万千商家帮你免费找货
0 人在求购买到急需产品
- 详细信息
- 文献和实验
- 技术资料
- 英文名:
Adenine
- CAS号:
73-24-5
- 供应商:
上海研谨
- 保存条件:
2-8℃
- 规格:
20mg
腺嘌呤
分析标准品,HPLC≥98%
Adenine
CAS号:73-24-5
分子式:C5H5N5
分子量:135.128
MDL:MFCD00041790
别名:6-氨基嘌呤
|
货号 |
规格/参数/品牌 |
价格 |
货期 |
|
YJ-B21357-20mg |
分析标准品,HPLC≥98% |
¥180.00 |
现货 |
|
YJ-B21357-100mg |
分析标准品,HPLC≥98% |
¥480.00 |
现货 |
|
JS18009-5g |
高纯,98% |
¥130.00 |
现货 |
|
JS18009-25g |
高纯,98% |
¥150.00 |
现货 |
|
JS18009-100g |
高纯,98% |
¥255.00 |
现货 |
|
JS18009-500g |
高纯,98% |
¥490.00 |
现货 |
产品介绍
用途:细胞生物学,营养研究。 用于生化研究,药物分析,是核酸的组成成分,参与生物体内的RNA和DNA合成,测定烟*碱;具有植物激动素作用;也可用于组织培养。
腺嘌呤是一种含氮杂环嘌呤,脱氧核糖核酸(DNA)和核糖核酸(RNA)中的一种碱基,缩写为A。在脱氧核糖核酸中,它与胸腺嘧啶(T)配对。在核糖核酸中,它与尿嘧啶(U)配对。在生物化学上具有许多不同的功能,于细胞呼吸中,是以富有能量的腺苷三磷酸(ATP),以及辅因子烟酰胺腺嘌呤二核苷酸(NAD)、黄素腺嘌呤二核苷酸(FAD)等形式发生作用。
熔点:360-365℃
沸点:553.5ºC at 760 mmHg
外观:白色结晶性粉末
溶解性:1 M HCl:20mg/ml(需超声)
敏感性:易吸潮
储存条件:2-8℃
注意:部分产品我司仅能提供部分信息,我司不保证所提供信息的权威性,仅供客户参考交流研究之用。
风险提示:丁香通仅作为第三方平台,为商家信息发布提供平台空间。用户咨询产品时请注意保护个人信息及财产安全,合理判断,谨慎选购商品,商家和用户对交易行为负责。对于医疗器械类产品,请先查证核实企业经营资质和医疗器械产品注册证情况。
文献和实验参考文献(71篇)
71. [IF=4.6] Haifeng Zhou et al."The Urate-Lowering Effects and Renal Protective Activity of Iridoid Glycosides from Paederia foetida in Rats with Hyperuricemia-Induced Kidney Injury: A Pharmacological and Molecular Docking Study."MOLECULES.2025 Jan;30(15):3098
70. [IF=9.3] Xinxin Jia et al."The horizontally transferred gene, CsMTAN, rewired purine traffic to build caf*feine factories in tea leaves."Journal of Integrative Plant Biology.2025 Jul;:
69. [IF=6.7] Zhihua Song et al."Design and Synthesis of Fluorine-Containing Embedded Carbon Dots Stationary Phase for Separation of Versatile Analytes."ANALYTICAL CHEMISTRY.2024;XXXX(XXX):XXX-XXX
68. [IF=1.7] Cai Jinhong et al."An Integrated Strategy for Chemical Profile Establishment of Premna Microphylla Turcz. leaves and Metabolites in Vivo."JOURNAL OF AOAC INTERNATIONAL.2024 Oct;:
67. [IF=4] Xiaoyue Zhang et al."Bioactive Evaluation of Naringenin in Ameliorating Hyperuricemia-Induced Liver Injury by Inhibiting Xanthine Oxidase."eFood.2025 Jan;6(1):e70032
66. [IF=6.7] Xinguang Liu et al."Screening effective-component compatibility from Jinshui Chenfei formula for silicosis treatment by serum-pharmacochemistry and feedback system control."PHYTOMEDICINE.2025 Mar;138:156419
65. [IF=6] Jiajia Li et al."Revealing the distribution pattern of soybean purine content and its influencing factors based on an ultra-micro detection system."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 Mar;:117683
64. [IF=4] Jing Zhao et al."Effect and mechanism of Plantaginis Semen polysaccharides on intestinal microecology in rats with hyperuricemia."Frontiers in Microbiology.2025 Mar;16:1555734
63. [IF=8] Xu Xiaochen et al."Structure-based principles underlying ligand recognition of xanthine-II riboswitch."Science China-Life Sciences.2025 Apr;:1-12
62. [IF=7.4] Mengyuan Huang et al."Optimization of Cr(VI) ion-imprinted polymer with imidazole derivatives as functional monomers and its binding mechanism."Journal of Environmental Chemical Engineering.2024 Aug;:113750
61. [IF=4.2] Wenpu Wu et al."Molecularly imprinted polymer-coated silica microbeads for high-performance liquid chromatography."ANALYST".2024 May;:
60. [IF=5.2] Haiying Wang et al."Screening and evaluation of a novel nucleotide-degrading Levilactobacillus brevis grx821 with anti-hyperuricemia ability."Food Bioscience".2024 Aug;60:104337
59. [IF=4] Wenping Ren et al."Clam Peptides Attenuated Adenine-Induced Chronic Kidney Disease by Improving Inflammation, Oxidative Stress, and Intestinal Flora Composition."JOURNAL OF FOOD BIOCHEMISTRY".2024;2024:5299378
58. [IF=5.4] Ying-Ling Zhang et al."Red ginseng ameliorates lipotoxicity-induced renal fibrosis in hyperuricemia mice."JOURNAL OF ETHNOPHARMACOLOGY".2024 Jun;327:118014
57. [IF=9.9] Xiong Xiang et al."Protective effect of D-Cys on renal function in mice with chronic kidney disease."Food Frontiers.2024 Jan;:
56. [IF=8.1] Xiao-Li Yin et al."UHPLC-QTOF-MS-based untargeted metabolomic authentication of Chinese red wines according to their grape varieties."FOOD RESEARCH INTERNATIONAL.2023 Dec;:113923
55. [IF=3.1] Yunyuan Nong et al."Quality control for traditional Chinese medicine, Millettia Speciosa Champ, using ultra-high-performance liquid chromatography fingerprint, serum pharmacochemistry and network pharmacology."Analytical Methods.10.1039/D3AY01051A
54. [IF=5.4] Bo-Han Wang et al."Qufeng Xuanbi Formula inhibited benzo[a]pyrene-induced aggravated asthma airway mucus secretion by AhR/ROS/ERK pathway."JOURNAL OF ETHNOPHARMACOLOGY.10.1016/j.jep.2023.117203
53. [IF=4.6] Yanqiu Wang et al."Phytochemical Analysis, Antioxidant and Enzyme-Inhibitory Activities, and Multivariate Analysis of Insect Gall Extracts of Picea koraiensis Nakai."MOLECULES.2023 Jan;28(16):6021
52. [IF=4.7] Guo-Ying Chen et al."Rapid and sensitive detection of alkaline phosphatase and glucose oxidase activity through fluorescence and colorimetric dual-mode analysis based on CuO NPs@ZIF-8 mediated enzyme-cascade reactions."Nanoscale Advances.2023 Aug;:
51. [IF=6.2] Peijun Chai et al."Fabrication and application of molecularly imprinted polymer doped carbon dots coated silica stationary phase."ANALYTICA CHIMICA ACTA.2023 Sep;1275:341611
50. [IF=7.129] Kangchen Li et al."Uncovering mechanisms of Baojin Chenfei formula treatment for silicosis by inhibiting inflammation and fibrosis based on serum pharmacochemistry and network analysis."ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY.2023 Jul;260:115082
49. [IF=5.223] Rui Gui et al."Cyclocarya paliurus leaves alleviate hyperuricemic nephropathy via modulation of purine metabolism, antiinflammation, and antifibrosis."Journal of Functional Foods.2023 Apr;103:105485
48. [IF=2.65] Lifei Fan et al."Mechanism of Xiezhuo Huayu Yiqi Tongluo Formula in the Treatment of Uric Acid Nephropathy Based on Network Pharmacology, Molecular Docking, and In Vivo Experiments."Evidence-based Complementary and Alternative Medicine.2023;2023:6931644
47. [IF=3.118] Ruixue Li et al."Two new Ag-MOFs: Synthesis, structure, electrocatalytic hydrogen evolution and H2O2 electrochemical sensing."INORGANICA CHIMICA ACTA.2023 Jan;544:121208
46. [IF=5.988] Qihan Luo et al."Chang qing formula ameliorates colitis-associated colorectal cancer via suppressing IL-17/NF-κB/STAT3 pathway in mice as revealed by network pharmacology study."Frontiers in Pharmacology.2022; 13: 893231
45. [IF=3.571] Gen Xue et al."The qualitative and quantitative profiling for quality assessment of Yinxing Mihuan Oral Solution and the stability study on the focused flavonol glycosides."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS.2022 Sep;219:114937
44. [IF=9.231] Yuan Pan et al."Untargeted metabolomic analysis of Chinese red wines for geographical origin traceability by UPLC-QTOF-MS coupled with chemometrics."FOOD CHEMISTRY.2022 Nov;394:133473
43. [IF=3.373] Yiyuan Luo et al."Quality evaluation of Tetrastigma hemsleyanum different parts based on quantitative analysis of 42 bioactive constituents combined with multivariate statistical analysis."PHYTOCHEMICAL ANALYSIS. 2022 Apr 05
42. [IF=5.396] Yudan Zhao et al."Total flavonoids in Epimedium koreanum Nakai alleviated chronic renal failure via promoting AMPK activation."Food Funct. 2021 Dec;:
41. [IF=1.618] Wang Shengnan et al."Simultaneous Determination of Iridoid Glycosides, Phenylpropanoid Glycosides, Organic Acids, Nucleosides and Amino Acids in Scrophulariae Radix Processed by Different Processing Methods by HPLC-QTRAP-MS/MS."J Chromatogr Sci. 2021 Jun;
40. [IF=2.629] Zeng Yijia et al."Effects of Haima Duobian Pill in a Rat Model of Kidney Yang Deficiency Syndrome."Evid-Based Compl Alt. 2021;2021:6696234
39. [IF=4.142] Wang Chenxi et al."Systematic quality evaluation of Peiyuan Tongnao capsule by offline two-dimensional liquid chromatography/quadrupole-Orbitrap mass spectrometry and adjusted parallel reaction monitoring of quality markers."Anal Bioanal Chem. 2019 Nov;4
38. [IF=4.142] Zhang Wen Jie et al."Ratiometric assay of mercury ion based on nitrogen-doped carbon dots with two different optical signals: second-order scattering and fluorescence."Anal Bioanal Chem. 2020 Jul;412(18):4375-4382
37. [IF=0] Yun Yu et al."Excretory Function of Intestinal Tract Enhanced in Kidney Impaired Rats Caused by Adenine."Sci World J. 2016;2016:2695718
36. [IF=2.74] Yu Yun et al."Intestinal tract is an important organ for lowering serum uric acid in rats."Plos One. 2017 Dec;12(12):e0190194
35. [IF=2.896] Ya-yun Chen et al."Determination of free amino acids and nucleosides and nucleobases in Annona squamosa L. fruitages from different regions in China by LC-QTRAP-MS/MS."Anal Methods-Uk. 2017 Jun;9(25):3862-3869
34. [IF=4.411] Yujiao Hua et al."Quality Evaluation of Pseudostellariae Radix Based on Simultaneous Determination of Multiple Bioactive Components Combined with Grey Relational Analysis."Molecules. 2017 Jan;22(1):13
33. Hengqiang Zhao, Minmin Zhang, Qian Liu, Xiaoli Wang, Ruixuan Zhao, Yanling Geng, Tityee Wong, Shengbo Li & Xiao Wang (2018) A comprehensive screening shows that ergothioneine is the most abundant antioxidant in the wild macrofungus Phylloporia ribis Ryvard
32. Hengqiang Zhao, Minmin Zhang, Qian Liu, Xiaoli Wang, Ruixuan Zhao, Yanling Geng, Tityee Wong, Shengbo Li & Xiao Wang (2018) A comprehensive screening shows that ergothioneine is the most abundant antioxidant in the wild macrofungus Phylloporia ribis Ryvard
31. Huang, Dihui, et al. "Determination of global DNA methylation level by capillary electrophoresis using octyl-modified quaternized cellulose as an electrolyte additive." Analytical and bioanalytical chemistry 406.12 (2014): 2771-2777.https:##doi.org/10.1007
30. Song, G., Zhang, R., Jiang, X. et al. Nitrogen-doped reduced graphene oxide as a sensing platform for detection of guanine and application in cell necrosis. Chem. Pap. 74, 89–98 (2020). https:##doi.org/10.1007/s11696-019-00856-0
29. Zhipan Guo, Lin Li, Xinhe Liu, Guofan Wu, Xiaoquan Lu, Xiuhui Liu, 3,4,9,10-Perylene tetracarboxylic acid-multiwalled carbon nanotubes nanocomposites modified electrode for the simultaneous detection of adenine and guanine, Journal of Electroanalytical Che
28. Yun, Yu, et al. "Intestinal tract is an important organ for lowering serum uric acid in rats." PloS one 12.12 (2017): e0190194.https:##doi.org/10.1371/journal.pone.0190194
27. 崔晓,李欠,杨兰,邱黛玉.板蓝根颗粒中水溶性成分HPLC指纹图谱研究[J].农业科技与信息,2020(16):51-54+58.
26. 方妍,谢定源,丁璐,余永昊,罗鑫.优化高效液相色谱法测定鸡肉及鸡汤中嘌呤含量[J].中国调味品,2020,45(12):115-123.
25. 李金涛,李时军,宋章兴,向奎,赵华,崔应东,田朝晖.富硒当归淫羊藿方对大鼠睾丸SOD、MDA及血清性激素的影响[J].中国医药导报,2021,18(04):9-13+32.
24. 代莉莉, 金珊霞, 范梦莹,等. 季铵化β-环糊精接枝壳聚糖涂层用于毛细管电泳分离的研究[J]. 分析试验室, 2017, 08(v.36):15-18.
23. 高坤 宫瑞泽 李珊珊 等. UPLC法同时测定人参中13种核苷类成分[J]. 食品工业 2019.
22. 张磊, 王燕华, 刘畅,等. 驴皮胶及鹿皮胶的化学品质分析与评价[J]. 食品科学, 2018, 039(022):57-63.
21. 李明波, 段晓蓓, 张海林,等. 超声提取蝉花中核苷碱基的工艺条件[J]. 贵州农业科学, 2014, 000(003):154-157.
20. 郑晓珂 杨雁芸 张艳丽 等. UPLC-MS/MS法同时测定生地黄饮片中7种核苷类成分的含量[J]. 中药材 2018 041(005):1142-1144.
19. 张艳丽 杨雁芸 白志尧 等. UPLC-MS/MS法同时测定党参中7种核苷的含量[J]. 中国医药科学 2018 v.8;No.181(13):68-71.
18. 张艳丽 杨雁芸 白志尧 等. UPLC-MS/MS同时测定熟地黄中8个核苷类成分的含量[J]. 药物分析杂志 2019 039(004):608-614.
17. 孔静,贺晶,谭立,申立峰,李倩,张元元,吕珊,武秋红,陈梦杰,刘璐,李文霞,路东波,石任兵,姜艳艳.基于金花葵核苷类成分的质量表征关联分析研究[J].北京中医药大学学报,2017,40(05):420-427
16. 孙伟杰, 刘莉, 齐滨,等. 指纹图谱结合一测多评模式在鹿茸质量评价中的应用[J]. 中国医院药学杂志, 2019, 039(007):698-703.
15. 孙伟杰, 吕程, 杨重晖,等. 基于指纹图谱和多指标定量测定的鹿茸饮片质量控制研究[J]. 中草药, 2019, v.50;No.657(22):65-71.
14. 孙伟杰, 王铭, 杨洋,等. 基于化学指纹图谱和多指标成分含量测定的梅花鹿鹿茸质量评价[J]. 中华中医药学刊, 2020, v.38(03):196-200.
13. 王慧敏, 冯雪松. 应用氧化石墨烯/阳离子纤维素复合物的毛细管电泳分离研究[J]. 分析试验室, 2015, 34(012):1395-1398.
12. 朱祥祥 方颖莹 庞敏霞 等. 不同造模因素复制小鼠高尿酸血症模型的比较研究[J]. 浙江中医药大学学报 2018 02(v.42;No.280):50-56.
11. 石拓, 卢存龙, 李龙,等. 液相色谱-质谱研究高尿酸血症大鼠血清代谢组学[J]. 基础医学与临床, 2019, V39(03):337-342.
10. 卢存龙 李宇 李龙 等. Roux-en-Y胃旁路手术和袖状胃切除术对高尿酸血症大鼠代谢的影响及机制研究[J]. 中华肥胖与代谢病电子杂志 2017 3(4):198-207.
9. 谭涛,张矛,李追,刘洪,王寒琛.高压氧治疗对早期兔动静脉瘘模型中静脉血管平滑肌细胞增殖和迁移的影响[J].中国细胞生物学学报,2019,41(04):652-659.
8. 郭思彤, 许立拔, 梁小玲,等. 驱风止痛散对酵母联合腺嘌呤致痛风性肾病的作用及机制[J]. 现代医药卫生, 2019, 35(03):342-344.
7. 沈倩, 李贺, 雷珊珊,等. 铁皮石斛四妙方对高尿酸血症模型大鼠的降尿酸作用及机制研究.
6. 李宇轩, 宋林, 于学成,等. 苍术白虎汤对高尿酸血症性肾病小鼠作用机制的研究[J]. 四川中医, 2019, 37(02):44-47.
5. 高贤娴, 张宸, 杨楠,等. 益肾降浊胶囊对腺嘌呤致大鼠慢性肾功能衰竭的影响研究[J]. 人参研究, 2020, 032(001):17-20.
4. 彭江云. 益肾健脾泄浊汤对痛风性肾病模型大鼠肾功能及肾脏病理改变的影响[J]. 云南中医学院学报 2020年43卷1期, 1-6页, ISTIC, 2020.
3. 方萍, 苏洁, 陈炜,等. 无比山药丸对腺嘌呤致肾阳虚大鼠性功能障碍的影响[J]. 中国中药杂志, 2020, v.45(10):225-231.
2. 裴忆雪, 刘永杰, 张笛,等. 建立高尿酸血症性肾损害小鼠模型的实验研究[J]. 中国比较医学杂志, 2018, 028(009):46-54.
1. 卢忠英 郁建平 朱梦琪 等. 不同组合造模剂诱导大鼠高尿酸血症模型的比较研究[J]. 山地农业生物学报 2014(05):44-46+71.
技术资料暂无技术资料 索取技术资料








