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Biomedical subjects

R Bascom

Publications and source records attributed to R Bascom.

At least 37 records · Page 2Linked to original sources

Effect of ozone inhalation on the response to nasal challenge with antigen of allergic subjects.

The effect of oxidant inhalation on allergic illness is of interest because allergic patients often report increased respiratory symptoms during episodes of poor air quality, and epidemiologic studies demonstrate an association between increased levels of the air pollutant ozone and exacerbations of asthma. The purpose of this study was to characterize the upper respiratory response to ozone inhalation in asymptomatic, allergic subjects and to determine whether ozone pre-exposure increased the acute response to nasal challenge with antigen in these subjects. A group of 12 asymptomatic subjects with a history of allergic rhinitis were exposed in a randomized, cross-over design, at rest, on each of 2 days, separated by 2 wk, to 4 h of clean air or 0.5 ppm ozone in an environmental chamber. Following the exposure period, subjects underwent nasal challenge with four doses of antigen (1 to 1,000 PNU ragweed or grass). Symptoms were rated and nasal lavage performed after each dose. Measurement of histamine and albumin concentration and TAME-esterase activity and determination of cell counts and differentials were performed. Exposure to ozone caused significant increases in upper and lower respiratory symptoms, a mixed inflammatory cell influx with a sevenfold increase in naval lavage neutrophils, a 20-fold increase in eosinophils, and a tenfold increase in mononuclear cells, as well as an apparent sloughing of epithelial cells. There was a significant increase in nasal lavage albumin concentration on the ozone exposure day and a small increase in nasal lavage histamine concentration on both the ozone and clean air exposure days. TAME-esterase activity showed no significant increase overall, but increased at least twofold in 5 of 12 subjects. (ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Inhalation↗

Leukotriene B4 as a mediator of early and late reactions to antigen in humans: the effect of systemic glucocorticoid treatment in vivo.

The role played by leukotriene B4 (LTB4) in human allergic reactions has been the subject of recent interest and speculation. To characterize further the role of this mediator, we quantitated LTB4 levels in nasal washing by radioimmunoassay in 13 atopic subjects during immediate and late reactions after nasal antigen challenge while the subjects were taking placebo or prednisone (20 mg every 8 hours for 48 hours) in a double-blind, placebo-controlled, crossover protocol and compared these levels with levels of seven nonatopic subjects undergoing similar nasal antigen challenge. Nasal antigen challenge of atopic subjects resulted in an increase in LTB4 levels during the immediate reaction in 10 of 13 subjects (9/13 with a greater than 50% increase over baseline) with no similar increase observed in nonatopic subjects (p less than 0.05). An increase in LTB4 levels was observed in 12/13 atopic subjects (6/13 with greater than 50% increase over a second baseline) during late time periods (p less than 0.05), which was associated with an influx of neutrophils (from 65,000 +/- 43,000 to 1,246,000 +/- 829,000; p less than 0.05). However, nonatopic subjects appeared to demonstrate a similar late increase in LTB4 levels. High-performance liquid chromatography analysis of immunoreactive LTB4 demonstrated that 84% of immunoreactive LTB4 coeluted with the biologically isomer during the immediate reaction, whereas 44% to 61% coeluted with the biologically active isomer during late reactions. Steroid pretreatment had no effect on either the early or late increase in LTB4 levels or on the neutrophil influx observed during the late reaction.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Major basic protein and eosinophil-derived neurotoxin concentrations in nasal-lavage fluid after antigen challenge: effect of systemic corticosteroids and relationship to eosinophil influx.

The late-phase response to nasal challenge with antigen is associated with a mixed inflammatory cell influx in which the eosinophil demonstrates the earliest and greatest proportionate rise. We investigated the evidence for activation of the eosinophil during the late response by measuring the concentration of the eosinophil-derived mediator major basic protein (MBP) and the eosinophil-derived neurotoxin (EDN) in nasal-lavage fluids before and for 11 hours after antigen challenge in 13 subjects with seasonal allergic rhinitis. The subjects received oral prednisone (20 mg three times daily) or placebo in a double-blind, crossover manner for 2 days before each of two antigen challenges. After placebo pretreatment, significant increases over diluent baseline (4.5 +/- 0.4 ng/ml) occurred in the levels of MBP in nasal-lavage fluid during the early (9.8 +/- 2.9 ng/ml; p less than 0.005) and late (15.3 +/- 4.8 ng/ml; p less than 0.01) responses to antigen challenge. Significant increases (p less than 0.05) in the concentration of EDN also occurred during the late response to antigen that correlated with the levels of MBP (r = 0.48; p less than 0.001). The cumulative late-phase increase in MBP correlated closely (rs = 0.96; p less than 0.005) with the total influx of eosinophils. Oral prednisone pretreatment significantly reduced the mean of each subject's peak late-phase concentration of both MBP (30.7 +/- 5.8 ng/ml versus 13.3 +/- 4.3 ng/ml; p = 0.005) and EDN (885 +/- 659 ng/ml versus 71 +/- 41 ng/ml; p less than 0.05). These data provide evidence for eosinophil degranulation during the late response and inhibition of this response by prednisone, supporting its pathogenetic role.

Blood Proteins↗

Acute pulmonary response in healthy, nonsmoking adults to inhalation of formaldehyde and carbon.

Formaldehyde (HCHO) is a common chemical found in occupational and residential environments and has been suggested as a cause of asthmalike symptoms in some individuals. Clinical and animal studies suggest that HCHO adsorbed on respirable particles may elicit a greater pulmonary physiologic and inflammatory effect than gaseous HCHO alone. The purpose of this study was to determine if respirable carbon particles have a synergistic effect on the acute symptomatic and pulmonary physiologic response to HCHO inhalation. We randomly exposed 24 normal, nonsmoking, methacholine-nonreactive subjects to 2 h each of clean air, 3 ppm formaldehyde, 0.5 mg/m3 respirable activated carbon aerosol, and the combination of 3 ppm formaldehyde plus activated carbon aerosol. The subjects engaged in intermittent heavy bicycle exercise (VE = 57 l/min) for 15 min each half hour. Measures of response included symptom questionnaires, spirometry, body plethysmography, and postexposure serial peak flows. Formaldehyde exposure was associated with significant increases in reported eye irritation, nasal irritation, throat irritation, headache, chest discomfort, and odor. We observed synergistic increases in cough, but not in other irritant respiratory tract symptoms, with inhalation of formaldehyde and carbon. Small (less than 5%) synergistic decreases in FVC and FEV3 were also seen. We observed no HCHO effect on FEV1; however, we did observe small (less than 10%) significant decreases in FEF25-75% and SGaw which may be indicative of increased airway tone. Overall, our results demonstrated synergism, but the effect is small and its clinical significance is uncertain.

Administration, Inhalation↗

Effect of nitrogen dioxide exposure on susceptibility to influenza A virus infection in healthy adults.

The effect of NO2 exposure and human susceptibility to respiratory virus infection was investigated in a placebo-controlled, randomized, double-blind trial conducted in an environmentally controlled research chamber over 3 yr. Healthy, nonsmoking, young adult volunteers who were seronegative to influenza A/Korea/82 (H3N2) virus were randomly assigned to breathe either filtered clean air (control group) or NO2 for 2 h/day for 3 consecutive days. The NO2 concentrations were 2 ppm (Year 1), 3 ppm (Year 2), and 1 or 2 ppm (Year 3). Live, attenuated cold-adapted (ca) influenza A/Korea/82 reassortant virus was administered intranasally to all subjects immediately after the second exposure. Only one of the 152 volunteers had any symptoms; this person had a low grade fever. Pulmonary function measurements and nonspecific airway reactivity to methacholine were unchanged after NO2 exposure, virus infection, or both. Infection was determined by virus recovery, a fourfold or greater increase in serum or nasal wash influenza-specific antibody titers, or both. The infection rates of the groups were 12/21 (2 ppm NO2) versus 15/23 (clean air) in Year 1, 17/22 (3 ppm NO2) versus 15/21 (clean air) in Year 2, and 20/22 (2 ppm) and 20/22 (1 ppm) versus 15/21 (clean air) in Year 3. Each group exposed to 1 or 2 ppm NO2 in the last year became infected more often (91%) than did the control group (71%), but the differences were not statistically significant.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Cyclooxygenase metabolism of endogenous arachidonic acid by cultured human tracheal epithelial cells.

The epithelial cell may contribute to the regulation of pulmonary function during inflammatory diseases of the airways by producing metabolites of arachidonic acid (AA). We have used human tracheal epithelial cells (HTE), grown in serum-free medium, to examine cyclooxygenase metabolism of endogenous AA by these cells. Gas chromatography-negative ion mass spectrometry demonstrated that, regardless of stimulus (buffer, bradykinin, or the calcium ionophore A23187), epithelial cells produce PGE2 and PGF2 alpha but no detectable levels of PGD2, thromboxane B2, 6-keto-PGF1 alpha, or 9 alpha, 11 beta-PGF2. Preincubation of cultures with medium containing 5% human serum led to striking increases in the production of PGE2 and PGF2 alpha, regardless of stimulus. Concomitant with these increases in prostanoids, serum exposure caused a 3.6-fold increase in total cellular arachidonate. Arachidonate levels increased in all phosphoglyceride classes, with the greatest increases in phosphatidylethanolamine, phosphatidylcholine, and phosphatidylinositol. In serum-pretreated cells, PGE2 production was 1.46 +/- 0.12, 4.74 +/- 0.6, and 6.35 +/- 0.93 ng/10(6) cells (mean +/- SEM; n = 7) upon exposure to buffer, 10(-6) M bradykinin, and 1 micrograms/ml A23187, respectively, whereas PGF2 alpha levels were 1.53 +/- 0.22, 4.44 +/- 0.36, and 5.77 +/- 0.78 ng/10(6) cells, respectively. The response of HTE to bradykinin was dose-dependent (10(-8) to 10(-6) M) and was maximal within 5 min. We conclude that cyclooxygenase metabolism of endogenous arachidonate in HTE results in the specific production of PGE2 and PGF2 alpha. HTE in culture retain receptors for bradykinin and can be used to study lipid metabolism independent of other cell types.

Adult↗

Experimentally induced nasal allergic responses.

To investigate the pathogenesis of allergic rhinitis, we developed a nasal challenge model in which we examined the early, late, and rechallenge responses to antigen provocation. In these three aspects of the allergic reaction the physiologic responses are associated with inflammatory mediator release. Whereas the early response appears to be related mainly to mast cell activation and mediator release, the late reaction involves a different pattern of mediator release and an inflammatory cell influx, consisting of basophils, neutrophils, and eosinophils. Rechallenge with antigen 11 hours later results in an augmented immediate response. Pretreatment with aspirin reduces the levels of cyclooxygenase metabolites in nasal secretions without affecting the immediate physiologic response to antigen or the expected increase in the levels of histamine, N-alpha-tosyl-L-arginine methyl ester-esterase activity, and leukotriene C4. Pretreatment with systemic steroids does not affect the early allergic response, but significantly reduces mediator release during the late and rechallenge responses. The influx of eosinophils is inhibited by pretreatment with systemic steroids, but neutrophil influx is not. In contrast, pretreatment with topical steroids blocks the early response and the late and rechallenge responses. Influx of all cell types, including the neutrophil, was prevented. These studies show unequivocally that an inflammatory process follows the initial response to antigen and that this inflammation is affected by drugs important in the treatment of chronic allergic disease. We speculate that understanding allergic inflammation will lead to new therapeutic development.

Antigens↗

Studies on the allergic and nonallergic nasal inflammation.

Nasal lavage after antigenic and nonantigenic nasal stimulation has become an important tool for the study of inflammatory phenomena in the upper airway. Biochemical and cytologic information is relatively easily obtainable, and pharmacologic manipulations can be readily monitored. This article is of several studies aiming toward a more profound understanding of the mechanisms of allergic and nonallergic rhinitis by the use of laboratory-challenge procedures and nasal-lavage techniques. An early and a late reaction are detected clinically in the nose after antigen challenge of allergic individuals. In addition, the sensitivity to antigen significantly increases after the initial challenge, and this phenomenon is not obligatorily linked to the presence of a late-phase reaction (LPR). Inflammatory mediators, mostly mast cell- and/or basophil-derived, are detected in the nasal washes and correlate with the symptomatology in both the early and the late reactions. The allergen-induced LPR is marked by an early influx of eosinophils and, later, basophils and neutrophils. Elevation of major basic protein and histamine, but not prostaglandin D2, is detected during the LPR, giving evidence of active eosinophil and basophil participation. Systemic steroids can effectively suppress the clinical, biochemic, and cellular manifestations of antigen-induced LPR. Topical steroids have a similar effect but are also capable of suppressing the early reaction to antigen. A nonallergic form of rhinitis can be induced in the laboratory by nasal inhalation of dry air at freezing temperatures in individuals who report sensitivity to cold and windy environments.(ABSTRACT TRUNCATED AT 250 WORDS)

Environmental Exposure↗

The influx of inflammatory cells into nasal washings during the late response to antigen challenge. Effect of systemic steroid pretreatment.

Previous studies have demonstrated symptoms and mediator release occurring as long as 11 h after nasal challenge with antigen in selected allergic subjects. Pretreatment with systemic steroids reduced symptoms and mediators including histamine, TAME-esterase activity, and kinins. The aims of the present study were to characterize the cell influx during the late-phase response to antigen challenge and to determine the effect of pretreatment with systemic steroids on this response. We examined cytospin slides of nasal washings obtained before and hourly for 11 h after nasal antigen challenge in 10 asymptomatic allergic subjects with a history of seasonal rhinitis and 5 normal, nonallergic subjects. Allergic subjects received oral prednisone (20 mg 3 times a day) or placebo in a random, double-blind crossover manner for 2 days before each of 2 challenges 1 month apart. On placebo days, a mixed cell influx occurred in allergic subjects during the late response that was 50-fold greater than the cell influx in the nonallergic control subjects (p less than 0.005). During the first 3 h after antigen challenge, eosinophils (p less than 0.005), but not neutrophils or mononuclear cells, were observed. During the late phase (4 to 11 h), neutrophils, eosinophils, and mononuclear cells were all increased. Oral steroid pretreatment blocked the influx of eosinophils (p less than 0.005), but not that of other cells. These data demonstrate an inflammatory cell influx associated with the nasal late-phase response and suggest an important pathogenetic role for the eosinophil.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗

Eosinophilia, respiratory symptoms and pulmonary infiltrates in rubber workers.

This report describes a spectrum of respiratory illnesses associated with eosinophilia which occurred in a group of workers exposed to fumes from a synthetic rubber-based curing operation. Respiratory syndromes induced by this exposure included an acute sensitizing illness with dyspnea and wheezing in some workers and pulmonary infiltrates with eosinophilia in others. Another worker developed chronic obstruction of the airways with recurrent bronchitic illnesses. Mild to marked peripheral eosinophilia, up to 3,000/cu mm, was usually present in the symptomatic workers and in 11 of 30 asymptomatic workers. These cases illustrate the diversity of respiratory illnesses which may result from a common workplace exposure and reinforce the importance of considering occupational exposures in the differential diagnosis of peripheral eosinophilia.

Acute Disease↗

Basophil influx occurs after nasal antigen challenge: effects of topical corticosteroid pretreatment.

Both the pattern of mediator release during the late-phase response (LPR) and the reduction of the LPR with corticosteroid pretreatment have suggested that basophils, not mast cells, represent the main source of histamine in the late response to nasal antigen challenge. We tested this hypothesis by examining alcian blue-stained cytospin slides of nasal washings obtained before and for 11 hours after nasal antigen challenge in 11 asymptomatic subjects with seasonal allergic rhinitis. In a double-blind manner, subjects received placebo or topical flunisolide (50 micrograms, each nostril, twice daily) for 1 week before antigen challenge. One month later, the challenge was repeated with the alternate pretreatment. On placebo-treatment days, a twelve-fold increase occurred in the number and a threefold increase in the percentage of alcian blue-stained positive cells in nasal washings in the LPR compared to baseline. At least 68% of these alcian blue-stained positive cells were basophils, as determined by light microscopic criteria. Alcian blue-stained cell influx correlated with increases in histamine levels in nasal washes (p less than 0.001). Topical steroid pretreatment blocked the influx of alcian blue-stained positive cells, as well as other inflammatory cells, including eosinophils, neutrophils, and mononuclear cells. Symptoms and mediator release were also blocked. These data demonstrate an influx of basophils and suggest that these cells are responsible for the histamine release observed in the LPR. Our findings indicate that pharmacologic control of basophil histamine release may represent a strategy for the treatment of a variety of chronic allergic diseases that are believed to resemble the LPR.

Administration, Topical↗

Acute response to 3.0 ppm formaldehyde in exercising healthy nonsmokers and asthmatics.

Formaldehyde is an ubiquitous industrial and indoor air pollutant to which millions are daily exposed. Because of the paucity of scientific data concerning the inhalation toxicity of this compound in humans, we determined the symptoms and alterations in pulmonary function resulting from inhalation for 1 h of 3 parts per million formaldehyde in a controlled environmental chamber. The protocol consisted of randomized exposure of each subject to clean air or 3.0 ppm HCHO on 2 separate days. Twenty-two healthy normal subjects engaged in intermittent heavy exercise (VE = 65 L/min) and 16 asthmatic subjects performed intermittent moderate exercise (VE = 37 L/min). Symptoms and pulmonary function were assessed during the time course of exposure; nonspecific airway reactivity was assessed after exposure. Both groups exhibited similar, significant (p less than 0.01) increases in perceived odor, nose/throat irritation, and eye irritation throughout the exposure. The normal group had the following statistically significant (p less than 0.02) lower pulmonary functions after 55 min of exposure to formaldehyde as compared to clean air: 3.8% in FEV1, 2.6% in FVC, and 2.8% in FEV3. The asthmatic group showed no statistically significant decrements in pulmonary function. Five of 38 subjects studied had decrements in FEV1 greater than 10%. In conclusion, acute exposure to 3 ppm HCHO produced: consistent irritant symptoms in both normal and asthmatic subjects, small decreases in pulmonary function in normal subjects engaging in heavy exercise, and clinically significant responses (defined here as decrements in FEU1 greater than 10) in 13% of the study population.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Peripheral eosinophilia and respiratory symptoms in rubber injection press operators: a case-control study.

To evaluate a suspected association between an outbreak of acute respiratory illness and eosinophilia and employment as a rubber worker, we performed a retrospective review of medical records of rubber workers employed from September 1983 to July 1984 in a plant housing a thermoinjection process. Twenty-five workers met the case definition of a respiratory illness requiring a physician visit. The predominant respiratory illness was acute in onset with cough, chest tightness, and dyspnea. Peripheral eosinophilia, up to 40% of white blood cells in a peripheral smear, was seen in 10 of 18 (56%) cases. Twenty-one of 25 white males with respiratory symptoms were employed in the thermoinjection process (odds ratio = 22, p less than .001). Smoking and employment in this process contributed independently to an increased risk of being a case as determined by a logistic regression analysis. Return to the plant building caused recurrence of symptoms in most cases, and these workers have been transferred or left the company. We conclude that a strong previously unrecognized association exists between employment in this neoprene rubber thermoinjection process and the development of an acute respiratory illness.

Adult↗

Bronchoconstriction induced by distilled water. Sensitivity in asthmatics and relationship to exercise-induced bronchospasm.

We studied the ability of bronchial challenge with an ultrasonically produced, distilled water aerosol to detect airways hyperreactivity in asthmatics and also evaluated its relationship to exercise-induced bronchoconstriction. Fifteen asthmatics and 10 normal subjects inhaled, at room temperature, distilled water aerosol in increasing concentrations. On a separate day, each subject performed a standard methacholine challenge. On the third day, all asthmatics exercised on a treadmill for 6 min at 90% maximal heart rate while breathing room-temperature, dry air. Pulmonary mechanics (FEV1 and SGaw) were measured before and after each challenge. Seven of the asthmatics and all of the normal subjects did not react to challenge with distilled water. Distilled-water challenge caused a 20% decrease in FEV1 in only 53% (8 of the 15) asthmatics, whereas all of the asthmatics reacted to methacholine challenge with a 20% fall in FEV1. Thus, distilled water was not a sensitive challenge procedure for the detection of airways hyperreactivity in asthma and it cannot be used as a routine screening test. However, in the asthmatics, the response to distilled water challenge correlated significantly with the response to exercise (r = 0.81, p less than 0.001). Seven asthmatics were reactive to both exercise and water, 7 were reactive to neither exercise nor water, and 1 reacted to water but not to exercise. Cromolyn completely or partially blocked both distilled-water- and exercise-induced bronchospasm in the reactive asthmatics.(ABSTRACT TRUNCATED AT 250 WORDS)

Aerosols↗

Specific bronchoalveolar lavage IgG antibody in hypersensitivity pneumonitis from diphenylmethane diisocyanate.

We evaluated a patient for dyspnea, fever, malaise, and hypoxemia that developed after exposure to diphenylmethane diisocyanate (MDI). Specific inhalation challenge with MDI caused fever, leukocytosis, a restrictive decline in forced vital capacity, and a decrease in Pao2 several hours after challenge. Bronchoalveolar lavage 24 h after challenge showed lymphocytic alveolitis. Specific IgG antibodies to MDI human serum albumin (MDI-HSA) conjugate were demonstrated in serum and bronchial lavage fluid using the enzyme-linked immunoabsorbent (ELISA) technique. These findings suggest participation of both humoral and cellular immunity in the pathogenesis of hypersensitivity pneumonitis from isocyanate exposure.

Alveolitis, Extrinsic Allergic↗

Muscle relaxation in mechanically ventilated infants.

We evaluated the effect of muscle paralysis on gas exchange and incidence of pneumothorax in 35 severely ill infants on mechanical ventilation. Pancuronium (0.1 mg/kg) was given repeatedly until spontaneous respirations ceased in infants with inadequate gas exchange with FIO2 greater than 0.60, or peak inspiratory pressure greater than 30 cm H2O, or who were breathing out of phase with the respirator. Of 27 infants who had an alveolar-arterial oxygen gradient greater than 300 torr before paralysis, AaDO2 improved by greater than 100 torr within one hour of paralysis in only two infants; it worsened in two infants within the same period. By six hours postparalysis, 12 of 27 infants had improved, five of whom had had a worsening AaDO2 before administration of pancuronium. Changes in oxygenation were unrelated to changes in arterial carbon dioxide tension in most infants. Peak transpulmonary pressures after paralysis were lower than during spontaneous breathing, and may explain the low incidence of pneumothorax (3 of 35) during paralysis. Since those who improved could not be distinguished by birth weight, gestational age, or diagnosis, pancuronium might be worthy of trial in a mechanically ventilated infant with severe lung disease who is at risk for pneumothorax.

Carbon Dioxide↗