Shaanxi Key Laboratory of Natural Products & Chemical Biology, College of Chemistry & Pharmacy, Northwest A&F University, Yangling 712100, PR China.
Org Biomol Chem. 2018 Dec 12;16(48):9454-9460. doi: 10.1039/c8ob02687d.
Meroterpenoids isolated from guava (Psidium guajava) and Rhodomyrtus tomentosa possess special skeletons which incorporate terpenoids with phloroglucinol derivatives. Most of these meroterpenoids showed high cytotoxicity against cancer cell lines. However, their chemical diversity is very limited. Herein, we employed a biomimetic hetero-cycloaddition starting from ortho-quinone methides and an abundant natural product, β-caryophyllene, to generate meroterpene-like compounds. Considering that the source plant has hyperglycemic functions, α-glucosidase was selected as a target for bioassay. Nine compounds were screened out for promising activities (IC50 < 15 μM), which were better than the positive controls genistein and acarbose. The best inhibitor 12 (IC50 2.73 μM) possesses two caryophyllene moieties. They represented a new type of skeleton possessing activities against α-glucosidase. The kinetic study exhibited that these inhibitors belong to a non-competitive type. All these inhibitors may provide an opportunity to develop a new class of antidiabetic agents.
从番石榴(Psidium guajava)和桃金娘(Rhodomyrtus tomentosa)中分离得到的倍半萜类化合物具有特殊的骨架,其中包含萜类化合物和间苯三酚衍生物。这些倍半萜类化合物大多数对癌细胞系表现出很高的细胞毒性。然而,它们的化学多样性非常有限。在此,我们采用仿生杂环加成反应,从邻醌甲醚和丰富的天然产物β-石竹烯开始,生成类似倍半萜的化合物。考虑到源植物具有降血糖功能,我们选择α-葡萄糖苷酶作为生物测定的靶标。筛选出 9 种具有潜在活性(IC50<15 μM)的化合物(IC50<15 μM),优于阳性对照染料木黄酮和阿卡波糖。最好的抑制剂 12(IC50 为 2.73 μM)含有两个石竹烯部分。它们代表了一种具有α-葡萄糖苷酶抑制活性的新型骨架。动力学研究表明,这些抑制剂属于非竞争性类型。所有这些抑制剂都可能为开发新型抗糖尿病药物提供机会。