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Biomedical subjects

G Weinbaum

Publications and source records attributed to G Weinbaum.

At least 55 records · Page 3Linked to original sources

Neurtrophil degranulation in cadmium-chloride-induced acute lung inflammation.

Lobar intrabronchial instillation of cadmium chloride (200 micrograms/ml) in saline causes a reproducible acute pulmonary inflammation in dogs. The influx of inflammatory neutrophils from the circulation into the alveolar spaces reaches a maximum approximately 16 hours after the cadmium chloride treatment in the treated lobe, while the controlateral lung appears normal. Morphometric quantitation of peroxidase-positive (azurophilic) granules in the inflammatory neutrophils shows a 74% loss of these granules, with little or no loss of the peroxidase-negative (specific) granules. These data are in good agreement with the measured loss of intracellular elastase, an enzyme known to be localized in the azurophilic granules. The results suggest that degranulation of azurophilic granules may occur selectively during this chemically induced acute inflammation.

Animals↗

Elastolytic activity in pulmonary lavage fluid from patients with adult respiratory-distress syndrome.

To test the hypothesis that adult respiratory-distress syndrome (ARDS) is related to increased activity of the proteolytic enzyme elastase released from neutrophils in the lung, we determined the differential white-cell count, the elastolytic activity, the source of elastase, and the concentration and activity of the endogenous protease inhibitor alpha-1-antiprotease (alpha-1-AP) in bronchoalveolar lavage fluid from 23 patients with ARDS and from 55 patients without this syndrome. Neutrophil predominance (> 80 per cent) was observed in 18 of 23 patients with ARDS. High elastolytic activity of neutrophil origin was found in 12 of 23 patients with ARDS (52 per cent), in none of 16 normal nonsmokers (P < 0.01), in two of 17 normal smokers, and in three of 22 patients with chronic obstructive pulmonary disease. Although there were no significant differences in alpha-1-AP concentrations, its activity was reduced in eight of nine patients with ARDS and high elastolytic activity. We conclude that in many patients with ARDS, high levels of neutrophil elastolytic activity in the lungs are associated with reduced alpha-1-AP function.

Aged↗

Enzymatic reduction of oxidized alpha-1-proteinase inhibitor restores biological activity.

The major serum inhibitor of proteolytic activity, alpha-1-proteinase inhibitor (alpha-1-PI), (or alpha-1-antitrypsin) can be readily inactivated by oxidation [Carp, H. & Janoff, A. (1978) Am. Rev. Resp. Dis. 118, 617-621]. This inactivation appears to be due to the oxidation of a critical methionine(s) in alpha-1-PI that is required for the inhibition of elastase activity. An enzyme from Escherichia coli that reduces methionine sulfoxide residues in protein [Brot, N., Weissbach, L., Werth, J. & Weissbach, H. (1981) Proc. Natl. Acad. Sci. USA 78, 2155-2158] can restore the biological inhibitory activity of canine oxidized alpha-1-PI.

Animals↗

Emphysema induced in vitro and in vivo in dogs by a purified elastase from homologous leukocytes.

The protease hypothesis of emphysema development evolved from systems using intratracheal instillation or aerosols of heterologous enzymes, such as papain or porcine pancreatic elastase, which bear no relation to the animal species treated. Although these enzymes did produce experimental emphysema, their exogenous origin and superphysiological dosages limit their use in definitive model systems. The observation that dog leukocyte homogenates could induce canine emphysema led us to purify the causative agent from canine neutrophils. This report establishes that a single elastolytic enzyme from dog neutrophils is responsible for inducing experimental emphysema in the dog. Two purification methods were employed. The first used solvents of increasing ionic strength in a sequential extraction of acetone powders of purified dog neutrophils. The ability to initiate emphysema-like lesions was tested in every fraction of the purification and was localized in the extract with the highest true elastolytic activity. The second purification involved neutrophil intracytoplasmic organelle fractionation and established that only extracts of the lysosomal granules were capable of emphysema induction. Finally, the enzyme was purified to homogeneity from the granules using affinity chromatography and was shown to be a true elastase. Emphysema development was quantitated using mean linear intercept and was shown to be dependent on elastase concentration. There does not appear to be any other single enzyme in the canine neutrophil capable of inducing experimental emphysema.

Animals↗

A model of decreased functional alpha-1-proteinase inhibitor. Pulmonary pathology of dogs exposed to chloramine T.

The objective of this study was to develop an animal model representative of chronic human alpha-1-proteinase inhibitor deficiency. Eight dogs were treated with a mild oxidizing agent, chloramine T, with varying regimens for 3--27 wk. The capacity of the serum to inhibit both trypsin and elastase was examined and found to respond differently. Although immunologically determined levels of protease inhibitor did not change, the ability of serum to inhibit elastase in an in vitro assay decreased in direct response to chloramine T treatment. The trypsin inhibitory capacity was less affected. Emphysemalike alterations in lung morphology were observable when histologic sections were evaluated both subjectively and objectively by mean linear intercept measurements. The data suggest that this model parallels the emphysema associated with the genetic alpha-1-proteinase inhibitor deficiency in man.

Animals↗

An analysis of the organ and species immunospecificity of elastin.

The connective tissue protein elastin is largely responsible for maintaining the elasticity of major blood vessels and lung tissue. Comparatively few studies have been made of the immunologic properties of elastin because of its high degree of insolubility and because of its apparent limited capacity to elicit precipitating antibodies. Recent studies have focused on the possible role of elastolytic enzymes, particularly leukocyte elastase, in the pathogenesis of chronic obstructive lung disease, but there are no reports in the literature concerning the antigenic properties of peptides released by digestion of insoluble elastin with leukocyte elastase. In the present study, we have obtained antibodies in rabbits to peptides prepared by digestion of dog and human lung and aortic elastin with either oxalic acid or leukocyte elastase. By hemagglutination assays, we have shown generally that: (1) within a given species the peptides from aorta and lung cross-react strongly with one another, (2) there was rather poor cross-reactivity between peptides from different species (3) the peptides obtained by oxalic acid digestion cross-react poorly with those obtained by elastase digestion, (4) the antibodies to the peptides cross-reacted with the insoluble elastin from which the peptides were derived. These elastin-specific antibodies may be useful for ultrastructural localization of elastin and identification of fragments derived from elastin in the sera of humans and experimental animals.

Animals↗

Immuno electron microscopic studies on cells synthesizing elastin.

Embryonic chick and hamster aortas were examined in the electron microscope using ferritin-conjugated, elastin-specific antibodies after etching of the plastic, thin sections with a dilute solution of benzene, methanol and ethanol. Specific staining of intracellular vesicles was observed in both smooth muscle and endothelial cells in addition to extracellular elastin fibers. In the chick cells, these ferritin-stained vesicles had a lipid-laden appearance. In both species the vesicles appeared to fuse with the plasma membrane and discharge their contents into the extracellular space suggesting elastin is secreted via vesicular structures.

Animals↗

Immunologic identification of elastin-derived peptides in the serums of dogs with experimental emphysema.

Pulmonary emphysema is a disease in which peptides formed by the enzymatic degradation of the amorphous component of interstitial elastin may be release from the lung. In order to provide a test that can monitor the destruction of lung elastin invivo, we developed a hemagglutination inhibiton assay that specifically and quantitatively measure elastin-derived peptides in serum. Using this method, was measured the concentration of elastin-derived peptides in the serums of dogs developing emphysema through the administration of porcine pancreatic elastase. Elastin-derived peptides could be detected in the serums for a period of 12 days after the administration of a single 25- or 50-mg dose of elastase, and for at least 40 days after a 100-mg dose. There was a good correlation between the maximal concentration of elastin derived peptides found in the serums and the amount of elastase administered to the animal. This immunologic method may be useful in following the progression of experiment emphysema.

Animals↗

The effect of the oxidizing agents chloramine-T and cigarette smoke on dog serum proteinase inhibitor(s).

Dog serum treated with the oxidant chloramine-T is rapidly and selectively depleted of its ability to inhibit porcine pancreatic elastase or dog neutrophil elastase. Trypsin inhibitory capacity of serum is not affected. Purified dog alpha-1-proteinase inhibitor (alpha-1-PI) is similarly oxidized with an apparent rate constant of 1.1 x 10(3) M-1 sec-1. Reversal of the oxidative inactivation using dithiothreitol was demonstrated. Cigarette smoke also directly affects the inhibitory capacity of both serum and pure alpha-1-PI. These studies form a basis for developing a model of functionally deficient alpha-1-PI by taking advantage of oxidative inactivation of normal proteinase inhibitor levels.

Animals↗

Immunologic localization of elastin by electron microscopy.

Research on the pathogenesis of experimental emphysema has involved studies of the distribution of and destruction of elastin in the alveolar interstitium. The ill-defined organization of elastin in the alveolar interstitium makes it difficult to identify the elastin specifically by staining procedures ordinarily used for electron microscopy. This problem becomes more significant when the elastic tissue is fragmented during emphysema development and localization of the elastin fragments is essential. Therefore, a specific technique using high-titer antibodies against purified canine lung elastin was developed. The primary antibody was used on preembedded or etched postembedded sections. Localization of the antielastin IgG was accomplished with ferritin-labeled rabbit antisheep IgG as the secondary antibody. Treatment with the preimmune serum gave negligible ferritin background staining. The antielastin antibody did not react with lung connective tissue proteins such as the microfibrillar component of elastin or collagen or proteoglycan. The antielastin antibody appeared to be species specific. The method may be useful for studies of experimental emphysema.

Animals↗

Purification and characterization of canine alpha-1-antiproteinase.

The principal canine plasma protease inhibitor, alpha-1-antiproteinase, has been purified 90-fold with a 25% yield to apparent homogeneity. The purification scheme includes anion-exchange chromatography, to separate away the bulk of the serum albumin; affinity chromatography by insolubilized concanavalin A, to remove most of the other serum proteins as well as traces of albumin; and, finally, sizing on Sephacryl-S-200. Unique to this purification scheme is the batch use of insolubilized hemoglobin--Sepharose beads to remove the ubiquitous contaminant haptoglobin. The purified material has an apparent molecular weight of 58 000, 11.2% carbohydrate, and an E280nm1% = 5.82, and can be separated by isoelectric focusing into at least two distinct forms with pI values of 4.40 and 4.52. In addition, canine alpha-1-antiproteinase is immunologically distinct from human alpha-1-antiproteinase.

Amino Acids↗