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Drug reaction with eosinophilia and systemic symptoms (DRESS) syndrome is a serious and potentially fatal adverse effect to therapeutic medications. The incidence of this condition varies among different ethnicities because of the difference in the genetic makeup. Though fever, rash and eosinophilia are essential features for the diagnosis of this syndrome, these vary from patient to patient along with the involvement of various organs such as liver, kidney, lungs, pancreas, etc. Some of the atypical features are dysphagia, agranulocytosis, and chylous ascites. Phenytoin, phenobarbitone, carbamazepine, and allopurinol are the most common drugs responsible for developing this syndrome, although the list is fairly long. Among the criteria used for the diagnosis of DRESS syndrome, European Registry of Severe Cutaneous Adverse Reactions to Drugs and Collection of Biological Samples (RegiSCAR) criteria is the most commonly used one. The management of this syndrome involves early removal of the causative agent and treatment with anti-histamines and emollients in the mild form, corticosteroids in the moderate form and plasmapheresis in the severe form along with other alternatives drugs. Healthcare professionals should be more vigilant about the early manifestations of this syndrome, as early diagnosis and treatment improve outcomes considerably.  相似文献   
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PurposeTo explore the impact of the extent of reticular pseudodrusen (RPD) on mesopic visual sensitivity in individuals with intermediate age-related macular degeneration (AMD).MethodsIn total, 570 eyes from 285 participants with bilateral large drusen underwent microperimetry testing to assess the visual sensitivity of the central 3.6-mm region and multimodal imaging to determine the extent of RPD in the central 20° × 20° region (at the eye level). Mean visual sensitivity within five sectors in the central 3.6-mm region sampled on microperimetry and the extent of RPD in these sectors were derived. Linear mixed models were used to examine the association between the extent of RPD on overall mean visual sensitivity and sector-based mean sensitivity.ResultsAn increasing extent of RPD at the eye level and within sectors was associated with a significant reduction in overall and sector-based mean sensitivity, respectively (P < 0.001 for both). However, when both RPD parameters were considered together in a multivariable model, only an increasing extent of RPD at the eye level (P < 0.001) and not within each sector (P = 0.178) was independently associated with reduced sector-based mean sensitivity.ConclusionsMesopic visual sensitivity is generally reduced in eyes with large drusen and coexistent RPD compared to eyes without RPD, with greater reductions with an increasing extent of RPD. However, reduced sector-based visual sensitivities are explained by the overall extent of RPD present, rather than their extent within the sector itself. These findings suggest that there are generalized pathogenic changes in eyes with RPD accounting for the observed mesopic visual dysfunction.  相似文献   
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The relationship between lipogenesis and ketogenesis and the concentration of malonyl coenzyme A (CoA) was investigated in hepatocytes from adult obese Zucker rats and their lean littermates fed either a control low-fat diet or a high-fat diet (30% lard in weight). With the control diet, lipogenesis—although strongly inhibited in the presence of either 1 mmol/L oleate, 10?6 mol/L glucagon or 0.1 mmol/L TOFA (a hypolipidemic drug)—remained about fifteen-fold higher in the obese rats than in the lean rats. In contrast, ketogenesis under some conditions (oleate + TOFA) was not significantly lower (30%) as compared with the lean rats. After adaptation to the high-fat diet, lipogenesis was depressed fourfold in the lean rats and ninefold in the obese ones; however its magnitude remained significantly higher in the latter, namely at a value close to that measured in control-fed lean rats. Ketogenesis was comparable in lean and obese rats and much higher in the presence of 1 mmol/L oleate than of 0.3 mmol/L oleate, whereas lipogenesis did not vary with increasing oleate concentration in the medium. Acetyl-CoA carboxylase activity measured in liver homogenates was higher in the obese group, but was stepwise inhibited by increasing concentrations of oleyl-CoA regardless of the diet for both lean and obese rats, thus showing no abnormality of in vitro responsiveness to this inhibitor. With the control diet, hepatocyte malonyl-CoA levels were significantly higher in the obese rats, both in the basal state and after inhibition of lipogenesis by oleate and TOFA. However, after the high-fat diet, there was no longer a significant difference between the genotypes. These results show that in the obese Zucker rats, ketogenesis is dependent on hepatocyte malonyl-CoA content in the sense that their ketogenic capacity becomes “normalized” when malonyl-CoA is decreased to the levels found in the lean littermates, as it is the case after fat-feeding. This normalization of malonyl-CoA levels in spite of higher lipogenesis in the obese rats may result from the activities of enzymes of its formation and utilization.  相似文献   
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