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Biomedical subjects

A Knox

Publications and source records attributed to A Knox.

At least 19 recordsLinked to original sources

Cattle identification.

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Animal Identification Systems↗

Improving prevention systems in primary care practices: the Health Education and Research Trial (HEART)

BACKGROUND: The Health Education and Research Trial (HEART) was a multicenter clinical trial designed to test methods to improve primary care practice systems for heart disease prevention services. We present the trial methodology, the practices' use of medical record tools, and changes in documentation of cardiovascular risk factor screening and management. METHODS: Primary care practices were recruited from 4 Midwestern states. The factorial design resulted in 4 study groups: conference only, conference and quality improvement consultations, conference and prevention coordinator, and all interventions combined. Medical record audits and physician, staff, and patient surveys assessed practice change in cardiovascular disease risk factor documentation. RESULTS: Practices participated fully in this project, set goals to improve preventive services, and implemented recommended medical record tools. The number of goals set and the increase in the use of medical record tools were greatest in the combined intervention group, with improvements noted in all groups. The use of patient history questionnaires, problem lists, and flow sheets was significantly higher in the combined intervention group when compared with the conference-only group. Documentation of risk factor screening in a recommended-medical record location improved in all intervention groups, with significant sustained improvements in the practices that received the combined intervention. Documented risk factor management significantly improved in all intervention groups compared with the conference-only control. CONCLUSION: Primary care practices are interested in improving prevention systems and can change these systems in response to supportive external interventions. Promoting organizational change to produce sustained improvement in preventive service clinical outcomes is a complex process that requires further research.

Adult↗

Cattle identification.

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Animal Identification Systems↗

Autocrine production of matrix metalloproteinase-2 is required for human airway smooth muscle proliferation.

Airway smooth muscle proliferation is important in asthma and is dependent on pro- and antimitogenic factors and cell-matrix interactions. Here we show an antiproliferative effect of protease inhibitors on human airway smooth muscle due to inhibition of autocrine-derived matrix metalloproteinase (MMP)-2. Proliferation in response to fetal bovine serum, thrombin, and platelet-derived growth factor was inhibited by the broad-spectrum protease inhibitor Complete and the MMP inhibitors EDTA and Ro-31-9790 but not by cysteine or serine protease inhibitors. Conditioned medium from airway smooth muscle cells contained 72-kDa gelatinase that was secreted by growth-arrested cells and increased by fetal bovine serum but not by thrombin or platelet-derived growth factor. Immunostaining of cultured human airway smooth muscle cells and normal lung biopsies confirmed this gelatinase to be MMP-2. Our results suggest a novel role for MMP-2 as an important autocrine factor required for airway smooth muscle proliferation. Inhibition of MMPs could provide a target for the prevention of smooth muscle hyperplasia and airway remodeling in asthma.

Aprotinin↗

Comparison of three inhaled non-steroidal anti-inflammatory drugs on the airway response to sodium metabisulphite and adenosine 5'-monophosphate challenge in asthma.

BACKGROUND: Non-steroidal anti-inflammatory drugs (NSAIDs) are used to assess the role of prostaglandins in asthma but their effects on bronchoconstrictor challenges have been inconsistent. The effects of three nebulised nonsteroidal anti-inflammatory drugs on the airway response to inhaled sodium metabisulphite (MBS) and adenosine 5'-monophosphate (AMP) were compared in the same asthmatic subjects to see whether contractile prostaglandins were involved in MBS or AMP induced bronchoconstriction. A possible protective effect of the osmolarity or pH of the inhaled solutions was also assessed. METHODS: Two double blind placebo controlled studies were carried out. In study 1, 15 non-aspirin sensitive patients with mild asthma attended on four occasions and inhaled 5 ml of lysine aspirin (L-aspirin) 900 mg, indomethacin 50 mg, sodium salicylate 800 mg, or saline 20 minutes before an inhaled MBS challenge. On four further occasions 14 of the patients inhaled the same solutions followed by an inhaled AMP challenge. In study 2, 10 of the patients attended on four additional occasions and inhaled 5 ml of 0.9%, 3%, 10%, or 9.5% saline with indomethacin 50 mg 20 minutes before an inhaled MBS challenge. RESULTS: In study 1 inhaled lysine aspirin had a similar effect on MBS and AMP induced bronchoconstriction, increasing the provocative dose causing a 20% fall in FEV1 (PD20) by 1.29 (95% CI 0.54 to 2.03) and 1.23 (95% CI 0.53 to 1.93) doubling doses, respectively. Indomethacin increased the MBS PD20 and AMP PD20 by 0.64 (95% CI -0.1 to 1.38) and 0.99 (95% CI 0.29 to 1.69) doubling doses, respectively. Sodium salicylate had no significant effect on either challenge. The two solutions causing most inhibition were the most acidic and the most alkaline. In study 2 inhaled 9.5% saline with indomethacin (osmolarity 3005 mOsm/kg) increased the MBS PD20 by 1.1 doubling doses (95% CI 0.2 to 2.0) compared with only 0.09 (95% CI -0.83 to 1.0) and 0.04 (95% CI -0.88 to 0.95) doubling doses with 3% saline (918 mOsm/kg) and 10% saline (2994 mOsm/ kg), respectively. CONCLUSIONS: Inhaled L-aspirin and indomethacin have broadly similar protective effects against MBS and AMP induced bronchoconstriction in the doses given, although the effect of indomethacin on MBS was not quite statistically significant. The osmolarity and pH of the solutions did not appear to be important determinants of the response. The effect of L-aspirin and indomethacin is likely to be the result of cyclooxygenase inhibition reducing the production of contractile prostaglandins during MBS and AMP challenge.

Adenosine Monophosphate↗

The effect of inhaled heparin on bronchial reactivity to sodium metabisulphite and methacholine in patients with asthma.

Inhaled heparin inhibits the early response to allergen and exercise-induced asthma, probably by inhibiting mast cell mediator release. Recent animal studies suggest that heparin might also inhibit cholinergic neurotransmission in asthma by restoring inhibitory M2 receptor function. We have tested the hypothesis that heparin inhibits neurally-mediated bronchoconstriction in asthma by examining the effect of inhaled heparin on bronchial reactivity to sodium metabisulphite. We also examined the effect of inhaled heparin on methacholine-induced bronchoconstriction to exclude a direct effect on airway smooth muscle. Eleven patients with mild asthma inhaled nebulized heparin (1,000 U.kg-1) or placebo (normal saline) in a randomized, double-blind fashion, 10 min before a challenge with sodium metabisulphite. Nine patients were also challenged with methacholine after the same dose of heparin or placebo. Inhaled heparin did not significantly change forced expiratory volume in one second (FEV1), nor did it alter the provocative dose of sodium metabisulphite or methacholine required to cause a 20% fall in FEV1 (PD20). Geometric mean sodium metabisulphite PD20 was 2.54 and 2.15 mumol after placebo and heparin, respectively (mean difference -0.24 doubling doses; 95% confidence interval (95% CI) -0.64-0.17). Geometric mean methacholine PD20 was 1.00 and 1.51 mumol after placebo and heparin, respectively (mean difference 0.6 doubling doses; 95% CI -0.25-1.5). Thus, heparin inhaled at doses sufficient to inhibit allergen and exercise-induced bronchoconstriction has no effect on the response to sodium metabisulphite and methacholine challenge in asthma. This argues against an inhibitory effect on neural pathways or airway smooth muscle.

Administration, Inhalation↗

Production of PGE2 by bovine cultured airway smooth muscle cells: regulation by cAMP.

Prostaglandin E2 (PGE2) is thought to be an important inhibitory modulator of inflammatory processes in the airway. Previous studies have shown that it is produced by bovine cultured airway smooth muscle (ASM) cells in large quantities, but its regulation by second messengers has not been studied in this tissue. To determine whether PGE2 production by ASM might be an important action of beta-adrenoceptor agonists in asthma, the regulation of PGE2 production by adenosine 3',5'-cyclic monophosphate (cAMP) was assessed using dibutyryl cAMP (DBcAMP), forskolin, and albuterol. DBcAMP increased PGE2 production over a 24-h time course. Forskolin and albuterol both increased PGE2 production over control cells to similar levels after 24 h. Incubation of albuterol-treated cells with propranolol significantly (70%) reduced the stimulatory effect of albuterol on PGE2 production. Incubation of forskolin-treated cells with Rp-cAMP, a cAMP antagonist, inhibited the PGE2 response evoked by forskolin by 80%. Ro-20-1724, a selective inhibitor of type IV phosphodiesterase, stimulated PGE2 production (P = 0.02). Cycloheximide, a protein-synthesis inhibitor, did not inhibit the response to DBcAMP. The effects of DBcAMP were additive with the effects of bradykinin, a proinflammatory mediator known to increase PGE2 production (P < 0.05). These studies suggest that cAMP may play an important regulatory role in stimulating PGE2 production by ASM. This may be a novel beneficial action of beta-adrenoceptor agonists in asthma.

4-(3-Butoxy-4-methoxybenzyl)-2-imidazolidinone↗

A comparison of the effects of inhaled furosemide and ethacrynic acid on sodium-metabisulfite-induced bronchoconstriction in subjects with asthma.

Inhaled furosemide prevents bronchoconstriction induced by a number of challenges in asthma. One approach to determine the mechanism underlying this protection has been to examine the effects of diuretics with different or overlapping pharmacologic effects. We have compared the effects of furosemide on sodium metabisulfite-induced bronchoconstriction with those of equivalent diuretic doses of ethacrynic acid, a loop diuretic that, unlike furosemide, does not interact directly with the membrane Na/K/Cl cotransporter protein or inhibit carbonic anhydrase. Eight subjects with mild asthma were studied on five occasions, receiving nebulized furosemide (20 and 40 mg), ethacrynic acid (25 and 50 mg), or placebo (normal saline) in random order and double-blind 10 min before a cumulative dose challenge with inhaled sodium metabisulfite. After placebo the geometric mean sodium metabisulfite PD20 was 7.9 mumol. Furosemide 20 mg and 40 mg increased the PD20 by a mean 1.1 (95% confidence interval, -0.2-2.4; p > 0.05) and 1.6 (0.4-2.9; p < 0.02) doubling doses to 17.1 and 24.7 mumol, respectively. After inhaled ethacrynic acid 25 mg and 50 mg, the geometric mean PD20 was increased by 0.9 (-0.4-2.2; p > 0.05) and 1.5 (0.2-2.8; p < 0.05) doubling doses to 14.5 and 22.4 mumol, respectively. Thus, equivalent diuretic doses of furosemide and ethacrynic acid have a similar inhibitory effect on sodium metabisulfite-induced bronchoconstriction in asthma. This suggests that interaction with the Na/K/Cl cotransporter protein, or carbonic anhydrase inhibition, is not relevant to the effects of furosemide in asthma.

Administration, Inhalation↗

Effect of diuretics on allergen-induced contractions of passively sensitized human bronchi in vitro.

Inhaled furosemide has been shown to protect subjects with asthma from bronchoconstriction induced by a wide variety of stimuli, including allergen, but the mechanism of action is controversial. We have used an in vitro model of allergen-induced bronchoconstriction to examine the effects of furosemide and other ion transport inhibitors. Human bronchial rings were passively sensitized by incubation with serum from an atopic donor and were challenged with Dermatophagoides pteronyssinus. Allergen-challenged bronchial rings developed bronchoconstriction which was effectively inhibited by the cysteinyl-leukotriene antagonist ICI 198,615 (10(-7) M) and to a lesser extent by terfenadine (10(-5) M). Assessed over 60 min furosemide 10(-6), 10(-5), and 10(-4) M inhibited contractions by a mean (95% confidence interval [CI]) 7.9% (-23.5, 39.3%, p > 0.05), 44.2% (12.9, 75.2%, p < 0.01), and 86.9% (55.5, 118.3%, p < 0.001) respectively (n = 5). The same concentrations of bumetanide inhibited contractions by 21.5% (-8.4, 51.4%, p > 0.05), 13.6% (-16.3, 43.4%, p > 0.05) and 51.6% (21.7, 81.4%, p < 0.01) respectively (n = 5). The sodium transport inhibitor amiloride and the anion transport inhibitor 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid (DIDS) were without effect (both 10(-4) M; n = 4). Furosemide increased PGE2 production by the bronchial rings by 134% (95% CI 53, 259%). Indomethacin (3 x 10(-6) M) blocked the furosemide-induced increase in PGE2 production and reduced the protection afforded by 10(-4) M furosemide against allergen-induced contractions from 67.9% to 34.7% (mean difference 33.2%; 95% CI 9.7, 56.6%; p < 0.01; n = 8).(ABSTRACT TRUNCATED AT 250 WORDS)

Allergens↗

Dietary magnesium, lung function, wheezing, and airway hyperreactivity in a random adult population sample.

Magnesium is involved in a wide range of biological activities, including some that may protect against the development of asthma and chronic airflow obstruction. We tested the hypothesis that high dietary magnesium intake is associated with better lung function, and a reduced risk of airway hyper-reactivity and wheezing in a random sample of adults. In 2633 adults aged 18-70 sampled from the electoral register of an administrative area of Nottingham, UK, we measured dietary magnesium intake by semiquantitative food-frequency questionnaire, lung function as the 1-sec forced expiratory volume (FEV1), and atopy as the mean skin-prick test response to three common environmental allergens. We measured airway reactivity to methacholine in 2415 individuals, defining hyper-reactivity as a 20% fall in FEV1 after a cumulative dose of 12.25 mumol or less. Mean (SD) daily intake of magnesium was 380 (114) mg/day. After adjusting for age, sex, and height, and for the effects of atopy and smoking, a 100 mg/day higher magnesium intake was associated with a 27.7 (95% CI, 11.9-43.5) mL higher FEV1, and a reduction in the relative odds of hyper-reactivity by a ratio of 0.82 (0.72-0.93). The same incremental difference in magnesium intake was also associated with a reduction in the odds of self-reported wheeze within the past 12 months, adjusted for age, sex, smoking, atopy, and kilojoule intake, by a ratio of 0.85 (0.76-0.95). Dietary magnesium intake is independently related to lung function and the occurrence of airway hyper-reactivity and self-reported wheezing in the general population. Low magnesium intake may therefore be involved in the aetiology of asthma and chronic obstructive airways disease.

Adult↗