Determine the necessary mass, volume, or concentration for preparing a solution.
Activity Type | Activity Value -log(M) | Mechanism of Action | Activity Reference | Publications (PubMed IDs) |
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SKU | Size | Availability | Price | Qty |
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R107315-1g | 1g | In stock | $42.90 | |
R107315-5g | 5g | In stock | $125.90 | |
R107315-10g | 10g | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $225.90 | |
R107315-25g | 25g | In stock | $355.90 | |
R107315-100g | 100g | In stock | $1,279.90 | |
R107315-500g | 500g | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $5,755.90 |
Cyclooxygenase inhibitor
Synonyms | Q369O8926L | CHEBI:27881 | CU-01000001503-3 | HMS1792H15 | NSC133100 | BPBio1_000479 | NCGC00344093-09 | RESVERATROL (MART.) | MLS000069735 | MLS001076538 | Stilbene, 2f | (E)-5-(2-(4-hydroxyphenyl)ethenyl)-1,3-benzenediol | MLS002222231 | TaxusChinensisi |
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Specifications & Purity | Moligand™, ≥99% |
Biochemical and Physiological Mechanisms | A phytoestrogen with antitumor, antioxidant, antiplatelet, anti-inflammatory and antifungal effects. Inhibits cytochrome P450 1A1 (IC50= 23μM) and displays mixed agonist/antagonist actions at ERαand ERβestrogen receptors. Converted into the anticancer age |
Storage Temp | Store at -20°C,Argon charged |
Shipped In | Ice chest + Ice pads |
Grade | Moligand™ |
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Pubchem Sid | 488189835 |
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Pubchem Sid Url | https://pubchem.ncbi.nlm.nih.gov/substance/488189835 |
IUPAC Name | 5-[(E)-2-(4-hydroxyphenyl)ethenyl]benzene-1,3-diol |
INCHI | InChI=1S/C14H12O3/c15-12-5-3-10(4-6-12)1-2-11-7-13(16)9-14(17)8-11/h1-9,15-17H/b2-1+ |
InChi Key | LUKBXSAWLPMMSZ-OWOJBTEDSA-N |
Canonical SMILES | C1=CC(=CC=C1C=CC2=CC(=CC(=C2)O)O)O |
Isomeric SMILES | C1=CC(=CC=C1/C=C/C2=CC(=CC(=C2)O)O)O |
WGK Germany | 3 |
RTECS | CZ8987000 |
Alternate CAS | 501-36-0 |
PubChem CID | 445154 |
NSC Number | 327430 |
MeSH Entry Terms | 3,4',5-stilbenetriol;3,4',5-Trihydroxystilbene;3,5,4'-trihydroxystilbene;cis Resveratrol;cis-resveratrol;resveratrol;Resveratrol 3 sulfate;Resveratrol, (Z)-;resveratrol-3-sulfate;SRT 501;SRT-501;SRT501;trans Resveratrol;trans Resveratrol 3 O sulfate;trans |
Molecular Weight | 228.24 |
PubChem SID | 488189835 |
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Lot Number | Certificate Type | Date | Item |
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H2414489 | Certificate of Analysis | Aug 03, 2024 | R107315 |
H2414488 | Certificate of Analysis | Aug 03, 2024 | R107315 |
H2414487 | Certificate of Analysis | Aug 03, 2024 | R107315 |
H2414486 | Certificate of Analysis | Aug 03, 2024 | R107315 |
H2414485 | Certificate of Analysis | Aug 03, 2024 | R107315 |
F2312859 | Certificate of Analysis | May 30, 2023 | R107315 |
F2312854 | Certificate of Analysis | May 30, 2023 | R107315 |
F2312849 | Certificate of Analysis | May 30, 2023 | R107315 |
F2312848 | Certificate of Analysis | May 30, 2023 | R107315 |
F2312847 | Certificate of Analysis | May 30, 2023 | R107315 |
D2416046 | Certificate of Analysis | May 30, 2023 | R107315 |
B2423018 | Certificate of Analysis | May 30, 2023 | R107315 |
J2325051 | Certificate of Analysis | Nov 21, 2022 | R107315 |
A2305719 | Certificate of Analysis | Nov 21, 2022 | R107315 |
A2305845 | Certificate of Analysis | Nov 21, 2022 | R107315 |
A2305837 | Certificate of Analysis | Nov 21, 2022 | R107315 |
A2305836 | Certificate of Analysis | Nov 21, 2022 | R107315 |
A2305730 | Certificate of Analysis | Nov 21, 2022 | R107315 |
A2305729 | Certificate of Analysis | Nov 21, 2022 | R107315 |
A2305727 | Certificate of Analysis | Nov 21, 2022 | R107315 |
A2305726 | Certificate of Analysis | Nov 21, 2022 | R107315 |
A2305722 | Certificate of Analysis | Nov 21, 2022 | R107315 |
B2215836 | Certificate of Analysis | Jan 07, 2022 | R107315 |
B2215709 | Certificate of Analysis | Jan 07, 2022 | R107315 |
B2215708 | Certificate of Analysis | Jan 07, 2022 | R107315 |
B2215626 | Certificate of Analysis | Jan 07, 2022 | R107315 |
B2215615 | Certificate of Analysis | Jan 07, 2022 | R107315 |
G2315051 | Certificate of Analysis | Jan 07, 2022 | R107315 |
Solubility | Solvent:ethanol, Max Conc. mg/mL: None, Max Conc. mM: 100; Solvent:DMSO, Max Conc. mg/mL: 22.82, Max Conc. mM: 100 |
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Sensitivity | Air Sensitive,Heat Sensitive |
Melt Point(°C) | 267 °C |
Pictogram(s) | GHS07 |
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Signal | Warning |
Hazard Statements | H319:Causes serious eye irritation |
Precautionary Statements | P305+P351+P338:IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses if present and easy to do - continue rinsing. P280:Wear protective gloves/protective clothing/eye protection/face protection. P264+P265:Wash hands [and …] thoroughly after handling. Do not touch eyes. P337+P317:If eye irritation persists: Get medical help. |
WGK Germany | 3 |
RTECS | CZ8987000 |
Merck Index | 8158 |
Starting at $47.90
1. Song Yu, Lianpeng Zou, Jiawei Zhao, Yiping Zhu. (2023) Resveratrol alleviates fumonisin-induced intestinal cytotoxicity by modulating apoptosis, tight junction, and inflammation in IPEC-J2 porcine intestinal epithelial cells. ENVIRONMENTAL TOXICOLOGY, (15): [PMID:37955343] |
2. Yifan Ma, Yi Qian, Yuteng Chen, Xiaoxu Ruan, Xiaoya Peng, Yi Sun, Jue Zhang, Jingjing Luo, Songlin Zhou, Chao Deng. (2023) Resveratrol modulates the inflammatory response in hPDLSCs via the NRF2/HO-1 and NF-κB pathways and promotes osteogenic differentiation. JOURNAL OF PERIODONTAL RESEARCH, [PMID:37905727] |
3. Dong Wu, Huihui Ming, Wei Wu, Wenjie Yu, Gaowei Zhang, Jinzhu Gu, Meng Cui, Xueyong Huang, Fangjian Ning, Liping Luo. (2024) In situ neutral desorption-extractive electrospray ionization mass spectrometry reveals red-blue light promoted the accumulation of amino acids and polyphenols in Anoectochilus roxburghii. JOURNAL OF FOOD COMPOSITION AND ANALYSIS, 125 (105761). [PMID:18810425] |
4. Nayun Kim, Junhye Kwon, Ui Sup Shin, Joohee Jung. (2023) Stimulatory Anticancer Effect of Resveratrol Mediated by G Protein-Coupled Estrogen Receptor in Colorectal Cancer. Biomolecules & Therapeutics, 31 (6): ( 655–660). [PMID:37817377] |
5. Yuan Gu, Yanjun Cai, Yige Kou, Erzhuo Cheng, Hanjie Bi, Min Hu, Songyao Wu, Yong Jiang, Jingxi Zhang, Qingting Wu, Yunyi Li, Bin Yang. (2023) Construction of multifunctional targeted nano-prodrugs based on PAMAM dendrimers for tumor therapy. EUROPEAN POLYMER JOURNAL, 200 (12): (112486). [PMID:21709241] |
6. Liu Xinru, Ma Qianwei, Sun Yongjun, Ju Wenming, Kumrungsee Thanutchaporn, Zhou Zhongkai, Wang Lijuan, Cao Ruge. (2023) Effects of Processings and Complexation on Solubility, Antioxidant and Antibacterial Properties of Buckwheat Polyphenols. Food and Bioprocess Technology, (8): (1-13). [PMID:18063578] |
7. Chen Wang, Ding Tang, Wei Xu, Yan Liu, Zhao-He Huang, Pang-Chui Shaw, Ren-Wang Jiang. (2023) Glycosylation of the polyphenols from Resina draconis by glycosyltransferase YjiC1. NATURAL PRODUCT RESEARCH, [PMID:35437081] |
8. Zhiyu Sun, Yongbin Zhou, Wenxu Zhu, You Yin. (2023) Assessment of the Fruit Chemical Characteristics and Antioxidant Activity of Different Mulberry Cultivars (Morus spp.) in Semi-Arid, Sandy Regions of China. Foods, 12 (18): (3495). [PMID:37761204] |
9. Li Yanyan, Wang Hongling, Shi Haiming, Guo Qin, Zhang Yuquan, Shi Aimin, Jiang Yuanrong, Wang Qiang. (2023) Quantification of Resveratrol in Peanut Oils Using Stable Isotope Dilution Ultra-high Performance Liquid Chromatography-Mass Spectrometry. Food Analytical Methods, 16 (11): (1673-1679). [PMID:17160893] |
10. Yao Ke, Mou Qianxue, Lou Xiaotong, Ye Meng, Zhao Bowen, Hu Yuanyuan, Luo Jing, Zhang Hong, Li Xing, Zhao Yin. (2023) Microglial SIRT1 activation attenuates synapse loss in retinal inner plexiform layer via mTORC1 inhibition. Journal of Neuroinflammation, 20 (1): (1-18). [PMID:37670386] |
11. Yajie Zhang, Changjiao Shang, Chaofan Sun, Lingling Wang. (2024) Simultaneously regulating absorption capacities and antioxidant activities of four stilbene derivatives utilizing substitution effect: A theoretical and experimental study against UVB radiation. SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 304 (123325). [PMID:37678043] |
12. Chen-Xi Bi, Kai-Qi Jin, Jing Yan, Yu Qin, Feng Hong, Wei-Hua Huang, Yan-Ling Liu. (2023) Nanofiber-based Stretchable Electrodes for Oriented Culture and Mechanotransduction Monitoring of Smooth Muscle Cells. ACS Sensors, 8 (8): (3248–3256). [PMID:37581426] |
13. Lu Tan, Menghuan Li, Hang Chen, Yuchen Zhang, Yuan Liu, Maohua Chen, Zhong Luo, Kaiyong Cai, Yan Hu. (2023) Dynamic hydrogel with environment-adaptive autonomous wound-compressing ability enables rapid hemostasis and inflammation amelioration for hemorrhagic wound healing. Nano Today, 52 (101962). [PMID:] |
14. Hao Guan, Zhiyong Li, Qinlong Xu, Jingjing Meng, Kai Guo. (2023) Dual bio-based epoxy resin as green substitute for DGEBA analogue with high performances. REACTIVE & FUNCTIONAL POLYMERS, 191 (105687). [PMID:] |
15. Minghui Cai, Haijuan Sun, Yujia Huang, Haixu Yao, Chen Zhao, Jiao Wang, Hui Zhu. (2023) Resveratrol Protects Rat Ovarian Luteinized Granulosa Cells from H2O2-Induced Dysfunction by Activating Autophagy. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 24 (13): (10914). [PMID:37446088] |
16. Maolin Li, Xin Zhang, Dandan Han, Songgu Wu, Junbo Gong. (2023) Systematic study on lysozyme-hyaluronan complexes: Multi-spectroscopic characterization and molecular dynamics simulation. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 246 (125642). [PMID:37394210] |
17. Song Yu, Lianpeng Zou, Jiawei Zhao, Yiping Zhu. (2023) Individual and Combined Cytotoxic Effects of Co-Occurring Fumonisin Family Mycotoxins on Porcine Intestinal Epithelial Cell. Foods, 12 (13): (2555). [PMID:37444293] |
18. Duoduo Li, Zihao Wei, Xiaolong Li. (2023) Development, Characterization and Resveratrol Delivery of Hollow Gliadin Nanoparticles: Advantages over Solid Gliadin Nanoparticles. Foods, 12 (13): (2436). [PMID:37444174] |
19. Feifei Liu, Ying Chen, Jianle Chen, Enbo Xu, Haibo Pan, Shiguo Chen, Xingqian Ye, Huan Cheng. (2023) Characteristic aroma improvement mechanisms of heat-sterilized bayberry juice regulated by exogenous polyphenols. FOOD CHEMISTRY, 427 (136644). [PMID:37390737] |
20. Chen Shengnan, Li Bo, Chen Lei, Jiang Hongli. (2023) Uncovering the mechanism of resveratrol in the treatment of diabetic kidney disease based on network pharmacology, molecular docking, and experimental validation. Journal of Translational Medicine, 21 (1): (1-14). [PMID:37308949] |
21. Weiwei Wang, Xin Li, Qiuhui Qian, Jin Yan, Haishan Huang, Xuedong Wang, Huili Wang. (2023) Mechanistic exploration on neurodevelopmental toxicity induced by upregulation of alkbh5 targeted by triclosan exposure to larval zebrafish. JOURNAL OF HAZARDOUS MATERIALS, 457 (131831). [PMID:37320907] |
22. Ye Shu, Tong Chen, Tao Liu, Hechen Xu, Jinjin He, Zhihui Cai, Wanning Zhu, Zihan Zhao, Jun Jiang. (2023) Preparation and characterization of mixed-mode hydrophilic stationary phase based on triple hydrophilic functionalized moieties and its application to traditional Chinese herbal compound. MICROCHEMICAL JOURNAL, 191 (108863). [PMID:] |
23. Yanwei Li, Susu Wang, Yurong Li, Guozheng Zhang, Tangfeng Wu, Yongkang Wei, Xinyu Cao, Hui Yan, Peisheng Liang, Zihan Yan, Yanan Guo, Yeshun Zhang. (2023) Resveratrol loaded native silk fiber-sericin hydrogel double interpenetrating bioactive wound dressing facilitates full-thickness skin wound healing. Biomedical Materials, 18 (4): (45007). [PMID:37146618] |
24. Cai Weiye, Sun Bin, Song Chao, Liu Fei, Wu Zhengliang, Liu Zongchao. (2023) Resveratrol induces proliferation and differentiation of mouse pre-osteoblast MC3T3-E1 by promoting autophagy. BMC Complementary Medicine and Therapies, 23 (1): (1-11). [PMID:37060066] |
25. Yi Ou, Zonglin You, Min Yao, Yingfan Cao, Xiu Xue, Min Chen, Rihui Wu, Lishe Gan, Dongli Li, Panpan Wu, Xuetao Xu, Wingleung Wong, Vincent Kam Wai Wong, Wenfeng Liu, Jiming Ye, Jingwei Jin. (2023) Naproxen-Derived New Compound Inhibits the NF-κB, MAPK and PI3K/Akt Signaling Pathways Synergistically with Resveratrol in RAW264.7 Cells. MOLECULES, 28 (8): (3395). [PMID:37110629] |
26. Ting Qin, Kai Chen, Bingwen Xi, Liangkun Pan, Jun Xie, Liushen Lu, Kai Liu. (2023) In Vitro Antibiofilm Activity of Resveratrol against Aeromonas hydrophila. Antibiotics-Basel, 12 (4): (686). [PMID:37107048] |
27. Fangyuan Jing, Yuda Zhu, Fan Li, Yilan Wang, Xiuxian Yu, Kun Zhang, Guang Xin, Wen Huang. (2023) Bimetallic ions-doped carbon dots nanotheranostics for imaging-guided macrophage polarization/ROS scavenging in acute pancreatitis. CHEMICAL ENGINEERING JOURNAL, 465 (142675). [PMID:] |
28. Zhaolun Li, Hongyan Wu, Jianan Liu, Hongshun Hao, Jingran Bi, Hongman Hou, Gongliang Zhang. (2023) Synergistic effects of benzyl isothiocyanate and resveratrol against Listeria monocytogenes and their application in chicken meat preservation. FOOD CHEMISTRY, 419 (135984). [PMID:37044056] |
29. Jiaming Liu, Xiaohong Liu, Xiaohua Cui, Jingjing Qin, Mengqin Wu, Lifu Fu, Min Shi, Dingsong Wang, Liyan Liang. (2023) Investigation on the properties and structures of resveratrol-derived epoxy thermosets cured with an active ester. Polymer Chemistry, 14 (14): (1665-1679). [PMID:] |
30. Simin Deng, Yuan Xu, Binbin Gao, Tingting Yu, Lun Kuang, Bo’ang Han, Shaolun Feng, Haodong Chi, Qing Cao, Shen Yue, Chen Liu. (2023) Anemarrhenasaponin I suppresses ovarian cancer progression via inhibition of SHH signaling pathway. Oncologie, 25 (3): (233-243). [PMID:] |
31. Lili Cao, Pengpeng Jia, Haotian Liu, Shengmei Kang, Shaotong Jiang, Min Pang. (2023) Effects of High-Canolol Phenolic Extracts on Fragrant Rapeseed Oil Quality and Flavor Compounds during Frying. Foods, 12 (4): (827). [PMID:36832902] |
32. Zhang Qian, Chuwei Li, Wei Zhao, Zhaowanyue He, Mengqi Xue, Shuxian Wang, Xi Cheng, Rujun Ma, Xie Ge. (2023) Chronic oral exposure to short chain chlorinated paraffins induced testicular toxicity by promoting NRF2-mediated oxidative stress. TOXICOLOGY LETTERS, 376 (1). [PMID:36642205] |
33. Xiaoxiang Gao, Chenbo Yue, Ruocen Tian, Leilei Yu, Fengwei Tian, Jianxin Zhao, Wei Chen, Qixiao Zhai. (2023) The regulatory effects of specific polyphenols on Akkermansia are dependent on uridine. FOOD CHEMISTRY, 410 (135367). [PMID:36610089] |
34. Xing Yunliang, Zhang Yuan, He Xianru. (2023) Design of acetylene-modified bio-based tri-functional benzoxazine and its copolymerization with bismaleimide for performance enhancement. POLYMER BULLETIN, 80 (11): (12065-12077). [PMID:] |
35. Lanxin Bao, Jing Ye, Nannan Liu, Yubao Shao, Wenhao Li, Xuefei Fan, Dahai Zhao, Hongzhi Wang, Xiaoyu Chen. (2022) Resveratrol Ameliorates Fibrosis in Rheumatoid Arthritis-Associated Interstitial Lung Disease via the Autophagy–Lysosome Pathway. MOLECULES, 27 (23): (8475). [PMID:36500562] |
36. Xiaoying Gao, Yunjia Liu, Ke Zhang, Jinlan Weng, Rongqing Chen, Xiaoyi Zhang, Zhipeng Wang, Shenghong Yang, Jian Liu. (2022) Light-Responsive Carbon Nitride Based Atomic Cu(I) Oxidase Mimics for Dual-Mode Total Antioxidant Capacity Assay. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 61 (49): (17801–17809). [PMID:] |
37. Jinhao Zou, Xueming Liu, Xuping Wang, Huaigu Yang, Jingrong Cheng, Yaosheng Lin, Daobang Tang. (2022) Influence of Gelatin-Chitosan-Glycerol Edible Coating Incorporated with Chlorogenic Acid, Gallic Acid, and Resveratrol on the Preservation of Fresh Beef. Foods, 11 (23): (3813). [PMID:36496621] |
38. Jun Zheng, Xianwen Song, Zhaoyu Yang, Yun Tan, Chao Yin, Jiafu Yin, Yufang Lu, Yufan Yang, Chuntai Liu, Lunzhao Yi, Yi Zhang. (2023) Self-assembling glycyrrhizic acid micellar hydrogels as encapsulant carriers for delivery of curcumin. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 658 (130680). [PMID:] |
39. Tian Su, Zhengyi Zhang, Xiao Han, Fei Yang, Zhen Wang, Ying Cheng, Huadong Liu. (2022) Systematic Insight of Resveratrol Activated SIRT1 Interactome through Proximity Labeling Strategy. Antioxidants, 11 (12): (2330). [PMID:36552538] |
40. Wenjie Yu, Fengjie Sun, Ruixin Xu, Meng Cui, Yongquan Liu, Quanyuan Xie, Limin Guo, Chenxian Kong, Xin Li, Xiali Guo, Liping Luo. (2023) Chemical composition and anti-inflammatory activities of Castanopsis honey. Food & Function, 14 (1): (250-261). [PMID:36484340] |
41. Ying Sun, Yang Yang, Lili Zheng, Xiaoyan Zheng, Dao Xiao, Shenwan Wang, Zhengke Zhang, Binling Ai, Zhanwu Sheng. (2022) Physicochemical, Structural, and Digestive Properties of Banana Starch Modified by Ultrasound and Resveratrol Treatments. Foods, 11 (22): (3741). [PMID:36429331] |
42. Songxia Zhang, Ying Xu, Mengling Ye, Wenli Ye, Jian Xiao, Honghao Zhou, Wei Zhang, Yan Shu, Yun Huang, Yao Chen. (2022) Resveratrol in Liquor Exacerbates Alcoholic Liver Injury with a Reduced Therapeutic Effect in Mice: An Unsupervised Herbal Wine Habit Is Risky. Nutrients, 14 (22): (4752). [PMID:36432440] |
43. Tian Li, Qin Guo, Yang Qu, Hongzhi Liu, Li Liu, Yu Zhang, Qiang Wang. (2023) Inhibition mechanism of trans-resveratrol on thermally induced trans fatty acids in peanut oil. FOOD CHEMISTRY, 406 (134863). [PMID:36470078] |
44. Limei Du, Xinglan Huo, Ying Liu. (2022) Regulatory effect of resveratrol on the expressions of factors and surface markers in alveolar macrophages of Aspergillus fumigatus-infected COPD rat model, and the associated mechanism. TROPICAL JOURNAL OF PHARMACEUTICAL RESEARCH, 21 (10): (2139-2146). [PMID:] |
45. Zhongyu Yang, David Julian McClements, Xinwen Peng, Chao Qiu, Jie Long, Jianwei Zhao, Zhenlin Xu, Man Meng, Long Chen, Zhengyu Jin. (2022) Co-encapsulation of quercetin and resveratrol in zein/carboxymethyl cellulose nanoparticles: characterization, stability and in vitro digestion. Food & Function, 13 (22): (11652-11663). [PMID:36278431] |
46. Zhongyu Yang, David Julian McClements, Xinwen Peng, Zhenlin Xu, Man Meng, Long Chen, Zhengyu Jin. (2023) Fabrication of zein–carboxymethyl cellulose nanoparticles for co-delivery of quercetin and resveratrol. JOURNAL OF FOOD ENGINEERING, 341 (111322). [PMID:] |
47. Ziting Zhang, You Ji, Nan Hu, Qinqi Yu, Xinrui Zhang, Jie Li, Fenglei Wu, Huae Xu, Qiyun Tang, Xiaolin Li. (2022) Ferroptosis-induced anticancer effect of resveratrol with a biomimetic nano-delivery system in colorectal cancer treatment. Asian Journal of Pharmaceutical Sciences, 17 (751). [PMID:36382309] |
48. Dengchao Xie, Xin Zhou, Bo Xiao, Lian Duan, Zhenhua Zhu. (2022) Mucus-Penetrating Silk Fibroin-Based Nanotherapeutics for Efficient Treatment of Ulcerative Colitis. Biomolecules, 12 (9): (1263). [PMID:36139101] |
49. Ningxin Cui, Zhen Xu, Xinyu Zhao, Meng Yuan, Leiyu Pan, Tianfeng Lu, Ai Du, Lili Qin. (2022) In Vivo Effect of Resveratrol-Cellulose Aerogel Drug Delivery System to Relieve Inflammation on Sports Osteoarthritis. Gels, 8 (9): (544). [PMID:36135256] |
50. Lei Wang, Congting Lai, Dong Li, Zisheng Luo, Lingling Liu, Yunbin Jiang, Li Li. (2022) Lecithin-Polysaccharide Self-Assembled Microspheres for Resveratrol Delivery. Antioxidants, 11 (9): (1666). [PMID:36139740] |
51. Bo Yu, Yiping Shen, Xuejie Zhang, Lijuan Ding, Zheng Meng, Xiaotong Wang, Meihua Han, Yifei Guo, Xiangtao Wang. (2022) Poly(methacrylate citric acid) as a Dual Functional Carrier for Tumor Therapy. Pharmaceutics, 14 (9): (1765). [PMID:36145512] |
52. Chunru Wang, Junyao Li, Xiangsheng Han, Shuai Liu, Xintao Gao, Chuanlong Guo, Xiaochen Wu. (2022) Silk sericin stabilized proanthocyanidins for synergetic alleviation of ulcerative colitis. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 220 (1021). [PMID:36007701] |
53. Chengjiang Lu, Shuai Bian, Ke Hu, Caicai Li, Kaiwen Zheng, Qingfeng Sun. (2022) Biomass-based epoxy resin derived from resveratrol with high temperature resistance and intrinsic flame retardant properties. INDUSTRIAL CROPS AND PRODUCTS, 187 (115500). [PMID:] |
54. Tingting Lin, Ben Chen, Liqun Fang, Haibo You, Chu Chu, Qingsong Shao, Shengqiang Tong. (2022) Solvent strength of organic phase for two biphasic solvent systems in high speed countercurrent chromatography. JOURNAL OF CHROMATOGRAPHY A, 1680 (463422). [PMID:36037578] |
55. Weiwei Zhu, Jiajie Long, Meiwu Shi. (2022) Resveratrol-Loaded Diacetate Fiber by Supercritical CO2 Fluid Assisted Impregnation. Materials, 15 (16): (5552). [PMID:36013689] |
56. Yu Xu, Wen-Jie Yang, Qian-Kun Zhou, Tian-Yu Gao, Guo-Mei Xu, Qi-Long Tai, San-E Zhu, Hong-Dian Lu, Richard K.K. Yuen, Wei Yang, Chun-Xiang Wei. (2022) Highly thermo-stable resveratrol-based flame retardant for enhancing mechanical and fire safety properties of epoxy resins. CHEMICAL ENGINEERING JOURNAL, 450 (138475). [PMID:] |
57. Mehmood Sahid, Uddin Md Alim, Yu Haojie, Wang Li, Amin Bilal Ul, Haq Fazal, Fahad Shah, Haroon Muhammad. (2022) Preparation of size-controlled poly(cyclotriphosphazene-co-resveratrol) microspheres and their properties as drug delivery carriers. IRANIAN POLYMER JOURNAL, 31 (10): (1225-1235). [PMID:] |
58. Fang Li, Yachao Xi, Jianming Jiang, Hao Peng, Bing Li, Jianbo He, Jiangnan Shu, Hua Cui. (2022) O-Fluorobenzoic Acid-Mediated Construction of Porous Graphitic Carbon Nitride with Nitrogen Defects for Multicolor Electrochemiluminescence Imaging Sensing. ANALYTICAL CHEMISTRY, 94 (26): (9306–9315). [PMID:35738019] |
59. Jun-Heng Jiao, Lei Gao, Wen-Long Yong, Zhong-Yun Kou, Zhi-Qiang Ren, Rui Cai, Gui-Yan Chu, Wei-Jun Pang. (2022) Resveratrol improves estrus disorder induced by bisphenol A through attenuating oxidative stress, autophagy, and apoptosis. JOURNAL OF BIOCHEMICAL AND MOLECULAR TOXICOLOGY, 36 (9): (e23120). [PMID:35670589] |
60. Zhiru Zou, Shan Wen, Yingqiao Li, Jinyu An, Qian Wu, Le Tong, Xifan Mei, He Tian, Chao Wu. (2022) Novel lactoferrin-functionalized manganese-doped silica hollow mesoporous nanoparticles loaded with resveratrol for the treatment of ischemic stroke. Materials Today Advances, 15 (100262). [PMID:] |
61. Shengtao Bo, Sui Kiat Chang, Youxia Shan, Yipeng Chen, Hui Liu, Bailin Li, Yueming Jiang, Hong Zhu, Bao Yang. (2022) The bioactivity of prenylated stilbenoids and their structure-activity relationship. FOOD RESEARCH INTERNATIONAL, 157 (111275). [PMID:35761587] |
62. Tian Su, Zhen Wang, Zhengyi Zhang, Zhanwu Hou, Xiao Han, Fei Yang, Huadong Liu. (2022) Resveratrol regulates Hsp60 in HEK 293T cells during activation of SIRT1 revealed by nascent protein labeling strategy. Food & Nutrition Research, 66 ( 10.29219/fnr.v66.8224). [PMID:35517847] |
63. Ting Zhou, Bao Yang. (2022) Novel strategy to produce prenylated resveratrol by prenyltransferase iacE and evaluation of neuroprotective mechanisms. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 609 (127). [PMID:35429680] |
64. Xinran Shi, Liang Ji, Yuanyuan Hu, Jinyu Gu, Liming Wang, Wenwen Lu, Jiali Meng, Yan Du, Lingzhong Huang, Dongxia Nie, Yanyan Yu. (2022) Dual-responsive zeolitic imidazolate framework-90 for the combined detection and intracellular imaging of ATP and ROS. SENSORS AND ACTUATORS B-CHEMICAL, 363 (131848). [PMID:] |
65. Dandan Hu, Xin Chen, Duanxiu Li, Hailu Zhang, Yanwen Duan, Yong Huang. (2022) Sustained Release of Co-Amorphous Matrine-Type Alkaloids and Resveratrol with Anti-COVID-19 Potential. Pharmaceutics, 14 (3): (603). [PMID:35335977] |
66. Linlin Hao, Jinwei Sun, Mengqi Pei, Guofang Zhang, Chun Li, Chunmei Li, Xinkai Ma, Sixuan He, Libo Liu. (2022) Impact of non-covalent bound polyphenols on conformational, functional properties and in vitro digestibility of pea protein. FOOD CHEMISTRY, 383 (132623). [PMID:35413763] |
67. Ying Xu, Song-xia Zhang, Jing Guo, Li-jie Chen, Yu-ligh Liou, Tai Rao, Jing-bo Peng, Ying Guo, Wei-hua Huang, Zhi-rong Tan, Dong-sheng Ou-yang, Hong-hao Zhou, Wei Zhang, Yao Chen. (2022) A Joint Technology Combining the Advantages of Capillary Microsampling with Mass Spectrometry Applied to the Trans-Resveratrol Pharmacokinetic Study in Mice. Journal of Analytical Methods in Chemistry, 2022 (5952436). [PMID:35083093] |
68. Junfeng Zheng, Rui Zhao, Adam A. Uliana, Yanyan Liu, Damien de Donnea, Xin Zhang, Daliang Xu, Qieyuan Gao, Pengrui Jin, Yanlin Liu, Alexander Volodine, Junyong Zhu, Bart Van der Bruggen. (2022) Separation of textile wastewater using a highly permeable resveratrol-based loose nanofiltration membrane with excellent anti-fouling performance. CHEMICAL ENGINEERING JOURNAL, 434 (134705). [PMID:] |
69. Xunan Jing, Lingjie Meng, Tingting Yang, Ning Zhang, Shu Fan, Yanni Chen, Hongbo Yang, Daquan Wang, Wenchen Ji, Junjun She. (2022) Biodegradable polyphosphazene-based nanodrug to regulate redox homeostasis for augmented chemo-photodynamic therapy. DYES AND PIGMENTS, 199 (110095). [PMID:] |
70. Rong You, Lu Shi, Surong Chen, Qingpeng Liu, Lingkun Zhang, Liang Yin, Runcai Yang, Yan-Qing Guan. (2021) Fabrication of Resveratrol-Loaded Scaffolds and Their Application for Delaying Cell Senescence In Vitro. MACROMOLECULAR BIOSCIENCE, 22 (3): (2100440). [PMID:34919323] |
71. Qianxue Mou, Ke Yao, Meng Ye, Bowen Zhao, Yuanyuan Hu, Xiaotong Lou, Huixia Li, Hong Zhang, Yin Zhao. (2021) Modulation of Sirt1-mTORC1 Pathway in Microglia Attenuates Retinal Ganglion Cell Loss After Optic Nerve Injury. Journal of Inflammation Research, 14 ( 6857–6869). [PMID:34934336] |
72. Weidong Wang, Zenggen Liu, Fan Kong, Lixia He, Linghao Fang, Qingyan Shu. (2022) Quantitative analysis of resveratrol derivatives in the seed coats of tree peonies and their hypoglycemic activities in vitro/vivo. Food & Function, 13 (2): (846-856). [PMID:34989366] |
73. Xue Jiang, Xiaoyao Liu, Qi Yu, Wenwen Shen, Xifan Mei, He Tian, Chao Wu. (2022) Functional resveratrol-biodegradable manganese doped silica nanoparticles for the spinal cord injury treatment. Materials Today Bio, 13 (100177). [PMID:34938991] |
74. Shiling Feng, Chunyan Zhang, Tao Chen, Lijun Zhou, Yan Huang, Ming Yuan, Tian Li, Chunbang Ding. (2021) Oleuropein Enhances Stress Resistance and Extends Lifespan via Insulin/IGF-1 and SKN-1/Nrf2 Signaling Pathway in Caenorhabditis elegans. Antioxidants, 10 (11): (1697). [PMID:34829568] |
75. Erdong Yuan, Shiying Nie, Chunli Qi, Bo Chang, Jiaoyan Ren. (2021) Effect of Scomberomorus niphonius peptide on the characteristics of resveratrol. Food & Function, 12 (22): (11449-11459). [PMID:34693420] |
76. Jinxia Xu, Yueyan Zang, Fanyong Yan, Jingru Sun, Yuyang Zhang, Chunhui Yi. (2021) Cyclodextrin Functionalized Carbon Dots Using IFE and FRET Dual Mechanism for Sequential Detection of Morin and Al3+. PARTICLE & PARTICLE SYSTEMS CHARACTERIZATION, 38 (11): (2100201). [PMID:] |
77. Dan Tang,Jia-Xiao Zhu,An-Guo Wu,You-Hua Xu,Ting-Ting Duan,Zhao-Guang Zheng,Ru-Shang Wang,Dan Li,Quan Zhu. (2013-03-16) Pre-column incubation followed by fast liquid chromatography analysis for rapid screening of natural methylglyoxal scavengers directly from herbal medicines: case study of Polygonum cuspidatum.. Journal of chromatography. A, 1286 (102-110). [PMID:23489496] |
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10. Yao Ke, Mou Qianxue, Lou Xiaotong, Ye Meng, Zhao Bowen, Hu Yuanyuan, Luo Jing, Zhang Hong, Li Xing, Zhao Yin. (2023) Microglial SIRT1 activation attenuates synapse loss in retinal inner plexiform layer via mTORC1 inhibition. Journal of Neuroinflammation, 20 (1): (1-18). [PMID:37670386] |
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14. Hao Guan, Zhiyong Li, Qinlong Xu, Jingjing Meng, Kai Guo. (2023) Dual bio-based epoxy resin as green substitute for DGEBA analogue with high performances. REACTIVE & FUNCTIONAL POLYMERS, 191 (105687). [PMID:] |
15. Minghui Cai, Haijuan Sun, Yujia Huang, Haixu Yao, Chen Zhao, Jiao Wang, Hui Zhu. (2023) Resveratrol Protects Rat Ovarian Luteinized Granulosa Cells from H2O2-Induced Dysfunction by Activating Autophagy. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 24 (13): (10914). [PMID:37446088] |
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17. Song Yu, Lianpeng Zou, Jiawei Zhao, Yiping Zhu. (2023) Individual and Combined Cytotoxic Effects of Co-Occurring Fumonisin Family Mycotoxins on Porcine Intestinal Epithelial Cell. Foods, 12 (13): (2555). [PMID:37444293] |
18. Duoduo Li, Zihao Wei, Xiaolong Li. (2023) Development, Characterization and Resveratrol Delivery of Hollow Gliadin Nanoparticles: Advantages over Solid Gliadin Nanoparticles. Foods, 12 (13): (2436). [PMID:37444174] |
19. Feifei Liu, Ying Chen, Jianle Chen, Enbo Xu, Haibo Pan, Shiguo Chen, Xingqian Ye, Huan Cheng. (2023) Characteristic aroma improvement mechanisms of heat-sterilized bayberry juice regulated by exogenous polyphenols. FOOD CHEMISTRY, 427 (136644). [PMID:37390737] |
20. Chen Shengnan, Li Bo, Chen Lei, Jiang Hongli. (2023) Uncovering the mechanism of resveratrol in the treatment of diabetic kidney disease based on network pharmacology, molecular docking, and experimental validation. Journal of Translational Medicine, 21 (1): (1-14). [PMID:37308949] |
21. Weiwei Wang, Xin Li, Qiuhui Qian, Jin Yan, Haishan Huang, Xuedong Wang, Huili Wang. (2023) Mechanistic exploration on neurodevelopmental toxicity induced by upregulation of alkbh5 targeted by triclosan exposure to larval zebrafish. JOURNAL OF HAZARDOUS MATERIALS, 457 (131831). [PMID:37320907] |
22. Ye Shu, Tong Chen, Tao Liu, Hechen Xu, Jinjin He, Zhihui Cai, Wanning Zhu, Zihan Zhao, Jun Jiang. (2023) Preparation and characterization of mixed-mode hydrophilic stationary phase based on triple hydrophilic functionalized moieties and its application to traditional Chinese herbal compound. MICROCHEMICAL JOURNAL, 191 (108863). [PMID:] |
23. Yanwei Li, Susu Wang, Yurong Li, Guozheng Zhang, Tangfeng Wu, Yongkang Wei, Xinyu Cao, Hui Yan, Peisheng Liang, Zihan Yan, Yanan Guo, Yeshun Zhang. (2023) Resveratrol loaded native silk fiber-sericin hydrogel double interpenetrating bioactive wound dressing facilitates full-thickness skin wound healing. Biomedical Materials, 18 (4): (45007). [PMID:37146618] |
24. Cai Weiye, Sun Bin, Song Chao, Liu Fei, Wu Zhengliang, Liu Zongchao. (2023) Resveratrol induces proliferation and differentiation of mouse pre-osteoblast MC3T3-E1 by promoting autophagy. BMC Complementary Medicine and Therapies, 23 (1): (1-11). [PMID:37060066] |
25. Yi Ou, Zonglin You, Min Yao, Yingfan Cao, Xiu Xue, Min Chen, Rihui Wu, Lishe Gan, Dongli Li, Panpan Wu, Xuetao Xu, Wingleung Wong, Vincent Kam Wai Wong, Wenfeng Liu, Jiming Ye, Jingwei Jin. (2023) Naproxen-Derived New Compound Inhibits the NF-κB, MAPK and PI3K/Akt Signaling Pathways Synergistically with Resveratrol in RAW264.7 Cells. MOLECULES, 28 (8): (3395). [PMID:37110629] |
26. Ting Qin, Kai Chen, Bingwen Xi, Liangkun Pan, Jun Xie, Liushen Lu, Kai Liu. (2023) In Vitro Antibiofilm Activity of Resveratrol against Aeromonas hydrophila. Antibiotics-Basel, 12 (4): (686). [PMID:37107048] |
27. Fangyuan Jing, Yuda Zhu, Fan Li, Yilan Wang, Xiuxian Yu, Kun Zhang, Guang Xin, Wen Huang. (2023) Bimetallic ions-doped carbon dots nanotheranostics for imaging-guided macrophage polarization/ROS scavenging in acute pancreatitis. CHEMICAL ENGINEERING JOURNAL, 465 (142675). [PMID:] |
28. Zhaolun Li, Hongyan Wu, Jianan Liu, Hongshun Hao, Jingran Bi, Hongman Hou, Gongliang Zhang. (2023) Synergistic effects of benzyl isothiocyanate and resveratrol against Listeria monocytogenes and their application in chicken meat preservation. FOOD CHEMISTRY, 419 (135984). [PMID:37044056] |
29. Jiaming Liu, Xiaohong Liu, Xiaohua Cui, Jingjing Qin, Mengqin Wu, Lifu Fu, Min Shi, Dingsong Wang, Liyan Liang. (2023) Investigation on the properties and structures of resveratrol-derived epoxy thermosets cured with an active ester. Polymer Chemistry, 14 (14): (1665-1679). [PMID:] |
30. Simin Deng, Yuan Xu, Binbin Gao, Tingting Yu, Lun Kuang, Bo’ang Han, Shaolun Feng, Haodong Chi, Qing Cao, Shen Yue, Chen Liu. (2023) Anemarrhenasaponin I suppresses ovarian cancer progression via inhibition of SHH signaling pathway. Oncologie, 25 (3): (233-243). [PMID:] |
31. Lili Cao, Pengpeng Jia, Haotian Liu, Shengmei Kang, Shaotong Jiang, Min Pang. (2023) Effects of High-Canolol Phenolic Extracts on Fragrant Rapeseed Oil Quality and Flavor Compounds during Frying. Foods, 12 (4): (827). [PMID:36832902] |
32. Zhang Qian, Chuwei Li, Wei Zhao, Zhaowanyue He, Mengqi Xue, Shuxian Wang, Xi Cheng, Rujun Ma, Xie Ge. (2023) Chronic oral exposure to short chain chlorinated paraffins induced testicular toxicity by promoting NRF2-mediated oxidative stress. TOXICOLOGY LETTERS, 376 (1). [PMID:36642205] |
33. Xiaoxiang Gao, Chenbo Yue, Ruocen Tian, Leilei Yu, Fengwei Tian, Jianxin Zhao, Wei Chen, Qixiao Zhai. (2023) The regulatory effects of specific polyphenols on Akkermansia are dependent on uridine. FOOD CHEMISTRY, 410 (135367). [PMID:36610089] |
34. Xing Yunliang, Zhang Yuan, He Xianru. (2023) Design of acetylene-modified bio-based tri-functional benzoxazine and its copolymerization with bismaleimide for performance enhancement. POLYMER BULLETIN, 80 (11): (12065-12077). [PMID:] |
35. Lanxin Bao, Jing Ye, Nannan Liu, Yubao Shao, Wenhao Li, Xuefei Fan, Dahai Zhao, Hongzhi Wang, Xiaoyu Chen. (2022) Resveratrol Ameliorates Fibrosis in Rheumatoid Arthritis-Associated Interstitial Lung Disease via the Autophagy–Lysosome Pathway. MOLECULES, 27 (23): (8475). [PMID:36500562] |
36. Xiaoying Gao, Yunjia Liu, Ke Zhang, Jinlan Weng, Rongqing Chen, Xiaoyi Zhang, Zhipeng Wang, Shenghong Yang, Jian Liu. (2022) Light-Responsive Carbon Nitride Based Atomic Cu(I) Oxidase Mimics for Dual-Mode Total Antioxidant Capacity Assay. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 61 (49): (17801–17809). [PMID:] |
37. Jinhao Zou, Xueming Liu, Xuping Wang, Huaigu Yang, Jingrong Cheng, Yaosheng Lin, Daobang Tang. (2022) Influence of Gelatin-Chitosan-Glycerol Edible Coating Incorporated with Chlorogenic Acid, Gallic Acid, and Resveratrol on the Preservation of Fresh Beef. Foods, 11 (23): (3813). [PMID:36496621] |
38. Jun Zheng, Xianwen Song, Zhaoyu Yang, Yun Tan, Chao Yin, Jiafu Yin, Yufang Lu, Yufan Yang, Chuntai Liu, Lunzhao Yi, Yi Zhang. (2023) Self-assembling glycyrrhizic acid micellar hydrogels as encapsulant carriers for delivery of curcumin. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 658 (130680). [PMID:] |
39. Tian Su, Zhengyi Zhang, Xiao Han, Fei Yang, Zhen Wang, Ying Cheng, Huadong Liu. (2022) Systematic Insight of Resveratrol Activated SIRT1 Interactome through Proximity Labeling Strategy. Antioxidants, 11 (12): (2330). [PMID:36552538] |
40. Wenjie Yu, Fengjie Sun, Ruixin Xu, Meng Cui, Yongquan Liu, Quanyuan Xie, Limin Guo, Chenxian Kong, Xin Li, Xiali Guo, Liping Luo. (2023) Chemical composition and anti-inflammatory activities of Castanopsis honey. Food & Function, 14 (1): (250-261). [PMID:36484340] |
41. Ying Sun, Yang Yang, Lili Zheng, Xiaoyan Zheng, Dao Xiao, Shenwan Wang, Zhengke Zhang, Binling Ai, Zhanwu Sheng. (2022) Physicochemical, Structural, and Digestive Properties of Banana Starch Modified by Ultrasound and Resveratrol Treatments. Foods, 11 (22): (3741). [PMID:36429331] |
42. Songxia Zhang, Ying Xu, Mengling Ye, Wenli Ye, Jian Xiao, Honghao Zhou, Wei Zhang, Yan Shu, Yun Huang, Yao Chen. (2022) Resveratrol in Liquor Exacerbates Alcoholic Liver Injury with a Reduced Therapeutic Effect in Mice: An Unsupervised Herbal Wine Habit Is Risky. Nutrients, 14 (22): (4752). [PMID:36432440] |
43. Tian Li, Qin Guo, Yang Qu, Hongzhi Liu, Li Liu, Yu Zhang, Qiang Wang. (2023) Inhibition mechanism of trans-resveratrol on thermally induced trans fatty acids in peanut oil. FOOD CHEMISTRY, 406 (134863). [PMID:36470078] |
44. Limei Du, Xinglan Huo, Ying Liu. (2022) Regulatory effect of resveratrol on the expressions of factors and surface markers in alveolar macrophages of Aspergillus fumigatus-infected COPD rat model, and the associated mechanism. TROPICAL JOURNAL OF PHARMACEUTICAL RESEARCH, 21 (10): (2139-2146). [PMID:] |
45. Zhongyu Yang, David Julian McClements, Xinwen Peng, Chao Qiu, Jie Long, Jianwei Zhao, Zhenlin Xu, Man Meng, Long Chen, Zhengyu Jin. (2022) Co-encapsulation of quercetin and resveratrol in zein/carboxymethyl cellulose nanoparticles: characterization, stability and in vitro digestion. Food & Function, 13 (22): (11652-11663). [PMID:36278431] |
46. Zhongyu Yang, David Julian McClements, Xinwen Peng, Zhenlin Xu, Man Meng, Long Chen, Zhengyu Jin. (2023) Fabrication of zein–carboxymethyl cellulose nanoparticles for co-delivery of quercetin and resveratrol. JOURNAL OF FOOD ENGINEERING, 341 (111322). [PMID:] |
47. Ziting Zhang, You Ji, Nan Hu, Qinqi Yu, Xinrui Zhang, Jie Li, Fenglei Wu, Huae Xu, Qiyun Tang, Xiaolin Li. (2022) Ferroptosis-induced anticancer effect of resveratrol with a biomimetic nano-delivery system in colorectal cancer treatment. Asian Journal of Pharmaceutical Sciences, 17 (751). [PMID:36382309] |
48. Dengchao Xie, Xin Zhou, Bo Xiao, Lian Duan, Zhenhua Zhu. (2022) Mucus-Penetrating Silk Fibroin-Based Nanotherapeutics for Efficient Treatment of Ulcerative Colitis. Biomolecules, 12 (9): (1263). [PMID:36139101] |
49. Ningxin Cui, Zhen Xu, Xinyu Zhao, Meng Yuan, Leiyu Pan, Tianfeng Lu, Ai Du, Lili Qin. (2022) In Vivo Effect of Resveratrol-Cellulose Aerogel Drug Delivery System to Relieve Inflammation on Sports Osteoarthritis. Gels, 8 (9): (544). [PMID:36135256] |
50. Lei Wang, Congting Lai, Dong Li, Zisheng Luo, Lingling Liu, Yunbin Jiang, Li Li. (2022) Lecithin-Polysaccharide Self-Assembled Microspheres for Resveratrol Delivery. Antioxidants, 11 (9): (1666). [PMID:36139740] |
51. Bo Yu, Yiping Shen, Xuejie Zhang, Lijuan Ding, Zheng Meng, Xiaotong Wang, Meihua Han, Yifei Guo, Xiangtao Wang. (2022) Poly(methacrylate citric acid) as a Dual Functional Carrier for Tumor Therapy. Pharmaceutics, 14 (9): (1765). [PMID:36145512] |
52. Chunru Wang, Junyao Li, Xiangsheng Han, Shuai Liu, Xintao Gao, Chuanlong Guo, Xiaochen Wu. (2022) Silk sericin stabilized proanthocyanidins for synergetic alleviation of ulcerative colitis. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 220 (1021). [PMID:36007701] |
53. Chengjiang Lu, Shuai Bian, Ke Hu, Caicai Li, Kaiwen Zheng, Qingfeng Sun. (2022) Biomass-based epoxy resin derived from resveratrol with high temperature resistance and intrinsic flame retardant properties. INDUSTRIAL CROPS AND PRODUCTS, 187 (115500). [PMID:] |
54. Tingting Lin, Ben Chen, Liqun Fang, Haibo You, Chu Chu, Qingsong Shao, Shengqiang Tong. (2022) Solvent strength of organic phase for two biphasic solvent systems in high speed countercurrent chromatography. JOURNAL OF CHROMATOGRAPHY A, 1680 (463422). [PMID:36037578] |
55. Weiwei Zhu, Jiajie Long, Meiwu Shi. (2022) Resveratrol-Loaded Diacetate Fiber by Supercritical CO2 Fluid Assisted Impregnation. Materials, 15 (16): (5552). [PMID:36013689] |
56. Yu Xu, Wen-Jie Yang, Qian-Kun Zhou, Tian-Yu Gao, Guo-Mei Xu, Qi-Long Tai, San-E Zhu, Hong-Dian Lu, Richard K.K. Yuen, Wei Yang, Chun-Xiang Wei. (2022) Highly thermo-stable resveratrol-based flame retardant for enhancing mechanical and fire safety properties of epoxy resins. CHEMICAL ENGINEERING JOURNAL, 450 (138475). [PMID:] |
57. Mehmood Sahid, Uddin Md Alim, Yu Haojie, Wang Li, Amin Bilal Ul, Haq Fazal, Fahad Shah, Haroon Muhammad. (2022) Preparation of size-controlled poly(cyclotriphosphazene-co-resveratrol) microspheres and their properties as drug delivery carriers. IRANIAN POLYMER JOURNAL, 31 (10): (1225-1235). [PMID:] |
58. Fang Li, Yachao Xi, Jianming Jiang, Hao Peng, Bing Li, Jianbo He, Jiangnan Shu, Hua Cui. (2022) O-Fluorobenzoic Acid-Mediated Construction of Porous Graphitic Carbon Nitride with Nitrogen Defects for Multicolor Electrochemiluminescence Imaging Sensing. ANALYTICAL CHEMISTRY, 94 (26): (9306–9315). [PMID:35738019] |
59. Jun-Heng Jiao, Lei Gao, Wen-Long Yong, Zhong-Yun Kou, Zhi-Qiang Ren, Rui Cai, Gui-Yan Chu, Wei-Jun Pang. (2022) Resveratrol improves estrus disorder induced by bisphenol A through attenuating oxidative stress, autophagy, and apoptosis. JOURNAL OF BIOCHEMICAL AND MOLECULAR TOXICOLOGY, 36 (9): (e23120). [PMID:35670589] |
60. Zhiru Zou, Shan Wen, Yingqiao Li, Jinyu An, Qian Wu, Le Tong, Xifan Mei, He Tian, Chao Wu. (2022) Novel lactoferrin-functionalized manganese-doped silica hollow mesoporous nanoparticles loaded with resveratrol for the treatment of ischemic stroke. Materials Today Advances, 15 (100262). [PMID:] |
61. Shengtao Bo, Sui Kiat Chang, Youxia Shan, Yipeng Chen, Hui Liu, Bailin Li, Yueming Jiang, Hong Zhu, Bao Yang. (2022) The bioactivity of prenylated stilbenoids and their structure-activity relationship. FOOD RESEARCH INTERNATIONAL, 157 (111275). [PMID:35761587] |
62. Tian Su, Zhen Wang, Zhengyi Zhang, Zhanwu Hou, Xiao Han, Fei Yang, Huadong Liu. (2022) Resveratrol regulates Hsp60 in HEK 293T cells during activation of SIRT1 revealed by nascent protein labeling strategy. Food & Nutrition Research, 66 ( 10.29219/fnr.v66.8224). [PMID:35517847] |
63. Ting Zhou, Bao Yang. (2022) Novel strategy to produce prenylated resveratrol by prenyltransferase iacE and evaluation of neuroprotective mechanisms. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 609 (127). [PMID:35429680] |
64. Xinran Shi, Liang Ji, Yuanyuan Hu, Jinyu Gu, Liming Wang, Wenwen Lu, Jiali Meng, Yan Du, Lingzhong Huang, Dongxia Nie, Yanyan Yu. (2022) Dual-responsive zeolitic imidazolate framework-90 for the combined detection and intracellular imaging of ATP and ROS. SENSORS AND ACTUATORS B-CHEMICAL, 363 (131848). [PMID:] |
65. Dandan Hu, Xin Chen, Duanxiu Li, Hailu Zhang, Yanwen Duan, Yong Huang. (2022) Sustained Release of Co-Amorphous Matrine-Type Alkaloids and Resveratrol with Anti-COVID-19 Potential. Pharmaceutics, 14 (3): (603). [PMID:35335977] |
66. Linlin Hao, Jinwei Sun, Mengqi Pei, Guofang Zhang, Chun Li, Chunmei Li, Xinkai Ma, Sixuan He, Libo Liu. (2022) Impact of non-covalent bound polyphenols on conformational, functional properties and in vitro digestibility of pea protein. FOOD CHEMISTRY, 383 (132623). [PMID:35413763] |
67. Ying Xu, Song-xia Zhang, Jing Guo, Li-jie Chen, Yu-ligh Liou, Tai Rao, Jing-bo Peng, Ying Guo, Wei-hua Huang, Zhi-rong Tan, Dong-sheng Ou-yang, Hong-hao Zhou, Wei Zhang, Yao Chen. (2022) A Joint Technology Combining the Advantages of Capillary Microsampling with Mass Spectrometry Applied to the Trans-Resveratrol Pharmacokinetic Study in Mice. Journal of Analytical Methods in Chemistry, 2022 (5952436). [PMID:35083093] |
68. Junfeng Zheng, Rui Zhao, Adam A. Uliana, Yanyan Liu, Damien de Donnea, Xin Zhang, Daliang Xu, Qieyuan Gao, Pengrui Jin, Yanlin Liu, Alexander Volodine, Junyong Zhu, Bart Van der Bruggen. (2022) Separation of textile wastewater using a highly permeable resveratrol-based loose nanofiltration membrane with excellent anti-fouling performance. CHEMICAL ENGINEERING JOURNAL, 434 (134705). [PMID:] |
69. Xunan Jing, Lingjie Meng, Tingting Yang, Ning Zhang, Shu Fan, Yanni Chen, Hongbo Yang, Daquan Wang, Wenchen Ji, Junjun She. (2022) Biodegradable polyphosphazene-based nanodrug to regulate redox homeostasis for augmented chemo-photodynamic therapy. DYES AND PIGMENTS, 199 (110095). [PMID:] |
70. Rong You, Lu Shi, Surong Chen, Qingpeng Liu, Lingkun Zhang, Liang Yin, Runcai Yang, Yan-Qing Guan. (2021) Fabrication of Resveratrol-Loaded Scaffolds and Their Application for Delaying Cell Senescence In Vitro. MACROMOLECULAR BIOSCIENCE, 22 (3): (2100440). [PMID:34919323] |
71. Qianxue Mou, Ke Yao, Meng Ye, Bowen Zhao, Yuanyuan Hu, Xiaotong Lou, Huixia Li, Hong Zhang, Yin Zhao. (2021) Modulation of Sirt1-mTORC1 Pathway in Microglia Attenuates Retinal Ganglion Cell Loss After Optic Nerve Injury. Journal of Inflammation Research, 14 ( 6857–6869). [PMID:34934336] |
72. Weidong Wang, Zenggen Liu, Fan Kong, Lixia He, Linghao Fang, Qingyan Shu. (2022) Quantitative analysis of resveratrol derivatives in the seed coats of tree peonies and their hypoglycemic activities in vitro/vivo. Food & Function, 13 (2): (846-856). [PMID:34989366] |
73. Xue Jiang, Xiaoyao Liu, Qi Yu, Wenwen Shen, Xifan Mei, He Tian, Chao Wu. (2022) Functional resveratrol-biodegradable manganese doped silica nanoparticles for the spinal cord injury treatment. Materials Today Bio, 13 (100177). [PMID:34938991] |
74. Shiling Feng, Chunyan Zhang, Tao Chen, Lijun Zhou, Yan Huang, Ming Yuan, Tian Li, Chunbang Ding. (2021) Oleuropein Enhances Stress Resistance and Extends Lifespan via Insulin/IGF-1 and SKN-1/Nrf2 Signaling Pathway in Caenorhabditis elegans. Antioxidants, 10 (11): (1697). [PMID:34829568] |
75. Erdong Yuan, Shiying Nie, Chunli Qi, Bo Chang, Jiaoyan Ren. (2021) Effect of Scomberomorus niphonius peptide on the characteristics of resveratrol. Food & Function, 12 (22): (11449-11459). [PMID:34693420] |
76. Jinxia Xu, Yueyan Zang, Fanyong Yan, Jingru Sun, Yuyang Zhang, Chunhui Yi. (2021) Cyclodextrin Functionalized Carbon Dots Using IFE and FRET Dual Mechanism for Sequential Detection of Morin and Al3+. PARTICLE & PARTICLE SYSTEMS CHARACTERIZATION, 38 (11): (2100201). [PMID:] |
77. Dan Tang,Jia-Xiao Zhu,An-Guo Wu,You-Hua Xu,Ting-Ting Duan,Zhao-Guang Zheng,Ru-Shang Wang,Dan Li,Quan Zhu. (2013-03-16) Pre-column incubation followed by fast liquid chromatography analysis for rapid screening of natural methylglyoxal scavengers directly from herbal medicines: case study of Polygonum cuspidatum.. Journal of chromatography. A, 1286 (102-110). [PMID:23489496] |