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乙酰膽堿酯酶(電鰻魚)

    
200-1000 u/mg protein

ACHE;Acetylcholinesterase;Acetylcholine acetylhydrolase;Cholinesterase, Acetyl

源葉
S31315 一鍵復制產品信息
9000-81-1
MFCD00081268
貨號 規格 價格 上海 北京 武漢 南京 購買數量
S31315-500u贈底物
200-1000 u/mg protein ¥1400.00 >10 - - 2
S31315-2ku贈底物
200-1000 u/mg protein ¥4000.00 >10 - - -
S31315-10ku贈底物
200-1000 u/mg protein ¥13000.00 8 - - -
產品介紹 參考文獻(60篇) 質檢證書(COA) 摩爾濃度計算器 相關產品

產品介紹

酶活定義:One unit will hydrolyze 1.0 μmole of acetylcholine to choline and acetate per min at pH 8.0 at 37 °C.

類型:Type VI-S

性狀:含 Tris 緩沖鹽的凍干粉

分子量: 280 kDa

等電點: 5.5

外觀: 類白色或褐色粉末
溶解性: 20  mM  Tris  HCl  buffer,  pH  7.5:  soluble1.0  mg/mL,  clear(lit.)
儲存條件: -20℃
用途: Major degradative enzyme for acetylcholine in vivo. Converts acetylcholine + H2O to choline + acetic acid.
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(60篇)

55. [IF=4.3] Dan Zhao et al."Peroxidase-mimetic carbon dot based nanozyme hydrogel colorimetric sensor for visual trichlorfon detection."SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY.2025 Mar;:126027 54. [IF=7.7] Mingxin Dong et al."Application of magnetic aldehyde-functionalized ionic liquids for immobilization of acetylcholinesterase."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 Apr;:143101 53. [IF=3.7] Yulin Liu et al."Enzyme Inhibition-Mediated Distance-Based Paper Biosensor for Organophosphate Pesticide Detection in Food Samples."Chemosensors.2025 Apr;13(4):147 52. [IF=5.3] Dingping Zhao et al."Identification of Miscanthus?floridulus as a promising anti-Alzheimer’s disease and antidiabetic agent through bioactivity evaluations and chemical composition analyses."Arabian Journal of Chemistry.2024 Oct;:106037 51. [IF=5.5] Xiaojie Xu et al."The property differences of essential oils extracted by two methods from Dolichos lablab flowers: Chemical composition, anti-microorganism and cholinesterase inhibition activities."Sustainable Chemistry and Pharmacy.2024 Dec;42:101843 50. [IF=3.5] Yangzom Dawa et al."Screening and Characterization of Potential Acetylcholinesterase Inhibitors From Phyllanthus emblica L. Fruits Using Affinity Ultrafiltration Combined With Ultra-High-Performance Liquid Chromatography–Mass Spectrometry."JOURNAL OF FOOD 49. [IF=3.2] Xuhui Zhang et al."An Electrochemiluminescence Biosensor for Detection of Methyl Parathion With a Novel Probe Ru-MIL-100 via the Acetylcholinesterase Inhibition Coupled With the Reaction Between HAc and Triethylamine."LUMINESCENCE.2025 Jan;40(1):e70073 48. [IF=3.1] Yangzom Dawa et al."Cellulose filter paper immobilized acetylcholinesterase for rapid screening of enzyme inhibitors in Phyllanthus emblica L.."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS.2025 Jan;:116669 47. [IF=5.7] Jia-Nuo Zhang et al."Integration of High-Resolution LC-Q-TOF Mass Spectrometry and Multidimensional Chemical?Biological Analysis to Detect Nanomolar-Level Acetylcholinesterase Inhibitors from Different Parts of Zanthoxylum nitidum."JOURNAL OF AGRICULTURAL 46. [IF=4.7] Fan Minxia et al."Antiparasitic Activity and Potential Active Compounds from Azadirachta Indica Revealed by Affinity Ultrafiltration Chromatography–Mass Spectrometry with Acetylcholinesterase and Lactate Dehydrogenases."Journal of Analysis and Testing".20 45. [IF=6.1] Chen-Hui Chen et al."Novel Flavonol Alkaloids in Green Tea: Synthesis, Detection, and Anti-Alzheimer’s Disease Effect in a Transgenic Caenorhabditis elegans CL4176 Model."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY".2024;XXXX(XXX):XXX-XXX 44. [IF=9.231] Ying-zhuo Shen et al."Ultrasensitive alkaline phosphatase activity assay based on controllable signal probe production coupled with the cathodic photoelectrochemical analysis."FOOD CHEMISTRY.2023 Sep;421:136177 43. [IF=10.05] Yuanhua Zhang et al."Surface Patterning Enhanced Visualization for Ultrasensitive Naked-Eye Detection and RGB-Based High-Density Information Storage."Advanced Optical Materials.2023 Apr;:2300010 42. [IF=1.813] Liang Liu et al."Phytochemical Profiles and Bioactivities of Parnassia palustris L.."European Journal of Integrative Medicine.2022 Nov;:102207 41. [IF=4.342] Liang Wei et al."Optimization of solvent-free microwave extraction of essential oil from the fresh peel of Citrus medica L. var. arcodactylis Swingle by response surface methodology, chemical composition and activity characterization."SCIENTIA HORTICULTUR 40. [IF=9.231] Ting Zhao et al."Smartphone-based colorimetric sensor array using gold nanoparticles for rapid distinguishment of multiple pesticides in real samples."FOOD CHEMISTRY.2023 Mar;404:134768 39. [IF=5.464] Liang Wei et al."Essential oil extraction and evaluation from the fresh Platycladus orientalis (L.) Franco seed peel waste by an environment-friendly method."Sustainable Chemistry and Pharmacy.2022 Oct;29:100771 38. [IF=5.304] Shaoqing Lu et al."Construction of a liquid Crystal-based Sensing Platform for the Sensitive Detection of Catalase in Human Serum."MICROCHEMICAL JOURNAL.2022 Oct;181:107705 37. [IF=3.493] Hao Zhang et al."A simple and green method for direct determination of hydrogen peroxide and hypochlorite in household disinfectants based on personal glucose meter."Enzyme Microb Tech. 2022 Apr;155:109996 36. [IF=4.952] Bailiang Zheng et al.Green extraction of phenolic compounds from foxtail millet bran by ultrasonic-assisted deep eutectic solvent extraction: Optimization, comparison and bioactivities.Lwt Food Sci Technol. 2022 Jan;154:112740 35. [IF=2.861] Hui-Na Yao et al."Alkaloids with acetylcholinesterase inhibitory activity from Corydalis racemosa (Thunb.) Pers."Natural Product Research. 2019 Dec 07 34. [IF=3.205] Hua Guo et al."A strategy to discover selective α-glucosidase/acetylcholinesterase inhibitors from five function-similar citrus herbs through LC-Q-TOF-MS, bioassay and virtual screening."J Chromatogr B. 2021 Jun;1174:122722 33. [IF=3.205] Hui-Peng Song et al."A strategy to discover lead chemome from traditional Chinese medicines based on natural chromatogram-effect correlation (NCEC) and natural structure-effect correlation (NSEC): Mahonia bealei and Mahonia fortunei as a case study."J Chr 32. [IF=4.142] Qu Fei et al."Ratiometric detection of alkaline phosphatase based on aggregation-induced emission enhancement."Anal Bioanal Chem. 2019 Nov;411(28):7431-7440 31. [IF=4.24] Nana Li et al."Characterization of phenolic compounds and anti-acetylcholinase activity of coconut shells."Food Biosci. 2021 Aug;42:101204 30. [IF=4.616] Jiarui Yu et al."A photoelectrochemical sensor based on an acetylcholinesterase-CdS/ZnO-modified extended-gate field-effect transistor for glyphosate detection."Analyst. 2021 Jul;146(14):4595-4604 29. [IF=5.833] Qing Zhihe et al."Thiol-suppressed I2-etching of AuNRs: acetylcholinesterase-mediated colorimetric detection of organophosphorus pesticides."Microchim Acta. 2020 Sep;187(9):1-9 28. [IF=6.986] Yue Hu et al."Dual-Mode Sensing Platform for Electrochemiluminescence and Colorimetry Detection Based on a Closed Bipolar Electrode."Anal Chem. 2021;93(36):12367–12373 27. [IF=7.46] Shaoqing Lu et al."Highly sensitive and label-free detection of catalase by a H2O2-responsive liquid crystal sensing platform."Sensor Actuat B-Chem. 2021 Oct;344:130279 26. [IF=10.588] Qipeng Shi et al."In vitro biolayer interferometry analysis of acetylcholinesterase as a potential target of aryl-organophosphorus flame-retardants."J Hazard Mater. 2021 May;409:124999 25. [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 24. [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 23. [IF=6.543] Zhang Jing et al."Studies of the Anti-amnesic Effects and Mechanisms of Single and Combined Use of Donepezil and Ginkgo Ketoester Tablet on Scopolamine-Induced Memory Impairment in Mice."Oxid Med Cell Longev. 2019;2019:8636835 22. [IF=6.986] Yue Zhao et al."Detection of Various Biomarkers and Enzymes via a Nanocluster-Based Fluorescence Turn-on Sensing Platform."Anal Chem. 2018;90(24):14578–14585 21. [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 20. Longbin Xu, Xu He, Pinyi Ma, Xin Liu, Fangmei Zhang, Ying Sun, Daqian Song, Xinghua Wang, A water-soluble fluorescent probe for the sensitive detection of endogenous alkaline phosphatase in living cells, Dyes and Pigments, Volume 159, 2018, Pages 584-589, 19. 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 18. 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 17. Qing, Z., Li, Y., Li, Y. et al. Thiol-suppressed I2-etching of AuNRs: acetylcholinesterase-mediated colorimetric detection of organophosphorus pesticides. Microchim Acta 187, 497 (2020). https://doi.org/10.1007/s00604-020-04486-2 16. Zhai, Meng‐Yu, et al. "Development of a novel nano‐based detection card by electrospinning for rapid and sensitive analysis of pesticide residues." Journal of the Science of Food and Agriculture 100.12 (2020): 4400-4408.https://doi.org/10.1002/jsfa.10477 15. 王煥南, 楊華, 顧英琳,等. 牡蠣共生細菌的分離,鑒定及次級代謝產物生物活性研究[J]. 聊城大學學報(自然科學版), 2019(5). 14. 王煥南, 趙艷, 王向月,等. 日照海域牡蠣共生真菌的分離,鑒定及生物活性研究[J]. 濟寧醫學院學報, 2020(3):188-193. 13. 凌慶枝, 董麗輝, 范三微,等. 蛇足石杉體內抑制乙酰膽堿酯酶活性物質的內生真菌的分離[J]. 安徽農業科學, 2012(30):14706-14707. 12. 羅琴, 祖云鴻, 石開瓊,等. 微酸性電解水去除蔬菜農藥殘留效果的研究[J]. 食品安全質量檢測學報, 2014(11):3657-3663. 11. 韓嵐 季兆潔 陳衛東 等. 四物湯對血管性癡呆大鼠的神經保護作用及其機制研究[J]. 安徽中醫藥大學學報 2015 34(4):69-73. 10. 邢志恒, 呂娜, 何忠梅,等. 黃藤素衍生物的合成及其抑制乙酰膽堿酯酶活性研究[J]. 分析化學, 2018, 46(005):684-689. 9. 何忠梅,呂娜,南敏倫,趙昱瑋,赫玉芳,孟令文,孫佳明,張連學.靶向親和-液相色譜-質譜聯用技術快速篩選黃藤總生物堿中乙酰膽堿酯酶抑制劑[J].分析化學,2017,45(02):211-216. 8. 常艷兵,楊曉麗,何瓊.鉑鈷合金修飾的乙酰膽堿酯酶生物傳感器的研制鉑鈷合金修飾的乙酰膽堿酯酶生物傳感器的研制[J].云南化工,2013,40(04):1-5. 7. 郭明,燕冰宇,周珊,王春鵬,儲富祥.纖維素基固載酶材料的制備及乙酰膽堿酯酶的固定化性能[J].高分子材料科學與工程,2013,29(10):150-154+159. 6. 伍周玲, 燕冰宇, 梁東軍,等. 新型固載酶生物傳感器制備及食品中有機磷農藥檢測[J]. 中國食品學報, 2015, 15(003):166-174. 5. 伍周玲, 梁東軍, 郭明,等. 新型固定化乙酰膽堿酯酶傳感器的制備及氨基甲酸酯農殘檢測[J]. 浙江農林大學學報, 2014(3). 4. 郭明 梁東軍 譚賢. 農藥殘留檢測用新型碳納米管固載酶生物傳感器的制備及其電學傳感性能分析[J]. 農藥學學報 2014. 3. 于浩然 高翔 田振坤 等. 五味子各萃取物抗氧化作用及抑制乙酰膽堿酯酶活性研究[J]. 現代中藥研究與實踐 2017 031(004):33-36. 2. 巫川 王樹濤 朱婧 尤宏.BDE-47和BDE-209對乙酰膽堿酯酶(AChE)活性的抑制特性及分子作用力研究[J].生態毒理學報 2017 12(06):99-106. 1. 曹婷婷 陳俊濤 楊春柳 田云鋒 馮騰壘 馬正月.4-吡啶基噻唑-2-胺衍生物的設計、合成及其對乙酰膽堿酯酶的抑制活性研究[J].藥學學報 2016 51(09):1436-1440.

質檢證書(COA)

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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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