[1] HUANG Z, XIE N, ILLES P, et al. From purines to purinergic signalling: molecular functions and human diseases. Signal Transduct Target Ther. 2021;6(1):162.
[2] DU L, ZONG Y, LI H, et al. Hyperuricemia and its related diseases: mechanisms and advances in therapy. Signal Transduct Target Ther. 2024;9(1):212.
[3] ZHAO H, LV J, CHEN B, et al. RAGE deficiency obstructs high uric acid-induced oxidative stress and inflammatory response. Int Immunopharmacol. 2025;151:114316.
[4] SONG J, JIN C, SHAN Z, et al. Prevalence and Risk Factors of Hyperuricemia and Gout: A Cross-sectional Survey from 31 Provinces in Mainland China. J Transl Int Med. 2022;10(2):134-145.
[5] WU ZD, YANG XK, HE YS, et al. Environmental factors and risk of gout. Environ Res. 2022;212(Pt C):113377.
[6] ZHANG M, ZHU X, WU J, et al. Prevalence of Hyperuricemia Among Chinese Adults: Findings From Two Nationally Representative Cross-Sectional Surveys in 2015-16 and 2018-19. Front Immunol. 2022;12:791983.
[7] DANVE A, SEHRA ST, NEOGI T. Role of diet in hyperuricemia and gout. Best Pract Res Clin Rheumatol. 2021;35(4):101723.
[8] TERKELTAUB R. Emerging Urate-Lowering Drugs and Pharmacologic Treatment Strategies for Gout: A Narrative Review. Drugs. 2023;83(16): 1501-1521.
[9] LI D, YUAN S, DENG Y, et al. The dysregulation of immune cells induced by uric acid: mechanisms of inflammation associated with hyperuricemia and its complications. Front Immunol. 2023;14:1282890.
[10] GUPTA S, CASSEL SL, SUTTERWALA FS, et al. Regulation of the NLRP3 inflammasome by autophagy and mitophagy. Immunol Rev. 2025;329(1):e13410.
[11] BARNETT KC, LI S, LIANG K, et al. A 360° view of the inflammasome: Mechanisms of activation, cell death, and diseases. Cell. 2023;186(11): 2288-2312.
[12] PANG Q, WANG P, PAN Y, et al. Irisin protects against vascular calcification by activating autophagy and inhibiting NLRP3-mediated vascular smooth muscle cell pyroptosis in chronic kidney disease. Cell Death Dis. 2022;13(3):283.
[13] WEN L, YANG H, MA L, et al. The roles of NLRP3 inflammasome-mediated signaling pathways in hyperuricemic nephropathy. Mol Cell Biochem. 2021;476(3):1377-1386.
[14] SCHEFFER DDL, LATINI A. Exercise-induced immune system response: Anti-inflammatory status on peripheral and central organs. Biochim Biophys Acta Mol Basis Dis. 2020;1866(10):165823.
[15] ZHANG T, LIU W, GAO S. Exercise and hyperuricemia: an opinion article. Ann Med. 2024;56(1):2396075.
[16] SPRICK JD, JEONG J, SABINO-CARVALHO JL, et al. Neurocirculatory regulation and adaptations to exercise in chronic kidney disease. Am J Physiol Heart Circ Physiol. 2023;324(6):H843-H855.
[17] JIA E, ZHU H, GENG H, et al. The effects of aerobic exercise on body composition in overweight and obese patients with gout: a randomized, open-labeled, controlled trial. Trials. 2022;23(1):745.
[18] HOU Y, MA R, GAO S, et al. The Effect of Low and Moderate Exercise on Hyperuricemia: Protocol for a Randomized Controlled Study. Front Endocrinol (Lausanne). 2021;12:716802.
[19] COSTANTI-NASCIMENTO AC, BRELAZ-ABREU L, BRAGANÇA-JARDIM E, et al. Physical exercise as a friend not a foe in acute kidney diseases through immune system modulation. Front Immunol. 2023;14: 1212163.
[20] MOECKE DMP, MARTINS GHC, GARLET TC, et al. Aerobic Exercise Attenuates Kidney Injury, Improves Physical Performance, and Increases Antioxidant Defenses in Lungs of Adenine-Induced Chronic Kidney Disease Mice. Inflammation. 2022;45(5):1895-1910.
[21] CHEN J, JIA S, XUE X, et al. Gut microbiota: a novel target for exercise-mediated regulation of NLRP3 inflammasome activation. Front Microbiol. 2025;15:1476908.
[22] LIAN X, GUO Z, LIU J, et al. Aerobic Exercise Affected Lymphocyte Apoptosis by Modulating ROS Release and NLRP3 Inflammasome Activation. Bull Exp Biol Med. 2025;178(5):685-690.
[23] ZHANG T, DING S, WANG R. Research Progress of Mitochondrial Mechanism in NLRP3 Inflammasome Activation and Exercise Regulation of NLRP3 Inflammasome. Int J Mol Sci. 2021;22(19):10866.
[24] 吴昱苇,朱江,郑兵,等.运动调控尿酸的作用机制[J].中国组织工程研究,2024,28(34):5552-5557.
[25] LEE S, SHIN YA, CHO J, et al. Moderate-Intensity Exercise Preserves Bone Mineral Density and Improves Femoral Trabecular Bone Microarchitecture in Middle-Aged Mice. J Bone Metab. 2022;29(2): 103-111.
[26] ELSWORTH B, LYON M, ALEXANDER T, et al. The MRC IEU OpenGWAS data infrastructure. bioRxiv, 2020: 2020.08.10.244293.
[27] DOHERTY A, JACKSON D, HAMMERLA N, et al. Large Scale Population Assessment of Physical Activity Using Wrist Worn Accelerometers: The UK Biobank Study. PLoS One. 2017;12(2):e0169649.
[28] LI Y, XIE Y, LI J, et al. Diastolic and systolic blood pressure and gout: a Mendelian randomization study. Front Endocrinol (Lausanne). 2024; 15:1367621.
[29] ZHANG Y, TANG Z, TONG L, et al. Serum uric acid and risk of diabetic neuropathy: a genetic correlation and mendelian randomization study. Front Endocrinol (Lausanne). 2023;14:1277984.
[30] BIRNEY E. Mendelian Randomization. Cold Spring Harb Perspect Med. 2022;12(4):a041302.
[31] SEKULA P, DEL GRECO MF, PATTARO C, et al. Mendelian Randomization as an Approach to Assess Causality Using Observational Data. J Am Soc Nephrol. 2016;27(11):3253-3265.
[32] GUO XL, GAO YY, YANG YX, et al. Amelioration effects of α-viniferin on hyperuricemia and hyperuricemia-induced kidney injury in mice. Phytomedicine. 2023;116:154868.
[33] LI D, LI Y, CHEN X, et al. The pathogenic mechanism of monosodium urate crystal-induced kidney injury in a rat model. Front Endocrinol (Lausanne). 2024;15:1416996.
[34] DOGRU S, YASAR E, YESILKAYA A. Effects of uric acid on oxidative stress in vascular smooth muscle cells. Biomed Rep. 2024;21(6):171.
[35] GE P, GUO Y, CHE B, et al. Modulation of NLRP3 Inflammasome Activation by QYHT Decoction: Implications for the Treatment of Erectile Dysfunction in Hyperuricemia. Am J Mens Health. 2025;19(1): 15579883251318307.
[36] YANAI H, ADACHI H, HAKOSHIMA M, et al. Molecular Biological and Clinical Understanding of the Pathophysiology and Treatments of Hyperuricemia and Its Association with Metabolic Syndrome, Cardiovascular Diseases and Chronic Kidney Disease. Int J Mol Sci. 2021;22(17):9221.
[37] CHEN LG, TUBBS JD, LIU Z, et al. Mendelian randomization: causal inference leveraging genetic data. Psychol Med. 2024;54(8):1461-1474.
[38] WANG Q, DAI H, HOU T, et al. Dissecting Causal Relationships Between Gut Microbiota, Blood Metabolites, and Stroke: A Mendelian Randomization Study. J Stroke. 2023;25(3):350-360.
[39] NGUYEN K, MITCHELL BD. A Guide to Understanding Mendelian Randomization Studies. Arthritis Care Res (Hoboken). 2024;76(11): 451-1460.
[40] MALOBERTI A, TOGNOLA C, GAROFANI I, et al. Uric acid and metabolic syndrome: Importance of hyperuricemia cut-off. Int J Cardiol. 2024; 417:132527.
[41] SONG P, WANG H, XIA W, et al. Prevalence and correlates of hyperuricemia in the middle-aged and older adults in China. Sci Rep. 2018;8(1):4314.
[42] GAN Y, ZENG Y, HUANG J, et al. Polysaccharide extracted from Phellinus igniarius attenuated hyperuricemia by modulating bile acid metabolism and inhibiting uric acid synthesis in adenine/potassium oxonate-treated mice. J Ethnopharmacol. 2025;342:119365.
[43] WEINER DE, LIU CK, MIAO S, et al. Effect of Long-term Exercise Training on Physical Performance and Cardiorespiratory Function in Adults With CKD: A Randomized Controlled Trial. Am J Kidney Dis. 2023;81(1):59-66.
[44] JEONG J, SPRICK JD, DACOSTA DR, et al. Exercise modulates sympathetic and vascular function in chronic kidney disease. JCI Insight. 2023;8(4): e164221.
[45] WATSON EL, BAKER LA, WILKINSON TJ, et al. Inflammation and physical dysfunction: responses to moderate intensity exercise in chronic kidney disease. Nephrol Dial Transplant. 2022;37(5):860-868.
[46] NAKAYAMA A, KURAJOH M, TOYODA Y, et al. Dysuricemia. Biomedicines. 2023;11(12):3169.
[47] JIANG Z, CAO J, SU H, et al. Exercise serum regulates uric acid transporters in normal rat kidney cells. Sci Rep. 2022;12(1):18086.
[48] LIU Y, ZHANG P, JIN Y, et al. Is lactic acid a misunderstood trigger of gout attack for a century? Colloids Surf B Biointerfaces. 2024;238:113913.
[49] LEVEY AS, BOSCH JP, LEWIS JB, et al. A more accurate method to estimate glomerular filtration rate from serum creatinine: a new prediction equation. Modification of Diet in Renal Disease Study Group. Ann Intern Med. 1999;130(6):461-470.
[50] ORANGE ST, LESLIE J, ROSS M, et al. The exercise IL-6 enigma in cancer. Trends Endocrinol Metab. 2023;34(11):749-763.
[51] YU J, LI H, WU Y, et al. Inhibition of NLRP3 inflammasome activation by A20 through modulation of NEK7. Proc Natl Acad Sci U S A. 2024; 121(25):e2316551121.
[52] MOHAMMED HS, ELARINY HA, SEIF-ELDEIN NA, et al. Investigating the involvement of the NLRP3/ASC/caspase-1 and NF-κb/MAPK pathways in the pathogenesis of gouty arthritis: Insights from irradiated and non-irradiated Trifolium alexandrium L. extracts and some metabolites. J Ethnopharmacol. 2024;334:118566.
[53] LIU J, JIA S, YANG Y, et al. Exercise induced meteorin-like protects chondrocytes against inflammation and pyroptosis in osteoarthritis by inhibiting PI3K/Akt/NF-κB and NLRP3/caspase-1/GSDMD signaling. Biomed Pharmacother. 2023;158:114118.
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