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For: Rochester CD, Akiyode O. Novel and emerging diabetes mellitus drug therapies for the type 2 diabetes patient. World J Diabetes 2014; 5(3): 305-315 [PMID: 24936252 DOI: 10.4239/wjd.v5.i3.305]
URL: https://www.wjgnet.com/1948-9358/full/v5/i3/305.htm
Number Citing Articles
1
Bailu Duan, Zhongqiu Zhao, Ling Lin, Jing Jin, Lijun Zhang, Hui Xiong, Na Ta, Tiexiang Gao, Zhinan Mei. Antidiabetic Effect of Tibetan Medicine Tang-Kang-Fu-San on High-Fat Diet and Streptozotocin-Induced Type 2 Diabetic RatsEvidence-Based Complementary and Alternative Medicine 2017; 2017: 1 doi: 10.1155/2017/7302965
2
A. A. Spasov, N. I. Chepljaeva, E. S. Vorob’ev. Glycogen phosphorylase inhibitors in the regulation of carbohydrate metabolism in type 2 diabetesRussian Journal of Bioorganic Chemistry 2016; 42(2): 133 doi: 10.1134/S1068162016020138
3
Elok Rifqi Firdiana, Elga Renjana, Melisnawati H. Angio, Linda Wige Ningrum. Analysis of anti-diabetic property of Aloe vera (L.) Burm.f. by in silico molecular dockingPROCEEDINGS OF THE 9TH INTERNATIONAL SYMPOSIUM ON INNOVATIVE BIOPRODUCTION INDONESIA ON BIOTECHNOLOGY AND BIOENGINEERING 2022: Strengthening Bioeconomy through Applied Biotechnology, Bioengineering, and Biodiversity 2023; 2972: 060004 doi: 10.1063/5.0183377
4
David Miaffo, Fidèle Ntchapda, Talba Abba Mahamad, Barthelemy Maidadi, Albert Kamanyi. Hypoglycemic, antidyslipidemic and antioxydant effects of Vitellaria paradoxa barks extract on high-fat diet and streptozotocin-induced type 2 diabetes ratsMetabolism Open 2021; 9: 100071 doi: 10.1016/j.metop.2020.100071
5
Prateek Sharma, Sukhbir Singh, Neelam Sharma, Deepak Singla, Kumar Guarve, Ajmer Singh Grewal. Targeting human Glucokinase for the treatment of type 2 diabetes: an overview of allosteric Glucokinase activatorsJournal of Diabetes & Metabolic Disorders 2022; 21(1): 1129 doi: 10.1007/s40200-022-01019-x
6
Zhengzheng Liao, Jingying Zhang, Bing Liu, Tingxu Yan, Fanxing Xu, Feng Xiao, Bo Wu, Kaishun Bi, Ying Jia. Polysaccharide from Okra (Abelmoschus esculentus (L.) Moench) Improves Antioxidant Capacity via PI3K/AKT Pathways and Nrf2 Translocation in a Type 2 Diabetes ModelMolecules 2019; 24(10): 1906 doi: 10.3390/molecules24101906
7
Etheresia Pretorius, Janette Bester, Natasha Vermeulen, Sajee Alummoottil, Prashilla Soma, Antoinette V Buys, Douglas B Kell. Poorly controlled type 2 diabetes is accompanied by significant morphological and ultrastructural changes in both erythrocytes and in thrombin-generated fibrin: implications for diagnosticsCardiovascular Diabetology 2015; 14(1): 30 doi: 10.1186/s12933-015-0192-5
8
Shubham Kumar, Anu Mittal, Amit Mittal. A review upon medicinal perspective and designing rationale of DPP-4 inhibitorsBioorganic & Medicinal Chemistry 2021; 46: 116354 doi: 10.1016/j.bmc.2021.116354
9
A. Galligan, T. M. Greenaway. Novel approaches to the treatment of hyperglycaemia in type 2 diabetes mellitusInternal Medicine Journal 2016; 46(5): 540 doi: 10.1111/imj.13070
10
Bailu Duan, Zhongqiu Zhao, Weifang Liao, Hui Xiong, Sisi Liu, Liang Yin, Tiexiang Gao, Zhinan Mei. Antidiabetic Effect of Tibetan Medicine Tang-Kang-Fu-San in db/db Mice via Activation of PI3K/Akt and AMPK PathwaysFrontiers in Pharmacology 2017; 8 doi: 10.3389/fphar.2017.00535
11
Charles S. Demmer, Lennart Bunch. Benzoxazoles and oxazolopyridines in medicinal chemistry studiesEuropean Journal of Medicinal Chemistry 2015; 97: 778 doi: 10.1016/j.ejmech.2014.11.064
12
Mohd Iqbal Yatoo, Archana Saxena, Arumugam Gopalakris, Mahmoud Alagawany, Kuldeep Dhama. Promising Antidiabetic Drugs, Medicinal Plants and Herbs: An UpdateInternational Journal of Pharmacology 2017; 13(7): 732 doi: 10.3923/ijp.2017.732.745
13
Pratiksha H. Roham, Shreyada N. Save, Shilpy Sharma. Human islet amyloid polypeptide: A therapeutic target for the management of type 2 diabetes mellitusJournal of Pharmaceutical Analysis 2022; 12(4): 556 doi: 10.1016/j.jpha.2022.04.001
14
Himanshu Kumar Bhakta, Pradeep Paudel, Hajime Fujii, Atsuya Sato, Chan Hum Park, Takako Yokozawa, Hyun Ah Jung, Jae Sue Choi. Oligonol promotes glucose uptake by modulating the insulin signaling pathway in insulin-resistant HepG2 cells via inhibiting protein tyrosine phosphatase 1BArchives of Pharmacal Research 2017; 40(11): 1314 doi: 10.1007/s12272-017-0970-6
15
Jiao Luo, Ning Wu, Bo Jiang, Lijun Wang, Shuaiyu Wang, Xiangqian Li, Baocheng Wang, Changhui Wang, Dayong Shi. Marine Bromophenol Derivative 3,4-Dibromo-5-(2-bromo-3,4-dihydroxy-6-isopropoxymethyl benzyl)benzene-1,2-diol Protects Hepatocytes from Lipid-Induced Cell Damage and Insulin Resistance via PTP1B InhibitionMarine Drugs 2015; 13(7): 4452 doi: 10.3390/md13074452
16
Sung Pyo Hong, Ky Youb Nam, Young June Shin, Kil Won Kim, Soon Kil Ahn. Discovery of 11β-hydroxysteroid dehydrogenase type 1 inhibitorBioorganic & Medicinal Chemistry Letters 2015; 25(17): 3501 doi: 10.1016/j.bmcl.2015.06.099
17
Bogdan-Mircea Mihai, Cristina Mihaela Lăcătuşu, Elena-Daniela Grigorescu, Gina Eosefina Botnariu. Innovative Therapies in Type 2 Diabetes: The Dream of the FutureRomanian Journal of Diabetes Nutrition and Metabolic Diseases 2015; 22(4): 341 doi: 10.1515/rjdnmd-2015-0040
18
Rong-Jyh Lin, Yu-Kwan Yen, Chien-Hsing Lee, Su-Ling Hsieh, Yu-Chin Chang, Yung-Shun Juan, Cheng-Yu Long, Kuo-Ping Shen, Bin-Nan Wu. Eugenosedin-A improves obesity-related hyperglycemia by regulating ATP-sensitive K+ channels and insulin secretion in pancreatic β cellsBiomedicine & Pharmacotherapy 2022; 145: 112447 doi: 10.1016/j.biopha.2021.112447