Bedbug bites masquerading as urticaria.
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Biomedical subjects
Publications and source records attributed to Athena Economides.
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BACKGROUND: Inhaled corticosteroids (ICSs) are effective asthma controllers, but long-term use could lead to adverse effects. OBJECTIVE: To examine adrenal responsiveness of patients with persistent asthma treated with long-term ICSs. METHODS: Morning plasma cortisol levels before and 30 minutes after adrenocorticotropic hormone (ACTH) (1 microg intravenously) stimulation were compared. Primary end points included mean prestimulation and poststimulation cortisol levels; secondary end points included morning cortisol level of 5 microg/dL or less, post-ACTH stimulation cortisol level of 18 microg/dL or less, and/or a net change of 7 microg/dL or less from baseline. RESULTS: A total of 103 asthmatic patients (29 in the triamcinolone acetonide group, 18 in the flunisolide group, 45 in the fluticasone propionate group, and 11 in the oral corticosteroids group [positive controls]) completed the study. Mean daily ICS doses and durations were as follows: triamcinolone acetonide: 448 microg for 36 months; flunisolide: 1,181 microg for 41 months; and fluticasone propionate: 745 microg for 19 months. Eleven of 30 patients taking high-dose ICSs (10 of 28 taking fluticasone propionate and 1 of 2 taking flunisolide) had both low morning cortisol levels and abnormal post-ACTH stimulation cortisol levels. Few patients taking lower doses of any ICS had abnormal results. CONCLUSIONS: Patients who require long-term treatment with high-dose ICSs may have abnormal morning plasma cortisol levels and reduced responsiveness to ACTH stimulation. Careful monitoring of adrenal function should be considered in such patients.
BACKGROUND: H1-receptor antagonists differ in their ability to produce peripheral H1-blockade. Suppression of histamine-induced flares and wheals is a useful objective test for measuring these differences. OBJECTIVE: To evaluate the relative potency of fexofenadine HCI 180 mg, loratadine 10 mg, and placebo (PBO) in suppressing histamine-induced flares and wheals and compare the onset, duration, and maximum suppression of histamine achieved with each agent. METHODS: Thirty healthy volunteers were enrolled in this randomized, double-blind, single-dose, crossover study. Flares and wheals induced by skin-prick testing with histamine 1.8 mg/mL were measured before treatment, every 20 minutes during the first hour after dosing, and thereafter hourly between 2 and 12 hours and between 23 and 25 hours postdose. RESULTS: Fexofenadine was significantly more effective than loratadine in suppressing the histamine-induced flare response at hours 2 through 7 and 10 through 12 and produced greater flare suppression than did PBO at hours 2 through 25. Onset of flare suppression occurred 2 hours after dosing with fexofenadine and 4 hours after dosing with loratadine. Likewise, fexofenadine was superior to loratadine in suppressing the wheal response from hours 1 through 12 and was more effective than PBO at hours 1 through 12, 24, and 25. Throughout the 25-hour measurement interval, the magnitude of difference in both wheal and flare suppression consistently favored fexofenadine over loratadine. CONCLUSIONS: In a skin test model of wheal-and-flare suppression, fexofenadine showed rapid distribution into the skin compartment with faster onset of action and greater potency vs loratadine.
Rhinologic headache, a headache of nasal origin, generally has been attributed to past facial trauma causing nasal mucosa-septal contact points. Patients who have not knowingly experienced nasal trauma may have contact points caused by mucosal inflammation or anatomic abnormalities (septal spurs, septal deviation, and enlarged turbinates) and can develop rhinologic headaches. A population of 66 such patients was studied to classify the type of patient susceptible to such headaches and to examine the type of underlying inflammation or anatomic abnormality responsible for creating their mucosal contact points. Most patients were women with a mean age at the time of initial presentation of 40 years. VMR was the most frequent cause of nasal inflammation, either alone or in combination with allergic rhinitis. Generally, headache symptoms improved with treatment of the underlying nasal inflammation in the majority of patients.