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The deposition of monosodium urate (MSU) crystals within joint spaces produces a painful inflammatory condition known as gout, a specific form of arthritis. The condition calls for a combined curative and preventive management model. A new development in the approach to gout is that of NLRP3-targeted biologic agents, such as monoclonal therapies, to provide more accurate treatment by blocking specific pro-inflammatory cytokines.

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Biochemical, Histological, and Multi-Omics Analyses Reveal the Molecular and Metabolic Mechanisms of Cold Stress Response in the Chinese Soft-Shelled Turtle ().

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January 2025

Key Laboratory of Tropical and Subtropical Fishery Resources Application and Cultivation, Ministry of Agriculture and Rural Affairs, Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou 510380, China.

The Chinese soft-shelled turtle (), a type of warm-water reptile, is frequently chosen as the model animal to understand how organisms respond to environmental stressors. However, the responsive mechanism of to natural cold stress is unclear, especially in terms of metabolic pattern and molecular pathways. Herein, plasma biochemical, hepatic morphological, apoptotic, transcriptomic, and metabolomic detection methods were performed to investigate the response of to acute cold stress.

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We investigated the role of uric acid in the pathogenesis of severe malaria (SM) in two independent cohorts of children with SM. Hyperuricemia (blood uric acid ≥ 7 mg dl) was present in 25% of children with SM and was associated with increased in-hospital mortality and postdischarge mortality in both cohorts. Increased blood uric acid levels were also associated with worse scores in overall cognition in children with SM < 5 years old in both cohorts.

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Gout is a disease caused by the deposit of monosodium urate (MSU) crystals that produce joint inflammation and subcutaneous nodules (tophi). The treatment of gout aims to reduce serum uric acid (sUA) levels by administering urate-lowering therapies (ULT) such as xanthine oxidase inhibitors (XOI: allopurinol, febuxostat) or uricosurics (e.g.

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Preventing moderately severe and severe acute pancreatitis (MSAP & SAP) is the primary goal of the management of hyperlipidemic acute pancreatitis (HLAP). The main aim of this study was to investigate the factors affecting serum triglyceride (TG) clearance, particularly blood glucose (GLU) levels, which could potentially help to prevent the development of MSAP & SAP. The clinical data from 177 patients with MSAP & SAP and 195 patients with mild acute pancreatitis (MAP) on days 1-6 after the onset were collected and analyzed by multivariate logistic regression to identify the factors that have an impact on the severity of HLAP, especially TG.

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