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新型四氢萘-磺酰胺衍生物的合理设计与合成及其作为强效抗糖尿病和 DPP-4 抑制剂的研究:2D 和 3D QSAR、体内放射性标记和生物分布研究。

Rational design and synthesis of new tetralin-sulfonamide derivatives as potent anti-diabetics and DPP-4 inhibitors: 2D & 3D QSAR, in vivo radiolabeling and bio distribution studies.

机构信息

Department of Therapeutic Chemistry, National Research Centre, Dokki, Cairo 12622, Egypt.

Department of Therapeutic Chemistry, National Research Centre, Dokki, Cairo 12622, Egypt.

出版信息

Bioorg Chem. 2018 Dec;81:481-493. doi: 10.1016/j.bioorg.2018.09.021. Epub 2018 Sep 12.

Abstract

Type 2 diabetes (T2D) is a severe disease and it is one of the most raising problems worldwide. This study deals with design, synthesis and in vivo determination of a new set of tetralin-sulfonamide derivatives as anti-diabetic and dipeptidyl peptidase-IV (DPP-4) inhibiting agents. Most of the new compounds exhibited significant hypoglycemic effect alongside with DPP-4 suppression potency considering sitagliptin as a reference drug. The most promising compounds 4, 15 showed 2.80 nM DPP-4 IC with 20-40 folds selectivity over DPP-8 and DPP-9. 2D and 3D QSAR models were performed using auto QSAR of Schrödinger, QuaSAR of MOE and 3D Field-based QSAR of Schrödinger, respectively. The experimental results revealed that the alignment-independent descriptors, electrostatic and steric field descriptors were significantly correlated with the antidiabetic activity of the new derivatives. In addition, the new compounds were docked in the active site of DPP-4 in reference to sitagliptin to rationalize the binding modes of the compounds with the amino acid residues of the enzyme. Furthermore, I-compound 4 complex was selected to evaluate the pharmacokinetic behavioral profile of compound 4 and its body organs uptakes alongside its elimination pathway as a representative example for the rest of the analogues. The bio distribution pattern of the tracer proved the selective accumulation of I-substrate in the pancreas and rapid clearance from most of the body organs.

摘要

2 型糖尿病(T2D)是一种严重的疾病,也是全球发病率上升最快的问题之一。本研究涉及一系列新型四氢萘-磺酰胺衍生物的设计、合成和体内测定,作为抗糖尿病和二肽基肽酶-4(DPP-4)抑制剂。考虑到西他列汀作为参考药物,大多数新化合物表现出显著的降血糖作用,同时具有 DPP-4 抑制作用。最有前途的化合物 4 和 15 对 DPP-8 和 DPP-9 的选择性分别为 20-40 倍,对 DPP-4 的 IC50 为 2.80 nM。分别使用 Schrödinger 的自动 QSAR、MOE 的 QuaSAR 和 Schrödinger 的 3D 基于场的 QSAR 进行了 2D 和 3D QSAR 模型。实验结果表明,与抗糖尿病活性显著相关的是无对齐依赖描述符、静电和立体场描述符。此外,为了合理化化合物与酶氨基酸残基的结合模式,将新化合物在 DPP-4 的活性部位与西他列汀对接。此外,选择 I-化合物 4 复合物来评估化合物 4 的药代动力学行为特征及其在体内器官的摄取及其消除途径,作为其余类似物的代表。示踪剂的生物分布模式证明了 I-底物在胰腺中的选择性积累和从大多数体内器官的快速清除。

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