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Biomedical subjects

L M Reid

Publications and source records attributed to L M Reid.

At least 73 records · Page 4Linked to original sources

ARDS after accidental inhalation of zinc chloride smoke.

Five soldiers were injured by inhalation of hexite smoke (ZnCl2) during military training. Two soldiers, not wearing gas masks breathed hexite for 1 or 2 min, they slowly developed severe adult respiratory distress syndrome (ARDS) over the ensuing 2 weeks. This slow, progressive clinical course has not been previously described. In both patients, an increased plasma zinc concentration was measured 3 weeks after the incident. Intravenous and nebulized acetylcysteine increased the urinary excretion of zinc, and briefly decreased the plasma levels. In an attempt to arrest collagen deposition in the lungs, L-3,4 dehydroproline was administered. Both patients died of severe respiratory failure (25 and 32 days after inhalation). At autopsy diffuse microvascular obliteration, widespread occlusion of the pulmonary arteries and extensive interstitial and intra-alveolar fibrosis was observed. Three soldiers wearing ill fitting gas masks, immediately developed severe coughing and dyspnea. They improved, and 12 months after exposure their lung function tests were nearly normal, but they still had slight dyspnea on exercise.

Acetylcysteine↗

Comparative morphology and tumourigenicity of human hepatocellular carcinoma cell lines in athymic rats and mice.

Four human hepatoma cell lines PLC/PRF/5, Hep G2, Sk-Hep 1 and Mahlavu were inoculated subcutaneously into athymic Balb/c nude mice and N/NIH outbred nude rats, producing well encapsulated tumours. The 4 hepatoma tumour types in the athymic rodents differ morphologically. PLC/PRF/5 and Hep G2 cells are well differentiated polygonal cells which resemble normal hepatocytes. Tumour arrangement is characterized by solid masses and trabeculae while stromal support is minimal. In contrast, Mahlavu and Sk-Hep 1 tumours have a sarcomatous appearance and consist of spindle shaped cells arranged in solid masses with a rich stromal support. Tumourigenicity of hepatoma cells in the athymic rodents was dependent on injected cell type, inoculation density, relative immunocompetence of the host and the species of animals used. In nude mice, Sk-Hep 1 cells were the most tumourigenic, while Hep G2 cells were tumourigenic only at very high inoculation densities. In nude rats, which were more resistant to tumour formation, PLC/PRF/5 cells were the most tumourigenic. Pre-treatment of athymic mice and rats with total body irradiation resulted in enhanced tumourigenicity for all hepatoma cell lines tested. This was manifested as increased "take" rates, a decreased latency from tumour cell injection to tumour detection, increased tumour weight, and for PLC/PRF/5 cells an increased invasiveness to adjacent body cavities. Furthermore, following irradiation, the minimal number of injected cells required to produce subcutaneous tumours was markedly reduced in both animal species, regardless of tumour cell type. The protocols described enable the reproducible growth of human hepatoma tumours in athymic rodents.

Animals↗

Altered artery mechanics and structure in monocrotaline pulmonary hypertension.

Pulmonary hypertension in rats, induced by an injection of monocrotaline, is associated with changes in the wall structure of the pulmonary arterial bed. We have studied the effects of this remodeling on mechanical properties of cylindrical pulmonary artery segments from rats 21 days after monocrotaline (MCT) injection. Resting and active (KCl induced) circumference-tension relationships were established for segments of extrapulmonary and intrapulmonary arteries isolated from the hilum and the fifth lateral branch from the axial pathway (all preacinar). The thicknesses of the vessel wall, the media, and adventitia were measured at several positions around the circumference of the artery by computerized analysis of histological cross sections of the segments fixed at a standard circumference. Resting and active stress were also calculated. The study shows that active circumferential tension and active stress are reduced in vessels from MCT-treated rats. Based on our findings, it is unlikely that altered contractile function of preacinar arteries contributes significantly to the increased vascular resistance seen in this model.

Animals↗

Transition from normal to hypersecretory bronchial mucus in a canine model of bronchitis: changes in yield and composition.

Density-gradient analysis was used to follow the transition from normal to hypersecretory bronchial mucus in a model of bronchitis induced in dogs by chronic exposure to SO2 gas. Aspirates of saline bronchial lavage were obtained by fiberoptic bronchoscopy from dogs before, during a 6- to 9-month exposure period to SO2 gas, and during a recovery period of similar duration. Prior to SO2 exposure, aspirates from all animals had a low yield of nondialyzable macromolecules (15 +/- 6 mg/aspirate) and similar composition. Specifically, epithelial glycoprotein of typical buoyant density was not detected; rather a glycoconjugate of higher buoyant density with features of both proteoglycan and glycoprotein was identified. Neutral lipids were predominant with lesser amounts of phospholipids; no glycolipids were detected. During the SO2 exposure period, aspirates from five of the eight dogs contained components similar in buoyant density to human bronchitic glycoprotein. Glycoprotein isolated from the canine aspirates was similar to glycoprotein isolated from human chronic bronchitic sputum, having the same carbohydrate composition and range of oligosaccharide size. Further, during and after SO2 exposure some aspirates contained appreciable amounts of glycolipids. These data demonstrate substantial similarities in composition between normal human and canine mucus and in mucus isolated from dogs with chronic airway inflammation induced by repeated irritant exposure and from human patients with chronic bronchitis.

Animals↗

The effects of dexamethasone on in vitro collagen gene expression.

Glucocorticoids have been shown to be useful in the treatment of certain types of chronic liver disease both by inhibiting fibrosis and by improving liver function. We have previously demonstrated in an in vivo model of hepatic fibrogenesis that dexamethasone inhibits the synthesis of types I and IV collagen. In the present study we have evaluated the level of regulation responsible for the dexamethasone-induced changes in collagen gene expression in a defined in vitro system. Primary cultures of adult rat hepatocytes treated with and without dexamethasone under classical cell culture conditions or using defined media were evaluated for synthesis and abundance of procollagen and beta-actin mRNAs. Cells treated with dexamethasone had decreased types I and IV procollagen mRNA steady state levels due in part to diminished transcription rates of the genes. On the other hand, beta-actin mRNA levels were unaffected by dexamethasone. Transient expression experiments were performed to more precisely define the mechanism whereby dexamethasone affects type I procollagen gene transcription. The recombinant plasmid, pAZ1009, containing the mouse alpha 2(I) procollagen gene promoter linked to the chloramphenicol acetyltransferase gene, was transfected into mouse fibroblast cell lines. Cells transfected with the pAZ1009 plasmid in the presence of dexamethasone had a significant decrease in chloramphenicol acetyltransferase activity when compared to cells not exposed to dexamethasone. These data suggest that dexamethasone inhibits collagen synthesis through a direct effect on the collagen gene promoter and appears also to have a post-transcriptional effect on procollagen mRNA content.

Actins↗

Effects of changes in pulmonary perfusion and surface area on endothelial ACE activity.

Measurement of transport or enzymatic processes associated with pulmonary endothelial cells could provide unique information regarding the physiologic function of the microcirculation as well as data describing the biochemical integrity of these cells in acute lung injury. Since an important goal of such measurements is to quantify the kinetics of reactions of substrates (indicators) with the endothelium, it would be highly advantageous to account for (convective) phenomena related to blood flow and its distribution which also influence whole organ metabolism. In the present report, we describe studies that have utilized a nonlinear model of organ metabolism to estimate Vmax, the apparent maximal velocity and Km, concentration at one-half Vmax of angiotensin-converting enzyme (ACE) activity. Our hypotheses have been that (a) there is sufficient data to calculate apparent kinetic constants from indicator-dilution outflow curves after injection into the pulmonary circulation of a radiolabelled synthetic substrate for ACE, and (b) Vmax for ACE is a property related to the amount of enzyme located on the endothelial cells, and as such, should be directly proportional to perfused surface area of an organ. In isolated perfused rabbit lungs, when flow was increased over a two-fold range, but surface area was unchanged, neither Vmax nor Km for ACE activity was significantly altered. When indicator-dilution measurements of pulmonary ACE activity were made in lambs from 1-171 days of age there was a progressive increase in Vmax with no significant change in Km as a function of age. The increase in Vmax was closely correlated with an independent measure of surface area, carbon monoxide diffusing capacity, and a morphometric measure of capillary endothelial cell surface area (stereology at electron microscopic level) made at post-mortem. These experimental observations in whole organs support our hypotheses and predictions regarding the metabolism or removal of substrates from the circulation by means of a saturable process.

Animals↗

Proteoglycans and glycosaminoglycans induce gap junction synthesis and function in primary liver cultures.

Intercellular communication via gap junctions, as measured by dye and electrical coupling, disappears within 12 h in primary rat hepatocytes cultured in serum-supplemented media or within 24 h in cells in a serum-free, hormonally defined medium (HDM) designed for hepatocytes. Glucagon and linoleic acid/BSA were the primary factors in the HDM responsible for the extended life span of the electrical coupling. After 24 h of culture, no hormone or growth factor tested could restore the expression of gap junctions. After 4-5 d of culture, the incidence of coupling was undetectable in a serum-supplemented medium and was only 4-5% in HDM alone. However, treatment with glycosaminoglycans or proteoglycans of 24-h cultures, having no detectable gap junction protein, resulted in synthesis of gap junction protein and of reexpression of electrical and dye coupling within 48 h. Most glycosaminoglycans were inactive (heparan sulfates, chondroitin-6 sulfates) or only weakly active (dermatan sulfates, chondroitin 4-sulfates, hyaluronates), the weakly active group increasing the incidence of coupling to 10-30% with the addition of 50-100 micrograms/ml of the factor. Treatment of the cells with 50-100 micrograms/ml of heparins derived from lung or intestine resulted in cells with intermediate levels of coupling (30-50%). By contrast, 10-20 micrograms/ml of chondroitin sulfate proteoglycan, dermatan sulfate proteoglycan, or liver-derived heparin resulted in dye coupling in 80-100% of the cells, with numerous cells showing dye spread from a single injected cell. Sulfated polysaccharides of glucose (dextran sulfates) or of galactose (carrageenans) were inactive or only weakly active except for lambda-carrageenan, which induced up to 70% coupling (albeit no multiple coupling in the cultures). The abundance of mRNA (Northern blots) encoding gap junction protein and the amounts of the 27-kD gap junction polypeptide (Western blots) correlated with the degree of electrical and dye coupling indicating that the active glycosaminoglycans and proteoglycans are inducing synthesis and expression of gap junctions. Thus, proteoglycans and glycosaminoglycans, especially those found in abundance in the extracellular matrix of liver cells, are important in the regulation of expression of gap junctions and, thereby, in the regulation of intercellular communication in the liver. The relative potencies of heparins from different tissue sources at inducing gap junction expression are suggestive of functional tissue specificity for these glycosaminoglycans.

Animals↗

Mechanical properties and structure of isolated pulmonary arteries remodeled by chronic hyperoxia.

Normobaric hyperoxia is known to cause pulmonary hypertension with major restructuring of the walls of large and small pulmonary arteries. This study reports the effects of 21 days of exposure to 87% oxygen on the resting and active mechanical properties and structure of pulmonary arterial segments. Segments from the hilar region, extrapulmonary and proximal preacinar, and selected distal preacinar regions were studied. Resting and active (KCl-induced) tension:circumference curves were determined for each vessel. Morphometric measures were made of vessels fixed at a standard circumference using computerized planimetry. The areas of the media and adventitia as well as vessel wall thickness were increased in hyperoxic vessels. The walls of segments from the hypertensive rats demonstrated an increased stiffness based upon analysis of vessel resting tension:circumference relationships while the tangent modulus (a measure of stiffness normalized to tissue dimensions) was unchanged. Paradoxically, despite medial hypertrophy in the pulmonary vessels remodeled by hyperoxia, active tension was reduced. This study reveals that the resulting hypertensive state is not readily explained by an inherent increase in the maximal contractile capabilities of the remodeled vessel. Rather, obliteration of vessels in combination with increased resting stiffness appear to be the basis for pulmonary hypertension induced in hyperoxia.

Animals↗

von Willebrand factor abnormalities in primary pulmonary hypertension.

In primary pulmonary hypertension of recent clinical onset, pulmonary endothelial cells show injury. To characterize this phenomenon, we measured plasma von Willebrand factor (vWF) by immunologic and ristocetin cofactor assays in 6 patients with primary pulmonary hypertension, 17 patients with secondary pulmonary artery hypertension associated with congenital heart disease or cystic fibrosis, and 13 patients with congenital heart disease and normal pulmonary artery pressure. In selected cases, we also determined the vWF multimer pattern. In all 6 cases of primary pulmonary hypertension, the ristocetin cofactor activity was increased relative to the vWF antigen (vWF:Ag) concentration (a ratio of 2.55 +/- 0.36; normal range, 0.8 to 1.4); 4 of the 6 also had a similar and abnormal vWF multimer pattern--an increased proportion of the fastest moving bands. In the other 2, the multimer pattern was normal. Of the other 30 patients, a mild increase in ristocetin cofactor/vWF:Ag was seen in only 2 with secondary pulmonary hypertension and 1 with normal pulmonary artery pressure: these also had an abnormal vWF multimer pattern that was different from that observed in patients with primary pulmonary hypertension. The vWF abnormalities we describe in primary pulmonary hypertension offer a marker of the disease and could be helpful in understanding its pathogenesis.

Cystic Fibrosis↗

The effects of intrauterine pneumonectomy in lambs. A morphometric study of the remaining lung at term.

A morphometric study was made of the remaining lung of term lambs that had undergone left pneumonectomy at 60, 80, 100, or 120 days gestation. All pneumonectomy lambs showed some compensatory growth since right lung volume to body weight ratio was higher in all lambs after pneumonectomy than in term controls. In 3 lambs operated at 80, 100, and 120 days, respectively, however, compensatory volume increase was more complete than in the other lamb of each age pair or the 2 lambs operated at 60 days. Despite individual variation, the potential for compensatory lung growth seems greater in the canalicular and later stages than in the pseudoglandular. Measurements indicating distal air-space size (volume density of alveoli, volume density of alveolar duct, surface density of alveolar epithelium, numerical density of alveoli, and mean linear intercept) were similar in all animals, but total alveolar surface area and number increased proportionally to lung volume. The fact that the remaining lung compensates by increasing alveolar number rather than by enlarging air spaces is a model of human developmental abnormalities in which the alveolar number at birth is greater than normal (polyalveolar). At the intraacinar level, a higher than normal proportion of muscularized arteries was found in lambs operated early in gestation and in lambs with smaller compensatory lung growth: an inverse relationship was seen--the lower the lung volume the higher the proportion of muscular arteries. The cause for this is unknown, but may result from the relatively increased flow to a vascular bed smaller than that of two normal lungs.

Angiography↗

Effects of indomethacin in utero on the pulmonary vasculature of the newborn guinea pig.

The clinical syndrome of persistent pulmonary hypertension of the newborn results from failure of the normal perinatal vascular adaptation, and functionally is characterized by persistent right to left shunting of blood through the foramen ovale and ductus arteriosus. Exposure of the fetus to drugs that inhibit prostaglandin synthesis and cause closure of the ductus arteriosus has been suggested as one cause of persistent pulmonary hypertension of the newborn. We attempted to produce a functional and structural model of persistent pulmonary hypertension of the newborn by administration of indomethacin, a cyclooxygenase inhibitor, to pregnant guinea pigs. Five pregnant guinea pigs received 3.5 mg/kg indomethacin intravenously twice each day for the 12 to 19 days before delivery and seven controls received saline. Hemodynamic studies were performed in eight "treated" newborns and in 12 controls. After sacrifice, the ductus was ligated and, for morphometric studies, the pulmonary arteries were distended with barium/gelatin. The treated animals did not show the intraacinar structural or hemodynamic changes of persistent pulmonary hypertension of the newborn. It seems that the indomethacin did cross the placenta because lung structure was modified. The radical alveolar count and alveolar/artery ratio were increased and the preacinar arteries dilated, with more increase in muscle mass. This could be explained by increased pulmonary blood flow because of ductal constriction but direct effect of indomethacin cannot be excluded.

Animals↗

Constrictive and restrictive pulmonary hypertension in the newborn and infant.

The normal pulmonary circulation is constricted at birth and, as judged by its low arterial density, is relatively more restricted than in the older infant and child. During adaptation to air breathing, pulmonary arterial dilatation occurs rapidly, but also the compliance of the resistance arterial segment increases. In the fetus and newborn, the resistance segment is proximal to the respiratory or alveolar surface. Further expansion of the pulmonary vascular bed occurs by growth in size of lumen diameter of existing arteries and growth of new ones. Multiplication of alveoli and arteries is relatively dissociated--alveolar density can increase normally without normal vascular multiplication. Persistent pulmonary hypertension of the newborn occurs because of (1) lung hypoplasia associated with hypoplasia of the vascular bed, usually affecting both size and number of units, (2) abnormal muscularization of intraacinar arteries before birth, causing restriction of vascular volume, (3) failure of the adaptation programs, and (4) hyperreactivity. Immaturity of the circulation is apparent as hyperreactivity or "twitchiness": this can be superimposed on each of the other types. A hyperirritable vascular bed can cause a labile and then a fixed pulmonary hypertension that does not respond to dilators.

Humans↗

Pathophysiology of bronchial hypersecretion.

Density gradient ultracentrifugation has been used to analyse the lavage from the proximal intrapulmonary bronchi of normal human volunteers and of dogs. The secretion from explants of canine trachea and human lobar bronchi has been examined under basal conditions and after stimulation by secretagogues. Mucus from the hypersecretory airways has been obtained from tracheostomized patients and from a canine model of chronic bronchitis produced by exposure to SO2 gas. No macromolecule of density gradient typical of an epithelial glycoprotein was recovered from normal basal secretions: the glycoconjugate recovered was of higher density and has sugars typical of a proteoglycan. The explant produced typical epithelial glycoprotein if stimulated. As volume of secretion increases, macromolecular yield does also, both of epithelial glycoprotein and of a number of lipids that are synthesised by the airway and which are different from alveolar lipids.

Animals↗

Lipids in airway secretions.

Lipids form a significant portion of airway mucus yet they have not received the same attention that epithelial glycoproteins have. We have analyzed, by thin layer chromatography, lipids present in airway mucus under "normal" and hypersecretory (pathological) conditions. The 'normals' included (1) bronchial lavage obtained from healthy human volunteers and from dogs and (2) secretions produced "in vitro" by human (bronchial) and canine (tracheal) explants. Hypersecretory mucus samples included (1) lavage from dogs made bronchitic by exposure to SO2, (2) bronchial aspirates from acute and chronic tracheostomy patients, (3) sputum from patients with cystic fibrosis and chronic bronchitis and (4) postmortem secretions from patients who died from sudden infant death syndrome (SIDS) or from status asthmaticus. Cholesterol was found to be the predominant lipid in 'normal' mucus with lesser amounts of phospholipids. No glycolipids were detected. In the hypersecretory mucus, in addition to neutral and phospholipids, glycolipids were present in appreciable amounts, often the predominant species, suggesting that these may be useful as markers of disease. Radioactive precursors 14C acetate and 14C palmitate were incorporated into lipids secreted "in vitro" by canine tracheal explants indicating that they are synthesised by the airway.

Animals↗

Pulmonary artery structural changes in two colonies of rats with different sensitivity to chronic hypoxia.

Chronic hypoxia causes more severe pulmonary hypertension in the Hilltop colony of Sprague-Dawley rats than in the Madison colony and also greater polycythemia and vasoconstriction. This study examines the structural features of the pulmonary artery bed, another contributing factor to hypoxic hypertension. After 14 days of hypobaric hypoxia, in Hilltop rats, more of the intraacinar arteries became muscular, and the medial thickness of intraacinar and preacinar arteries was greater. In Hilltop control rats, muscle was found in more intraacinar arteries, but, paradoxically, acute hypoxic vasoconstriction was less. Thus, while in chronic hypoxia increased muscle correlates with pulmonary hypertension, in control rats the reserve seems to be true. The increased muscle in control Hilltop rats could, however, predispose to the greater muscularization seen after chronic hypoxia.

Animals↗

Effects of chronic in utero hypoxemia on rat neonatal pulmonary arterial structure.

Idiopathic persistent pulmonary hypertension of the newborn infant (PPHN) is characterized by intrauterine structural remodeling of the pulmonary arterial bed, consisting of precocious development of muscle in intraacinar arteries, proliferation of adventitial connective tissue, and sometimes medial hypertrophy of preacinar arteries. To evaluate whether gestational hypoxemia causes these changes, we studied pulmonary arterial structure in two groups of newborn rats: one control, the other exposed to hypoxemia produced by maternal hypoxia during the second half of gestation. Morphometric analysis of the pulmonary arterial bed was performed after barium injection into the pulmonary arteries and formol saline expansion of the air spaces. Birth weight was similar in each group. Hematocrit was elevated in the hypoxemia group (51% +/- 1.0% vs 46% +/- 0.8%, P less than 0.005). The structure of preacinar and intraacinar arteries was similar and normal in both groups. Chronic fetal hypoxemia in the rat does not produce the pulmonary arterial structural changes identified in fatal cases of PPHN in human infants.

Animals↗

Nuclear magnetic resonance spectroscopy of rat ventricles following supravalvar aortic banding. A model of left ventricular hypertrophy.

Left ventricular hypertrophy produced by supravalvar aortic banding in infant rats was studied by proton magnetic resonance spectroscopy. Weight gain at 11 weeks of age in the 11 male Sprague-Dawley rats with aortic bands placed at three weeks was similar to that of the 14 controls. The left ventricle of banded rats hypertrophied, increasing the ratio of left ventricle plus septum to body weight (LV + S/BW) by more than 50% (P less than .00001). Right ventricular weight (RV/BW) increased slightly (P less than .03). T1 and T2 relaxation times of LV + S, RV, and thigh muscle (Th) from the banded and control rats were compared. The T2 value distinguished hypertrophied from control LV + S (P less than .003), but not between RV or Th from the two groups. For banded rats only, the T2 value distinguished each muscle type: LV + S from RV, LV + S from Th, and RV from Th (P less than .00001 for each). For control rats, cardiac muscle was distinguished from Th (P less than .00001), but LV + S and RV were similar. The T1 value did not distinguish either the banded from the control group or any of the muscle types. Percent water content was similar for all tissues. Any correlation between water content and T1 or T2 was inconsistent or weak.

Animals↗