Synthesis of substituted 2H-benzo[e]indazole-9-carboxylate as a potent antihyperglycemic agent that may act through IRS-1, Akt and GSK-3β pathways

Taneja, Gaurav ; Gupta, Chandra Prakash ; Mishra, Shachi ; Srivastava, Rohit ; Rahuja, Neha ; Rawat, Arun Kumar ; Pandey, Jyotsana ; Gupta, Anand P. ; Jaiswal, Natasha ; Gayen, Jiaur R. ; Tamrakar, Akhilesh K. ; Srivastava, Arvind Kumar ; Goel, Atul (2017) Synthesis of substituted 2H-benzo[e]indazole-9-carboxylate as a potent antihyperglycemic agent that may act through IRS-1, Akt and GSK-3β pathways MedChemComm, 8 (2). pp. 329-337. ISSN 2040-2503

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Official URL: http://doi.org/10.1039/C6MD00467A

Related URL: http://dx.doi.org/10.1039/C6MD00467A

Abstract

Based on high throughput screening of our chemical library, we identified two 4,5-dihydro-2H-benzo[e]indazole derivatives (5d and 5g), which displayed a significant effect on glucose uptake in L6 skeletal muscle cells. Based on these lead molecules, a series of benzo[e]indazole derivatives were prepared. Among all the synthesized dihydro-2H-benzo[e]indazoles, 8-(methylthio)-2-phenyl-6-p-tolyl-4,5-dihydro-2H-benzo[e]indazole-9-carboxylate (5e) showed significant glucose uptake stimulation in L6 skeletal muscle cells, even better than lead compounds. Additionally, 5e decreased glucagon-induced glucose release in HepG2 hepatoma cells. The 2H-benzo[e]indazole 5e exerted an antihyperglycemic effect in normal, sucrose challenged streptozotocin-induced diabetic rats and type 2 diabetic db/db mice. Treatment with 5e at a dose of 30 mg kg-1 in db/db mice caused a significant decrease in triglyceride and total cholesterol levels and increased the HDL-C level in a significant manner. The mechanistic studies revealed that the 2H-benzo[e]indazole 5e significantly stimulated insulin-induced signaling at the level of IRS-1, Akt and GSK-3β in L6 skeletal muscle cells, possibly by inhibiting protein tyrosine phosphatase-1B. This new 2H-benzo[e]indazole derivative has potential for the treatment of diabetes with improved lipid profile.

Item Type:Article
Source:Copyright of this article belongs to The Royal Society of Chemistry.
ID Code:117870
Deposited On:05 May 2021 13:04
Last Modified:05 May 2021 13:04

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