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新型缺氧诱导因子 1α(HIF-1α)抑制剂治疗血管生成相关眼病:通过环截断策略发现新型支架。

Novel Hypoxia-Inducible Factor 1α (HIF-1α) Inhibitors for Angiogenesis-Related Ocular Diseases: Discovery of a Novel Scaffold via Ring-Truncation Strategy.

机构信息

College of Pharmacy , Seoul National University , Seoul 08826 , Republic of Korea.

Fight against Angiogenesis-Related Blindness (FARB) Laboratory, Clinical Research Institute , Seoul National University Hospital , Seoul 03080 , Republic of Korea.

出版信息

J Med Chem. 2018 Oct 25;61(20):9266-9286. doi: 10.1021/acs.jmedchem.8b00971. Epub 2018 Oct 9.

Abstract

Ocular diseases featuring pathologic neovascularization are the leading cause of blindness, and anti-VEGF agents have been conventionally used to treat these diseases. Recently, regulating factors upstream of VEGF, such as HIF-1α, have emerged as a desirable therapeutic approach because the use of anti-VEGF agents is currently being reconsidered due to the VEGF action as a trophic factor. Here, we report a novel scaffold discovered through the complete structure-activity relationship of ring-truncated deguelin analogs in HIF-1α inhibition. Interestingly, analog 6i possessing a 2-fluorobenzene moiety instead of a dimethoxybenzene moiety exhibited excellent HIF-1α inhibitory activity, with an IC value of 100 nM. In particular, the further ring-truncated analog 34f, which showed enhanced HIF-1α inhibitory activity compared to analog 2 previously reported by us, inhibited in vitro angiogenesis and effectively suppressed hypoxia-mediated retinal neovascularization. Importantly, the heteroatom-substituted benzene ring as a key structural feature of analog 34f was identified as a novel scaffold for HIF-1α inhibitors that can be used in lieu of a chromene ring.

摘要

以病理性新生血管为特征的眼部疾病是导致失明的主要原因,抗血管内皮生长因子(VEGF)药物已被常规用于治疗这些疾病。最近,VEGF 上游的调节因子,如缺氧诱导因子-1α(HIF-1α),已成为一种理想的治疗方法,因为目前正在重新考虑使用抗 VEGF 药物,因为 VEGF 作为一种营养因子发挥作用。在这里,我们报告了一种通过环截断去甲氧基大黄素类似物的完全结构活性关系发现的新型支架在 HIF-1α 抑制中的作用。有趣的是,具有 2-氟苯取代基而不是二甲氧基苯取代基的类似物 6i 表现出优异的 HIF-1α 抑制活性,IC 值为 100 nM。特别是进一步环截断的类似物 34f 与我们之前报道的类似物 2 相比,表现出增强的 HIF-1α 抑制活性,抑制体外血管生成并有效抑制缺氧介导的视网膜新生血管形成。重要的是,作为类似物 34f 的关键结构特征的杂原子取代苯环被鉴定为可以替代色烯环的 HIF-1α 抑制剂的新型支架。

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