胰岛素抵抗
胰岛素
医学
脂肪组织
PI3K/AKT/mTOR通路
葡萄糖摄取
糖尿病
胰岛素受体
内分泌学
内科学
2型糖尿病
生物信息学
信号转导
生物
细胞生物学
作者
Ratih Dewi Yudhani,Yulia Sari,Dwi Aris Agung Nugrahaningsih,Eti Nurwening Sholikhah,Maftuchah Rochmanti,Abdul Khairul Rizki Purba,Husnul Khotimah,Dian Nugrahenny,Mustofa Mustofa
摘要
Insulin resistance, which affects insulin-sensitive tissues, including adipose tissues, skeletal muscle, and the liver, is the central pathophysiological mechanism underlying type 2 diabetes progression. Decreased glucose uptake in insulin-sensitive tissues disrupts insulin signaling pathways, particularly the PI3K/Akt pathway. An in vitro model is appropriate for studying the cellular and molecular mechanisms underlying insulin resistance because it is easy to maintain and the results can be easily reproduced. The application of cell-based models for exploring the pathogenesis of diabetes and insulin resistance as well as for developing drugs for these conditions is well known. However, a comprehensive review of in vitro insulin resistance models is lacking. Therefore, this review was conducted to provide a comprehensive overview and summary of the latest in vitro insulin resistance models, particularly 3T3-L1 (preadipocyte), C2C12 (skeletal muscle), and HepG2 (liver) cell lines induced with palmitic acid, high glucose, or chronic exposure to insulin.
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