Institute of Chemistry (MECC), Str. Academiei, 3, MD-2028 Chișinău, Moldova.
Department of Chemistry, Biochemistry and Pharmaceutical Sciences, University of Bern, Freiestrasse 3, 3012 Bern, Switzerland.
Molecules. 2021 Jul 28;26(15):4549. doi: 10.3390/molecules26154549.
A convenient strategy for molecular editing of available -kauranic natural scaffolds has been developed based on radical mediated C-C bond formation. Iodine atom transfer radical addition (ATRA) followed by rapid ionic elimination and radical azidoalkylation were investigated. Both reactions involve radical addition to the -methylenic double bond of the parent substrate. Easy transformations of the obtained adducts lead to extended diterpenes of broad structural diversity and artificial diterpene-alkaloid hybrids possessing lactam and pyrrolidine pharmacophores. The cytotoxicity of selected diterpenic derivatives was examined by in vitro testing on several tumor cell lines. The terpene-alkaloid hybrids containing -heterocycles with unprecedented spiro-junction have shown relevant cytotoxicity and promising selectivity indexes. These results represent a solid basis for following research on the synthesis of such derivatives based on available natural product templates.
一种基于自由基介导的 C-C 键形成的、用于现有贝壳杉烷类天然支架的分子编辑的便捷策略已经被开发出来。碘原子转移自由基加成(ATRA)随后是快速离子消除和自由基叠氮烷基化,这两种反应都涉及到母体底物的亚甲基双键的自由基加成。获得的加合物易于转化,生成具有广泛结构多样性的扩展二萜类化合物和具有内酰胺和吡咯烷药效团的人工二萜生物碱杂种。通过在几种肿瘤细胞系上进行体外测试,研究了选定的二萜衍生物的细胞毒性。含有具有前所未有的螺环连接的 -杂环的萜类生物碱杂种表现出相关的细胞毒性和有前途的选择指数。这些结果为基于现有天然产物模板的此类衍生物的合成后续研究提供了坚实的基础。