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Microbeads and fragments have been widely studied, while glitter remains neglected by the literature although found in a variety product (e.g., body paints, nail polish, cosmetics, craft products). The main aim of this study was to assess the effects of different types and concentrations of glitter particles on Mytilus galloprovincialis after 7 days of exposure. The experiment was divided into a preliminary test and a confirmatory test. Our findings support the hypothesis for a link between concentration and type of glitter particles, percentage of recovery and oxidative stress in M. galloprovincialis. There was a significant correlation between particle length and percentage of particles recovered in water, suggesting that the digestive tract of M. galloprovincialis retains smaller particles more. In addition, we noted an increase in antioxidant defense induced by smaller particles. Moreover, certain types of glitter crumbled and shortened in length, resulting in higher levels of oxidative stress biomarkers. Finally, the star-shaped glitter particles had a different effect on oxidative stress biomarkers. Further studies are needed to clarify the toxic effects of glitter on aquatic organisms and to quantify its proportion to other microplastics in the environment. 相似文献
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《Survey of ophthalmology》2022,67(4):1031-1047
Uveal coloboma is a condition defined by missing ocular tissues and is a significant cause of childhood blindness. It occurs from a failure of the optic fissure to close during embryonic development and may lead to missing parts of the iris, ciliary body, retina, choroid, and optic nerve. Because there is no treatment for coloboma, efforts have focused on prevention. While several genetic causes of coloboma have been identified, little definitive research exists regarding the environmental causes of this condition. We review the current literature on environmental factors associated with coloboma in an effort to guide future research and preventative counseling related to this condition. 相似文献
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《Journal of clinical lipidology》2022,16(2):115-127
Metabolic risk for cardiovascular and other systems includes much more than just LDL cholesterol. This JCL Roundtable brings together 3 experts to address new opportunities to reduce the risks posed by obesity, diabetes, and fatty liver disease. Successful nutritional approaches to weight loss are diverse and need to be matched with individual preferences. Topiramate plus extended-release phentermine has been shown to promote meaningful weight loss in randomized trials, but the patented drug combination is expensive. Clinical experience suggests that generic topiramate and phentermine may also be effective. Glucagon-like peptide-1 receptor agonists (GLP-1 RAs) and sodium-glucose cotransporter 2 inhibitors (SGLT2is) have shown favorable tolerability and efficacy for cardiovascular disease in randomized trials, an achievement without precedent among earlier diabetes medications. These 2 drug classes differ in their effects. GLP-1 RAs decrease atherosclerotic cardiovascular events and also decrease hemoglobin A1c, body weight, blood pressure, and possibly diabetic renal disease. SGLT2 inhibitors are effective in reducing heart failure events even among nondiabetic patients. They also decrease progression of diabetic renal disease. The presence of nonalcoholic fatty liver disease signifies risk for atherosclerotic cardiovascular disease as well as cirrhosis and serious hepatic decompensation, including hepatocellular carcinoma. The key to identifying cirrhosis risk is to assess pre-emptively liver fibrosis, which can be predicted initially with blood test risk scores (e.g., FIB-4 index) and more definitively by transient elastography and other imaging techniques and/or liver biopsy. Some medications approved for the treatment of type 2 diabetes may reduce liver fat (SGLT2 inhibitors, insulin) or even reverse steatohepatitis in paired liver biopsy studies (GLP-1 RAs or pioglitazone) Overall the field of preventive metabolic medicine is expanding. Clinical lipidologists should become familiar with recent advances. 相似文献
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《Journal of infection and chemotherapy》2022,28(4):532-538
IntroductionThe purpose of this study was to explore factors influencing meropenem pharmacokinetics (PKs) in critically ill patients by developing a population PK model and to determine the optimal dosing strategy.MethodsThis prospective observational study involved 12 critically ill patients admitted to the intensive care unit and treated with meropenem 1 g infused over 1 h every 8 h. Blood samples were collected on days 1, 2, and 5 immediately prior to dosing, and at 1, 2, 4, and 6 h after the start of infusion. Population PK parameters were estimated using nonlinear mixed-effects model software.ResultsMeropenem PK was adequately described using a two-compartment model. Typical values of total and inter-compartmental clearance were 9.30 L/h and 9.70 L/h, respectively, and the central and peripheral compartment volumes of distribution were 12.61 L and 7.80 L, respectively. C-reactive protein (CRP) was identified as significant covariate affecting total meropenem clearance. The probability of target attainment (PTA) predicted by Monte Carlo simulations varied according to the patients’ CRP. The PTA of 100% time above the minimum inhibitory concentration ≤2 mg/L for bacteria was achieved after a dose of 1 and 2 g infused over 4 h every 8 h in patients with CRP of 30 and 5 mg/dL, respectively.ConclusionThe findings of this study suggest that CRP might be helpful in managing meropenem dosing in critically ill patients. Higher doses and extended infusion may be required to achieve optimal pharmacodynamic targets. 相似文献
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Oxidative stress and inflammation are two possible mechanisms related to nephrotoxicity caused by environmental pollutants. Ellagic acid, a powerful antioxidant phytochemical, may have great relevance in mitigating pollutant-induced nephrotoxicity and preventing the progression of kidney disease. This review discusses the latest findings on the protective effects of ellagic acid, its metabolic derivatives, the urolithins, against kidney toxicity caused by heavy metals, pesticides, mycotoxins, and organic air pollutants. We describe the chelating, antioxidant, anti-inflammatory, antifibrotic, antiautophagic, and antiapoptotic properties of ellagic acid to attenuate nephrotoxicity. Furthermore, we present the molecular targets and signaling pathways that are regulated by these antioxidants, and suggest some others that should be explored. Nevertheless, the number of reports is still limited to establish the efficacy of ellagic acid against kidney damage induced by environmental pollutants. Therefore, additional preclinical studies on this topic are required, as well as the development of well-designed clinical trials. 相似文献
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