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萘基异喹啉生物碱及其合成类似物作为新型有效的体外抗犬巴贝斯虫抑制剂。

Naphthylisoquinoline alkaloids and their synthetic analogs as potent novel inhibitors against Babesia canis in vitro.

机构信息

Institute of Organic Chemistry, University of Würzburg, Am Hubland, D-97074, Würzburg, Germany.

Institute of Organic Chemistry, University of Würzburg, Am Hubland, D-97074, Würzburg, Germany; Department of Pharmacognosy, Faculty of Pharmacy, Ain-Shams University, Organization of African Unity Street 1, 11566, Cairo, Egypt.

出版信息

Vet Parasitol. 2020 Jul;283:109177. doi: 10.1016/j.vetpar.2020.109177. Epub 2020 Jun 26.

Abstract

Babesia canis is the predominant and clinically relevant canine Babesia species in Europe. Transmitted by vector ticks, the parasite enters red blood cells and induces a severe, potentially fatal hemolytic anemia. Here, we report on the antibabesial activities of three extracts of the West African tropical plant species Triphyophyllum peltatum (Dioncophyllaceae) and Ancistrocladus abbreviatus (Ancistrocladaceae) and of 13 genuine naphthylisoquinoline alkaloids isolated thereof. Two of the extracts and eight of the alkaloids were found to display strong activities against Babesia canis in vitro. Among the most potent compounds were the C,C-coupled dioncophyllines A (1a) and C (2) and the N,C-linked alkaloids ancistrocladium A (3) and B (4), with half-maximum inhibition concentration (IC) values of 0.48 μM for 1a, 0.85 μM for 2, 1.90 μM for 3, and 1.23 μM for 4. Structure-activity relationship (SAR) studies on a small library of related genuine analogs and non-natural synthetic derivatives of 1a and 2 revealed the likewise naturally occurring alkaloid N-methyl-7-epi-dioncophylline A (6b) to be the most potent (IC, 0.14 μM) among the investigated compounds. Although none of the tested naphthylisoquinolines showed 100 % inhibition of parasite infection - as displayed by imidocarb dipropionate (IC, 0.07 μM), which was used as a positive control - the antibabesial potential of the dioncophyllines A (1a) and C (2) and related compounds such as 6b, its atropo-diastereomer 6a (IC, 1.45 μM), and 8-O-(p-nitrobenzyl)dioncophylline A (14) (IC, 0.82 μM) is to be considered as high. The SAR results showed that N-methylation and axial chirality exert a strong impact on the antibabasial activities of the naphthylisoquinolines presented here, whereas dimerization, as in jozimine A (5) (IC, 140 μM), leads to a significant decrease of activity against B. canis. Alkaloids displaying good to high activities against B. canis like the dioncophyllines 1a, 2, 6a, and 6b were found to cause only a small degree of hemolysis (< 0.7 %), whereas compounds with moderate to weak antibabesial activities such as 6-O-methyl-4'-O-demethylancistrocladine (15a) (IC, 14.0 μM) and its atropo-diastereomer 6-O-methyl-4'-O-demethylhamatine (15b) (IC, 830 μM) caused a high degree of hemolysis (7.3 % for 15a and 11.2 % for 15b). In this respect, the most effective anti-Babesia naphthylisoquinolines are also the safest ones.

摘要

犬巴贝斯虫是欧洲主要的犬类巴贝斯虫种,具有临床相关性。该寄生虫通过媒介蜱传播,进入红细胞并引起严重的、潜在致命的溶血性贫血。在这里,我们报告了三种来自西非热带植物三叶鬼针草( Dioncophyllaceae )和短梗钩藤( Ancistrocladaceae )的提取物以及从中分离出的 13 种真正的萘基异喹啉生物碱的抗巴贝斯虫活性。两种提取物和八种生物碱被发现对犬巴贝斯虫具有很强的体外活性。在最有效的化合物中,有 C,C- 偶联的 Dioncophylline A (1a) 和 C (2) 以及 N,C- 连接的生物碱 Ancistrocladium A (3) 和 B (4) ,它们的半最大抑制浓度(IC)值分别为 1a 的 0.48 μM、2 的 0.85 μM、3 的 1.90 μM 和 4 的 1.23 μM。对一小部分相关天然类似物和非天然合成衍生物的结构活性关系(SAR)研究表明,同样天然存在的生物碱 N- 甲基-7-epi-dioncophylline A (6b) 是研究化合物中最有效的(IC,0.14 μM)。尽管没有一种测试的萘基异喹啉能达到 100%抑制寄生虫感染的效果 - 如二丙基咪唑(IC,0.07 μM)所示,后者被用作阳性对照 - Dioncophylline A (1a) 和 C (2) 以及相关化合物如 6b、其阿托型对映体 6a(IC,1.45 μM)和 8-O-(对硝基苄基) Dioncophylline A(14)(IC,0.82 μM)的抗巴贝斯虫潜力被认为是很高的。SAR 结果表明,N- 甲基化和轴向手性对本文所呈现的萘基异喹啉的抗巴贝斯活性有很大影响,而二聚化,如在 jozimine A (5)(IC,140 μM)中,导致对 B. canis 的活性显著降低。对 B. canis 表现出良好至高活性的生物碱,如 Dioncophylline 1a、2、6a 和 6b,只引起很小程度的溶血(<0.7%),而对 B. canis 具有中等至弱抗巴贝斯活性的化合物,如 6-O- 甲基-4'-O- 去甲基 Ancistrocladine(15a)(IC,14.0 μM)及其阿托型对映体 6-O- 甲基-4'-O- 去甲基 Hamatine(15b)(IC,830 μM),则会引起高度溶血(15a 为 7.3%,15b 为 11.2%)。在这方面,最有效的抗巴贝斯萘基异喹啉也是最安全的。

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