García-Huertas Paola, Olmo Francisco, Sánchez-Moreno Manuel, Dominguez Jorge, Chahboun Rachid, Triana-Chávez Omar
Grupo Biología y Control de Enfermedades Infecciosas - BCEI, Universidad de Antioquia, Medellín, Colombia.
Departamento de Parasitología, Instituto de Investigación Biosanitaria (IBS, Granada), Hospitales Universitarios de Granada, Universidad de Granada, Granada, Spain.
Exp Parasitol. 2018 Jun;189:34-42. doi: 10.1016/j.exppara.2018.04.009. Epub 2018 Apr 12.
Piperaceae species are abundant in the tropics and are important components of secondary vegetation. Many of these plants have received considerable attention due to their wide range of biological activities. Here, the trypanocidal activity of extracts and fractions with different polarities obtained from Colombian Piper jericoense plant was evaluated. A furofuran lignan, (1S,3aS,4S,6aS)-1-(3',4'-dimethoxyphenyl)-4-(3″,4″-methylendioxyphenyl)hexahydrofuro[3,4-c]furan, (1), was isolated from Colombian Piper jericoense leaves ethyl acetate extract. Its relative configuration at the stereogenic centers was established on the basis of various spectroscopic analyses, including 1D- (1H, 13C, and DEPT) and 2D-NMR (COSY, NOESY, HMQC and HMBC) and a 2D INADEQUATE NMR experiment as well as by comparison of their spectral data with those of related compounds such as (+)-Kobusin (2). The activity against Trypanosoma cruzi indicated that compound 1 was active against all parasite forms (epimastigote, amastigote and trypomastigote) and presented lower toxicity than the reference drug, benznidazole (Bz), evidenced by a selective index of 18.4 compared to that of Bz, which was 6.7. Moreover, this compound inhibited the infectious process, and it was active in infected mice in the acute phase. This compound significantly inhibited the T. cruzi Fe-SOD enzyme, whereas Cu/Zn-SOD from human cells was not affected. Ultrastructural analyses, together with metabolism-excretion studies in the parasite, were also performed to identify the possible mechanism of action of the tested compound. Interestingly, the lignan affected the parasite structure, but it did not alter the energetic metabolism.
胡椒科植物在热带地区分布广泛,是次生植被的重要组成部分。其中许多植物因其广泛的生物活性而受到了相当多的关注。在此,对从哥伦比亚耶里科胡椒(Piper jericoense)植物中获得的不同极性的提取物和馏分的杀锥虫活性进行了评估。从哥伦比亚耶里科胡椒叶乙酸乙酯提取物中分离出一种呋喃呋喃木脂素,(1S,3aS,4S,6aS)-1-(3',4'-二甲氧基苯基)-4-(3″,4″-亚甲二氧基苯基)六氢呋喃[3,4-c]呋喃,(1)。基于各种光谱分析,包括一维(1H,¹³C和DEPT)和二维核磁共振(COSY、NOESY、HMQC和HMBC)以及二维INADEQUATE核磁共振实验,并通过将其光谱数据与相关化合物如(+)-柯布辛(2)的光谱数据进行比较,确定了其手性中心的相对构型。对克氏锥虫的活性表明,化合物1对所有寄生虫形态(前鞭毛体、无鞭毛体和锥鞭毛体)均有活性,且毒性低于参考药物苯硝唑(Bz),其选择性指数为18.4,而Bz的选择性指数为6.7。此外,该化合物抑制感染过程,在急性期对感染小鼠也有活性。该化合物显著抑制克氏锥虫的铁超氧化物歧化酶(Fe-SOD),而对人细胞的铜/锌超氧化物歧化酶(Cu/Zn-SOD)没有影响。还进行了超微结构分析以及寄生虫的代谢-排泄研究,以确定受试化合物可能的作用机制。有趣的是,该木脂素影响寄生虫结构,但不改变其能量代谢。