碱性磷酸酶

    
≥3,000 units/mg protein,小牛肠,50%甘油溶液

ClAP

源叶
S10090 一键复制产品信息
9001-78-9
MFCD00131849
碱性磷酸酯
货号 规格 价格 上海 北京 武汉 南京 购买数量
S10090-1mg ≥3,000 units/mg protein,小牛肠,50%甘油溶液 ¥2400.00 5 - - -
S10090-5mg ≥3,000 units/mg protein,小牛肠,50%甘油溶液 ¥11300.00 货期:2-3周 - - -
产品介绍 参考文献(43篇) 质检证书(COA) 摩尔浓度计算器 相关产品

产品介绍

活力定义:One Unit hydrolyzes 1µmole of p-nitrophenol phosphate per minute at 37°C, pH 9.8.

来源:小牛肠

分子量:140KDa

比活力:3000~6000u/mg protein

等电点:5.7

性状:悬浮液。

 

储存条件: 2-8℃
用途: 本品仅供科研,不得用于其它用途。
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。

参考文献(43篇)

38. [IF=9.231] Yaqiong Zhang et al."Inhibitory effects of oat peptides on lipolysis: A physicochemical perspective."FOOD CHEMISTRY.2022 Dec;396:133621 37. [IF=4.821] Fujian Xu et al."UiO-66-NH2: An easily attainable and label-free turn-on probe for facile fluorescence sensing of alkaline phosphatase."MICROCHEMICAL JOURNAL. 2022 Aug;179:107516 36. [IF=7.46] Xiaochun Wang et al."A near-infrared fluorescent chemosensor with a remarkably large Stokes shift for the ultrasensitive detection of tyrosinase activity and bioimaging in living cells and mouse xenograft model."Sensor Actuat B-Chem. 2022 Mar;354:131211 35. [IF=4.142] Ye Xiwen et al."Ultrabright silicon nanoparticle fluorescence probe for sensitive detection of cholesterol in human serum."Anal Bioanal Chem. 2022 Mar;:1-10 34. [IF=4.142] Li Cong et al."A fluorescence strategy for monitoring α-glucosidase activity and screening its inhibitors from Chinese herbal medicines based on Cu nanoclusters with aggregation-induced emission."Anal Bioanal Chem. 2021 Apr;413(9):2553-2563 33. [IF=4.749] Jing Wang et al."Label-Free Colorimetric Detection of Acid Phosphatase and Screening of Its Inhibitors Based on Biomimetic Oxidase Activity of MnO2 Nanosheets."Acs Biomater Sci Eng. 2020;6(5):3132–3138 32. [IF=5.833] Zhou Jiao et al."Fluorometric and resonance Rayleigh scattering dual-mode bioprobe for determination of the activity of alkaline phosphatase based on the use of CoOOH nanoflakes and cobalt(II)-dependent DNAzyme-assisted amplification."Microchim Acta. 201 31. [IF=6.986] Chun-Qin Zhao et al."Plasmonic Enhanced Gold Nanoclusters-Based Photoelectrochemical Biosensor for Sensitive Alkaline Phosphatase Activity Analysis."Anal Chem. 2020;92(10):6886–6892 30. [IF=7.514] Lele Zhou et al."Construction of lipid layer and monitoring its digestion by optical interferometry."Food Chem. 2022 Jan;366:130553 29. [IF=7.514] Fei Qu et al."Dual lanthanide-probe based on coordination polymer networks for ratiometric detection of glyphosate in food samples."Food Chem. 2020 Sep;323:126815 28. [IF=4.142] Li Fan Shi et al."Biosensor of alkaline phosphatase based on non-fluorescent FRET of Eu3+-doped oxide nanoparticles and phosphorylated peptide labeled with cyanine dye."Anal Bioanal Chem. 2017 Sep;409(23):5491-5500 27. [IF=4.142] Wang Xiaoyan et al."A novel switchable fluorescent sensor for facile and highly sensitive detection of alkaline phosphatase activity in a water environment with gold/silver nanoclusters."Anal Bioanal Chem. 2019 Feb;411(5):1009-1017 26. [IF=4.613] Longbin Xu et al."A water-soluble fluorescent probe for the sensitive detection of endogenous alkaline phosphatase in living cells."Dyes Pigments. 2018 Dec;159:584 25. [IF=5.339] Fangmei Zhang et al."Rapid aqueous synthesis of CuInS/ZnS quantum dots as sensor probe for alkaline phosphatase detection and targeted imaging in cancer cells."Talanta. 2018 Nov;189:411 24. [IF=5.383] Lin Hu et al."Determination of staphylococcus aureus mycoprotein by using ELISA based on oscillating chemical kinetic detection."Electrochim Acta. 2019 Mar;298:670 23. [IF=5.833] Hu Yanling et al."Determination of the activity of alkaline phosphatase based on aggregation-induced quenching of the fluorescence of copper nanoclusters."Microchim Acta. 2019 Jan;186(1):1-8 22. [IF=5.833] Zhang Fangmei et al."Enzymatic determination of uric acid using water-soluble CuInS/ZnS quantum dots as a fluorescent probe."Microchim Acta. 2018 Nov;185(11):1-8 21. [IF=6.558] Yu-Ting Gong et al."Switched photoelectrochemistry of carbon dots for split-type immunoassay."Anal Chim Acta. 2018 Jul;1014:19 20. [IF=6.785] Lu-Yi Jin et al."Versatile and Amplified Biosensing through Enzymatic Cascade Reaction by Coupling Alkaline Phosphatase in Situ Generation of Photoresponsive Nanozyme."Anal Chem. 2015;87(20):10429–10436 19. [IF=7.1] Fangmei Zhang et al."Dopamine-modified Mn-doped ZnS quantum dots fluorescence probe for the sensitive detection of tyrosinase in serum samples and living cells imaging."Sensor Actuat B-Chem. 2018 Mar;256:1069 18. [IF=7.1] Fangmei Zhang et al."Dopamine-modified Mn-doped ZnS quantum dots fluorescence probe for the sensitive detection of tyrosinase in serum samples and living cells imaging."Sensor Actuat B-Chem. 2018 Mar;256:1069 17. [IF=7.1] Shaomei Xu et al."A fluorescence resonance energy transfer biosensor based on carbon dots and gold nanoparticles for the detection of trypsin."Sensor Actuat B-Chem. 2018 Nov;273:1015 16. [IF=7.1] Ping Li et al."A novel strategy for amplified probing versatile biomolecules through a photoswitchable biocatalytic cascade."Sensor Actuat B-Chem. 2018 Jun;262:110 15. [IF=10.257] Xue–Lian Hu et al."Switchable fluorescence of gold nanoclusters for probing the activity of alkaline phosphatase and its application in immunoassay."Biosens Bioelectron. 2016 Mar;77:666 14. Wang, X., Liu, Z., Zhao, W. et al. A novel switchable fluorescent sensor for facile and highly sensitive detection of alkaline phosphatase activity in a water environment with gold/silver nanoclusters. Anal Bioanal Chem 411, 1009–1017 (2019). https://doi.o 13. Qu, Fei, Han Wang, and Jinmao You. "Dual lanthanide-probe based on coordination polymer networks for ratiometric detection of glyphosate in food samples." Food chemistry 323 (2020): 126815.https://doi.org/10.1016/j.foodchem.2020.126815 12. Zhang, Fangmei, et al. "Dopamine-modified Mn-doped ZnS quantum dots fluorescence probe for the sensitive detection of tyrosinase in serum samples and living cells imaging." Sensors and Actuators B: Chemical 256 (2018): 1069-1077.https://doi.org/10.1016/j.s 11. Shaomei Xu, Fangmei Zhang, Longbin Xu, Xin Liu, Pinyi Ma, Ying Sun, Xinghua Wang, Daqian Song, A fluorescence resonance energy transfer biosensor based on carbon dots and gold nanoparticles for the detection of trypsin, Sensors and Actuators B: Chemical, V 10. Ben Hao Li, Ya Ling Zhang, Fan Shi Li, Wei Wang, Juan Liu, Min Liu, Yi Cui, Xia Bing Li, Bao Lin Li, A novel sensor for the detection of alkaline phosphatase activity based on the self-assembly of Eu3+-doped oxide nanoparticles and heptamethine cyanine dye 9. Hongdan Li, Yuan Sun, Yinhuan Li, Jianxiu Du, Alkaline phosphatase activity assay with luminescent metal organic frameworks-based chemiluminescent resonance energy transfer platform, Microchemical Journal, Volume 160, Part B, 2021, 105665, ISSN 0026-265X, 8. Li, Fan Shi, et al. "Biosensor of alkaline phosphatase based on non-fluorescent FRET of Eu 3+-doped oxide nanoparticles and phosphorylated peptide labeled with cyanine dye." Analytical and bioanalytical chemistry 409.23 (2017): 5491-5500.https://doi.org/10 7. Hu, Yanling, et al. "Determination of the activity of alkaline phosphatase based on aggregation-induced quenching of the fluorescence of copper nanoclusters." Microchimica Acta 186.1 (2019): 1-8.https://doi.org/10.1007/s00604-018-3122-x 6. Shangguan, Jin-Wen, et al. "Microfluidic PDMS on paper (POP) devices." Lab on a Chip 17.1 (2017): 120-127.https://doi.org/10.1039/C6LC01250G 5. Qu, Fei, et al. "Fluorescent Detection of 2, 4-Dichlorophenoxyacetic Acid in Food Samples Based on Covalent Organic Frameworks and MnO 2 Nanosheets." Food Analytical Methods 13.10 (2020): 1842-1851.https://doi.org/10.1007/s12161-020-01807-2 4. Li, Qi, Wei Liu, and Xiashi Zhu. "Green Choline Amino Acid Ionic Liquid Aqueous Two-Phase Extraction Coupled with HPLC for Analysis Sunset Yellow in Beverages." Food Analytical Methods 12.11 (2019): 2527-2534. 3. Li, Qi, Wei Liu, and Xiashi Zhu. "Green Choline Amino Acid Ionic Liquid Aqueous Two-Phase Extraction Coupled with HPLC for Analysis Sunset Yellow in Beverages." Food Analytical Methods 12.11 (2019): 2527-2534. 2. 刘俊渤, 王艳玲, 唐珊珊,等. 恩诺沙星分子印迹聚合物的制备及表征[J]. 中国兽药杂志, 2014, 48(3):30-34. 1. 邢亚群, 王迪生, 王群,等. 精骨补肾颗粒对地塞米松诱导骨质疏松症大鼠的保护作用[J]. 中成药, 2016(6):1221-1225.

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