Linder Thomas, Liu Rongxia, Atanasov Atanas G, Li Yuanfang, Geyrhofer Sophie, Schwaiger Stefan, Stuppner Hermann, Schnürch Michael, Dirsch Verena M, Mihovilovic Marko D
Institute of Applied Synthetic Chemistry , TU Wien , Getreidemarkt 9/163-OC , 1060 Vienna , Austria . Email:
Department of Pharmacognosy , University of Vienna , Althanstraße 14 , 1090 Vienna , Austria . Email:
Chem Sci. 2019 May 14;10(22):5815-5820. doi: 10.1039/c9sc00446g. eCollection 2019 Jun 14.
Recently, a natural compound leoligin, a furan-type lignan, was discovered as an interesting hit compound with an anti-inflammatory pharmacological activity profile. We developed a modular and stereoselective approach for the synthesis of the edelweiss-derived lignan leoligin and used the synthetic route to rapidly prepare leoligin analogs even on the gram scale. Proof of concept of this approach together with cell-based bio-assays gained structural analogs with increased selectivity towards vascular smooth muscle endothelial cell proliferation inhibition, a major benefit in fighting vascular neointima formation. In addition, we identified the structural features of leoligin analogs that define their ability to inhibit the pro-inflammatory NF-κB pathway. Results are discussed in the context of structural modification of these novel synthetic lignans.
最近,一种天然化合物leo木脂素(一种呋喃型木脂素)被发现是一种具有抗炎药理活性的有趣的命中化合物。我们开发了一种模块化且立体选择性的方法来合成源自雪绒花的木脂素leo木脂素,并利用该合成路线快速制备甚至克级规模的leo木脂素类似物。该方法的概念验证以及基于细胞的生物测定获得了对血管平滑肌内皮细胞增殖抑制具有更高选择性且结构类似的化合物,这是对抗血管内膜形成的一个主要优势。此外,我们确定了leo木脂素类似物的结构特征,这些特征决定了它们抑制促炎NF-κB途径的能力。将在这些新型合成木脂素的结构修饰背景下讨论结果。