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合成及氨基吖啶和青蒿素-吖啶杂合体的体外生物学评价。

Synthesis and in vitro biological evaluation of aminoacridines and artemisinin-acridine hybrids.

机构信息

Department of Pharmaceutical Chemistry, North-West University, Potchefstroom 2520, South Africa.

Centre of Excellence for Pharmaceutical Sciences (PHARMCEN), North-West University, Potchefstroom 2520, South Africa.

出版信息

Eur J Pharm Sci. 2014 Jun 2;56:16-27. doi: 10.1016/j.ejps.2014.01.014. Epub 2014 Feb 18.

DOI:10.1016/j.ejps.2014.01.014
PMID:24560941
Abstract

During this study, 9-aminoacridine and artemisinin-acridine hybrid compounds were synthesized and the in vitro for antimalarial activity against both the chloroquine sensitive but also gametocytocidal strain (NF54), and chloroquine resistant (Dd2) strains of Plasmodium falciparum was determined. In vitro cytotoxicity against CHO cells, apoptosis of HepG2 and SH-SY5Y as well as anticancer activity against HeLa cell lines were assessed. The hybrids were synthesized, using a microwave-assisted radiation method by covalently linking artemisinin and acridine pharmacophores by means of a liable, aminoethyl ether linker. The synthesized compounds were found active against both the Plasmodium strains and displayed superior selective toxicity towards the parasitic cells. Hybrid 7, however, containing ethylenediamine linker, proved the most active of all of the synthesized compounds. It had seven-fold higher antigametocytocidal activity compared to chloroquine and was also found to be seven-fold more potent than chloroquine against the Dd2 strain, with highly selective action towards the parasitic cells. This hybrid also showed favourable anti-cancer activity against the HeLa cells, three- and eight-fold higher than those of chloroquine and melphalan, respectively. This hybrid may therefore stand as drug candidate for further investigation in the search for new and effective drugs against malaria and cervical cancer.

摘要

在这项研究中,合成了 9-氨基吖啶和青蒿素-吖啶杂合化合物,并测定了它们对氯喹敏感但配子杀灭株(NF54)和氯喹耐药(Dd2)株疟原虫的体外抗疟活性。评估了对 CHO 细胞的体外细胞毒性、HepG2 和 SH-SY5Y 的细胞凋亡以及对 HeLa 细胞系的抗癌活性。使用微波辅助辐射方法,通过连接青蒿素和吖啶药效团的可裂解氨基乙基醚键,将杂合化合物进行了合成。发现合成的化合物对两种疟原虫株均具有活性,并对寄生细胞表现出优越的选择性毒性。然而,含有乙二胺连接子的杂合 7 是所有合成化合物中最活跃的。它对配子杀灭的活性比氯喹高七倍,对 Dd2 株的活性也比氯喹高七倍,对寄生细胞具有高度选择性。这种杂合物对 HeLa 细胞也表现出良好的抗癌活性,分别比氯喹和苯丙氨酸高 3 倍和 8 倍。因此,这种杂合物可能成为进一步研究寻找新的有效抗疟疾和宫颈癌药物的候选药物。

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