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217 related items for PubMed ID: 34253100
21. Evaluation of Antioxidant and Anti-α-glucosidase Activities of Various Solvent Extracts and Major Bioactive Components from the Seeds of Myristica fragrans. Li CW, Chu YC, Huang CY, Fu SL, Chen JJ. Molecules; 2020 Nov 08; 25(21):. PubMed ID: 33171671 [Abstract] [Full Text] [Related]
22. Bioassay-guided isolation of antioxidant and α-glucosidase inhibitory constituents from stem of Vigna angularis. Guo F, Zhang S, Yan X, Dan Y, Wang J, Zhao Y, Yu Z. Bioorg Chem; 2019 Jun 08; 87():312-320. PubMed ID: 30913466 [Abstract] [Full Text] [Related]
23. Neolignan Constituents with Potential Beneficial Effects in Prevention of Type 2 Diabetes from Viburnum fordiae Hance Fruits. Zhao C, Chen J, Shao J, Shen J, Li K, Gu W, Li S, Fan J. J Agric Food Chem; 2018 Oct 10; 66(40):10421-10430. PubMed ID: 30231607 [Abstract] [Full Text] [Related]
24. Characterization of antioxidant, α-glucosidase and tyrosinase inhibitors from the rhizomes of Potentilla anserina L. and their structure-activity relationship. Yang D, Wang L, Zhai J, Han N, Liu Z, Li S, Yin J. Food Chem; 2021 Jan 30; 336():127714. PubMed ID: 32828014 [Abstract] [Full Text] [Related]
25. Secondary metabolites isolated from Agrimonia pilosa Ledeb. Li HR, Li YK, Xiao J, Yang C, Jiang MY, Tian K, Wang W, Li YH, Huang XZ. Nat Prod Res; 2022 Jan 30; 36(1):263-270. PubMed ID: 32567424 [Abstract] [Full Text] [Related]
26. α-Glucosidase and glycation inhibitory activities of Rumex lunaria leaf extract: a promising plant against hyperglycaemia-related damage. Froldi G, González DL, Rosteghin F, Grison M, Sut S, Dall'Acqua S, Sánchez-Mateo CDC. Nat Prod Res; 2020 Dec 30; 34(23):3418-3422. PubMed ID: 30744418 [Abstract] [Full Text] [Related]
27. alpha-Glucosidase inhibition properties of cucurbitane-type triterpene glycosides from the fruits of Momordica charantia. Nhiem NX, Kiem PV, Minh CV, Ban NK, Cuong NX, Tung NH, Ha le M, Ha do T, Tai BH, Quang TH, Ngoc TM, Kwon YI, Jang HD, Kim YH. Chem Pharm Bull (Tokyo); 2010 May 30; 58(5):720-4. PubMed ID: 20460803 [Abstract] [Full Text] [Related]
28. Pregnane glycosides from the leaves of Dregea volubilis and their α-glucosidase and α-amylase inhibitory activities. Thuy NTK, Phuong PT, Hien NTT, Trang DT, Huan NV, Anh PTL, Tai BH, Nhiem NX, Hung NT, Kiem PV. Nat Prod Res; 2021 Nov 30; 35(21):3931-3938. PubMed ID: 32237915 [Abstract] [Full Text] [Related]
29. In vitro α-amylase and α-glucosidase Inhibition, Antioxidant, Anti- Inflammatory Activity and GC-MS Profiling of Avicennia alba Blume. Das SK, Dash S, Thatoi H, Patra JK. Comb Chem High Throughput Screen; 2020 Nov 30; 23(9):945-954. PubMed ID: 32342807 [Abstract] [Full Text] [Related]
31. Four New Flavonoids with α-Glucosidase Inhibitory Activities from Morus alba var. tatarica. Zhang YL, Luo JG, Wan CX, Zhou ZB, Kong LY. Chem Biodivers; 2015 Nov 30; 12(11):1768-76. PubMed ID: 26567954 [Abstract] [Full Text] [Related]
32. Inhibitory Effects of Siegesbeckia orientalis Extracts on Advanced Glycation End Product Formation and Key Enzymes Related to Metabolic Syndrome. Hung WC, Ling XH, Chang CC, Hsu HF, Wang SW, Lee YC, Luo C, Lee YT, Houng JY. Molecules; 2017 Oct 21; 22(10):. PubMed ID: 29065451 [Abstract] [Full Text] [Related]
33. A new pyrano coumarin from Clausena excavata roots displaying dual inhibition against α-glucosidase and free radical. Thant TM, Aminah NS, Kristanti AN, Ramadhan R, Phuwapraisirisan P, Takaya Y. Nat Prod Res; 2021 Feb 21; 35(4):556-561. PubMed ID: 30908081 [Abstract] [Full Text] [Related]
34. Identification and Enrichment of α-Glucosidase-Inhibiting Dihydrostilbene and Flavonoids from Glycyrrhiza uralensis Leaves. Ye R, Fan YH, Ma CM. J Agric Food Chem; 2017 Jan 18; 65(2):510-515. PubMed ID: 28019719 [Abstract] [Full Text] [Related]
35. Chemical constituents of Impatiens chapaensis Tard. and their α-glucosidase inhibition activities. Linh NTT, Thuy TT, Tam NT, Cham BT, Tam KT, Sa NH, Thao DT, Chinh VT, Anh NTH. Nat Prod Res; 2022 Jun 18; 36(12):3229-3233. PubMed ID: 34498968 [Abstract] [Full Text] [Related]
36. Purification of Flavonoids from Chinese Bayberry (Morella rubra Sieb. et Zucc.) Fruit Extracts and α-Glucosidase Inhibitory Activities of Different Fractionations. Yan S, Zhang X, Wen X, Lv Q, Xu C, Sun C, Li X. Molecules; 2016 Aug 31; 21(9):. PubMed ID: 27589714 [Abstract] [Full Text] [Related]
37. Phytochemical Screening, Alpha-Glucosidase Inhibition, Antibacterial and Antioxidant Potential of Ajuga bracteosa Extracts. Hafeez K, Andleeb S, Ghousa T, Mustafa RG, Naseer A, Shafique I, Akhter K. Curr Pharm Biotechnol; 2017 Aug 31; 18(4):336-342. PubMed ID: 28294059 [Abstract] [Full Text] [Related]
38. Antioxidant, α-Amylase and α-Glucosidase Inhibitory Activities and Potential Constituents of Canarium tramdenum Bark. Quan NV, Xuan TD, Tran HD, Thuy NTD, Trang LT, Huong CT, Andriana Y, Tuyen PT. Molecules; 2019 Feb 09; 24(3):. PubMed ID: 30744084 [Abstract] [Full Text] [Related]
39. Bioactive phenylpropanoid derivatives from the fruits of Lycium ruthenicum Murr. Zhao SS, Li S, Luo ZH, Zhou ZQ, Li N, Wang Y, Yao XS, Gao H. Bioorg Chem; 2021 Nov 09; 116():105307. PubMed ID: 34482167 [Abstract] [Full Text] [Related]
40. Pregnane glycosides from Gymnema inodorum and their α-glucosidase inhibitory activity. Trang DT, Yen DTH, Cuong NT, Anh LT, Hoai NT, Tai BH, Doan VV, Yen PH, Quang TH, Nhiem NX, Minh CV, Kiem PV. Nat Prod Res; 2021 Jul 09; 35(13):2157-2163. PubMed ID: 31507227 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]