玖玖资源网站,爆乳久久久,日韩精品乱码久久久蜜桃,精品呦国产一区二区三区,国产伦高清一区二区三区,sese一区二区,午夜精品福利一区二区三区,三级黄色网站久久免费

首頁(yè)
訂購(gòu)/客服:400-666-5481

表沒(méi)食子兒茶素沒(méi)食子酸酯

    
分析標(biāo)準(zhǔn)品,含量91.4%,可溯源

Epigallocatechin gallate/EGCG

源葉
A10352 一鍵復(fù)制產(chǎn)品信息
989-51-5
C22H18O11
458.37
MFCD00075940
貨號(hào) 規(guī)格 價(jià)格 上海 北京 武漢 南京 購(gòu)買(mǎi)數(shù)量
A10352-20mg
分析標(biāo)準(zhǔn)品,含量91.4%,可溯源 ¥360.00 >10 - - -
產(chǎn)品介紹 參考文獻(xiàn)(69篇) 質(zhì)檢證書(shū)(COA) 摩爾濃度計(jì)算器 相關(guān)產(chǎn)品

產(chǎn)品介紹

熔點(diǎn): 222-224°C
沸點(diǎn): 909.1°C at 760 mmHg
比旋光度: D -185 ±2°(ethanol)
外觀: 白色至淡粉色粉末
溶解性: 易溶于水。
儲(chǔ)存條件: 2-8℃
注意: 部分產(chǎn)品我司僅能提供部分信息,我司不保證所提供信息的權(quán)威性,僅供客戶參考交流研究之用。

參考文獻(xiàn)(69篇)

64. [IF=6] Jinhai Luo et al."Anti-Obesity Effects of Adzuki Bean Saponins in Improving Lipid Metabolism Through Reducing Oxidative Stress and Alleviating Mitochondrial Abnormality by Activating the PI3K/Akt/GSK3β/β-Catenin Signaling Pathway."Antioxidants.2024 Nov;13 63. [IF=11] Weiwei Zhang et al."A strategy to improve 3D printing performance: interaction between epigallocatechin gallate (EGCG) and honey bee pupa protein (HBPP)."FOOD HYDROCOLLOIDS.2024 Nov;:110845 62. [IF=13] Mengxue Zhou et al."EGCG-enabled Deep Tumor Penetration of Phosphatase and Acidity Dual-responsive Nanotherapeutics for Combinatory Therapy of Breast Cancer."Small.2024 Nov;:2406245 61. [IF=5.7] Xueqian Guo et al."Epigallocatechin Gallate Combine with Ice Glazing: A Promising Way to Preserve the Quality of Frozen Eriocheir sinensis."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2024;XXXX(XXX):XXX-XXX 60. [IF=8.5] Xiaomei Yan et al."Exogenous theanine application improves the fresh leaf yield and quality of an albino green tea Huangjinya."FOOD CHEMISTRY.2024 Nov;:142298 59. [IF=7.6] Chen Xiangxiang et al."Deactivating mutations in the catalytic site of a companion serine carboxypeptidase-like acyltransferase enhance catechin galloylation in Camellia plants."Horticulture Research.2024 Dec;: 58. [IF=4.7] Bernard Ntezimana et al."Integrated Transcriptomic and Metabolomic Analyses Reveal Changes in Aroma- and Taste-Related Substances During the Withering Process of Black Tea."Foods.2024 Jan;13(23):3977 57. [IF=6] Jinling Li et al."A comparative study of the effects of three typical phenolic compound on surimi gel and its mechanism."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 Jan;215:117200 56. [IF=4.7] Yan Huang et al."White Tea Aqueous Extract: A Potential Anti-Aging Agent Against High-Fat Diet-Induced Senescence in Drosophila melanogaster."Foods.2024 Jan;13(24):4034 55. [IF=6.1] Jianmei Xu et al."A genus-specific R2R3 MYB transcription factor, CsMYB34, regulates galloylated catechin biosynthesis in Camellia sinensis."PLANT PHYSIOLOGY AND BIOCHEMISTRY.2025 Feb;219:109401 54. [IF=8.5] Zi-Jian Feng et al."Regulation of catechins with different structure characteristics on the physicochemical properties of casein and the structure-activity relationship."FOOD CHEMISTRY.2025 Mar;467:142515 53. [IF=4.7] Zhaobao Wu et al."Differences in the Quality Components of Wuyi Rock Tea and Huizhou Rock Tea."Foods.2025 Jan;14(1):4 52. [IF=7] Lunfang Huang et al."The processing of shaking and standing improves the taste quality of summer black tea."FOOD RESEARCH INTERNATIONAL.2024 Dec;:115545 51. [IF=5.5] Xuelian Hu et al."Biodegradable Polymeric Microspheres with Enhanced Hemostatic and Antibacterial Properties for Wound Healing."BIOMACROMOLECULES.2025;XXXX(XXX):XXX-XXX 50. [IF=4.8] Shiqi Li et al."Enhancing antioxidant activity and functional benefits of kiwi ice wine via freeze concentration techniques and apple pomace freeze-dried powder."Food Bioscience.2025 Feb;64:106006 49. [IF=8.5] Junfeng Tan et al."The influence of pH on auto-oxidative browning of flavan-3-ols and gallic acid as a promising browning inhibitor."FOOD CHEMISTRY.2025 May;473:143066 48. [IF=8.5] Lu Li et al."Non-volatile metabolite and in vitro bioactivity differences in green, white, and black teas."FOOD CHEMISTRY.2025 Jun;477:143580 47. [IF=8.5] Yizhe Chen et al."Theoretical insight into the antioxidant activity of Theasinensin A."FOOD CHEMISTRY.2025 Jun;477:143629 46. [IF=5.1] Zhenni Zhai et al."Structural modification of lactoferrin by epigallocatechin gallate: elucidation of its structure and exploration of its potential in promoting osteoblast proliferation."Food & Function.2025 Mar;: 45. [IF=5.7] Tianyu Luo et al."Tea Extracellular Vesicle-Derived MicroRNAs Contribute to Alleviate Intestinal Inflammation by Reprogramming Macrophages."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2025;XXXX(XXX):XXX-XXX 44. [IF=8.5] Lu Tang et al."Adsorption and in vitro controlled–release properties of a soybean cellulose nanocrystal/polyacrylamide–based hydrogel as a carrier for different polyphenols."FOOD CHEMISTRY.2025 Jul;479:143843 43. [IF=7.7] Shijie Zhang et al."Formation mechanism of polyphenol-Tartary buckwheat starch complexes and their Pickering emulsifying capacity."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 May;307:142087 42. [IF=7] Zixi Yang et al."Investigation of the classification criteria and flavor compounds in diversified commercially ripened Pu-erh teas."FOOD RESEARCH INTERNATIONAL.2025 Mar;:116198 41. [IF=12.8] Ling Li et al."A protective growth factor delivery strategy based on polyphenol-protein self-assembly to promote inflammatory bone regeneration."BIOMATERIALS.2025 Sep;320:123272 40. [IF=4.5] Yi Wang et al."Mucus Barrier Weakens the Inhibitory Activity of Pyrogallol-Based Polyphenols Against α-Glucosidase."MOLECULAR NUTRITION & FOOD RESEARCH.2025 Mar;:e202400838 39. [IF=6.2] Bingsong Ma et al."Revealing the formation of aged aroma in raw Pu-erh tea during the storage through comprehensive two-dimensional gas chromatography coupled to time-of-flight mass spectrometry and molecular docking."Current Research in Food Science.2025 38. [IF=4.7] Yuanyuan Wei et al."Rapid Covalent Bonding of Walnut Protein Isolates to EGCG: Unveiling the Ultrasound-Assisted Ratio Optimization, Binding Mechanism, and Structural–Functional Transformations."Foods.2025 Jan;14(7):1204 37. [IF=11] Qingbo Jiao et al."Enhancing protein interactions in Zein-β-lactoglobulin complexes by (-)-Epigallocatechin-3-gallate: Expanding the potential of molecular glues in food application."FOOD HYDROCOLLOIDS.2025 Nov;167:111398 36. [IF=7.7] Youshudi Xie et al."Identification and characterization of two hydrolase genes involved in the hydrolysis of galloylated catechin in the tea plant Camellia sinensis."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 May;308:142620 35. [IF=6.5] Cunqiang Ma et al."Grade identification of ripened Pu-erh teas, and their differences of phenolic components, in vitro antioxidant capacity and hypoglycemic effect."Food Chemistry-X.2025 Apr;:102421 34. [IF=6.7] Guohuo Wu et al."Tea polyphenol EGCG enhances the improvements of calorie restriction on hepatic steatosis and obesity while reducing its adverse outcomes in obese rats."PHYTOMEDICINE.2025 Apr;:156744 33. [IF=11] Gang Xu et al."Aging alleviates the negative impact of citrus peel polysaccharides on the inhibitory effect of EGCG against α-Amylase."FOOD HYDROCOLLOIDS.2025 Apr;:111403 32. [IF=6.5] Yong Luo et al."The distribution of catechins and their derivatives among 114 Camellia plants and their correlation in different species and tea-processing suitability."Food Chemistry-X.2025 Apr;27:102461 31. [IF=8.5] Qi Chen et al."Trapping phenylacetaldehyde by litchi shell polyphenols and their characteristic catechins in chemical model and roast pork patty: Identification of catechins-adducts and toxicity assessment."FOOD CHEMISTRY.2025 Apr;:144357 30. [IF=7] Guangshan Zhao et al."Tea drinking effectively improves symptoms of diabetes and prevents hepatorenal damage in mice."FOOD RESEARCH INTERNATIONAL.2025 Apr;:116502 29. [IF=8.5] Chuxin Ke et al."Soybean protein-soybean polysaccharide-EGCG ternary complex stabilized nanoemulsion and its application in loading pterostilbene: Emulsion stabilization mechanism, physical and digestion characteristics."FOOD CHEMISTRY.2025 Apr;:144444 28. [IF=8.5] Hongcai Li et al."Interaction mechanism, intestinal delivery and sustained release potential of co-encapsulated EGCG based on sulfobutylether-β-cyclodextrin/casein composite nanoparticles."FOOD CHEMISTRY.2025 Apr;:144436 27. [IF=6.5] Jingzhe Li et al."Exploring seasonal differences in taste and nonvolatiles of Lu'an Guapian tea and perceptual interactions between odorants and EGCG via multi-sensory analysis and metabolomics."Food Chemistry-X.2025 Apr;:102497 26. [IF=2.7] De-Huan Yang et al."Classification of Lu'an Gua Pian tea before and after Qingming Festival using HPLC-DAD analysis: A comparison for different data analysis strategy."Analytical Methods.2025 Apr;: 25. [IF=4.2] Langhua Zhou et al."Antioxidant and Anticancer Mechanisms of Unique Polyphenols in Camellia ptilophylla: Focus on Gallocatechin-3,5-di-O-gallate and 1,2,4,6-Tetra-O-galloyl-β-D-glucopyranose."MOLECULES.2025 Apr;30(9):1919 24. [IF=2.7] Yudi Huang et al."Preparation of ROS-Responsive Drug-Loaded Particles and Microneedles for Diabetic Wounds Healing."JOURNAL OF APPLIED POLYMER SCIENCE.2025 Apr;:e57181 23. [IF=4.7] Rui Wu et al."Chemical, Sensory Variations in Black Teas from Six Tea Cultivars in Jingshan, China."Foods.2025 Jan;14(9):1558 22. [IF=4.8] Zixin Zhao et al."Extraction effects of eight deep eutectic solvents on dianhong black tea: From chemical composition analysis to antioxidant and α-glucosidase inhibitory assessments."Food Bioscience.2024 Oct;61:104923 21. [IF=6.3] Zhao Wanli et al."Epigallocatechin-3-gallate protects bovine ruminal epithelial cells against lipopolysaccharide-induced inflammatory damage by activating autophagy."Journal of Animal Science and Biotechnology.2024 Dec;15(1):1-15 20. [IF=4.7] Fengchao Zhou et al."Influence of EGCG (Epigallocatechin Gallate) on Physicochemical–Rheological Properties of Surimi Gel and Mechanism Based on Molecular Docking."Foods.2024 Jan;13(15):2412 19. [IF=5.7] Jiahao Chen et al."Dynamic DNA methylation modification in catechins and terpenoids biosynthesis during tea plant (Camellia sinensis) leaf development."Horticultural Plant Journal.2024 Jul;: 18. [IF=7] Xuyang Liu et al."LC-MS and GC–MS based metabolomics analysis revealed the impact of tea trichomes on the chemical and flavor characteristics of white tea."FOOD RESEARCH INTERNATIONAL.2024 Sep;191:114740 17. [IF=8.5] Guojian Deng et al."Mechanism of key volatiles in osmanthus scented green tea on the improvement of its aroma and taste quality."FOOD CHEMISTRY.2024 Dec;460:140560 16. [IF=2.6] Yin Feilong et al."Peach gum edible coating film delays the browning of postharvest litchi and maintains its quality."JOURNAL OF FOOD SCIENCE AND TECHNOLOGY-MYSORE.2024 Sep;:1-10 15. [IF=4.7] Zhihao Ye et al."Tea’s Characteristic Components Eliminate Acrylamide in the Maillard Model System."Foods.2024 Jan;13(17):2836 14. [IF=5.1] Hui Ma et al."Stabilization of hypoxia-inducible factor 1α and regulation of specific gut microbes by EGCG contribute to the alleviation of ileal barrier disorder and obesity."Food & Function.2024 Sep;: 13. [IF=6] Xuezhi Tian et al."Identification of natural inhibitors targeting polyphenol oxidase through machine learning-assisted virtual screening and investigation of molecular mechanisms using multispectral experiments."LWT-FOOD SCIENCE AND TECHNOLOGY.2024 Sep;20 12. [IF=6.5] Yifan Geng et al."Polyphenol co-pigments enhanced the antioxidant capacity and color stability of blue honeysuckle juice during storage."Food Chemistry-X.2024 Sep;:101848 11. [IF=6.5] Chunyin Qin et al."Chemical profile and in-vitro bioactivities of three types of yellow teas processed from different tenderness of young shoots of Huoshanjinjizhong (Camellia sinensis var. sinensis)."Food Chemistry-X.2024 Dec;24:101809 10. [IF=6.5] Wenjing Huang et al."Effect of tea stems on the quality formation of large-leaf yellow tea: Sensomics and flavoromics approaches."Food Chemistry-X.2024 Dec;24:101794 9. [IF=7] Qianqian Luo et al."Oxidation of tea polyphenols promotes chlorophyll degradation during black tea fermentation."FOOD RESEARCH INTERNATIONAL.2024 Nov;196:115016 8. [IF=8.5] Mingchun Wen et al."Developed metabolomics approach reveals the non-volatile color-contributing metabolites during Keemun congou black tea processing."FOOD CHEMISTRY.2025 Jan;463:141222 7. [IF=9.1] Ting Li et al."Online ligand screening for cytochrome C from herbal medicines through “four-in-one” measurement."PHARMACOLOGICAL RESEARCH.2024 Nov;209:107406 6. [IF=3.8] Yifeng Zhu et al."Epigallocatechin gallate Improves Oleic Acid-Induced Hepatic Steatosis in Laying Hen Hepatocytes via the MAPK Pathway."POULTRY SCIENCE.2024 Aug;:104204 5. [IF=4.9] Ting Lin et al."3D-printed multifunctional biomass hydrogel device for controlled photothermal distribution and molecular release."COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS.2024 Dec;702:135104 4. [IF=8.5] Changling Wu et al."Fractionation of phenolic compounds from hickory by-products using solid phase extraction-sonication: Chemical composition, antioxidant and antimicrobial activity."FOOD CHEMISTRY.2024 Dec;460:140633 3. [IF=8.1] Yuzhen Wang et al."Walnut protein isolate-epigallocatechin gallate nanoparticles: A functional carrier enhanced stability and antioxidant activity of lycopene."FOOD RESEARCH INTERNATIONAL".2024 Aug;189:114536 2. [IF=4.2] Jiangcheng Ye et al."Effects of Fermented Extracts of Wuniuzao Dark Loose Tea on Hepatic Sterol Regulatory Element-Binding Protein Pathway and Gut Microbiota Disorder in Obese Mice."JOURNAL OF NUTRITION.2023 Dec;: 1. [IF=8.8] Zihao Qiu et al."Comprehensive analysis of fresh tea (Camellia sinensis cv. Lingtou Dancong) leaf quality under different nitrogen fertilization regimes."FOOD CHEMISTRY.2024 May;439:138127

質(zhì)檢證書(shū)(COA)

如何獲取質(zhì)檢證書(shū)(COA)?
請(qǐng)輸入貨號(hào)和一個(gè)與之匹配的批號(hào)。
例如:
批號(hào):JS298415 貨號(hào):S20001-25g
在貨品標(biāo)簽上如何找到貨號(hào)和批號(hào)?

摩爾濃度計(jì)算器

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

=
×
×
主站蜘蛛池模板: 工布江达县| 南汇区| 修文县| 洱源县| 汝州市| 大宁县| 吉首市| 左云县| 田林县| 绥德县| 开鲁县| 紫云| 当涂县| 隆回县| 中方县| 农安县| 龙川县| 武义县| 临桂县| 大埔区| 泗水县| 噶尔县| 通州市| 商洛市| 延寿县| 芒康县| 平凉市| 贺兰县| 大厂| 长沙市| 闽清县| 苏尼特左旗| 清新县| 沙雅县| 滦平县| 广德县| 浮梁县| 南京市| 渝北区| 阜新市| 平泉县|