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Cited by in CrossRef
For: Altay M. Acarbose is again on the stage. World J Diabetes 2022; 13(1): 1-4 [PMID: 35070055 DOI: 10.4239/wjd.v13.i1.1]
URL: https://www.wjgnet.com/1948-9358/full/v13/i1/1.htm
Number Citing Articles
1
Shriram D. Ranade, Shankar G. Alegaon, Nayeem A. Khatib, Shankar Gharge, Rohini S. Kavalapure, B.R. Prashantha Kumar. Design, synthesis, molecular dynamic simulation, DFT analysis, computational pharmacology and decoding the antidiabetic molecular mechanism of sulphonamide-thiazolidin-4-one hybridsJournal of Molecular Structure 2024; 1311: 138359 doi: 10.1016/j.molstruc.2024.138359
2
Mohammed El Behery, Ibrahim M. El-Deen, Manar A. El-Zend, Lamiaa A.A. Barakat. Design, synthesis and evaluation the bioactivities of novel 8‑methoxy-1-azacoumarin-3-carboxamide derivatives as anti-diabetic agentsJournal of Molecular Structure 2023; 1294: 136486 doi: 10.1016/j.molstruc.2023.136486
3
Endocrinology2024; : 122 doi: 10.1002/9781119863564.ch4
4
Salma M. Khirallah, Heba M. M. Ramadan, Hossam Aladl Aladl Aladl, Najla O. Ayaz, Lina A. F. Kurdi, Mariusz Jaremko, Samar Zuhair Alshawwa, Essa M. Saied. Antidiabetic Potential of Novel 1,3,5-Trisubstituted-2-Thioxoimidazloidin-4-One Analogues: Insights into α-Glucosidase, α-Amylase, and Antioxidant ActivitiesPharmaceuticals 2022; 15(12): 1576 doi: 10.3390/ph15121576
5
Ekaterina Sokolova, Tatiana Krol, Grigorii Adamov, Yulia Minyazeva, Dmitry Baleev, Nikolay Sidelnikov. Total Content and Composition of Phenolic Compounds from Filipendula Genus Plants and Their Potential Health-Promoting PropertiesMolecules 2024; 29(9): 2013 doi: 10.3390/molecules29092013
6
Shao-Liang Jiang, Zhe-Ying Hu, Huan-Yu Sui, Teng Huang, Liang Han, Chun-Mei Hu, Xue-Tao Xu, Jie-Hua Shi, Chu Chu. Comprehending the inhibition mechanism of indole-based bis-acylhydrazone compounds on α-glucosidase: Spectral and theoretical approachesInternational Journal of Biological Macromolecules 2024; 276: 133489 doi: 10.1016/j.ijbiomac.2024.133489
7
Shuang Qi, Bo Jiang, Caoxing Huang, Yongcan Jin. Dual Regulation of Sulfonated Lignin to Prevent and Treat Type 2 Diabetes MellitusBiomacromolecules 2023; 24(2): 841 doi: 10.1021/acs.biomac.2c01267
8
Qi-hui Hong, Jiang Li, Lu-lu Deng, Xiao-jiang Hao, Shu-zhen Mu. Active constituents with α-glucosidase inhibitory activities from Sabia parvifloraFitoterapia 2023; 167: 105516 doi: 10.1016/j.fitote.2023.105516
9
Xudong Xia, Rongrui Lu, Nanxing Zhao, Hongming Kong, Fang Yuan, Hesheng Liu, Lianliang Liu, Xiangyang Qi, Qiuping Chen. Enhanced α‐glycosidase inhibition through synergistic interactions: A comprehensive analysis of dihydromyricetin and acarbose in vine tea extractsInternational Journal of Food Science & Technology 2024;  doi: 10.1111/ijfs.17255
10
Natalia Ritter Ruas, Aline Carvalho Pereira, Luciana Lopes Silva Pereira, Carolina Mesquita Germano, Elaine Fontes Ferreira da Cunha, Alexandre Alves de Carvalho, Osmar Alves Lameira, José Eduardo Brasil Pereira Pinto, Suzan Kelly Vilela Bertolucci. Inhibition of α‐Glycosidase by Lippia dulcis Trevir. (Verbenaceae) Preparations, Quantification of Verbascoside, and Study of Its Molecular DockingChemistry & Biodiversity 2023; 20(2) doi: 10.1002/cbdv.202200760
11
Santosh Basnet, Madhav Prasad Ghimire, Tika Ram Lamichhane, Rajendra Adhikari, Achyut Adhikari, Taye Beyene Demissie. Identification of potential human pancreatic α-amylase inhibitors from natural products by molecular docking, MM/GBSA calculations, MD simulations, and ADMET analysisPLOS ONE 2023; 18(3): e0275765 doi: 10.1371/journal.pone.0275765
12
Qiannan Zhao, Jinyi Yang, Jiahui Li, Lei Zhang, Xiaohai Yan, Tianli Yue, Yahong Yuan. Hypoglycemic effect and intestinal transport of phenolics-rich extract from digested mulberry leaves in Caco-2/insulin-resistant HepG2 co-culture modelFood Research International 2024; 175: 113689 doi: 10.1016/j.foodres.2023.113689
13
Tinku Gupta, Dimpy Rani, Lalit Mohan Nainwal, Reena Badhwar. Advancement in chiral heterocycles for the antidiabetic activityChirality 2024; 36(2) doi: 10.1002/chir.23637