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氧嗪酸鉀

    
BR,98%

Potassium oxonate

源葉
S17112 一鍵復制產品信息
2207-75-2
C4H2KN3O4
195.18
MFCD00010565
1,4,5,6-四氫-4,6-二氧-1,3,5-三嗪-2-羧酸鉀;草酰鉀;4,6-二羥基-1,3,5-噻嗪-2-羧酸鉀鹽;氧氫酸鉀;奧替拉西鉀
貨號 規格 價格 上海 北京 武漢 南京 購買數量
S17112-5g
BR,98% ¥66.00 >10 3 - 1
S17112-25g
BR,98% ¥190.00 >10 - 2 5
S17112-100g
BR,98% ¥725.00 >10 - - 5
S17112-500g
BR,98% ¥2680.00 >10 2 2 -
產品介紹 參考文獻(55篇) 質檢證書(COA) 摩爾濃度計算器 相關產品

產品介紹

 Potassium oxonate 是尿酸酶抑制劑,能抑制5-FU磷酸化為5-fluorouridine-5'-monophosphate。

熔點: 300℃
外觀: 白色結晶
溶解性: H2O  :  5  mg/mL  (25.62  mM;  ultrasonic  and  warming  and  heat  to  60°C)

DMSO  :  <  1  mg/mL  (ultrasonic;warming;heat  to  60°C)  (insoluble  or  slightly  soluble)
儲存條件: RT
注意: 部分產品我司僅能提供部分信息,我司不保證所提供信息的權威性,僅供客戶參考交流研究之用。

參考文獻(55篇)

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[IF=4.4] Wenqing Shi et al."Comprehensive characterisation of the active ingredients of Smilax glabra Roxb based on chemical fingerprinting, metabolic fingerprinting and pharmacodynamic fingerprinting."Frontiers in Pharmacology.2025 Apr;16: 45. [IF=4.4] Nan Li et al."Wuling capsule alleviates hyperuricaemia and protects UA- injured HK-2 cells by regulating uric acid transporter proteins."Frontiers in Pharmacology.2025 Apr;16: 44. [IF=4.4] Liu Mengwen et al."Evaluating renal injury characteristics in different rat models of hyperuricemia and elucidating pathological molecular mechanisms via serum metabolomics."Frontiers in Pharmacology.2024 Sep;15: 43. [IF=3.4] Yining Luo et al."Integrating network pharmacology and experimental models to investigate the mechanisms of XCHD and YCSLS in preventing HUA progression via TLR4/MYD88/NF-κB signaling."Heliyon.2024 Jul;10: 42. 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[IF=4.3] Guitao Xu et al."Eupatilin inhibits xanthine oxidase in vitro and attenuates hyperuricemia and renal injury in vivo."FOOD AND CHEMICAL TOXICOLOGY.2024 Jan;183:114307 36. [IF=6.1] Xiaofei Zhou et al."Coffee Leaf Tea Extracts Improve Hyperuricemia Nephropathy and Its Associated Negative Effect in Gut Microbiota and Amino Acid Metabolism in Rats."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;XXXX(XXX):XXX-XXX 35. [IF=5.2] Weimin Hu et al."Identification of anti-hyperuricemic components from Cichorium intybus L. taproots."Food Bioscience.10.1016/j.fbio.2023.103145 34. [IF=5.2] Lin Xiang et al."Artemisia selengensis Turcz. leaves extract ameliorates hyperuricemia in mice by inhibiting hepatic xanthine oxidase activity, modulating renal uric acid transporters, and improving metabolic disorders."Food Bioscience.2023 Jun;:102639 33. [IF=5.2] Biqian Wei et al."Guluronate oligosaccharides exerts beneficial effects on hyperuricemia and regulation of gut microbiota in mice."Food Bioscience.2023 Jun;:102855 32. [IF=1.714] Ge Hongzhang et al."Dendrobium officinalis Six Nostrum Promotes Intestinal Urate Underexcretion via Regulations of Urate Transporter Proteins in Hyperuricemic Rats."COMBINATORIAL CHEMISTRY & HIGH THROUGHPUT SCREENING.2023 Apr;26(4):848-861 31. [IF=1.714] Qian Xvwu et al."The Anti-hyperuricemia and Anti-inflammatory Effects of Atractylodes Macrocephala in Hyperuricemia and Gouty Arthritis Rat Models."COMBINATORIAL CHEMISTRY & HIGH THROUGHPUT SCREENING.2023 Apr;26(5):950-964 30. [IF=4.319] Jing Huang et al."Wuling San Based on Network Pharmacology and in vivo Evidence Against Hyperuricemia via Improving Oxidative Stress and Inhibiting Inflammation."Drug Design Development and Therapy. 29. [IF=6.706] Biqian Wei et al."Ameliorative Effect of Mannuronate Oligosaccharides on Hyperuricemic Mice via Promoting Uric Acid Excretion and Modulating Gut Microbiota."Nutrients.2023 Jan;15(2):417 28. [IF=5.895] Xiaofei Zhou et al."Chlorogenic Acid Prevents Hyperuricemia Nephropathy via Regulating TMAO-Related Gut Microbes and Inhibiting the PI3K/AKT/mTOR Pathway."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2022;70(33):10182–10193 27. [IF=1.714] Wang Yu-Zhi et al."Effects of Macroporous Resin Extract of Dendrobium officinale Leaves in Rats with Hyperuricemia Induced by Fructose and Potassium Oxonate."COMBINATORIAL CHEMISTRY & HIGH THROUGHPUT SCREENING.2022 Jul;25(8):1294-1303 26. [IF=5.195] Yu Wang et al."An integrated study of Shenling Baizhu San against hyperuricemia: Efficacy evaluation, core target identification and active component discovery."JOURNAL OF ETHNOPHARMACOLOGY.2022 Sep;295:115450 25. [IF=6.706] Dan Wu et al."Tea (Camellia sinensis) Ameliorates Hyperuricemia via Uric Acid Metabolic Pathways and Gut Microbiota."Nutrients.2022 Jan;14(13):2666 24. [IF=6.543] Liu Lijun et al."Inflammatory Response and Oxidative Stress as Mechanism of Reducing Hyperuricemia of Gardenia jasminoides-Poria cocos with Network Pharmacology."Oxid Med Cell Longev. 2021;2021:8031319 23. [IF=2.629] Yao Rongmei et al."Tu-Teng-Cao Extract Alleviates Monosodium Urate-Induced Acute Gouty Arthritis in Rats by Inhibiting Uric Acid and Inflammation."Evid-Based Compl Alt. 2020;2020:3095624 22. [IF=2.629] Guo Lin-Feng et al."Effects and Mechanisms of Dendrobium officinalis Six Nostrum for Treatment of Hyperuricemia with Hyperlipidemia."Evid-Based Compl Alt. 2020;2020:2914019 21. [IF=3.981] Wenhao Xu et al."Self-assembled nanocapsules of celery (Apium graveolens Linn) seed oil: Mechanochemical preparation, characterization and urate-lowering activity."J Drug Deliv Sci Tec. 2021 Dec;66:102810 20. 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摩爾濃度計算器

質量 (mg) = 濃度 (mM) x 體積 (mL) x 分子摩爾量 (g/mol)

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