Natural Products and Organic Synthesis Research Unit, Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Kasetsart University, 50 Phahon Yothin Rd, Chatuchak, Bangkok 10900, Thailand.
Eur J Med Chem. 2013 Feb;60:271-84. doi: 10.1016/j.ejmech.2012.12.006. Epub 2012 Dec 12.
Fourteen new naphthoquinone aliphatic amides and seventeen naphthoquinone aliphatic esters were synthesized in nine to ten steps from 1-hydroxy-2-naphthoic acid with 9-25% overall yield for the amides, and 16-21% overall yield for the esters. The key step of the amide synthesis is a coupling reaction between amine and various aliphatic acids using 4-(4,6-dimethoxy-1,3,5-triazin-2-yl)-4-methylmorpholinium chloride (DMTMM) as a coupling agent while for the ester synthesis, DCC/DMAP or CDI was used as the coupling reagent between aliphatic acids and naphthoquinone alcohol. Both naphthoquinone amides and esters were evaluated for their anticancer activity against KB cells. It was found that naphthoquinone aliphatic amides showed stronger anticancer activity than those of the esters when the chains are longer than 7-carbon atoms. The optimum chain of amides is expected to be 16-carbon atoms. In addition, naphthoquinone aliphatic esters with α-methyl on the ester moiety possessed much stronger anticancer activity than the straight chains. Decatenation assay revealed that naphthoquinone amide with 16-carbon atoms chain at 15 μM and 20 μM can completely inhibit hTopoIIα activity while at 10 μM the enzyme activity was moderately inhibited. Molecular docking result also showed the same trend as the cytotoxicity and decatenation assay.
从 1-羟基-2-萘甲酸出发,经过九到十步反应,以 9-25%的总产率合成了 14 种新的萘醌脂肪族酰胺,以 16-21%的总产率合成了 17 种萘醌脂肪族酯。酰胺合成的关键步骤是使用 4-(4,6-二甲氧基-1,3,5-三嗪-2-基)-4-甲基吗啉鎓氯化物(DMTMM)作为偶联剂,将胺与各种脂肪族酸进行偶联反应,而对于酯合成,则使用 DCC/DMAP 或 CDI 作为脂肪族酸与萘醌醇之间的偶联试剂。对萘醌酰胺和酯进行了抗 KB 细胞活性评价。发现当链长大于 7 个碳原子时,萘醌脂肪族酰胺的抗癌活性强于酯类。酰胺的最佳链长预计为 16 个碳原子。此外,酯基上带有α-甲基的萘醌脂肪族酯比直链具有更强的抗癌活性。解链实验表明,15 μM 和 20 μM 的 16 个碳原子链的萘醌酰胺可完全抑制 hTopoIIα 的活性,而 10 μM 时酶活性受到中度抑制。分子对接结果也显示出与细胞毒性和解链实验相同的趋势。