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產(chǎn)品目錄
表兒茶素 分析標(biāo)準(zhǔn)品
更新時間:2026-01-08 點擊量:190

表兒茶素

分析標(biāo)準(zhǔn)品,HPLC≥98%

Epicatechin (EC)

CAS號:490-46-0

分子式:C15H14O6

分子量:290.27

MDLMFCD00075648

貨號

規(guī)格/參數(shù)/品牌

價格

貨期

YJ-B20102-20mg

分析標(biāo)準(zhǔn)品,HPLC≥98%

470.00

現(xiàn)貨

YJ-B20102-500mg

分析標(biāo)準(zhǔn)品,HPLC≥98%

2300.00

現(xiàn)貨

JS31326-50mg

96%(HPLC)

500.00

現(xiàn)貨

JS31326-250mg

96%(HPLC)

1168.00

現(xiàn)貨

JS31326-1g

96%(HPLC)

2088.00

現(xiàn)貨

JS31326-5g

96%(HPLC)

3380.00

現(xiàn)貨

JS31326-25g

96%(HPLC)

8500.00

2-3

A10044-20mg

分析標(biāo)準(zhǔn)品,含量99.4%,可溯源

580.00

現(xiàn)貨

 

產(chǎn)品介紹

熔點:240℃

沸點:630.4℃ at 760 mmHg

比旋光度:-55-65(D/20℃)(c=1,CH3OH)

外觀:白色粉末

溶解性:可溶于熱甲醇、DMSO等溶劑,不溶于石油醚、氯仿。

儲存條件: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)(412)

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390. [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

389. [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

388. [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

387. [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

386. [IF=3.1] Ping Zhao et al."Identification of anti-SARS-CoV-2 compounds from Qingwen Zhike prescription and exploration of their underlying mechanism by UPLC-Q-Exactive Orbitrap MS, high-throughput screening assays and transmission electron microscopy."JOURNAL OF PH

385. [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

384. [IF=3.2] Haonan Zhang et al."A comprehensive profiling of phenolic compounds and antioxidant activities of 24 varieties of red raspberry cultivated in Northeast China."JOURNAL OF FOOD SCIENCE.2024 Dec;90(1):e17623

383. [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

382. [IF=2.7] Xuechao Zheng et al."Effects of temperature and humidity on drying kinetics, final quality and cell wall pectin content of wolfberry (Lycium barbarum)."DRYING TECHNOLOGY.

381. [IF=4.8] Xin Sun et al."Investigation of virtual screening, inhibition mechanisms of endogenous serine protease inhibitors, and its preservation effects on tilapia."Food Bioscience.2025 Feb;64:105997

380. [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

379. [IF=8.5] Min Yan et al."Metabolic profiling of abdominal subcutaneous adipose tissue reveals effects of apple polyphenols for reversing high-fat diet induced obesity in C57BL/6 J mice."FOOD CHEMISTRY.2025 May;473:143055

378. [IF=6] Huimin Wu et al."Dynamic changes of quality characteristics during fermentation of orange-fleshed sweet potato alcoholic beverage."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 Feb;218:117509

377. [IF=4.1] Majida AL-Wraikat et al."Microbial community and organic compounds composition analysis and the edible security of common buckwheat fermented via Kombucha consortium."Food Chemistry: Molecular Sciences.2025 Feb;:100247

376. [IF=4.7] Delai Yang et al."Natural Copper Ion Scavenger: Investigation of the Hepatoprotective Effects of Green Tea Extract in Toxic-Milk Mice with Wilson’s Disease Model."Foods.2025 Jan;14(4):679

375. [IF=6.5] De Zhou et al."Quality analysis and characteristic difference identification of organic tea and conventional planting tea based on ICP, HPLC and machine algorithm."Food Chemistry-X.2025 Feb;:102299

374. [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

373. [IF=4.7] Jiayi Xu et al."Characteristic Changes and Potential Markers of Flavour in Raw Pu-Erh Tea with Different Ageing Cycles Analysed by HPLC, HS-SPME-GC-MS, and OAV."Foods.2025 Feb;14(5):829

372. [IF=4] Deqing Wang et al."Penetrating microwave vacuum drying: a superior alternative to traditional drying methods for enhancing sensory quality, biological activity and flavor of ‘Akizuki’ pear (Pyrus pyrifolia Nakai)."JOURNAL OF FOOD COMPOSITION AND ANALYSIS.

371. [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

370. [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

369. [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

368. [IF=3.9] Shangyun Li et al."Comprehensive analysis and evaluation of the intrinsic fruit quality of Sichuan pear germplasm resources in China."SCIENTIA HORTICULTURAE.2025 Mar;343:114084

367. [IF=6.5] Zixi Yang et al."Unraveling the flavor formation process of mellow and thick-type ripened Pu-erh tea through non-targeted metabolomics and metagenomics."Food Chemistry-X.2025 Mar;:102424

366. [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

365. [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

364. [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

363. [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

362. [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

361. [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

360. [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;:

359. [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

358. [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

357. [IF=4.2] Yule Wang et al."Qingfei Huoxue Decoction and Its Active Component Narirutin Alleviate LPS-Induced Acute Lung Injury by Regulating TLR4/NF-κB Pathway Mediated Inflammation."Journal of Inflammation Research.

356. [IF=7] Xianqiang Chen et al."Mechanism of red pigment formation in lotus rhizome soup during cooking: The role of polyphenols, iron and organic acids."FOOD RESEARCH INTERNATIONAL.2024 Dec;197:115266

355. [IF=6] Dongzhu Huang et al."Comprehensive analysis reveals the contribution of “rolling-anaerobic" processing to the improved aroma, taste and color of GABA black tea."LWT-FOOD SCIENCE AND TECHNOLOGY.2024 Nov;212:116966

354. [IF=1.2] Yang Wang et al."Change Patterns of Major Functional Components in the Loquat Summer Shoot Leaf during Annual Growth."JOURNAL OF THE AMERICAN SOCIETY FOR HORTICULTURAL SCIENCE.2024 Nov;149(6):320-326

353. [IF=8.5] Shengnan Wang et al."Postharvest changes in the phenolic and free volatile compound contents in Shine Muscat grapes at room temperature."FOOD CHEMISTRY.2025 Feb;465:141958

352. [IF=2.3] Si Tan et al."Physicochemical Characteristics of ‘Wushan Plum’ Subjected to Three Drying Methods."CHEMISTRY & BIODIVERSITY.2024 Nov;:e202402125

351. [IF=4.8] Xiaoqiang Zou et al."Composite enzymatic hydrolysis for producing Harlikar apple juice with increased dietary fiber content and antioxidant capacity."Food Bioscience.2024 Dec;62:105508

350. [IF=7] Wenfeng Li et al."Adsorption and desorption behaviors on microporous resins of antioxidant and anti-proliferation polyphenols from European plum."FOOD RESEARCH INTERNATIONAL.2025 Jan;199:115348

349. [IF=8.5] Ashiq Hussain et al."Exploration of underutilized chayote fractions following drying and extraction."FOOD CHEMISTRY.2025 Feb;465:142129

348. [IF=6.5] Honglin Mao et al."An integrative multi-omics approach reveals metabolic mechanism of flavonoids during anaerobic fermentation of de'ang pickled tea."Food Chemistry-X.2024 Nov;:102021

347. [IF=8.5] Xinyu Feng et al."Liubao insect tea polyphenols ameliorate DSS-induced experimental colitis by protecting intestinal barrier and regulating intestinal microbiota."FOOD CHEMISTRY.2024 Nov;:142156

346. [IF=2.7] Xuancheng Wang et al."Characterisation of the phytochemical and bioactivity profiles of raw tea, stale-aroma, and betelnut-aroma type of Liupao tea through GC/LC-MS-based metabolomics."Analytical Methods.2024 Dec;:

345. [IF=4.8] Yue Pan et al."Exploration on the cultivar specifity and processing progress of an excellent hybrid tea cultivar ‘Jinmudan’."Food Bioscience.2025 Jan;63:105660

344. [IF=7.1] Jiahui Gong et al."Smart Dual-Responsive Ionic Liquid as Transformable and Recyclable Media for Extracting and Separating Phytochemicals from Wild Rumex acetosa L.."ACS Sustainable Chemistry & Engineering.2024;XXXX(XXX):XXX-XXX

343. [IF=2.6] Guo Huihui et al."Deacidification characteristics of Issatchenkia terricola WJL-G4 with a special focus on bioactive compounds and antioxidant activities during currant juice and wine processing."INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY.2025 J

342. [IF=7] Jinjin Xue et al."Effect of cultivar and process on the astringency of matcha based on flavonoids-targeted metabolomic analysis."FOOD RESEARCH INTERNATIONAL.2025 Mar;204:115954

341. [IF=8.5] Yanyan Cao et al."Flavor evolution of unsweetened green tea beverage during actual storage: Insights from multi-omics analysis."FOOD CHEMISTRY.2025 Jul;481:144039

340. [IF=4.6] Xinyu Wang et al."Core germplasm construction of tea plant populations based on genome-wide SNP and catechins in Shaanxi Province, China1."Journal of Integrative Agriculture.2025 Mar;:

339. [IF=4.6] Li He et al."Neuroprotective Effects of Catechins by Differentially Affecting the Binding of Beta-amyloid and Its Aggregates to the Target Cells."MOLECULAR NEUROBIOLOGY.2025 Apr;:1-20

338. [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

337. [IF=4.7] Qian-Ni Yang et al."Characterization, Antioxidant Capacity, and Anti-Inflammatory Activity of Polyphenol-Enriched Extracts Obtained from Unripe, Mature, and Overripe Fruits of Red-Fleshed Kiwifruit Cultivars."Foods.2024 Jan;13(18):2860

336. [IF=4.7] Zhihao Ye et al."Tea’s Characteristic Components Eliminate Acrylamide in the Maillard Model System."Foods.2024 Jan;13(17):2836

335. [IF=6.5] Wen Deng et al."Comparative analysis of phenolic compounds in different thinned unripe kiwifruits and their biological functions."Food Chemistry-X.2024 Dec;24:101815

334. [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

333. [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

332. [IF=7] Qianqian Luo et al."Oxidation of tea polyphenols promotes chlorophyll degradation during black tea fermentation."FOOD RESEARCH INTERNATIONAL.2024 Nov;196:115016

331. [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

330. [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

329. [IF=3.3] Lu Wang et al."The variation of acrylamide and 5-hydroxymethylfurfural in tea with different roasting degrees and the effects of tea polyphenols on their formation."JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE.2024 Aug;:

328. [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

327. [IF=7] Yao Chen et al."Intelligent identification of picking periods of Lu’an Guapian tea by an indicator displacement colorimetric sensor array combined with machine learning."FOOD RESEARCH INTERNATIONAL.2024 Nov;195:114960

326. [IF=8.5] Nanhuan Huang et al."Improved physicochemical and functional properties of dietary fiber from matcha fermented by Trichoderma viride."FOOD CHEMISTRY.2024 Dec;460:140784

325. [IF=6] Zhe Wang et al."High-throughput screening, “protein–metabolite" interaction, and hypoglycemic effect investigations of α-amylase inhibitors in teas using an affinity selection-mass spectrometry method."LWT-FOOD SCIENCE AND TECHNOLOGY.2024 Jul;203:116392

324. [IF=6.5] Yida Wu et al."Investigation of the quality of Lu'an Guapian tea during grain rain period by sensory evaluation, objective quantitative indexes and metabolomics."Food Chemistry-X.2024 Jun;:101595

323. [IF=4.7] Wen Deng et al."Comparison of Protective Effects of Polyphenol-Enriched Extracts from Thinned Immature Kiwifruits and Mature Kiwifruits against Alcoholic Liver Disease in Mice."Foods.2024 Jan;13(19):3072

322. [IF=5.6] Qin Ma et al."Exogenous methyl jasmonate induces CHS and promotes flavonoid accumulation in Zanthoxylum bungeanum."INDUSTRIAL CROPS AND PRODUCTS.2024 Dec;222:119682

321. [IF=8.5] Xiangxin Gu et al."Effects of different low-temperature maceration times on the chemical and sensory characteristics of Syrah wine."FOOD CHEMISTRY.2024 Sep;:141230

320. [IF=7] Xiaoxiao Feng et al."Exploration of the flavor diversity of oolong teas: A comprehensive analysis using metabolomics, quantification techniques, and sensory evaluation."FOOD RESEARCH INTERNATIONAL.2024 Aug;:114868

319. [IF=4.2] Yunyi Hu et al."Ultrasonic-Assisted Extraction of Phenolic Compounds from Lonicera similis Flowers at Three Harvest Periods: Comparison of Composition, Characterization, and Antioxidant Activity."MOLECULES.2024 Jan;29(14):3280

318. [IF=4.7] Wanyu Dong et al."Evaluation of Pre-Harvest Nutrient Composition and Functional Active Substances in Various Lotus Roots."Foods.2024 Jul; 13(14): 2297

317. [IF=4.7] Jiajun Cai et al."Comprehensive Analysis of the Yield and Leaf Quality of Fresh Tea (Camellia sinensis cv. Jin Xuan) under Different Nitrogen Fertilization Levels."Foods.2024 Jan;13(13):2091

316. [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;:

315. [IF=6.5] Gaozhong Yang et al."Effects of anaerobic treatment on the non-volatile ceomponents and angiotensin-converting enzyme (ACE) inhibitory activity of purple-colored leaf tea."Food Chemistry-X.2024 Jul;:101649

314. [IF=7] Xianqiang Chen et al."Formation mechanism of blue pigment in boiled lotus rhizome discs: Insight into the chelation of polyphenols and iron."FOOD RESEARCH INTERNATIONAL.2024 Sep;192:114818

313. [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

312. [IF=7.7] Ziteng Wang et al."PCL/Locust bean gum nanofibers loaded with HP-β-CD/Epicatechin clathrate compounds for fruit packaging."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Sep;276:133940

311. [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

310. [IF=3.7] Zhuoya Xiang et al."Solvent Effects on the Phenolic Compounds and Antioxidant Activity Associated with Camellia polyodonta Flower Extracts."ACS Omega.2024;XXXX(XXX):XXX-XXX

309. [IF=4.5] Xianyang Zhao et al."Development of UHPLC-Q-Exactive Orbitrap/MS Technique for Determination of Proanthocyanidins (PAs) Monomer Composition Content in Persimmon."Plants-Basel".2024 Jan;13(11):1440

308. [IF=3.9] Xianqiang Chen et al."Study on the formation mechanism of blackening in damaged lotus rhizome epidermis: Effects of polyphenols and iron."JOURNAL OF FOOD SCIENCE".2024 Apr;:

307. [IF=5.4] Sihao Zhang et al."Chang-Kang-Fang alleviates diarrhea predominant irritable bowel syndrome (IBS-D) through inhibiting TLR4/NF-κB/NLRP3 pathway."JOURNAL OF ETHNOPHARMACOLOGY".2024 Apr;:118236

306. [IF=6] Michelle Farrell et al."Microencapsulation of purple tea polyphenols using the vibrating nozzle ionotropic gelation technology: Metabolomics, bioactivity, and application in milky tea."LWT-FOOD SCIENCE AND TECHNOLOGY".2024 Apr;:116099

305. [IF=6.1] Wenfeng Li et al."Chemometric analysis illuminates the relationship among browning, polyphenol degradation, Maillard reaction and flavor variation of 5 jujube fruits during air-impingement jet drying."Food Chemistry-X".2024 Jun;22:101425

304. [IF=6.1] Hanchen Zhou et al."The manufacturing process provides green teas with differentiated nonvolatile profiles and influences the deterioration of flavor during storage at room temperature."Food Chemistry-X".2024 Jun;22:101371

303. [IF=4.7] Ye Yutong et al."Quality analysis and antioxidant activity of different types of tea powder."Food Production Processing and Nutrition".2024 Dec;6(1):1-13

302. [IF=5.2] Pengfei Bi et al."Characterization of the effect of non-Saccharomyces cerevisiaes on the non-volatile constituents and volatile profiles of low-alcoholic pomegranate beverages."Food Bioscience".2024 Jun;59:103870

301. [IF=5.9] Yi Yang et al."Green tea hydroxycinnamoylated catechins extend lifespan and attenuate Aβ-induced paralysis of Caenorhabditis elegans via anti-oxidation and peptides dis-aggregation."INDUSTRIAL CROPS AND PRODUCTS".2024 Jun;212:118390

300. [IF=5.9] Shufang Yang et al."Unraveling the variations and relationships between phytochemical constituents and anti-inflammatory potentials of three Zanthoxylum species through metabolomics and explainable machine learning."INDUSTRIAL CROPS AND PRODUCTS".2024 Jun

299. [IF=7.2] Haixiang Ruan et al."A flavonoid metabolon: cytochrome b5 enhances B-ring trihydroxylated flavan-3-ols synthesis in tea plants."PLANT JOURNAL".2024 Mar;:

298. [IF=3.4] Kou Xingran et al."Citrus Pu-erh tea extract intake before or after lipolysis in simulated digestion reduces the release of free fatty acids."Journal of Food Measurement and Characterization".2024 Feb;:1-12

297. [IF=4.3] Yi Jiang et al."Shading in fruit changes the polyphenol accumulation of pellicle by regulating activity of key enzymes and expression of their gene related polyphenol anabolism of Juglans sigillata Dode."SCIENTIA HORTICULTURAE".2024 Apr;329:113017

296. [IF=4.3] Fan Xinyu et al."A comprehensive investigation on the chemical changes of traditional Chinese medicine with classic processing technology: Polygonum multiflorum under nine cycles of steaming and sunning as a case study."ANALYTICAL AND BIOANALYTICAL CHEMIS

295. [IF=4.3] Xin Guan et al."Variation of taste and odor compounds in tea beverage after microbial fermentation by HPLC–MS, GC×GC–O–MS, GC–MS, and sensory evaluation."JOURNAL OF FOOD COMPOSITION AND ANALYSIS".2024 Apr;128:106075

294. [IF=4.5] Haowei Guo et al."Influence of Various Tea Utensils on Sensory and Chemical Quality of Different Teas."Plants-Basel".2024 Jan;13(5):669

293. [IF=5.2] Yueqi Wang et al."Identification of Key Genes Associated with 1,2,6-Tri-O-galloyl-β-D-glucopyranose Accumulation in Camellia sinensis Based on Transcriptome Sequencing."Foods".2024 Jan;13(3):495

292. [IF=5.7] Zhang Wei et al."Development of a SERS aptasensor for the determination of L-theanine using a noble metal nanoparticle-magnetic nanospheres composite."MICROCHIMICA ACTA".2024 Mar;191(3):1-11

291. [IF=6.1] Qiong Chen et al."In Situ Oral Metabolism Analysis of Astringent Compounds in Tea by Paper Spray Mass Spectrometry, Electrospray Mass Spectrometry, Turbidimetry, and Sensory Evaluation."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY".2024;XXXX(XXX):XXX-XXX

290. [IF=8.8] Qiaochun Chen et al."Effects of seasoning addition and cooking conditions on the formation of free and protein-bound heterocyclic amines and advanced glycation end products in braised lamb."FOOD CHEMISTRY".2024 Feb;:138850

289. [IF=8.8] Shengxiao Su et al."Chemical, sensory and biological variations of black tea under different drying temperatures."FOOD CHEMISTRY".2024 Jul;446:138827

288. [IF=3.5] Xi Zhao et al."Impact of Storage Temperature on Green Tea Quality: Insights from Sensory Analysis and Chemical Composition."Beverages".2024 Jun;10(2):35

287. [IF=8.8] Xianqiang Chen et al."Ultrasound-assisted extraction of polyphenols from lotus rhizome epidermis by alcohol/salt-based aqueous two-phase system: Optimization, extraction mechanism and antioxidant activities."FOOD CHEMISTRY".2024 May;:139620

286. [IF=8.1] Wei Hu et al."Revealing the variances in color formation and bioactivities of seven catechin monomers throughout the enzymatic reaction by colorimetric and mass spectrometry."FOOD RESEARCH INTERNATIONAL".2024 May;184:114266

285. [IF=5.4] Cuihua Chen et al."Discovery and validation of COX2 as a target of flavonoids in Apocyni Veneti Folium: Implications for the treatment of liver injury."JOURNAL OF ETHNOPHARMACOLOGY".2024 May;326:117919

284. [IF=3.4] Lv Ting-Ting et al."Chemical composition and antioxidant capacity of proanthocyanidins from Chinese quince (Chaenomeles sinensis) fruit at different growth stages."Journal of Food Measurement and Characterization.2024 Jan;:1-13

283. [IF=6] Shimao Fang et al."Ancient tea plants black tea taste determinants and their changes over manufacturing processes."LWT-FOOD SCIENCE AND TECHNOLOGY.2024 Jan;:115750

282. [IF=6.1] Yanfei Huang et al."Biosynthetic Pathway and Bioactivity of Vanillin, a Highly Abundant Metabolite Distributed in the Root Cortex of Tea Plants (Camellia sinensis)."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2024;XXXX(XXX):XXX-XXX

281. [IF=8.1] Ning Yue et al."Imidacloprid triggered changes in strawberry fruits on edible quality and phenolic profiles by applied at two growth stages."FOOD RESEARCH INTERNATIONAL.2024 Mar;179:114031

280. [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;:

279. [IF=5.4] Zhengquan Feng et al."Bioactives and metabolites of Tetrastigma hemsleyanum root extract alleviate DSS-induced ulcerative colitis by targeting the SYK protein in the B cell receptor signaling pathway."JOURNAL OF ETHNOPHARMACOLOGY.2024 Mar;322:117563

278. [IF=6] Liping Shen et al."A green process for extracting and purifying coconut mesocarp polyphenols."Sustainable Chemistry and Pharmacy.2024 Feb;37:101413

277. [IF=6] Jian Zhu et al."Quantitative analysis of active components in Rhodiola species based on disease module-guided network pharmacology."Arabian Journal of Chemistry.2024 Feb;17:105570

276. [IF=6.1] Shenke Bie et al."The profiles of free, esterified and insoluble-bound phenolics in peach juice after high pressure homogenization and evaluation of their antioxidant capacities, cytoprotective effect, and inhibitory effects on α-glucosidase and dipeptidyl

275. [IF=6.1] Peng Wang et al."Germplasm Resources and Metabolite Marker Screening of High-Flavonoid Tartary Buckwheat (Fagopyrum tataricum)."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;XXXX(XXX):XXX-XXX

274. [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

273. [IF=6.5] Feng Zhou et al."Integrated metabolomics and transcriptomic analysis reveals metabolic changes of flavor compounds of Camellia assamica host plant after parasitized by Viscum articulatum."PLANT PHYSIOLOGY AND BIOCHEMISTRY.2023 Dec;205:108157

272. [IF=8.8] Zixuan Xie et al."Mechanism of aroma enhancement methods in accelerating Congou black tea acidification subjected to room temperature storage."FOOD CHEMISTRY.2023 Nov;:137837

271. [IF=8.8] Duoduo Zhang et al."Quality analysis of steamed beef with black tea and the mechanism of action of main active ingredients of black tea on myofibrillar protein."FOOD CHEMISTRY.2023 Nov;:137997

270. [IF=7.1] Shuangjiao Xu et al."From waste to eco-friendly biofilms: Harnessing cottonseed hull proanthocyanidins for sustainable solutions."Environmental Technology & Innovation.2024 Feb;33:103448

269. [IF=4.5] Xiaogang Lei et al."Genome-Wide Association Studies of Biluochun Tea Plant Populations in Dongting Mountain and Comprehensive Identification of Candidate Genes Associated with Core Agronomic Traits by Four Analysis Models."Plants-Basel.2023 Jan;12(21):3719

268. [IF=5] Jian-Chang Jin et al."Widely targeted metabolomics reveals the effect of different raw materials and drying methods on the quality of instant tea."Frontiers in Nutrition.2023; 10: 1236216

267. [IF=6.1] Si TAN et al."Green tea polyphenols improved the physicochemical stability of mango powder during storage."Food Chemistry-X.2023 Dec;20:100941

266. [IF=3.7] Manni Tong et al."Quality Characteristics of White Leaf Tea of ‘Baiye 1’ (Camellia sinensis) in Different Producing Areas."Agronomy-Basel.10.3390/agronomy13102526

265. [IF=5.6] Shengnan Xu et al."Effects of age and tissue of Juniperus sabina L. on its phytochemical characteristics, anti-cholinesterase, antidiabetes, and anti-drug resistant bacteria activities."Frontiers in Plant Science.10.3389/fpls.2023.1174922

264. [IF=6] Tian Li et al."Investigation of microbial succession and volatile compounds dynamics during the fermentation of traditional cereal vinegar in Xinjiang."LWT-FOOD SCIENCE AND TECHNOLOGY.10.1016/j.lwt.2023.115258

263. [IF=8.1] Qiuwen Yu et al."Chemometrics-based investigation of non-volatiles/volatiles flavor of tencha (Camellia sinensis cv. Yabukita, Longjing 43 and Baiye 1)."FOOD RESEARCH INTERNATIONAL.10.1016/j.foodres.2023.113461

262. [IF=4.3] Linmu Chen et al."The spatiotemporal variations of L-glutamic acid and catechins during the development of etiolated tea leaves in ‘Huangjinye’."SCIENTIA HORTICULTURAE.2024 Mar;328:112888

261. [IF=5.2] Li Lian et al."Molar ratio of (-)-epicatechin and (-)-epigallocatechin gallate determined their enzymatic oxidation products and color characteristics."Food Bioscience.2024 Feb;57:103480

260. [IF=6.1] Shan Zhang et al."The influence of rolling pressure on the changes in non-volatile compounds and sensory quality of congou black tea: The combination of metabolomics, E-tongue, and chromatic differences analyses."Food Chemistry-X.2023 Nov;:100989

259. [IF=3.9] Gang He et al."Tibetan tea reduces obesity brought on by a high-fat diet and modulates gut flora in mice."Food Science & Nutrition.2023 Aug;:

258. [IF=6] Tiehan Li et al."Exploring the mysterious effect of piling fermentation on Pu-erh tea quality formation: Microbial action and moist-heat action."LWT-FOOD SCIENCE AND TECHNOLOGY.2023 Aug;185:115132

257. [IF=4.6] Fengge YANG et al."Deciphering chemical and metabolite profiling of Chang-Kang-Fang by UPLC-Q-TOF-MS/MS and its potential active components identification."Chinese Journal of Natural Medicines.2023 Jun;21:459

256. [IF=5.2] Qinzhang Jiang et al."Profiles of Free and Bound Phenolics and Their Antioxidant Capacity in Rice Bean (Vigna umbellata)."Foods.2023 Jan;12(14):2718

255. [IF=7] Xuechun Zhang et al."Chemical Constituents, Antioxidant, and α-Glucosidase Inhibitory Activities of Different Fermented Gynostemma Pentaphyllum Leaves and Untargeted Metabolomic Measurement of the Metabolite Variation."Antioxidants.2023 Aug;12(8):1505

254. [IF=8] Feng Jia et al."Functional properties and release characteristics of tea polyphenols-loaded gliadin films enforced by cinnamaldehyde."Food Packaging and Shelf Life.2023 Nov;39:101144

253. [IF=8.1] Jingna Yan et al."Sensory-directed isolation and identification of an intense salicin-like bitter compound in infected teas with bird’s eye spot disease."FOOD RESEARCH INTERNATIONAL.2023 Jul;:113272

252. [IF=8.8] Zhouping Fu et al."Analysis of differences in the accumulation of tea compounds under various processing techniques, geographical origins, and harvesting seasons."FOOD CHEMISTRY.2024 Jan;430:137000

251. [IF=3.3] Huijie Wei et al."Effect of baking treatment on quality, nonvolatile and volatile compounds of Liupao tea."INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY.2023 Aug;:

250. [IF=1.7] Zhouyi Zhang et al."Revealing the differences in phenolics in different parts of Taraxacum mongolicum using UPLC-MS/MS."Phytochemistry Letters.2023 Aug;56:13

249. [IF=6] Xiaoyue Yang et al."Effect of plant polyphenols with different m-hydroxy and o-hydroxy groups on the inhibition of heterocyclic amines formation in roasted meat."FOOD CONTROL.2023 Jun;:109960

248. [IF=8.6] Qixian Zhang et al."Effectively recovering catechin compounds in the removal of caffeine from tea polyphenol extract by using hydrophobically modified collagen fiber."SEPARATION AND PURIFICATION TECHNOLOGY.2023 Jun;:124325

247. [IF=8.8] Suwan Zhang et al."Metabolomics reveals the effects of different storage times on the acidity quality and metabolites of large-leaf black tea."FOOD CHEMISTRY.2023 Nov;426:136601

246. [IF=8.8] Lijuan Zhu et al."Browning inhibition in fresh-cut Chinese water chestnut under high pressure CO2 treatment: regulation of reactive oxygen species and membrane lipid metabolism."FOOD CHEMISTRY.2023 Jun;:136586

245. [IF=8.8] Zhengyu Ren et al."Cost-effective colorimetric sensor for authentication of protected designation of origin (PDO) Longjing green tea."FOOD CHEMISTRY.2023 Nov;427:136673

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243. [IF=5.561] Zihao Qiu et al."The Cultivar Effect on the Taste and Aroma Substances of Hakka Stir-Fried Green Tea from Guangdong."Foods.2023 Jan;12(10):2067

242. [IF=6.443] Yuchuan Li et al."Study on taste quality formation and leaf conducting tissue changes in six types of tea during their manufacturing processes."Food Chemistry-X.2023 Jun;18:100731

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240. [IF=7.425] Xinlong Cheng et al."Cabernet sauvignon dry red wine ameliorates atherosclerosis in mice by regulating inflammation and endothelial function, activating AMPK phosphorylation, and modulating gut microbiota."FOOD RESEARCH INTERNATIONAL.2023 Jul;169:112942

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238. [IF=4.52] Yue-Yue Chang et al."Targeted metabolites analysis and variety discrimination of Wuyi rock tea by using a whole-process chemometric-assisted HPLC-DAD strategy."JOURNAL OF FOOD COMPOSITION AND ANALYSIS.2023 Aug;121:105365

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235. [IF=4.927] Yushi Zou et al."Discovery and Flavor Characterization of High-Grade Markers in Baked Green Tea."MOLECULES.2023 Jan;28(6):2462

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233. [IF=5.318] Siqi Yang et al."Effects of Eurotium cristatum on chemical constituents and α-glucosidase activity of mulberry leaf tea."Food Bioscience.2023 Jun;53:102557

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229. [IF=9.231] Yingying Li et al."Nontargeted and targeted metabolomics analysis for evaluating the effect of “golden flora" amount on the sensory quality, metabolites, and the alpha-amylase and lipase inhibitory activities of Fu brick tea."FOOD CHEMISTRY.2023 Aug;416:1

228. [IF=2.65] Zihan Zhang et al."Properties and Chemical Compositions of Monovarietal Virgin Olive Oil at Different Ripening Stages: A Study on Olive Cultivation in Northwest China."AGRONOMY JOURNAL.2023 Feb;:

227. [IF=3.498] Chen, Xiaowei et al."Changes in quality properties and volatile compounds of different cultivars of green plum (Prunus mume Sieb. et Zucc.) during ripening."EUROPEAN FOOD RESEARCH AND TECHNOLOGY.2023 Feb;:1-13

226. [IF=3.614] Yumin Cao et al."Comparative pharmacokinetic studies of Ephedra herba in common cold and nephrotic syndrome rat models."JOURNAL OF SEPARATION SCIENCE.2023 Feb;:2200895

225. [IF=4.927] Wengang Zhang et al."Polyphenol Profile and In Vitro Antioxidant and Enzyme Inhibitory Activities of Different Solvent Extracts of Highland Barley Bran."MOLECULES.2023 Jan;28(4):1665

224. [IF=4.927] Pei Wang et al."Identification of Differential Compositions of Aqueous Extracts of Cinnamomi Ramulus and Cinnamomi Cortex."MOLECULES.2023 Jan;28(5):2015

223. [IF=4.927] Si Tan et al."Polyphenol Profile, Antioxidant Activity, and Hypolipidemic Effect of Longan Byproducts."MOLECULES.2023 Jan;28(5):2083

222. [IF=5.318] Jin-Feng Dou et al."Insights into the pigment and non-pigment phenolic profile of polyphenol extracts of jujube peel and their antioxidant and lipid-lowering activities."Food Bioscience.2023 Apr;52:102493

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220. [IF=6.656] Yanchao Xing et al."Cytochrome P450-mediated herb-drug interaction (HDI) of Polygonum multiflorum Thunb. based on pharmacokinetic studies and in vitro inhibition assays."PHYTOMEDICINE.2023 Feb;:154710

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218. [IF=9.231] Yan Hou et al."Widely targeted metabolomics and HPLC analysis elaborated the quality formation of Yunnan pickled tea during the whole process at an industrial scale."FOOD CHEMISTRY.2023 Feb;:135716

217. [IF=2.586] Mailing Zou et al."Profiling aromatic constituents of Chimonanthus nitens Oliv. leaf granule using mass spectrometry."RAPID COMMUNICATIONS IN MASS SPECTROMETRY.2023 Jan;:e9481

216. [IF=2.909] Yinglu Qing et al."Integrated evaluation the antioxidant activity of epicatechin from cell dynamics."BIOTECHNOLOGY PROGRESS.2023 Feb;:e3328

215. [IF=5.081] Shuangyu Zhang et al."Drought-induced CsMYB6 interacts with CsbHLH111 to regulate anthocyanin biosynthesis in Chaenomeles speciosa."PHYSIOLOGIA PLANTARUM.2023 Feb;175(1):e13859

214. [IF=5.561] Weitao Wang et al."Reduction in Five Harmful Substances in Fried Potato Chips by Pre-Soaking Treatment with Different Tea Extracts."Foods.2023 Jan;12(2):321

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209. [IF=5.561] Kai Zheng et al."Effect of Tea Polyphenols on the Storage Stability of Non-Fermented Frozen Dough: Protein Structures and State of Water."Foods.2023 Jan;12(1):80

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206. [IF=4.927] Qinhua Zheng et al."Protective Effect of Flavonoids from Mulberry Leaf on AAPH-Induced Oxidative Damage in Sheep Erythrocytes."MOLECULES.2022 Jan;27(21):7625

205. [IF=5.318] Su Zhou et al."Pu'er raw tea extract alleviates lipid deposition in both LO2 cells and Caenorhabditis elegans."Food Bioscience.2022 Dec;50:102172

204. [IF=5.561] Qingping Ma et al."Pea-Tea Intercropping Improves Tea Quality through Regulating Amino Acid Metabolism and Flavonoid Biosynthesis."Foods.2022 Jan;11(22):3746

203. [IF=7.425] Jifan Zhang et al."Inconsistency between polyphenol-enzyme binding interactions and enzyme inhibition: Galloyl moiety decreases amyloglucosidase inhibition of catechins."FOOD RESEARCH INTERNATIONAL.2023 Jan;163:112155

202. [IF=7.425] Jie Zhou et al."Widely targeted metabolomics using UPLC-QTRAP-MS/MS reveals chemical changes during the processing of black tea from the cultivar Camellia sinensis (L.) O. Kuntze cv. Huangjinya."FOOD RESEARCH INTERNATIONAL.2022 Dec;162:112169

201. [IF=9.231] Chong Xie et al."Characterization and bioactivity of A-type procyanidins from litchi fruitlets at different degrees of development."FOOD CHEMISTRY.2023 Mar;405:134855

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199. [IF=5.561] Huimin Wu et al."Physicochemical Characteristics, Antioxidant Activities, and Aroma Compound Analysis of Seven Peach Cultivars (Prunus persica L. Batsch) in Shihezi, Xinjiang."Foods.2022 Jan;11(19):2944

198. [IF=5.561] Xuan Zhang et al."Hawthorn Juice Simulation System for Pectin and Polyphenol Adsorption Behavior: Kinetic Modeling Properties and Identification of the Interaction Mechanism."Foods.2022 Jan;11(18):2813

197. [IF=6.056] Nuoya Wang et al."Revealing the co-fermentation of Saccharomyces cerevisiae and Schizosaccharomyces pombe on the quality of cider based on the metabolomic and transcriptomic analysis."LWT-FOOD SCIENCE AND TECHNOLOGY.2022 Oct;168:113943

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194. [IF=6.443] Qian Tu et al."The effects of regions and the wine aging periods on the condensed tannin profiles and the astringency perceptions of Cabernet Sauvignon wines."Food Chemistry-X.2022 Oct;15:100409

193. [IF=4.342] Liyang Wu et al."Chemical compositions of raspberry leaves influenced by growth season, cultivars and leaf position."SCIENTIA HORTICULTURAE.2022 Oct;304:111349

192. [IF=5.318] Zhuoya Xiang et al."Assessment of free and bound phenolics in the flowers and floral organs of two Camellia species flower and their antioxidant activities."Food Bioscience.2022 Oct;49:101905

191. [IF=5.561] Xueshan Yang et al."Effect of Deacidification Treatment on the Flavor Quality of Zaosu Pear–Kiwifruit Wine."Foods.2022 Jan;11(14):2007

190. [IF=6.056] Yuchuan Li et al."Pile-fermentation of dark tea: Conditions optimization and quality formation mechanism."LWT-FOOD SCIENCE AND TECHNOLOGY.2022 Jul;:113753

189. [IF=6.388] Yufei Zhai et al."Total flavonoids from the dried root of Tetrastigma hemsleyanum Diels et Gilg inhibit colorectal cancer growth through PI3K/AKT/mTOR signaling pathway."PHYTOTHERAPY RESEARCH

188. [IF=6.449] Qiling Song et al."Dynamic metabolic and transcriptomic profiling reveal synthetic characters and regulators of flavonoid biosynthesis in Camellia oleifera seeds."INDUSTRIAL CROPS AND PRODUCTS.2022 Oct;186:115295

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186. [IF=6.576] Junkun Pan et al."Inhibition of Dipeptidyl Peptidase-4 by Flavonoids: Structure–Activity Relationship, Kinetics and Interaction Mechanism."Frontiers in Nutrition. 2022; 9: 892426

185. [IF=4.952] Wenyue Yu et al."Insight into the characteristics of cider fermented by single and co-culture with Saccharomyces cerevisiae and Schizosaccharomyces pombe based on metabolomic and transcriptomic approaches."LWT-FOOD SCIENCE AND TECHNOLOGY. 2022 Jun;163:1135

184. [IF=6.475] Zhen Wu et al."How steaming and drying processes affect the active compounds and antioxidant types of Gastrodia elata Bl. f. glauca S. chow."FOOD RESEARCH INTERNATIONAL. 2022 Jul;157:111277

183. [IF=5.154] Erdong Yuan et al."Roles of Adinandra nitida (Theaceae) and camellianin A in HCl/ethanol-induced acute gastric ulcer in mice."Food Science and Human Wellness. 2022 Jul;11:1053

182. [IF=5.154] Ying Jiang et al."Isolation of a novel characterized Issatchenkia terricola from red raspberry fruits on the degradation of citric acid and enrichment of flavonoid and volatile profiles in fermented red raspberry juice."Food Science and Human Wellness. 202

181. [IF=5.396] Chunyin Qin et al."Comparison on the chemical composition, antioxidant, anti-inflammatory, α-amylase and α-glycosidase inhibitory activities of the supernatant and cream from black tea infusion."Food & Function. 2022 Apr;:

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176. [IF=3.463] Ping Wang et al."Systematic transcriptomic and metabolomic analysis of walnut (Juglans regia L.) fruit to trace variations in antioxidant activity during ripening."Sci Hortic-Amsterdam. 2022 Mar;295:110849

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38.  孔宇, 張倚菲, 韓鵬云,. 沙棘籽粕多酚提取工藝優(yōu)化,組分分析及抗氧化性能研究[J]. 中國油脂, 2020, 045(004):109-114.

37.  何財安, 張珍, 劉航,. 苦蕎多酚對苦蕎淀粉和小麥淀粉理化性質(zhì)的影響[J]. 食品科學(xué), 2017(09):66-71.

36.  王新然, 劉瑤, 張曉瑞,. 核桃瓣膜提取物組成、體外抗氧化性及其對羊肉保鮮作用分析[J]. 食品與發(fā)酵工業(yè), 2019, 045(010):78-85.

35.  王瑋, 張紀(jì)偉, 趙一帆,. 瀾滄江流域部分茶區(qū)古茶樹資源生化成分多樣性的分析[J]. 分子植物育種, 2020(2).

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31.  萎凋方式對黃化英紅九號紅茶品質(zhì)的影響

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28.  杜歡歡, 蔡艷妮, 江海,. 超高效液相串聯(lián)質(zhì)譜同時測定茶葉中的8種有效物質(zhì)[J]. 陜西理工大學(xué)學(xué)報(自然科學(xué)版), 2017(33):74-80.

27.  錢廣濤, 晁二昆, 孫偉,. 苦蕎芽和苗中黃酮類化合物含量差異及關(guān)鍵基因表達(dá)分析[J]. 中國實驗方劑學(xué)雜志, 2020, v.26(13):182-188.

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25.  師仁麗  翟龍飛  于文龍 等. 利用DAD-HPLCLC-MS法檢測金絲小棗中黃酮類化合物[J]. 食品科學(xué)  2016(16):123-127.

24.  歐惠算,張靈枝,王維生.阿姆斯特丹散囊菌對六堡茶品質(zhì)成分的影響研究[J].中國茶葉加工,2019(02):45-50.

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22.  李波, 黃華林, 陳欣,. 不同季節(jié)黃化英紅九號紅茶品質(zhì)比較分析[J]. 山東農(nóng)業(yè)科學(xué), 2019.

21.  喬小燕, 李崇興, 姜曉輝,. 不同等級CTC紅碎茶生化成分分析[J]. 食品工業(yè)科技, 2018, 039(010):83-89.

20.  魏琳,盧鳳美,邵宛芳,袁唯.酸茶發(fā)酵過程中感官品質(zhì)及主要成分變化分析[J].食品研究與開發(fā),2019,40(14):69-74.

19.  周曉晴, 胡立文, 羅琦,. 茶葉籽油中茶多酚和兒茶素的測定[J]. 食品工業(yè)科技, 2019.

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17.  梅雙, 喬小燕, 陳維,. 半連續(xù)化生產(chǎn)線和傳統(tǒng)單機(jī)加工客家炒青綠茶主要品質(zhì)成分比較分析[J]. 廣東農(nóng)業(yè)科學(xué), 2019(11).

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15.  陳紅霞, 李灝, 呂杰,. 普洱茶渥堆發(fā)酵中活性成分測定及其相關(guān)性分析[J]. 北京化工大學(xué)學(xué)報(自然科學(xué)版), 2013, 40(005):84-87.

14.  王婷婷  蔡自建  蒲婉欣 等. 四川綠茶感官品質(zhì)與主要滋味貢獻(xiàn)成分分析[J]. 食品研究與開發(fā)  2018  39(24):162-167.

13.  喬小燕, 李波, 何梓卿,. 黃化英紅九號紅茶體外抗氧化活性分析[J]. 農(nóng)產(chǎn)品質(zhì)量與安全, 2018, 000(005):85-90.

12.  李輝, 張靜, 李超,. 賀蘭山東麓不同陳釀年份赤霞珠干紅葡萄酒中酚類物質(zhì)對澀感質(zhì)量的影響[J]. 食品與發(fā)酵工業(yè), 2018, 44(10):42-48.

11.  胡立文, 周曉晴, 張彬,. 茶葉籽油中兒茶素類和咖啡因含量測定[J]. 南昌大學(xué)學(xué)報(理科版), 2018, 42(002):134-138,146.

10.  郭穎, 黃峻榕, 陳琦,. 茶葉中兒茶素類測定方法的優(yōu)化[J]. 食品科學(xué), 2016, 37(06):137-141.

9.  易橋賓  谷風(fēng)林  那治國 等. 發(fā)酵和焙烤對可可豆多酚、黃酮和風(fēng)味品質(zhì)的影響[J]. 食品科學(xué)  2015  36(015):62-69.

8.  阮鳴. HPLC法同時測定六安瓜片中七種活性成分的含量[J]. 南京曉莊學(xué)院學(xué)報  2016(6):37-42.

7.  陳希苗, 李美英, 許秋莉,. 體外模擬胃腸消化中山楂多酚及抗氧化活性的變化[J]. 食品科學(xué), 2019, 040(005):31-37.

6.  周婷, 雷潤梅, 趙曉丹,. 花生紅衣中B型二聚體原花青素對丙烯酰胺的抑制效果[J]. 現(xiàn)代食品科技, 2016(10):66-71.

5.  姜萬舟, 高平, 楊明德,. 杏鮑菇乙醇提取物的抗氧化活性及成分分離鑒定[J]. 食品工業(yè)科技, 2015, 36(22):87-91.

4.  朱月, 張海平+, 侯亞男,. 黑果腺肋花楸原花青素的純化及表兒茶素和原花青素B_2含量測定[J]. 食品工業(yè)科技, 2017(19):246-250.

3.  黃文燁, 李星星, 黃雪松. 硫解法和正相色譜法測定山竹殼原花青素[J]. 食品工業(yè)科技, 2017, 38(19):260-264.

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1.  白志文  劉聲菊  李莉 等. HPLC法同時測定金刺參九正合劑中4種有效成分[J]. 沈陽藥科大學(xué)學(xué)報  2018  035(003):188-192.

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