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针对具有强大抗血管生成活性的新型支架的发现;设计、合成基于哒嗪的化合物,铰链相互作用的影响,以及它们的生物活性构象的可及性对 VEGFR-2 活性的影响。

Towards discovery of novel scaffold with potent antiangiogenic activity; design, synthesis of pyridazine based compounds, impact of hinge interaction, and accessibility of their bioactive conformation on VEGFR-2 activities.

机构信息

Faculty of Pharmacy, Pharmaceutical Chemistry Department, Ain Shams University, Abbassia, Cairo, Egypt.

Faculty of Pharmaceutical Sciences and Pharmaceutical Industries, Pharmaceutical Chemistry Department, Future University in Egypt, Cairo, Egypt.

出版信息

J Enzyme Inhib Med Chem. 2019 Dec;34(1):1573-1589. doi: 10.1080/14756366.2019.1651723.

Abstract

Pyridazine scaffolds are considered privileged structures pertaining to its novelty, chemical stability, and synthetic feasibility. In our quest towards the development of novel scaffolds for effective vascular endothelial growth 2 (VEGFR-2) inhibition with antiangiogenic activity, four novel series of pyridazines were designed and synthesised. Five of the synthesised compounds; namely ( exhibited potent VEGFR-2 inhibitory potency (>80%); with IC values ranging from low micromolar to nanomolar range; namely compounds with (1.8 µM, 1.3 µM, 1.4 µM, 107 nM), respectively. Moreover, 3-[4-{(6-oxo-1,6-dihydropyridazin-3-yl)oxy}phenyl]urea derivative exhibited nanomolar potency towards VEGFR-2 (60.7 nM). In cellular assay, the above compounds showed excellent inhibition of VEGF-stimulated proliferation of human umbilical vein endothelial cells at 10 μM concentration. Finally, an extensive molecular simulation study was performed to investigate the probable interaction with VEGFR-2.

摘要

哒嗪类骨架被认为是一种具有新颖性、化学稳定性和合成可行性的优势结构。在我们寻求开发新型骨架以有效抑制血管内皮生长因子 2(VEGFR-2)并具有抗血管生成活性的过程中,设计并合成了四个新系列的哒嗪类化合物。在合成的五种化合物中;即(表现出很强的 VEGFR-2 抑制活性(>80%);IC 值范围从低微摩尔到纳摩尔,即化合物 ,分别为(1.8 μM,1.3 μM,1.4 μM,107 nM)。此外,3-[4-{(6-氧代-1,6-二氢哒嗪-3-基)氧基}苯基]脲衍生物 对 VEGFR-2 具有纳摩尔效力(60.7 nM)。在细胞测定中,上述化合物在 10 μM 浓度下显示出对 VEGF 刺激的人脐静脉内皮细胞增殖的极好抑制作用。最后,进行了广泛的分子模拟研究,以研究与 VEGFR-2 的可能相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b05d/6746272/67f7bc4798fc/IENZ_A_1651723_F0001_B.jpg

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