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  2. Identification of novel benzimidazole derivatives as highly potent AMPK activators with anti-diabetic profiles

Identification of novel benzimidazole derivatives as highly potent AMPK activators with anti-diabetic profiles

  • Bioorg Med Chem Lett. 2023 Jan 1;79:129059. doi: 10.1016/j.bmcl.2022.129059.
Yuusuke Tamura 1 Ippei Morita 2 Yu Hinata 2 Eiichi Kojima 2 Yoshikazu Sasaki 2 Toshihiro Wada 2 Mutsumi Asano 2 Masahiko Fujioka 2 Yoko Hayasaki-Kajiwara 2 Takanori Iwasaki 2 Kenichi Matsumura 2
Affiliations

Affiliations

  • 1 Shionogi Pharmaceutical Research Center, Shionogi & Co., Ltd., 1-1, Futabacho 3-chome, Toyonaka, Osaka 561-0825, Japan. Electronic address: [email protected].
  • 2 Shionogi Pharmaceutical Research Center, Shionogi & Co., Ltd., 1-1, Futabacho 3-chome, Toyonaka, Osaka 561-0825, Japan.
Abstract

Diabetes is a global healthcare problem that affects more than 400 million people worldwide. Treatment for type 1 and 2 diabetes is expected by targeting adenosine monophosphate activated protein kinase, AMPK, a well-known master regulator of glucose. Many pharmaceutical companies have tried to identify AMPK activators but few direct AMPK activators with high potency for the β2-AMPK isoform, which is important for glucose homeostasis, have been found. In addition, their chemical structure is limited to benzimidazole or indole derivatives bearing an aromatic substituent at the C5 position of the core structure. We describe herein our efforts to identify novel benzimidazole derivatives that directly activate the β2-AMPK isoform. Our newly designed activator 14d bearing a 1-amino indanyl moiety at the C5 position of the core exhibited high in vitro potency and good pharmacokinetic profiles. A single oral dosing of 14d showed dose-dependent activation of AMPK and blood-glucose-lowering effects was observed in a diabetic animal model. In addition, chronic AMPK activation with 14d led to dose-dependent reduction in HbA1c of the animal model.

Keywords

AMPK activator; Benzimidazole; Type 2 diabetes.

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