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通过 Pd 催化的异香豆素环/FeCl 介导的分子内芳基-烯丙基环化的不寻常构建合成 11,12-二氢苯并[c]菲啶:首次鉴定出基于苯并[c]菲啶的 PDE4 抑制剂。

Synthesis of 11,12-dihydro benzo[c]phenanthridines via a Pd-catalyzed unusual construction of isocoumarin ring/FeCl-mediated intramolecular arene-allyl cyclization: First identification of a benzo[c]phenanthridine based PDE4 inhibitor.

机构信息

Dr. Reddy's Institute of Life Sciences, University of Hyderabad Campus, Gachibowli, Hyderabad 500 046, India; Manipal College of Pharmaceutical Sciences, Manipal Academy of Higher Education, Madhav Nagar, Manipal 576 104, Karnataka, India.

Dr. Reddy's Institute of Life Sciences, University of Hyderabad Campus, Gachibowli, Hyderabad 500 046, India.

出版信息

Bioorg Chem. 2020 Apr;97:103691. doi: 10.1016/j.bioorg.2020.103691. Epub 2020 Feb 25.

Abstract

In spite of their various pharmacological properties the anti-inflammatory potential of benzo[c]phenanthridines remained underexplored. Thus, for the first time PDE4 inhibitory potential of 11,12-dihydro benzo[c]phenanthridine/benzo[c]phenanthridine was assessed in vitro. Elegant synthesis of these compounds was performed via a multi-step sequence consisting of a Pd-catalyzed unusual construction of 4-allyl isocoumarin ring and FeCl-mediated intramolecular regio- as well as site-selective arene-allyl cyclization as key steps. The overall strategy involved Sonogashira coupling followed by isocoumarin and isoquinolone synthesis, then chlorination and subsequent cyclization to afford a range of 11,12-dihydro derivatives. One of these dihydro compounds was converted to the corresponding benzo[c]phenanthridine that showed concentration dependent inhibition of PDE4B affording an initial hit molecule. The SAR study suggested that 11,12-dihydro analogs were less potent than the compound having unsaturation at the same part of the ring.

摘要

尽管苯并[c]菲啶类化合物具有多种药理学特性,但它们的抗炎潜力仍未得到充分探索。因此,我们首次在体外评估了 11,12-二氢苯并[c]菲啶/苯并[c]菲啶的 PDE4 抑制潜力。这些化合物的精致合成就通过多步序列进行,其中包括 Pd 催化的不寻常的 4-烯丙基异香豆素环构建和 FeCl 介导的分子内区域和位点选择性芳基-烯丙基环化作为关键步骤。总体策略涉及 Sonogashira 偶联,然后是异香豆素和异喹啉合成,然后是氯化和随后的环化,以提供一系列 11,12-二氢衍生物。这些二氢化合物之一被转化为相应的苯并[c]菲啶,其对 PDE4B 的抑制作用呈浓度依赖性,从而提供了初始命中分子。SAR 研究表明,11,12-二氢类似物的效力不如在环的同一部位具有不饱和键的化合物。

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