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PCR Master Mix
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完全培養基/Rich Media
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透析袋
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生化試劑
酶和輔酶
酶
輔酶
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食品和乳品檢測用酶和輔酶
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蛋白質
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蛋白質-重組蛋白
多肽
底物肽
激素肽與神經肽
多肽藥物遞送
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β淀粉樣肽與微管蛋白肽
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20種天然氨基酸
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抗生素
抗生素
色素類
染料
指示劑
分離試劑
離子交換樹脂
大孔吸附樹脂
凝膠過濾填料
親和層析填料
疏水層析填料
緩沖劑
緩沖劑
動物激素
動物激素
表面活性劑
陽離子表面活性劑
陰離子表面活性劑
非離子表面活性劑
兩性離子表面活性劑
聚合物類
聚乙二醇(PEG)系列
聚乙二醇(PEG)衍生物
多聚氨基酸系列
聚乙烯吡咯烷酮(PVP)
聚丙烯酸
葡聚糖T系列
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脂肪酸系列
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血制品
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紅細胞
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碳標記
氮標記
氧標記
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化藥檢測
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大氣
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水質
固廢
化妝品檢測
增白劑
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防曬劑
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農殘
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信號通路
代謝
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神經科學
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表觀遺傳
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化合物庫
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靶點篩選
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蛋白&免疫
重組蛋白
重組蛋白-重組蛋白
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蛋白定性
蛋白檢測-蛋白染色
蛋白電泳&Western blot
WB-裂解液
蛋白Marker
凝膠制備試劑盒
蛋白上樣緩沖液
WB-電泳緩沖液
封閉液
查看更多
免疫檢測
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組織制備
抗原修復液
組織封閉
抗體稀釋
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香草酸
香草酸
分析標準品,HPLC≥97%
Vanillic acid
質檢下載
MSDS
品牌:
源葉
產品編號:
B21361
一鍵復制產品信息
CAS號:
121-34-6
分子式:
C
8
H
8
O
4
分子量:
168.149
MDL:
MFCD00002551
別名:
香莢蘭酸,4-羥基-3-甲氧基苯甲酸,3-甲氧基-4-羥基苯甲酸
×
香草酸 分析標準品,HPLC≥97%
貨號
規格
價格
上海
北京
武漢
南京
購買數量
B21361-20mg
分析標準品,HPLC≥97%
¥120.00
B21361-20mg ¥120.00 現貨
1267
14
>10
4
5
5
-
+
B21361-100mg
分析標準品,HPLC≥97%
¥216.00
B21361-100mg ¥216.00 現貨
239
14
>10
2
9
3
-
+
B21361-500mg
分析標準品,HPLC≥97%
¥750.00
B21361-500mg ¥750.00 現貨
48
>10
-
-
-
-
+
大包裝詢價
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產品介紹
參考文獻(183篇)
質檢證書(COA)
摩爾濃度計算器
相關產品
產品介紹
熔點:
208-210?°C(lit.)
沸點:
353.4°C at 760 mmHg
外觀:
結晶粉末
溶解性:
易溶于乙醇,可溶于乙醚,微溶于水。
儲存條件:
2-8℃
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(183篇)
183. [IF=4.1] Yahui Ma et al."Lapachol, a naphthoquinone identified through chemical screening, inhibits plant immunity."PLANT SCIENCE.2025 Jul;:112659
182. [IF=4.1] Yuxin Zhang et al."Comprehensive Discrimination of Amomi Fructus From Different Origins Using UHPLC-Q-Orbitrap MS, HS–GC–MS/MS, NMR and MIR Technologies Based On Data Fusion Strategies."Analytical Science Advances.2025 Jul;6(2):e70029
181. [IF=6.6] Zhaowan Zhang et al."The Extract Obtained by Treating Wheat Bran through Superfine Grinding Combined with Enzymatic Hydrolysis Can Improve the Quality and Functional Properties of Bread."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 Jul;:118164
180. [IF=3] Zhang Jiao et al."Determining the Active Ingredients of Dendrobium officinale and Tracing Its Region of Origin."Food Analytical Methods.2025 Jun;:1-20
179. [IF=9.8] Wanhan Song et al."Impact of prandial state on gastrointestinal release of anthocyanins and metabolite formation from nanocapsulated roselle anthocyanins in mice."FOOD CHEMISTRY.2025 Nov;492:145330
178. [IF=3.3] Wu Yingying et al."Qingke (Highland Barley) from Qinghai-Tibet Plateau: nutritional composition, phenolics profiles, antioxidant activity and hypoglycemic activity."Journal of Food Measurement and Characterization.2025 May;:1-14
177. [IF=3.3] Zhang Wengang et al."Identification and in vitro antioxidant and hypoglycemic activities of phenolic compounds in the different solvent fractions of polyphenols from black highland barley."Journal of Food Measurement and Characterization.2025 May;:1-14
176. [IF=4.8] Na Yang et al."Bioactive compound combinations from Rhodiola tangutica alleviate pulmonary vascular remodeling in high-altitude pulmonary hypertension rats through the PI3K–AKT pathway."Frontiers in Pharmacology.2025 May;16:
175. [IF=5.4] Xu Zhao et al."Hypoglycemic potential of sugarcane molasses-derived polyphenols: exploring the hypoglycemic mechanisms through in vitro α-glucosidase inhibition and intracellular glucose transport inhibition."Food & Function.2025 May;:
174. [IF=6.3] Mei Li et al."A Gastrodia elata Green Tea Pulsed Light Sterilization Model Based on Cost-Benefit and GA-SVR Algorithm."FOOD CONTROL.2025 May;:111445
173. [IF=4.7] Feifei Wu et al."Mechanistic Insights into the Antioxidant Potential of Sugarcane Vinegar Polyphenols: A Combined Approach of DPPH-UPLC-MS, Network Pharmacology and Molecular Docking."Foods.2024 Jan;13(21):3379
172. [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
171. [IF=5.6] Xinxin Yang et al."Method development and application for multi-phenolic components in the processing of Dendrobium officinale using UPLC coupled with mass spectrometry and chemometric analysis."INDUSTRIAL CROPS AND PRODUCTS.2024 Dec;222:120009
170. [IF=8.2] Yang Li et al."Metabolic engineering of Escherichia coli for upcycling of polyethylene terephthalate waste to vanillin."SCIENCE OF THE TOTAL ENVIRONMENT.2024 Dec;957:177544
169. [IF=8.5] Ashiq Hussain et al."Exploration of underutilized chayote fractions following drying and extraction."FOOD CHEMISTRY.2025 Feb;465:142129
168. [IF=8.5] Shuang Song et al."Effect of co-pigments on anthocyanins of wild cranberry and investigation of interaction mechanisms."FOOD CHEMISTRY.2025 Feb;466:142212
167. [IF=3.8] Cheng Zhang et al."Vanillic acid attenuates doxorubicin-induced cardiotoxicity by regulating PINK1/Parkin/Mfn2 signaling pathway."Journal of Functional Foods.2024 Dec;123:106595
166. [IF=4.7] Shuaiduo Sun et al."Effects of Sodium Selenite on Accumulations of Selenium and GABA, Phenolic Profiles, and Antioxidant Activity of Foxtail Millet During Germination."Foods.2024 Jan;13(23):3916
165. [IF=5.7] Zichang Zeng et al."Examination of the Bioavailability and Bioconversion of Wheat Bran-Bound Ferulic Acid: Insights into Gastrointestinal Processing and Colonic Metabolites."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2025;XXXX(XXX):XXX-XXX
164. [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
163. [IF=2.9] Zhang Jie et al."Effect of solid-state fermentation with Bacillus subtilis on polyphenol enrichment and antioxidant activity in black highland barley."Journal of Food Measurement and Characterization.2025 Jan;:1-14
162. [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.
161. [IF=2.6] Zhang Hao et al."Exploring factors related to the browning of cherry (Prunus pseudocerasus lindl) wine during fermentation and aging."JOURNAL OF FOOD SCIENCE AND TECHNOLOGY-MYSORE.2025 Jan;:1-9
160. [IF=5.7] Yongli Lan et al."Quinoa Ethanol Extract Ameliorates Cognitive Impairments Induced by Hypoxia in Mice: Insights into Antioxidant Defense and Gut Microbiome Modulation."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2025;XXXX(XXX):XXX-XXX
159. [IF=3.3] Yuqing Xiong et al."Effects of Thermal and Non-Thermal Sterilization Methods on the Phytocompounds, Flavor Profile, and Antioxidant Properties of High Acidity Mulberry Vinegar."Fermentation-Basel.2025 Feb;11(2):65
158. [IF=4.8] Yiwei Zhao et al."Comparative evaluation of antioxidant activity and protein digestion of plant-based milk from different sources under dynamic in vitro digestion models."Food Bioscience.2025 Feb;:106045
157. [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
156. [IF=4.6] Zhou Yu et al."Vanillic acid ameliorates collagen-induced arthritis by suppressing the inflammation response via inhibition of the MAPK and NF-κB signaling pathways."INFLAMMOPHARMACOLOGY.2025 Feb;:1-15
155. [IF=1.5] Ting Zhou et al."Vanillic acid inhibits TGF-β type I receptor to protect bone marrow mesenchymal stem cells from radiation-induced bystander effects."Translational Cancer Research.2025 Feb;14(2):1223
154. [IF=6.7] PengLiang Shi et al."Study on the mechanism of Trichosanthes kirilowii Maxim. against COPD based on serum chemical composition analysis, network pharmacology, and experimental study."PHYTOMEDICINE.2025 May;140:156533
153. [IF=2.5] Li-Wen Zhang et al."HPLC Fingerprint Analysis with the Antioxidant Potential of Polygonatum sibiricum Combined with the Chemometric Calculations."Separations.2025 Apr;12(4):81
152. [IF=6.5] Youyang Zhang et al."Effects of milling degree on proximate composition, functional components and antioxidant capacity of foxtail millet."Food Chemistry-X.2025 Apr;27:102438
151. [IF=2.6] Long Xu et al."Development of chemiluminescent enzyme immunoassay for the detection of aristolochic acid I in patent medicines and cosmetics."TOXICON.2025 Jun;260:108362
150. [IF=4.8] Jiaying Li et al."Cinnamic acid and its derivatives on dipeptidyl peptidase 4: Structure-activity relationship and mechanism of inhibition."Food Bioscience.2024 Dec;62:105076
149. [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
148. [IF=2.7] Qi Wu et al."A CRISPR/Cas12a-based fluorescence method for the amplified detection of total antioxidant capacity."Analytical Methods.2024 Jul;:
147. [IF=6.5] Ziwei Wang et al."Combined metabolomics and bioactivity assays kernelby-productsof two native Chinese cherry species: The sources of bioactive nutraceutical compounds."Food Chemistry-X.2024 Oct;23:101625
146. [IF=8.5] Xiaohui Wu et al."Introducing Bacillus natto and Propionibacterium shermanii into soymilk fermentation: A promising strategy for quality improvement and bioactive peptide production during in vitro digestion."FOOD CHEMISTRY.2024 Oct;455:139585
145. [IF=3.3] YueHong Zhao et al."Enhanced phenolic content and antioxidant activity of broad bean natto following simulated in vitro digestion."INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY".2024 Apr;59(5):2873-2883
144. [IF=3.9] Junjie Shi et al."Evaluation of chemical components and quality in Xinhui Chenpi (Citrus reticulata ‘Chachi’) with two different storage times by GC–MS and UPLC."Food Science & Nutrition".2024 Apr;:
143. [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
142. [IF=8.8] Yang Liu et al."Novel assaying method for the accurate and rapid analysis of antioxidant total capacity based on hexachloroiridate(IV)."FOOD CHEMISTRY".2024 Sep;451:139492
141. [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
140. [IF=6] Ruoxuan Li et al."Sustainable aqueous biphasic system created using sugar-based deep eutectic solvents/ethyl lactate for the green extraction of biomolecules."JOURNAL OF MOLECULAR LIQUIDS".2024 Apr;399:124474
139. [IF=1.1] Xudong Luo et al."Development and validation of a simple ultra-high-performance-tandem mass spectrometry method for the simultaneous determination of five bioactive components in rat plasma of Hedysari Radix."Separation Science Plus".2024 Feb;:2300219
138. [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
137. [IF=5.2] Dan Wu et al."Optimizing the Solvent Selection of the Ultrasound-Assisted Extraction of Sea Buckthorn (Hippophae rhamnoides L.) Pomace: Phenolic Profiles and Antioxidant Activity."Foods".2024 Jan;13(3):482
136. [IF=7] Xiaomei Dai et al."Metabolism of Phenolic Compounds and Antioxidant Activity in Different Tissue Parts of Post-Harvest Chive (Allium?schoenoprasum L.)."Antioxidants".2024 Mar;13(3):279
135. [IF=8.4] Yixin Suo et al."Fluorescent sensor based on CdTe-QDs @ N-CDs complexes for visual identification of goji berries origin."SENSORS AND ACTUATORS B-CHEMICAL".2024 May;406:135438
134. [IF=3.4] Yousong Yue et al."Integrating chemical similarity and bioequivalence: an overall evaluation of the quality consistency of traditional decoction and dispensing granule decoction of Amomum villosum."DRUG DEVELOPMENT AND INDUSTRIAL PHARMACY.
133. [IF=4.1] Liuyu Ye et al."In vitro digestion and colonic fermentation characteristics of media milled purple sweet potato particle-stabilized Pickering emulsions."JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE.2024 Jan;:
132. [IF=5.2] Hua Li et al."Impact of Cooking Methods on Phenolic Acid Composition, Antioxidant Activity, and Starch Digestibility of Chinese Triticale Porridges: A Comparative Study between Atmospheric Pressure and High Pressure Boiling."Foods.2024 Jan;13(2):230
131. [IF=5.2] Xusheng Wen et al."Wheat Bran Polyphenols Ameliorate DSS-Induced Ulcerative Colitis in Mice by Suppressing MAPK/NF-κB Inflammasome Pathways and Regulating Intestinal Microbiota."Foods.2024 Jan;13(2):225
130. [IF=5.4] Yingqiu Shi et al."Effective constituents and protective effect of Mudan granules against Schwann cell injury."JOURNAL OF ETHNOPHARMACOLOGY.2024 Apr;323:117692
129. [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
128. [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
127. [IF=3.8] Jing Wang et al."The correlations between feruloylated arabinoxylans’ structure and their antioxidative properties."JOURNAL OF CEREAL SCIENCE.2024 Jan;115:103832
126. [IF=3.9] Yanhui Lv et al."Identification of chemical components and rat serum metabolites in Danggui Buxue decoction based on UPLC-Q-TOF-MS, the UNIFI platform and molecular networks."RSC Advances.2023 Oct;13(46):32778-32785
125. [IF=6.1] Mingyuan Cao et al."Phenolic Constituents from Black Quinoa Alleviate Insulin Resistance in HepG2 Cells via Regulating IRS1/PI3K/Akt/GLUTs Signaling Pathways."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;XXXX(XXX):XXX-XXX
124. [IF=4.5] Bei Wu et al."Study on the Key Autotoxic Substances of Alfalfa and Their Effects."Plants-Basel.10.3390/plants12183263
123. [IF=5.2] Yutong Yuan et al."In vivo study of orange peel fermentation and improvement of androgen overproduction causing acne."Food Bioscience.10.1016/j.fbio.2023.103124
122. [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
121. [IF=8.8] Hong Hu et al."In vitro gastrointestinal digestion and colonic fermentation of media-milled black rice particle-stabilized Pickering emulsion: Phenolic release, bioactivity and prebiotic potential."FOOD CHEMISTRY.2024 Jan;432:137174
120. [IF=10.7] Hong Hu et al."Effect of different hydrocolloids on the physicochemical, printing, and digestion properties of 3D printed purple sweet potato."FOOD HYDROCOLLOIDS.2023 Nov;144:109058
119. [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
118. [IF=4.1] Jing Liu et al."Extraction methods and compositions of polyphenols in Shanxi aged vinegar."JOURNAL OF CHROMATOGRAPHY A.2023 Aug;1705:464169
117. [IF=8.1] Ziwei Wang et al."Comparative antioxidant activity and untargeted metabolomic analyses of cherry extracts of two Chinese cherry species based on UPLC-QTOF/MS and machine learning algorithms."FOOD RESEARCH INTERNATIONAL.2023 Sep;171:113059
116. [IF=3.679] Qian Zhu et al."Nitrogen-doped Titanium Dioxide for Enhanced Photocatalytic Oxidation of Vanillyl Alcohol into Vanillin."ChemPhotoChem.2023 May;:e202200337
115. [IF=3.776] Lele Zhang et al."Integration of UHPLC/Q-OrbitrapMS-based metabolomics and activities evaluation to rapidly explore the anti-inflammatory components from lasianthus.."Heliyon.2023 May;9(6):e16117-e16117
114. [IF=5.318] Minghe Wang et al."The fate of phenolic acids, flavonoids, vitamin C, antioxidant capacities of Cili (Rosa roxburghii) fruits upon processing and sensory properties of the processed products."Food Bioscience.2023 Jun;53:102729
113. [IF=5.988] Sa Li et al."Suxiao Jiuxin Pill attenuates acute myocardial ischemia via regulation of coronary artery tone."Frontiers in Pharmacology.2023; 14: 1104243
112. [IF=6.59] Mei Lin et al."Comparative study on secondary metabolites from different citrus varieties in the production area of Zhejiang."Frontiers in Nutrition.2023 May 11;10:1159676
111. [IF=7.425] Heng Liu et al."Evaluation of co-fermentation of L. plantarum and P. kluyveri of a plant-based fermented beverage: physicochemical, functional, and sensory properties."FOOD RESEARCH INTERNATIONAL.2023 May;:113060
110. [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
109. [IF=1.967] ke Zunli et al."Physicochemical characteristics, polyphenols and antioxidant activities of Dimocarpus longan grown in different geographical locations."ANALYTICAL SCIENCES.2023 Apr;:1-8
108. [IF=4.384] Xiao YU et al."Elucidation of the structure, antioxidant, and interfacial properties of flaxseed proteins tailored by microwave treatment."Journal of Integrative Agriculture.2023 Apr;:
107. [IF=4.927] Jie Zhang et al."Enhancement of Polyphenols and Antioxidant Activity in Germinated Black Highland Barley by Ultrasonication."MOLECULES.2023 Jan;28(9):3679
106. [IF=5.318] Caian He et al."Enhancement of the release of phenolic compounds from white and black Qingke bran by autoclaving and fermentation treatments."Food Bioscience.2023 Jun;53:102696
105. [IF=3.612] Ren Li et al."The combined effect of cold plasma pretreatment and germination on nutritional quality and texture properties of brown rice cakes."INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY.2023 Mar;:
104. [IF=5.561] Chunqing Wang et al."From Foxtail Millet Husk (Waste) to Bioactive Phenolic Extracts Using Deep Eutectic Solvent Extraction and Evaluation of Antioxidant, Acetylcholinesterase, and α-Glucosidase Inhibitory Activities."Foods.2023 Jan;12(6):1144
103. [IF=6.443] Jinle Xiang et al."Modification on phenolic profiles and enhancement of antioxidant activity of proso millets during germination."Food Chemistry-X.2023 Mar;:100628
102. [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;:
101. [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
100. [IF=1.496] Ju Chen et al."Vanillic Acid Alleviates Right Ventricular Function in Rats With MCT-Induced Pulmonary Arterial Hypertension."Natural Product Communications.
99. [IF=3.612] Jiao Wu et al."Quantification of bioactive components and evaluation of microbial community and antibacterial activity from Heterotrigona itama and Tetrigona binghami honeys."INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY.2023 Jan;:
98. [IF=9.231] Yan Cao et al."Investigation of the difference in color enhancement effect on cyanidin-3-O-glucoside by different phenolic acids and the interaction mechanism."FOOD CHEMISTRY.2023 Jan;:135409
97. [IF=5.195] Min Hao et al."Active ingredients screening and pharmacological mechanism research of curcumae rhizoma-sparganii rhizoma herb pair ameliorates liver fibrosis based on network pharmacology."JOURNAL OF ETHNOPHARMACOLOGY.2023 Apr;305:116111
96. [IF=6.056] Xi Chen et al."Effect of extrusion on phenolics from Jizi439 black wheat bran: The profile, structure, and bioactivities."LWT-FOOD SCIENCE AND TECHNOLOGY.2022 Dec;:114369
95. [IF=7.425] Shuang Zhang et al."Partial compression increases acidity, but decreases phenolics in jujube fruit: Evidence from targeted metabolomics."FOOD RESEARCH INTERNATIONAL.2023 Feb;164:112388
94. [IF=3.693] Yuan Li et al."Metabolites and chemometric study of Perilla (Perilla frutescens) from different varieties and geographical origins."JOURNAL OF FOOD SCIENCE.2022 Nov;:
93. [IF=2.534] Ren Li et al."The effect of cold plasma pretreatment on GABA, γ-oryzanol, phytic acid, phenolics, and antioxidant capacity in brown rice during germination."CEREAL CHEMISTRY.2022 Oct;:
92. [IF=5.195] Guang Sun et al."Panax ginseng Meyer cv. Silvatica phenolic acids protect DNA from oxidative damage by activating Nrf2 to protect HFF-1?cells from UVA-induced photoaging."JOURNAL OF ETHNOPHARMACOLOGY.2023 Feb;302:115883
91. [IF=1.496] Shan Wang et al."Vanillic Acid Attenuates Monocrotaline-Induced Pulmonary Arterial Hypertension by Enhancing NO Signaling Pathways."Natural Product Communications
90. [IF=2.609] Ping Jiang et al."Effect of milling on proximate composition, γ-oryzanol, vitamin B1, polyphenolic and bioaccessibility of phenolic of brown rice."JOURNAL OF FOOD PROCESSING AND PRESERVATION.2022 Sep;:e17215
89. [IF=5.168] Pan Wang et al."Discovery and characterization of novel ATP citrate lyase inhibitors from natural products by a luminescence-based assay."CHEMICO-BIOLOGICAL INTERACTIONS.2022 Nov;367:110199
88. [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
87. [IF=6.317] Meng Jia et al."Gut microbiota derived structural changes of phenolic compounds from colored rice and its corresponding fermentation property."Food & Function.2022 Sep;:
86. [IF=7.675] Huaqi Gao et al."Identification and Antioxidant Capacity of Free and Bound Phenolics in Six Varieties of Mulberry Seeds Using UPLC-ESI-QTOF-MS/MS."Antioxidants.2022 Sep;11(9):1764
85. [IF=7.425] Jiao Wu et al."Bioactive characterization of multifloral honeys from Apis cerana cerana, Apis dorsata, and Lepidotrigona flavibasis."FOOD RESEARCH INTERNATIONAL.2022 Nov;161:111808
84. [IF=10.753] Linyan Zhao et al."Biochar increases Panax notoginseng's survival under continuous cropping by improving soil properties and microbial diversity."SCIENCE OF THE TOTAL ENVIRONMENT.2022 Aug;:157990
83. [IF=5.561] Bin Dang et al."Evaluation of Nutritional Components, Phenolic Composition, and Antioxidant Capacity of Highland Barley with Different Grain Colors on the Qinghai Tibet Plateau."Foods.2022 Jan;11(14):2025
82. [IF=7.425] Na-Na Wu et al."Effect of germination in the form of paddy rice and brown rice on their phytic acid, GABA, γ-oryzanol, phenolics, flavonoids and antioxidant capacity."FOOD RESEARCH INTERNATIONAL.2022 Jul;:111603
81. [IF=4.601] Menghan Chen et al."Rapid screening of neuraminidase inhibitors with the benzoic acid skeleton from Paeonia suffruticosa Andrews by solid-phase extraction with an enzyme activity switch combined with mass spectrometry analysis."JOURNAL OF CHROMATOGRAPHY A
80. [IF=5.561] Xiaopeng Qin et al."Comparative Composition Structure and Selected Techno-Functional Elucidation of Flaxseed Protein Fractions."Foods.2022 Jan;11(13):1820
79. [IF=3.713] Ren Li et al."Effects of germination time on phenolics, antioxidant capacity, in vitro phenolic bioaccessibility and starch digestibility in sorghum."INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY
78. [IF=6.475] Yang Zhang et al."Effect of geographical location and soil fertility on main phenolic compounds and fatty acids compositions of virgin olive oil from Leccino cultivar in China."Food Res Int. 2022 Jul;157:111207
77. [IF=6.576] Yingchun Jin et al."Characteristics of Mulberry Leaf Powder Enriched With γ-Aminobutyric Acid and Its Antioxidant Capacity as a Potential Functional Food Ingredient."Frontiers in Nutrition. 2022; 9: 900718
76. [IF=7.514] Jie Meng et al."Conduction of a chemical structure-guided metabolic phenotype analysis method targeting phenylpropane pathway via LC-MS: Ginkgo biloba and soybean as examples."FOOD CHEMISTRY. 2022 Oct;390:133155
75. [IF=3.361] Jia Cheng et al."A new method for simultaneous determination of 14 phenolic acids in agricultural soils by multiwavelength HPLC-PDA analysis."RSC Advances. 2022 May;12(23):14939-14944
74. [IF=3.935] Yaqing Guo et al."An integrated strategy for the systematic chemical characterization of Salvianolate lyophilized injection using four scan modes based on the ultra-high performance liquid chromatography-triple quadrupole-linear ion trap mass spectrometry.
73. [IF=4.412] Hui-Min Jin et al."Polyphenol and Anthocyanin Composition and Activity of Highland Barley with Different Colors."MOLECULES. 2022 Jan;27(11):3411
72. [IF=4.35] Xi Chen et al."Comparison and Optimization of Different Extraction Methods of Bound Phenolics from Jizi439 Black Wheat Bran."Foods. 2022 Jan;11(10):1478
71. [IF=5.396] Mengxue He et al."Influence of extraction technology on rapeseed oil functional quality: a study on rapeseed polyphenols."Food Funct. 2021 Dec;:
70. [IF=4.215] Ma Junqing et al."Mycorrhizal symbiosis promotes the nutrient content accumulation and affects the root exudates in maize."Bmc Plant Biol. 2022 Dec;22(1):1-13
69. [IF=4.24] Bo Zou et al."Structural identification and antioxidant potency evaluation of pomelo vinegar polyphenols."Food Biosci. 2022 Jun;47:101674
68. [IF=2.431] Dong Qingying et al."Comparative study on phenolic compounds, triterpenoids, and antioxidant activity of Ganoderma lucidum affected by different drying methods."J Food Meas Charact. 2019 Dec;13(4):3198-3205
67. [IF=2.767] Huan Liu et al."Vanillic acid combats Vibrio alginolyticus by cell membrane damage and biofilm reduction."J Fish Dis. 2021 Nov;44(11):1799-1809
66. [IF=2.863] Jie Hu et al."Tracking the dynamic changes of a flavor, phenolic profile, and antioxidant properties of Lactiplantibacillus plantarum- and Saccharomyces cerevisiae-fermented mulberry wine."Food Sci Nutr. 2021 Nov;9(11):6294-6306
65. [IF=3.361] Zhineng Wang et al."Comparison of the phenolic profiles and physicochemical properties of different varieties of thermally processed canned lychee pulp."Rsc Adv. 2020 Feb;10(12):6743-6751
64. [IF=3.411] Shi Guiqin et al."UPLC-ESI-MS/MS Analysis and Evaluation of Antioxidant Activity of Total Flavonoid Extract from Paeonia lactiflora Seed Peel and Optimization by Response Surface Methodology (RSM)."Biomed Res Int. 2021;2021:7304107
63. [IF=3.616] Meng Zhang et al."Comparative evaluation on phenolic profiles, antioxidant properties and α-glucosidase inhibitory effects of different milling fractions of foxtail millet."J Cereal Sci. 2021 May;99:103217
62. [IF=3.935] Yong-Sheng Wu et al."Chemical profiling of Callicarpa nudiflora and its effective compounds identification by compound-target network analysis."J Pharmaceut Biomed. 2020 Apr;182:113110
61. [IF=3.935] Jingyun Zheng et al."A systematic investigation on free phenolic acids and flavonoids profiles of commonly consumed edible flowers in China."J Pharmaceut Biomed. 2019 Aug;172:268
60. [IF=4.35] Qian Ge et al."Effects of Simultaneous Co-Fermentation of Five Indigenous Non-Saccharomyces Strains with S. cerevisiae on Vidal Icewine Aroma Quality."Foods. 2021 Jul;10(7):1452
59. [IF=4.411] Fang Sheng et al."The Analysis of Phenolic Compounds in Walnut Husk and Pellicle by UPLC-Q-Orbitrap HRMS and HPLC."Molecules. 2021 Jan;26(10):3013
58. [IF=4.411] Liqing Yin et al."Neuroprotective Potency of Tofu Bio-Processed Using Actinomucor elegans against Hypoxic Injury Induced by Cobalt Chloride in PC12 Cells."Molecules. 2021 Jan;26(10):2983
57. [IF=4.556] Dandan Zhao et al."Physico-chemical properties and free amino acids profiles of six wolfberry cultivars in Zhongning."J Food Compos Anal. 2020 May;88:103460
56. [IF=4.879] Yang Liu et al."UV-B Radiation Largely Promoted the Transformation of Primary Metabolites to Phenols in Astragalus mongholicus Seedlings."Biomolecules. 2020 Apr;10(4):504
55. [IF=4.952] Yuxin Hao et al."Stability and mechanism of phenolic compounds from raspberry extract under in vitro gastrointestinal digestion."Lwt Food Sci Technol. 2021 Mar;139:110552
54. [IF=4.952] Dongxiao Su et al."Impact of thermal processing and storage temperature on the phenolic profile and antioxidant activity of different varieties of lychee juice."Lwt Food Sci Technol. 2019 Dec;116:108578
53. [IF=4.952] Yuan Yuan et al."Diversity of phenolics including hydroxycinnamic acid amide derivatives, phenolic acids contribute to antioxidant properties of proso millet."Lwt Food Sci Technol. 2022 Jan;154:112611
52. [IF=5.396] Ruihong Dong et al."Release and metabolism of bound polyphenols from carrot dietary fiber and their potential activity in in vitro digestion and colonic fermentation."Food Funct. 2020 Jul;11(7):6652-6665
51. [IF=5.455] Lu Lan et al."Quinic acid: a potential antibiofilm agent against clinical resistant Pseudomonas aeruginosa."Chin Med-Uk. 2021 Dec;16(1):1-17
50. [IF=5.977] Yi Tao et al."Layer-by-layer assembly strategy for fabrication of polydopamine-polyethyleneimine hybrid modified fibers and their application to solid-phase microextraction of bioactive molecules from medicinal plant samples followed by surface plasmon re
49. [IF=6.057] Chenglong Sun et al."1,1′-binaphthyl-2,2′-diamine as a novel MALDI matrix to enhance the in situ imaging of metabolic heterogeneity in lung cancer."Talanta. 2020 Mar;209:120557
48. [IF=6.383] Ruizhi Hu et al."Dietary ferulic acid and vanillic acid on inflammation, gut barrier function and growth performance in lipopolysaccharide-challenged piglets."Anim Nutr. 2021 Sep;:
47. [IF=7.514] Xiaoming Yu et al."Impact of processing technologies on isoflavones, phenolic acids, and antioxidant capacities of soymilk prepared from 15 soybean varieties."Food Chem. 2021 May;345:128612
46. [IF=7.514] Hongcai Li et al."Study on the nutritional characteristics and antioxidant activity of dealcoholized sequentially fermented apple juice with Saccharomyces cerevisiae and Lactobacillus plantarum fermentation."Food Chem. 2021 Nov;363:130351
45. [IF=7.514] Jinxue Hou et al."Variations in phenolic acids and antioxidant activity of navel orange at different growth stages."Food Chem. 2021 Oct;360:129980
44. [IF=3.361] Yi Tao et al."Magnetic solid-phase extraction coupled with HPLC-Q-TOF-MS for rapid analysis of tyrosinase binders from San-Bai decoction by Box–Behnken statistical design."Rsc Adv. 2016 Nov;6(111):109730-109741
43. [IF=3.463] X.Q. Wang et al."Characteristics of mitochondrial membrane functions and antioxidant enzyme activities in strawberry roots under exogenous phenolic acid stress."Sci Hortic-Amsterdam. 2019 Apr;248:89
42. [IF=3.69] Xingmei Nan et al."Bioactive fraction of Rhodiola algida against chronic hypoxia-induced pulmonary arterial hypertension and its anti-proliferation mechanism in rats."J Ethnopharmacol. 2018 Apr;216:175
41. [IF=4.556] Jingli Gong et al."Vanillic Acid Suppresses HIF-1α Expression via Inhibition of mTOR/p70S6K/4E-BP1 and Raf/MEK/ERK Pathways in Human Colon Cancer HCT116 Cells."Int J Mol Sci. 2019 Jan;20(3):465
40. [IF=5.645] Jun Lu et al."Phenolic composition, antioxidant, antibacterial and anti-inflammatory activities of leaf and stem extracts from Cryptotaenia japonica Hassk."Ind Crop Prod. 2018 Oct;122:522
39. Wang, Zhineng, et al. "Comparison of the phenolic profiles and physicochemical properties of different varieties of thermally processed canned lychee pulp." RSC Advances 10.12 (2020): 6743-6751.10.1039/C9RA08393F
38. Zhang, He, et al. "Phenolic acids released in maize rhizosphere during maize-soybean intercropping inhibit Phytophthora blight of soybean." Frontiers in plant science 11 (2020): 886.https://doi.org/10.3389/fpls.2020.00886
37. Nan, Xingmei, et al. "Bioactive fraction of Rhodiola algida against chronic hypoxia-induced pulmonary arterial hypertension and its anti-proliferation mechanism in rats." Journal of ethnopharmacology 216 (2018): 175-183.https://doi.org/10.1016/j.jep.2018.0
36. Su, Dongxiao, et al. "Impact of thermal processing and storage temperature on the phenolic profile and antioxidant activity of different varieties of lychee juice." LWT 116 (2019): 108578.https://doi.org/10.1016/j.lwt.2019.108578
35. Atif, Muhammad Jawaad, et al. "Effect of photoperiod and temperature on garlic (Allium sativum L.) bulbing and selected endogenous chemical factors." Environmental and Experimental Botany 180 (2020): 104250.https://doi.org/10.1016/j.envexpbot.2020.104250
34. Dong, Qingying, et al. "Comparative study on phenolic compounds, triterpenoids, and antioxidant activity of Ganoderma lucidum affected by different drying methods." Journal of Food Measurement and Characterization 13.4 (2019): 3198-3205.https://doi.org/10.
33. Dong, Qingying, et al. "Comparative study on phenolic compounds, triterpenoids, and antioxidant activity of Ganoderma lucidum affected by different drying methods." Journal of Food Measurement and Characterization 13.4 (2019): 3198-3205.https://doi.org/10.
32. 樊榮,羿國娟,魯蘭,曾銘,周楊楊,程強.綠原酸及其13種體內主要代謝物的體外抗菌作用研究[J].中草藥,2020,51(24):6239-6245.
31. 馬艷莉,丁玉峰,李素萍,梁靜靜,席曉麗,劉亞瓊,王頡.中國懷來不同葡萄品種品質比較[J].食品研究與開發,2020,41(15):137-142.
30. 梁薇薇,陳立新,段文標,李亦菲,李少然,于穎穎.酚酸物質對紅松種子萌發及苗木生長和生理特性的影響[J].生態學報,2021,41(04):1583-1592.
29. 趙萌萌,張文剛,黨斌,楊希娟,張杰,甘生智.超微粉碎對青稞麩皮粉多酚組成及抗氧化活性的影響[J].農業工程學報,2020,36(15):291-298.
28. 莉莉,陳勇,張蒙偉,鄢紅霞,高守紅,陳萬生.UHPLC-MS/MS法測定新冠肺炎經驗方寒濕郁肺湯中11種主成分的含量[J].藥學實踐雜志,2021,39(02):148-151+156.
27. 張藝沛, 張婷, 史一恒,等. 藜麥茶加工工藝及酚類物質組成分析[J]. 食品科學, 2019, 040(012):267-274.
26. 黑青稞麩皮結合態酚類物質大孔樹脂分離純化工藝優化
25. 田莉, 李海萍, 袁亞宏,等. 真空耦合超聲波提取蘋果渣多酚的工藝優化[J]. 食品科學, 2017(14):240-246.
24. 王奕芳,溫承坤,陳茂彬,張玉,李琴,方尚玲.麻城老米酒中酚類物質的初探[J].中國釀造,2019,38(12):175-178.
23. 王婷婷, 苑偉, 李華,等. 復合小漿果果酒中的酚類物質及其抗氧化活性分析[J]. 食品與發酵工業, 2019, 45(03):183-188.
22. 齊曉茹, 嚴超, 宋春華,等. 4種水果濃縮汁酚類物質及香氣成分分析[J]. 食品科技, 2018, 043(002):279-285.
21. 徐菲, 楊希娟, 黨斌,等. 酸法提取青稞麩皮結合酚工藝優化[J]. 農業工程學報, 2016, 32(017):301-308.
20. 程江雪, 唐志書, 郭東艷, et al. 不同配伍配比對赤芍-當歸藥對中10個成分溶出量的影響研究[J]. 藥物分析雜志, 2019, v.39(09):73-80.
19. 王琬寧, 李興國, 孫僑冶,等. 紅樹莓非花色苷酚的提取與鑒定[J]. 北方園藝, 2020, No.457(10):28-37.
18. 趙藝楠, 宋科, 彭勝,等. 沸石分子篩吸附分離忽地笑中石蒜堿[J]. 天然產物研究與開發, 2016, 028(002):289-292,299.
17. 李佳興, 周利, 金艷, et al. 枸杞子藥材中12種有機酸類成分含量測定與分析[J]. 中國藥房, 2018, 29(024):3344-3349.
16. 李依娜 鄒穎 余元善 肖更生 徐玉娟 鄒波.不同酚酸對三華李清汁貯藏期間色澤穩定性的比較分析[J].現代食品科技 2020 36(07):165-172+16.
15. 吳立潔 劉杰 王文祎 等. 三七根際土壤中酚酸類物質的鑒定及含量測定[J]. 世界科學技術-中醫藥現代化 2014(4):825-829.
14. 梁光斐, 張煜, 王嬌,等. 高效液相色譜結合化學計量學的廣藿香提取物指紋圖譜研究[J]. 貴州科學, 2018, 036(004):71-76.
13. 李莉, 孫宜春, 龐媛媛,等. 陳皮水提物指紋圖譜的化學計量學分析及與糖尿病認知功能障礙的譜效關系[J]. 中國實驗方劑學雜志, 2020(1).
12. 趙志國, 井鳳, 張敏敏,等. 西藏木瓜HPLC指紋圖譜研究及多成分測定[J]. 中草藥, 2018, 49(10):239-244.
11. 楊希娟, 黨斌, 樊明濤. 溶劑提取對青稞中不同形態多酚組成及抗氧化活性的影響[J]. 食品科學, 2018, 39(24):246-255.
10. 陳侃, 王長謙, 范虞琪,等. 斑馬魚平臺研究七種中藥單體的降脂作用[J]. 生理學報, 2017, 069(001):55-60.
9. 齊樂輝, 范鑫玉, 王丹,等. 基于正交試驗對廣藿香加熱回流提取條件的優化[J]. 科學技術創新, 2019, 000(024):P.22-23.
8. 齊樂輝, 龍丹丹, 孟鑫,等. 基于HPLC法研究廣藿香中加入陳皮后水溶性成分的變化規律[J]. 化學工程師, 2020, v.34;No.296(05):42-44+48.
7. 齊樂輝, 陳悅, 孟鑫,等. 基于HPLC法測定廣藿香水提物中香草酸及原兒茶酸的含量研究[J]. 化學工程師, 2020, 034(003):22-24.
6. 齊樂輝, 李嘉欣, 孟鑫,等. 基于HPLC法對加入厚樸后廣藿香水溶性物質的含量影響研究[J]. 化學工程師, 2020, 034(004):19-21,8.
5. 鄭倩 李俊華 危常州 等. 不同抗性棉花品種根系分泌物及酚酸類物質對黃萎病菌的影響[J]. 棉花學報 2012 24(004):363-369.
4. 王曉靜 楊莉 劉德龍 等. 三維熒光二階校正法快速測定胡黃連及體液中香草酸的含量[J]. 河北師范大學學報:自然科學版 2016 040(005):412-417.
3. 呂朝耕 楊健 康傳志 等. UPLC-MS/MS測定鐵皮石斛中9個有機酸成分含量[J]. 中藥材 2017 040(006):1360-1363.
2. 劉勇 付小凱 李陽 等. HPLC法同時測定半枝蓮中原兒茶酸和香草酸的含量[J]. 化學分析計量 2015(4):20-22.
1. 王嬌 徐家怡 左雅敏 等. HPLC法同時測定五味藿香片中6種成分[J]. 中成藥 2018 40(10).
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