg HNE alone. We conclude that Boroval can enhance HNE-induced emphysema. We postulate that Boroval suppresses HNE-induced hemorrhage and the resultant influx of plasma protease inhibitors; the HNE-Boroval complex is transported into the alveolar interstitium, followed by dissociation of the inhibitor from the active site of HNE. Because of its small size, free Boroval is rapidly cleared, and the reactivated HNE attacks elastic fibers, giving rise to emphysema.

Animals

Cell kinetics of normal adult hamster bronchial epithelium in the steady state.

To establish the progenitor role of bronchial epithelial cells in the steady state, we undertook a quantitative autoradiographic study in normal hamsters. Groups of 7 hamsters were killed 1 h and 1, 2, 3, 4, 7, and 14 d after an intraperitoneal injection of [3H]thymidine (2 microCi/g body wt). Autoradiograms were prepared from 861 Epon sections, 2 microns thick, of left intrapulmonary hilar bronchi. Epithelial cells were classified into 1 of 7 categories: basal-1 (B1) and basal-2 (B2), depending on nuclear height; secretory cells denoted as S1 with zero to 4 granules, S2 with 5 or more granules with intervening cytoplasm, and S3 with abundant granules completely filling the cytoplasm; ciliated (C); and indeterminate (IN). Mean silver grain counts decreased significantly over time only for B1 cells (P less than 0.05), with a cell cycle time of 20.6 d and a DNA synthetic time of 7.5 h. Labeled cells, 1 h after thymidine injection, comprised 30.5% S1, 27.8% B1, 22.8% B2, 6.8% IN, 6.4% S2, 5.7% C, and 0% S3 cells. Labeling indices of individual cell categories (LIc), at 1 h after labeling, were highest for B1 followed by B2 cells, reflecting their proliferative intensity. Labeling index of all epithelial cells combined did not change with time, indicating that there was no major cell death or label dilution. The LIc decreased significantly over time only for B1 and B2 cells (P less than 0.001 and P less than 0.002, respectively).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Lectin cytochemistry reveals differences between hamster trachea and bronchus in the composition of epithelial surface glycoconjugates and in the response of secretory cells to neutrophil elastase.

Hamsters exposed to an intratracheal instillation of human neutrophil elastase (HNE) accumulate an abnormally high number of secretory granules in bronchial but not tracheal epithelial cells. We employed lectin cytochemistry to investigate possible differences in the epithelial cell surface glycoconjugate layer in trachea compared to bronchus which might explain the regional dissimilarity in response to HNE. Portions of glutaraldehyde-fixed trachea and bronchi were incubated in one of several ferritin-labeled lectins prior to embedding for transmission electron microscopy. Lectins from Ricinus communis, Helix pomatia, and Triticum vulgaris bound to the surface of tracheal secretory cells in moderate to profuse amounts, while most bronchial secretory cells showed little or no label with these lectins. Gold-labeled Helix pomatia agglutinin (HPA), a lectin specific for secretory cells, showed a decrease in surface binding to all tracheal secretory cell types within 2 h of HNE instillation, compared to saline controls. In contrast, the majority of bronchial secretory cells showed an HNE-induced increase in surface label from extremely low levels in saline controls. The low levels of lectin binding to bronchial cells, in contrast to the trachea, may indicate the lack of a protective surface glycoconjugate coat, thus explaining the vulnerability of these cells to HNE. The rise in number of accessible HPA binding sites on the surface of bronchial secretory cells exposed to HNE may represent an important event in the pathologic accumulation of secretory granules by these cells.

Animals

The specific treatment of emphysema.

Cigarette smoking is the major risk factor for development of emphysema. Many people are unable to stop smoking despite skilled support. The elastase-antielastase imbalance hypothesis for the pathogenesis of emphysema suggests that treatment with a supplemental elastase inhibitor might prevent development of emphysema in susceptible people. Many elastase inhibitors have been developed. Poorly soluble inhibitors do not prevent emphysema when tested in an animal model of elastase-induced emphysema. Irreversible inhibitors are effective in a dose-response manner. Reversible but tight-binding large molecular weight inhibitors, which clear slowly from the lungs, are effective in vivo. Small molecular weight, reversible inhibitors prevent haemorrhage after human neutrophil elastase instillation into the lungs but may potentiate emphysema. Only 15% of long-term smokers are susceptible to the development of emphysema. Susceptible smokers can be identified by the development of airflow obstruction. An outcome study of efficacy of elastase inhibitor therapy would be prohibitively expensive. However, a study of the process of development of elastase-induced emphysema is feasible. Measurement of alterations in elastase load of the lungs, elastase derived fibrinopeptides, circulating elastin peptides and urinary desmosines could be used for this purpose.

Animals

Recombinant human secretory leukocyte-protease inhibitor: in vitro properties, and amelioration of human neutrophil elastase-induced emphysema and secretory cell metaplasia in the hamster.

Studies were undertaken to evaluate the in vitro properties of recombinant human secretory leukocyte-protease inhibitor (rSLPI) that had been made in Escherichia coli in an inactive form and refolded, and to determine whether emphysema and bronchial secretory cell metaplasia, induced in hamsters by intratracheal treatment with human neutrophil elastase (HNE), could be amelio-rated by prior intratracheal instillation of rSLPI. Chromatographic studies indicated that 3H-rSLPI formed a 1:1 complex with HNE. Blockage of the active site of HNE by a covalently bound tetrapeptide chloromethyl ketone reduced complex formation with 3H-rSLPI by more than 98%. Incubation of 3H-rSLPI-HNE complex with alpha 1-protease inhibitor for 3 hours at 37 degrees C decreased the amount of complex compared with incubation in the presence of bovine serum albumin (70% vs 27% dissociated). The calculated dissociation rate constant was 1.1 x 10(-4) sec-1, indicating a 1.8 hour dissociation half-life. Dissociated 3H-rSLPI retained its ability to recombine with HNE. rSLPI was as effective at inhibiting HNE released from stimulated neutrophils as 3H-rSLPI was at inhibiting purified HNE. Intratracheal pretreatment of hamsters with 3000 micrograms of rSLPI as long as 8 hours before the intratracheal instillation of 250 micrograms of HNE, resulted in significant protection against induction of emphysema and secretory cell metaplasia. One and 4 hours after instillation of rSLPI, 59% and 44%, respectively, of the initial functional activity was recovered in lung lavage supernatant, indicating a half-life of approximately 2 hours.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals