Curcumin is a dietary phenolic compound that has numerous beneficial health effects. In the present study, changes in the chemical properties and anti-oxidant activities of curcumin by microwave radiation were investigated. Degradation of curcumin dissolved in distilled water was accelerated according to the increase in radiation time or radiation intensity. Residual levels of curcumin after 5 min radiation at 500 W were 24-29%. Scavenging activities of curcumin against DPPH radical decreased by microwave radiation; those of curcumin against ABTS and AAPH radicals and nitrite were rather significantly enhanced. Conventional heating at 95°C also increased scavenging activities of ABTS, AAPH, and nitrite of curcumin but to a lesser extent. Fluorescence intensity of curcumin increased by regular heating but decreased by microwave heating. Among curcuminoids, bisdemethoxycurcumin was most resistant under microwave radiation as compared to curcumin or demethoxycurcumin.
Stress-induced cardiomyopathy, also known as Takotsubo cardiomyopathy, is caused by emotional or physical stressors and mimics acute myocardial infarction. Stress-induced cardiomyopathy is characterized by acute, reversible left ventricular apical ballooning without significant coronary artery stenosis. New variants of stress-induced cardiomyo pathy with localized wall motion abnormalities or an inverted pattern with a hyperdynamic apex have been reported. We present a rare case of a sudden cardiac arrest due to atypical stress-induced cardiomyopathy (mucosal packing and the injection of epinephrine) in an elderly male patient during elective endoscopic sinus surgery with septoplasty under local anesthesia. In this case, only the basal and midportions of the left ventricle were affected, whereas the apex was completely spared. The patient rapidly and completely recovered without sequelae.
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