漆酶

    
≥0.5u/mg solid

Laccase from Trametes versicolor

源叶
S10188 一键复制产品信息
80498-15-3
MFCD00131475
货号 规格 价格 上海 北京 武汉 南京 购买数量
S10188-100mg ≥0.5u/mg solid ¥240.00 >10 1 - 2
S10188-500mg ≥0.5u/mg solid ¥1000.00 6 2 - -
S10188-1g ≥0.5u/mg solid ¥2000.00 2 - - -
产品介绍 参考文献(64篇) 质检证书(COA) 摩尔浓度计算器 相关产品

产品介绍

活力:≥0.5u/mg 。

活力定义:1个酶活力单位(U)相当于在pH 5.0和25°C下每分钟转化1 μM儿茶酚所需的酶量.

性状:淡褐色粉末。

外观: 粉末
溶解性: 产品为提取物,会有部分不溶物,酶蛋白本身可以溶于水,不溶于不发挥催化作用,可以离心取上清液,或者过滤使用,不影响活性
储存条件: -20℃
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(64篇)

59. [IF=14.7] Zhang Jinlong et al."Advanced enzyme-assembled hydrogels for the remediation of contaminated water."Nature Communications.2025 Mar;16(1):1-11 58. [IF=3.7] Lisha Feng et al."Dipeptide–Copper Hybrid Nanoparticles as Efficient Laccase Mimics for Determination and Degradation of Phenolic Pollutants and Epinephrine."ACS Omega.2025;10(15):15553–15562 57. [IF=5.6] Yingjiang Wang et al."2-Methylbenzimidazole-copper nanozyme with high laccase activity for colorimetric differentiation and detection of aminophenol isomers."TALANTA.2024 Nov;279:126630 56. [IF=7.7] Usman Rasheed et al."One stone two birds: Recycling of an agri-waste to synthesize laccase-immobilized hierarchically porous magnetic biochar for efficient degradation of aflatoxin B1 in aqueous solutions and corn oil."INTERNATIONAL JOURNAL OF BIOLOGICAL 55. [IF=11.7] Ruifen Jiang et al."Boosting the photocatalytic decontamination efficiency using a supramolecular photoenzyme ensemble."Science Advances.2024 Sep;10(37) 54. [IF=7.4] Zeqi Zheng et al."Remediation effect and mechanism of immobilized laccase on actual trichloromethane-contaminated soil samples."Journal of Environmental Chemical Engineering.2024 Oct;12:113855 53. [IF=12.2] Yunlong Wang et al."Thiadiazol ligand-based laccase-like nanozymes with a high Cu+ ratio for efficient removal of tetracyclines through polymerization."JOURNAL OF HAZARDOUS MATERIALS.2024 Oct;478:135501 52. [IF=12.2] Tao Yang et al."Nucleobase-modulated copper nanomaterials with laccase-like activity for high-performance degradation and detection of phenolic pollutants."JOURNAL OF HAZARDOUS MATERIALS.2024 Sep;477:135292 51. [IF=8.6] Shichao Xu et al."Self-Assembled G-fold DNA/Amino Acid Amphiphiles-Based Oxidase-Mimetic Materials Exhibiting Drug-Degrading and Photoswitchable Capabilities."CHEMISTRY OF MATERIALS".2024;XXXX(XXX):XXX-XXX 50. [IF=8.8] Wenyi Shi et al."The effect of rice protein-polyphenols covalent and non-covalent interactions on the structure, functionality and in vitro digestion properties of rice protein."FOOD CHEMISTRY".2024 Apr;:139241 49. [IF=7.4] Qiaorong Tang et al."Multifunctional Manganese–Nucleotide Laccase-Mimicking Nanozyme for Degradation of Organic Pollutants and Visual Assay of Epinephrine via Smartphone."ANALYTICAL CHEMISTRY".2024;XXXX(XXX):XXX-XXX 48. [IF=4.2] Wenhao Xu et al."Novel Mechanoenzymatic Strategy for Lignin Depolymerization."INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH.2023;XXXX(XXX):XXX-XXX 47. [IF=9.5] Junhong Liu et al."Colorimetric Sensor Based on the Oxidase-Mimic Supramolecular Catalyst for Selective and Sensitive Biomolecular Detection."ACS Applied Materials & Interfaces.2023;15(42):48945–48951 46. [IF=8.8] Ying Li et al."Ultrasound and enzyme assisted preparation of novel lactoferrin-cereal phenolic acid conjugates: structural, physicochemical and functional properties."FOOD CHEMISTRY.10.1016/j.foodchem.2023.137572 45. [IF=10.7] Ruimin Ran et al."Active and intelligent collagen films containing laccase-catalyzed mulberry extract and pickering emulsion for fish preservation and freshness indicator."FOOD HYDROCOLLOIDS.10.1016/j.foodhyd.2023.109326 44. [IF=10.8] Wei Ji et al."Hydrogel-encapsulated medium chain lipid-modified zeolite imidazole framework-90 as a promising platform for oral delivery of proteins."JOURNAL OF CONTROLLED RELEASE.2024 Mar;367:93 43. [IF=4.3] Sun Ping et al."Copper formate–lysine nanoparticles with polyphenol oxidase-like activity for the detection of epinephrine."ANALYTICAL AND BIOANALYTICAL CHEMISTRY.2023 Dec;:1-10 42. [IF=8.2] Qurat Ul Ain et al."Synthesis of 2-amino-terephthalic acid crosslinked chitosan/bentonite hydrogel; an efficient adsorbent for anionic dyes and laccase."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Feb;258:128865 41. [IF=8.6] Shan Li et al."Oxidase-Mimetic Nanocatalyst Based on Geometry-Dependent Biomolecular Self-Assembly."CHEMISTRY OF MATERIALS.2023;XXXX(XXX):XXX-XXX 40. [IF=3.1] Wang Yunlong et al."Enhanced Removal of Phenols by MIZ-Cu Nanozyme Exhibiting Laccase-like Activity and Broader Adaptability to Temperature and pH Conditions."CHEMICAL RESEARCH IN CHINESE UNIVERSITIES.2023 Nov;:1-8 39. [IF=8] Pingping Tang et al."Collagen films functionalized with gallic acid in the presence of laccase for beef preservation."Food Packaging and Shelf Life.2023 Sep;38:101100 38. [IF=5.26] Pei Yakun et al."Identification and functional characterization of the dirigent gene family in Phryma leptostachya and the contribution of PlDIR1 in lignan biosynthesis."BMC PLANT BIOLOGY.2023 Dec;23(1):1-21 37. [IF=5.546] Aiping Chang et al."Laccase immobilized in adamantane-modified PEGMA-based microgels: Tuning enzyme activity by beta-cyclodextrin."EUROPEAN POLYMER JOURNAL.2023 Jul;194:112138 36. [IF=16.6] Xu Shichao et al."A supramolecular metalloenzyme possessing robust oxidase-mimetic catalytic function."Nature Communications.2023 Jul;14(1):1-14 35. [IF=19] Runshi Xiao et al."Selective Chemical Reactivity of Non-Fullerene Acceptor for Photoelectrochemical Bioassay of Urease Activity."ADVANCED FUNCTIONAL MATERIALS.2023 Jul;:2304915 34. [IF=7.968] Weichao Xu et al."Visible-light-driven removal of 4-tert-butylphenol by coupled photoredox and enzyme catalysis."Journal of Environmental Chemical Engineering.2023 Jun;11:109793 33. [IF=7.758] Luohao Yuan et al."Biomimetic Laccase-Cu2O@MOF for synergetic degradation and colorimetric detection of phenolic compounds in wastewater."Environmental Technology & Innovation.2023 May;30:103085 32. [IF=8.008] Xu Li et al."Bioinspired Coassembly of Copper Ions and Nicotinamide Adenine Dinucleotides for Single-Site Nanozyme with Dual Catalytic Functions."ANALYTICAL CHEMISTRY.2023;95(5):2865–2873 31. [IF=14.224] Zeqi Zheng et al."Effects of co-modified biochar immobilized laccase on remediation and bacterial community of PAHs-contaminated soil."JOURNAL OF HAZARDOUS MATERIALS.2023 Feb;443:130372 30. [IF=5.999] Changkai Yang et al."Collagen-based hydrogels cross-linked via laccase - mediated system incorporated with Fe3+ for wound dressing."COLLOIDS AND SURFACES B-BIOINTERFACES.2022 Nov;219:112825 29. [IF=6.408] Huang Sijun et al."Colorimetric assay of phosphate using a multicopper laccase-like nanozyme."MICROCHIMICA ACTA.2022 Oct;189(10):1-10 28. [IF=4.927] Yu Lei et al."Facile Fabrication of 1-Methylimidazole/Cu Nanozyme with Enhanced Laccase Activity for Fast Degradation and Sensitive Detection of Phenol Compounds."MOLECULES.2022 Jan;27(15):4712 27. [IF=9.231] Pingping Tang et al."Enhanced physicochemical and functional properties of collagen films cross-linked with laccase oxidized phenolic acids for active edible food packaging."FOOD CHEMISTRY.2022 Nov;393:133353 26. [IF=4.952] Jie Chen et al."A turn-on fluorescence biosensor for sensitive detection of carbaryl using flavourzyme-stabilized gold nanoclusters."Lwt Food Sci Technol. 2022 Mar;157:113099 25. [IF=2.137] Xiaolian Lin et al."Interaction between laccase and diethylstilbestrol based on multispectral and chromatography analyses."Journal Of Molecular Recognition. 2022 Jan 04 24. [IF=6.953] Nasira Khalid et al."Non-magnetic and magnetically responsive support materials immobilized peroxidases for biocatalytic degradation of emerging dye pollutants—A review."Int J Biol Macromol. 2022 May;207:387 23. [IF=6.558] Sijia Tian et al."Buffer species-dependent catalytic activity of Cu-Adenine as a laccase mimic for constructing sensor array to identify multiple phenols."Anal Chim Acta. 2022 Apr;1204:339725 22. [IF=3.361] Saira Shams et al."Facile synthesis of laccase mimic Cu/H3BTC MOF for efficient dye degradation and detection of phenolic pollutants."Rsc Adv. 2019 Dec;9(70):40845-40854 21. [IF=3.361] Liting Zhang et al."Laccase-immobilized tannic acid-mediated surface modification of halloysite nanotubes for efficient bisphenol-A degradation."Rsc Adv. 2019 Nov;9(67):38935-38942 20. [IF=4.302] Siqi Zhang et al."Robust magnetic laccase-mimicking nanozyme for oxidizing o-phenylenediamine and removing phenolic pollutants."J Environ Sci-China. 2020 Feb;88:103 19. [IF=5.03] Pingping Tang et al."Properties of bovine type I collagen hydrogelscross-linked with laccase-catalyzed gallic acid."Polym Degrad Stabil. 2021 Jul;189:109614 18. [IF=7.514] Ya-Ru Wang et al."Structural, gelation properties and microstructure of rice glutelin/sugar beet pectin composite gels: Effects of ionic strengths."Food Chem. 2021 Jun;346:128956 17. [IF=7.514] Yu Zhu et al."The functionality of laccase- or peroxidase-treated potato flour: Role of interactions between protein and protein/starch."Food Chem. 2021 Mar;341:128082 16. [IF=9.642] Sitong Zhang et al."Enzymatic hydrolysis of lignin by ligninolytic enzymes and analysis of the hydrolyzed lignin products."Bioresource Technol. 2020 May;304:122975 15. [IF=13.273] Juanjuan Wan et al."Enzyme immobilization on amino-functionalized Fe3O4@SiO2 via electrostatic interaction with enhancing biocatalysis in sludge dewatering."Chem Eng J. 2022 Jan;427:131976 14. [IF=3.186] Wang Yu et al."Catalytic Performance of Oligonucleotide-Templated Pt Nanozyme Evaluated by Laccase Substrates."Catal Lett. 2017 Aug;147(8):2144-2152 13. [IF=3.591] Hanbing Rao et al."Visual and fluorescence detection of pyrogallol based on a ratiometric fluorescence-enzyme system."New J Chem. 2017 Jul;41(14):6630-6637 12. [IF=6.986] Tao Chen et al."Simultaneous Enhancement of Bioactivity and Stability of Laccase by Cu2+/PAA/PPEGA Matrix for Efficient Biosensing and Recyclable Decontamination of Pyrocatechol."Anal Chem. 2017;89(3):2065–2072 11. [IF=7.086] Liu Hongyan et al."Study on transformation and degradation of bisphenol A by Trametes versicolor laccase and simulation of molecular docking."Chemosphere. 2019 Jun;224:743 10. [IF=9.229] Hao Liang et al."Multicopper Laccase Mimicking Nanozymes with Nucleotides as Ligands."Acs Appl Mater Inter. 2017;9(2):1352–1360 9. [IF=10.618] Tao Chen et al."A signal amplification system constructed by bi-enzymes and bi-nanospheres for sensitive detection of norepinephrine and miRNA."Biosens Bioelectron. 2019 Jan;124-125:224 8. Zhu, Yao, et al. "Controlled and facile synthesis of a self-assembled enzyme–inorganic catalyst based on flexible metal-coated fiber for an excellent removal of synthetic pollutants from aqueous environment." Applied Nanoscience 8.5 (2018): 1139-1148.https 7. Zhu, Yao, et al. "Covalent laccase immobilization on the surface of poly (vinylidene fluoride) polymer membrane for enhanced biocatalytic removal of dyes pollutants from aqueous environment." Colloids and Surfaces B: Biointerfaces 191 (2020): 111025.https: 6. Sun, Kai, et al. "Cu2+-assisted laccase from Trametes versicolor enhanced self-polyreaction of triclosan." Chemosphere 225 (2019): 745-754.https://doi.org/10.1016/j.chemosphere.2019.03.079 5. Zhu, Yao, et al. "Facile and controlled fabrication of Cu–Al layered double hydroxide nanosheets/laccase hybrid films: a route to efficient biocatalytic removal of congo red from aqueous solutions." ACS Applied Nano Materials 1.1 (2017): 284-292. 4. Yi-Fei Wang, Hu Xu, Lei Feng, Xian-Feng Shen, Chao Wang, Xiao-Kui Huo, Xiang-Ge Tian, Jing Ning, Bao-Jing Zhang, Cheng-Peng Sun, Sa Deng, Oxidative coupling of coumarins catalyzed by laccase, International Journal of Biological Macromolecules, Volume 135, 3. 张杰, 吴姗姗, 杨园媛,等. 漆酶对水中氯酚类物质的去除[J]. 环境化学, 2019. 2. 王 闻, 庄新姝, 余 强,等. 混合酶对经不同预处理的甜高粱秆渣的水解[J]. 农业工程学报, 2011, 27(13):147-151. 1. 刘红艳, 唐琳, 谢世伟,等. 基于分子模拟和光谱法分析漆酶与甲酚的相互作用[J]. 分析测试学报, 2020, v.39(03):41-47.

质检证书(COA)

如何获取质检证书(COA)?
请输入货号和一个与之匹配的批号。
例如:
批号:JS298415 货号:S20001-25g
在货品标签上如何找到货号和批号?

摩尔浓度计算器

质量 (mg) = 浓度 (mM) x 体积 (mL) x 分子摩尔量 (g/mol)

=
×
×

相关产品