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Biomedical subjects

D D Stevenson

Publications and source records attributed to D D Stevenson.

At least 19 recordsLinked to original sources

Aspirin desensitization treatment of aspirin-sensitive patients with rhinosinusitis-asthma: long-term outcomes.

BACKGROUND: Aspirin-sensitive patients with asthma experience continuous inflammation of their nasal and sinus tissues, complicated by recurrent sinusitis, which frequently leads to asthma attacks. Systemic corticosteroid therapy and sinus or polyp surgery are currently required to control underlying rhinosinusitis, and bursts of corticosteroids are used for asthma control. OBJECTIVE: After aspirin desensitization therapy, objective measures of respiratory disease activity, linked to the need for systemic corticosteroids and sinus surgery, were studied to determine whether any changes occurred. METHODS: Sixty-five aspirin-sensitive patients with asthma underwent aspirin challenge, followed by aspirin desensitization and daily treatment with aspirin over 1 to 6 years (mean, 3.1 years). Clinical outcome measurements before aspirin desensitization treatment and during follow-up were analyzed for the larger group of 65 patients and subgroups (29 patients receiving therapy for 1 to 3 years and 36 patients receiving therapy for 3 to 6 years). RESULTS: In the larger group of 65 patients, there were significant reductions in numbers of sinus infections per year (median, 6 to 2), hospitalizations for treatment of asthma per year (median, 0.2 to 0), improvement in olfaction (median, 0 to 2), and reduction in use of systematic corticosteroids (mean, 10.2 to 2.5 mg) with p values less than 0.0001. Numbers of sinus and polyp operations per year were significantly reduced (median, 0.2 to 0; p = 0.004), and doses of nasal corticosteroids (in micrograms) were significantly reduced (mean dose, 139 to 106 micrograms, p = 0.01). Emergency department visits and use of inhaled corticosteroids were unchanged. CONCLUSIONS: The results support a role for aspirin desensitization treatment of aspirin-sensitive patients with rhinosinusitis-asthma.

Adult

Osteonecrosis of the femoral head in patients with inflammatory arthritis or asthma receiving corticosteroid therapy.

The utilization of corticosteroids in the management of acute and chronic inflammatory processes, such as asthma or inflammatory arthritis, has been implicated in the adverse effects of multiple organ systems. One potential area of these negative consequences in the use of corticosteroids is the development of osteonecrosis of the femoral head. A direct time/dosage relationship for treatment with corticosteroids of patients with an established diagnosis of asthma or inflammatory arthritis and femoral osteonecrosis is unknown. A prospective study was undertaken to evaluate the use of corticosteroids and the incidence of osteonecrosis of the femoral head and potentially establish a time/dosage relationship in this patient population. No direct relationship between corticosteroid dosage and the development of femoral head osteonecrosis in 1420 hip-years was demonstrated at 10-year follow up.

Adrenal Cortex Hormones

Inhibition of monocyte leukotriene B4 production after aspirin desensitization.

Aspirin-sensitive patients may be desensitized through a graded series of exposures to aspirin. We investigated the underlying mechanism of aspirin desensitization by measuring the release of leukotrienes B4 and C4 from calcium ionophore-stimulated peripheral blood monocytes. Compared with monocytes from normal volunteers (n = 5), monocytes from patients with aspirin-sensitive asthma (n = 10) released increased amounts of thromboxane B2 (1060 +/- 245 pg/ml vs 456 +/- 62 pg/ml), leukotriene B4 (861 +/- 139 pg/ml vs 341 +/- 44 pg/ml), and leukotriene C4 (147 +/- 31 pg/ml vs 56 +/- 6 pg/ml) at baseline. After aspirin desensitization, thromboxane B2 release was almost completely suppressed in both groups. Leukotriene B4 release was significantly decreased in the aspirin-sensitive group (484 +/- 85 pg/ml) but not in the normal subject group (466 +/- 55 pg/ml). The need for prednisone decreased significantly after patients were desensitized to aspirin (10.4 +/- 2.2 mg/day to 1.6 +/- 2.8 mg/day). These results demonstrate that desensitization to aspirin results in decreased monocyte leukotriene B4 release. On the basis of the bronchospastic and inflammatory potential of leukotrienes, the decrease in leukotriene release may contribute to the clinical improvement seen after aspirin desensitization.

Adult

Prevalence of cross-sensitivity with acetaminophen in aspirin-sensitive asthmatic subjects.

OBJECTIVE: Cross-sensitivity between aspirin and acetaminophen in aspirin-sensitive asthmatic patients has been reported with frequencies ranging from 0% to 29%. The relationship is dose-dependent for acetaminophen challenges, ranging between 300 and 100 mg. METHODS: To determine the prevalence of cross-sensitivity to high-dose acetaminophen, we performed single-blind acetaminophen oral challenges with 1000 mg and 1500 mg in 50 aspirin-sensitive asthmatic patients and in 20 non-aspirin-sensitive asthmatic control subjects. RESULTS: Overall, 17 of 50 (34%) of aspirin-sensitive asthmatic patients reacted to acetaminophen in doses of 1000 to 1500 mg (95% confidence interval: 20% to 49%). By contrast, none of the 20 non-aspirin-sensitive asthmatic patients reacted to acetaminophen (95% confidence interval: 0% to 14%). This difference was highly significant (p = 0.0013), supporting the hypothesis that cross-sensitivity between aspirin and acetaminophen is unique in aspirin-sensitive asthmatic patients. CONCLUSION: Although high-dose ( > 1000 mg) acetaminophen cross-reactions with aspirin were significant with respect to frequency (34%), such reactions included easily reversed bronchospasm in only 22%, and were generally mild. We recommended that high doses of acetaminophen (1000 mg or greater) should be avoided in aspirin-sensitive asthmatic patients.

Acetaminophen

Hydrocortisone sodium succinate does not cross-react with aspirin in aspirin-sensitive patients with asthma.

BACKGROUND: Bronchospasm after intravenous hydrocortisone treatment has been reported in some patients with aspirin-sensitive respiratory disease. OBJECTIVE: This study was designed to determine the prevalence of sensitivity to hydrocortisone among patients with aspirin-sensitive respiratory disease. METHODS: We performed double-blind, placebo-controlled challenges with aspirin and 100 mg of hydrocortisone sodium succinate administered intravenously in 53 subjects. RESULTS: Forty-five of the 53 subjects (85%) undergoing oral aspirin challenge experienced respiratory reactions to aspirin. Forty-four of these 45 patients had neither naso-ocular, cutaneous, nor respiratory reactions to hydrocortisone sodium succinate. One aspirin-sensitive subject had bronchospasm and a naso-ocular reaction to hydrocortisone sodium succinate and a naso-ocular reaction with minimal bronchospasm to methylprednisolone sodium succinate. After desensitization to aspirin, and while receiving maintenance aspirin therapy, this subject again reacted to hydrocortisone sodium succinate with bronchospasm and naso-ocular reaction. CONCLUSION: We conclude that aspirin-sensitive patients with asthma are not preferentially sensitive to hydrocortisone and that hydrocortisone sodium succinate does not cross-react or cross-desensitize with aspirin.

Adult

Recognition of T cell epitopes and lymphokine secretion by rye grass allergen Lolium perenne I-specific human T cell clones.

T cell lines (TCL) and CD4+ T cell clones (TCC) with specificity for the rye grass allergen Lolium perenne (Lol p) I were isolated from the blood of nine donors, six having active atopic disease, two being in remission, and one having IgE anti-Lol pI Abs but not atopic disease. The T cell epitopes of Lol pI were determined by TCLs and TCCs reactivity with 23 overlapping, 20 amino acid-long peptides spanning the entire length of the 230 amino acid-long allergen. In addition, the Th subsets (Th1, Th2, Th0, Thp) were determined by measuring IL-2, IFN-gamma, and IL-4 in the supernatants of TCC activated with Lol pI and irradiated APC. TCC from individuals from which a large panel of clones were obtained from 10(5) PBMC initial cultures recognized multiple peptides (5-9) and 23 overlapping peptides a total of 16 were recognized by at least one TCC from one of the patients. These 16 peptides were derived from all areas of the Lol pI molecule, indicating the ability of human Th cells to recognize many peptide epitopes on Lol pI. Although no clear cut immunodominant peptides were detected, T cell clones of 50% of the patients reacted with peptide 191-210. There was no correlation between peptide epitope reactivity and lymphokine secretion pattern of the TCC. Of 12 TCC obtained from six patients with active atopic disease, four (33%) were of Th1, five (42%) of Th2, one (8%) of Thp, and two (17%) of Th0 type. Of 14 TCCs isolated from three atopic donors in remission, five (36%) were of Th1, three (21%) of Th2, four (29%) of Thp, and two (14%) of Th0 type. The data demonstrate that T cells from rye grass pollen allergic patients can recognize multiple peptide epitopes on Lol pI scattered over the entire molecule. No correlation existed between epitope reactivity and lymphokine secretion pattern of the TCC.

Adolescent

Arachidonic acid metabolism in monocytes of aspirin-sensitive asthmatic patients before and after oral aspirin challenge.

Aspirin and nonsteroidal antiinflammatory drugs induce bronchospastic reactions in patients with aspirin-sensitive respiratory disease. Although the mechanism of this reaction is unknown, all drugs that induce the respiratory reaction also inhibit the cyclooxygenase enzyme. The ensuing changes in arachidonate metabolism are presumed to play a role in the pathogenesis of the reaction. We measured generation of leukotrienes and thromboxane by calcium ionophore stimulated blood monocytes. Before aspirin challenge, monocytes released significantly more thromboxane B2 in patients with aspirin sensitivity than in patients without aspirin sensitivity or in healthy control subjects (p < 0.02). During aspirin-induced bronchospasm, release of leukotriene B4 increased significantly (45.5%, p = 0.018), whereas release of thromboxane B2 decreased (-46.9%, p = 0.028). Two hours after ingestion of 60 mg aspirin, normal monocyte release of thromboxane B2 did not drop, whereas leukotriene B4 release increased. Monocytes formed only minimal amounts of leukotriene C4. We conclude that the profile of released eicosanoids from aspirin-sensitive monocytes is distinct from non-aspirin-sensitive subjects, and that these differences could contribute to the development of bronchospasm after aspirin ingestion.

Administration, Oral

Flurbiprofen (Ansaid) cross-sensitivity in an aspirin-sensitive asthmatic patient.

Flurbiprofen (Ansaid) is a newly released nonsteroidal antiinflammatory drug (NSAID) that is a potent inhibitor of prostaglandin synthesis. We report the first case (to our knowledge) of a flurbiprofen-induced asthmatic reaction confirmed by single-blind oral challenges. Cross-sensitivity and cross-desensitization between aspirin (ASA) and flurbiprofen were also demonstrated in this patient with rhinosinusitis and asthma, thus reinforcing the observation that NSAIDs capable of cyclooxygenase inhibition crossreact with ASA in producing characteristic respiratory reactions.

Aspirin

Tryptase and histamine release during aspirin-induced respiratory reactions.

The involvement of mast cells in the pathogenesis of aspirin (ASA)-induced respiratory reactions was investigated by measuring serum levels of tryptase, a neutral protease that is a specific marker of mast cell activation. ASA challenges were performed in 17 ASA-sensitive patients with asthma and rhinosinusitis, and tryptase and histamine levels were measured in their venous blood samples. In three subjects who experienced moderate to severe respiratory reactions extending to the skin and/or gastrointestinal tract, marked elevations of tryptase levels in postreaction serum samples (peak levels, 51.9 and 40.0 ng/ml) were discovered in two of these three subjects, and a small elevation of tryptase occurred in the serum of the third subject (3.1 ng/ml peak). Plasma histamine levels in postreaction samples were significantly elevated over baseline values in all three subjects (delta mean plasma histamine, 238 pg/ml versus 56 pg/ml for the remaining 14 subjects; p less than 0.04). In the remaining 14 subjects, who experienced similar respiratory reactions without extrapulmonary symptoms during aspirin challenge, changes in tryptase and histamine levels were not observed.

Administration, Oral

Aspirin sensitivity. A distressing reaction that is now often treatable.

Aspirin-induced hypersensitivity affects a substantial number of people, including 20% or more of asthmatic patients. A dramatic flare of symptoms occurs after indigestion of aspirin or a nonsteroidal anti-inflammatory drug, and symptoms can persist even after the agent is discontinued. Fortunately, aspirin desensitization, as described by the authors, now appears to be a treatment option.

Aspirin

Safety and possible efficacy of fiberoptic bronchoscopy with lavage in the management of refractory asthma with mucous impaction.

Mucous impaction may be suspected in asthmatic exacerbation when, despite aggressive medical management, patients continue to produce sputum containing mucous plugs and exhibit prominent rhonchi and/or wheezes on chest auscultation. Spirometric measurements in this setting corroborate lack of improvement and reveal significant impairment in indices that may reflect small airways function (FEF25-75). We hypothesized that clearance of inspissated secretions by fiberoptic bronchoscopy with lavage (FOBwL) may promote or hasten the clinical improvement of such patients. Fifty-one therapeutic FOBwL were accomplished in 19 patients during 20 episodes of stabilized yet refractory asthma with mucous impaction. No significant complications were encountered. After FOBwL, spirometric measurements of FEV1, FEF25-75, and FVC increased significantly (P less than .01, paired t test), and correlated with relief of dyspnea and mobilization of secretions with cough. FOBwL can be safely performed in stabilized, refractory asthma, and with apparent efficacy. Further investigation is needed to document the therapeutic utility of FOBwL in refractory asthma.

Adult

Long-term effects of aspirin desensitization--treatment for aspirin-sensitive rhinosinusitis-asthma.

One hundred seven known aspirin (ASA)-sensitive patients with rhinosinusitis-asthma were studied from 1975 to 1988. Forty-two of the patients avoided ASA and served as the control group. Thirty-five patients were desensitized to ASA and treated with daily ASA treatment (Rx) for as long as 8 years (mean, 3.75 years) to May 1988 and were designated the continuous group. Thirty patients, initially desensitized to ASA and treated with daily ASA, who stopped Rx permanently after a mean duration of 2 years, were designated the discontinued group. Retrospective analyses of baselines revealed that both continuous and discontinued groups during ASA Rx demonstrated statistically significant reduction in number of hospitalizations per year, emergency room visits per year, outpatient visits per year, upper respiratory infections-sinusitis-antibiotics per year, need for nasal polypectomies and additional sinus operations, and improvement in sense of smell compared to the control group. Simultaneously, the ASA-Rx groups were able to significantly reduce systemic corticosteroid dosage, corticosteroid bursts per year, and, in the continuous group only, significantly reduce inhaled corticosteroids. All three groups maintained control of respiratory symptoms. ASA desensitization followed by long-term daily ASA Rx appears to improve ASA-sensitive rhinosinusitis-asthma and concomitantly allows reduction of systemic corticosteroids.

Adrenal Cortex Hormones

Salsalate cross-sensitivity in aspirin-sensitive patients with asthma.

Ten aspirin (ASA)-sensitive patients with asthma underwent double-blind, placebo-controlled oral challenges with salsalate followed by ASA-sensitive confirmatory challenges. All 10 patients sustained asthmatic reactions to ASA, but only two developed respiratory reactions to 2 gm of salsalate. In these two patients, repeat confirmatory challenges with 2 gm of salsalate reproduced the same asthmatic reactions. Both patients were desensitized to ASA, and cross-desensitization with 2 gm of salsalate was then achieved. We conclude that salsalate, a weak inhibitor of cyclooxygenase in vitro, is less likely than ASA to induce asthma in known ASA-sensitive patients with asthma but may occasionally cross-react in these patients. Such reactions were mild and easily treated with beta 2-agonists.

Acetaminophen

Cross sensitivity with acetaminophen in aspirin-sensitive subjects with asthma.

Drugs inhibiting cyclooxygenase regularly cross-react with aspirin (ASA). Although some experiments suggest that acetaminophen (ACETM) is a weak inhibitor of cyclooxygenase in certain tissues, it has not been studied in human lung tissue, and controversy exists whether or not true cross-reactivity occurs between ASA and ACETM. Three ASA-sensitive subjects with asthma, who gave a history of reactions to ACETM, underwent double-blind, placebo-controlled challenges and reacted to 1000 mg of ACETM with a greater than 20% fall in FEV1. Two patients were desensitized to ASA and then were rechallenged with 1000 mg of ACETM without reaction. Two patients were desensitized to increasing doses of ACETM, achieving refractoriness to 1500 mg, but not 2000 mg. Thus, cross sensitivity between ASA and ACETM was documented when large challenge doses (1000 mg) of ACETM were used. Furthermore, cross desensitization suggests that in ASA-sensitive subjects with asthma, similar mechanisms are likely to be responsible for reactions to ASA, nonsteroidal anti-inflammatory drugs, and ACETM.

Acetaminophen

Release of leukotrienes, prostaglandins, and histamine into nasal secretions of aspirin-sensitive asthmatics during reaction to aspirin.

The levels of leukotriene C4 (LTC4), leukotriene B4 (LTB4), prostaglandin E2 (PGE2), and histamine were measured in nasal lavage fluids obtained from aspirin-sensitive, desensitized aspirin-sensitive, and aspirin-insensitive asthmatics and normal volunteers before and after ingestion of aspirin. Increased levels of LTC4 and histamine were associated with significant decreases in the FEV1 for 3 of 4 aspirin-sensitive asthmatics who had both naso-ocular and bronchospastic reactions to aspirin. In contrast, no increase in LTC4 or histamine release was detected in aspirin-sensitive asthmatics who had only bronchospastic reactions to aspirin. No significant decreases in PGE2 levels or increases in LTB4 levels were detected during these reactions to relatively low doses of aspirin regardless of the clinical symptoms, nor was any increase in mediator release apparent in lavage fluids from normal donors, aspirin-insensitive asthmatics, and desensitized aspirin-sensitive subjects before or after various doses of aspirin. Levels of PGE2 decreased in nasal secretions from normal volunteers, aspirin-insensitive asthmatics, and desensitized aspirin-sensitive subjects after ingestion of 650 mg of aspirin. These decreases were not associated with increased LTC4 or LTB4 or with histamine release, decreased FEV1, or naso-ocular symptoms. In addition, reductions of PGE2 release were similar for normal and desensitized aspirin-sensitive volunteers (63 +/- 11 versus 61 +/- 10%, respectively). The data demonstrate that LTC4 and histamine are released into nasal secretions of aspirin-sensitive asthmatics with naso-ocular and bronchospastic reactions after ingestion of low doses of aspirin without a decrease in the levels of PGE2 and suggest that LTC4 and histamine contribute to the naso-ocular and bronchospastic symptoms characteristic of reactions to aspirin.

Adult