College of Pharmacy, Dankook University, Cheonan 31116, Chungnam, Korea.
College of Pharmacy, Woosuk University, Wanju-gun 55338, Jeonbuk, Korea.
Molecules. 2021 Oct 1;26(19):5964. doi: 10.3390/molecules26195964.
A concise and efficient synthesis of the proposed structure of aaptoline A, a 7,8-dihydroxyquinoline derived from a marine sponge, was accomplished in seven steps with a 52% overall yield. A key feature of the synthesis is the high-yielding Ag(I)-catalyzed cycloisomerization of the -propargylaniline precursor to afford the quinoline carboxylate skeleton from acid-labile methyl aminobenzoate. However, the spectral data of the synthesized aaptoline A were not consistent with those of previous studies. The structure of the synthesized aaptoline A was confirmed by combined 2D NMR analysis. Additional studies on the bioactivity of the synthesized aaptoline A revealed that it has the ability to protect dopaminergic neurons against MPP-induced neurotoxicity in . In addition, impaired food-sensing ability and travel distance capability in were significantly ameliorated by aaptoline A treatment, suggesting that aaptoline A can protect dopaminergic neurons both morphologically and functionally.
从海洋海绵中提取的 7,8-二羟基喹啉 aaptoline A 的结构简洁高效的合成,通过七步反应以 52%的总收率完成。该合成的一个关键特点是,Ag(I)催化的 -炔丙基苯胺前体的高收率环异构化,从不稳定的甲酯得到喹啉羧酸骨架。然而,合成的 aaptoline A 的光谱数据与先前的研究结果不一致。通过二维 NMR 分析的组合确认了合成的 aaptoline A 的结构。对合成的 aaptoline A 的生物活性的进一步研究表明,它能够保护 中的多巴胺能神经元免受 MPP 诱导的神经毒性。此外,aaptoline A 处理可显著改善 中食物感应能力和行进距离能力的损伤,表明 aaptoline A 能够在形态和功能上保护多巴胺能神经元。