Department of Infectious Diseases, University of Heidelberg Medical School, Heidelberg, Germany.
PLoS One. 2010 Jan 13;5(1):e8682. doi: 10.1371/journal.pone.0008682.
Most medicinal plants contain a mixture of bioactive compounds, including chemicals that interact with intracellular targets and others that can act as adjuvants to facilitate absorption of polar agents across cellular membranes. However, little is known about synergistic effects between such potential drug candidates and adjuvants. To probe for such effects, we tested the green tea compound epigallocatechin gallate (EGCG) and the membrane permeabilising digitonin on Plasmodium sporozoite motility and viability.
METHODOLOGY/PRINCIPAL FINDINGS: Green fluorescent P. berghei sporozoites were imaged using a recently developed visual screening methodology. Motility and viability parameters were automatically analyzed and IC50 values were calculated, and the synergism of drug and adjuvant was assessed by the fractional inhibitory concentration index. Validating our visual screening procedure, we showed that sporozoite motility and liver cell infection is inhibited by EGCG at nontoxic concentrations. Digitonin synergistically increases the cytotoxicity of EGCG on sporozoite survival, but shows an additive effect on sporozoite motility.
CONCLUSIONS/SIGNIFICANCE: We proved the feasibility of performing highly reliable visual screens for compounds against Plasmodium sporozoites. We thereby could show an advantage of administering mixtures of plant metabolites on inhibition of cell motility and survival. Although the effective concentration of both drugs is too high for use in malaria prophylaxis, the demonstration of a synergistic effect between two plant compounds could lead to new avenues in drug discovery.
大多数药用植物含有多种生物活性化合物,包括与细胞内靶标相互作用的化学物质和其他可作为佐剂的物质,以促进极性药物穿过细胞膜的吸收。然而,对于这些潜在药物候选物和佐剂之间的协同作用知之甚少。为了探究这种协同作用,我们测试了绿茶化合物表没食子儿茶素没食子酸酯(EGCG)和膜通透性增强剂瑞香素对疟原虫孢子运动和活力的影响。
方法/主要发现:使用最近开发的视觉筛选方法对绿色荧光 P. berghei 孢子进行成像。自动分析运动和活力参数,并计算 IC50 值,并通过部分抑制浓度指数评估药物和佐剂的协同作用。通过验证我们的视觉筛选程序,我们表明 EGCG 在非毒性浓度下抑制孢子运动和肝细胞感染。瑞香素协同增强 EGCG 对孢子存活的细胞毒性,但对孢子运动呈相加作用。
结论/意义:我们证明了对疟原虫孢子进行化合物的高可靠性视觉筛选是可行的。因此,我们可以展示在抑制细胞运动和存活方面施用植物代谢物混合物的优势。尽管两种药物的有效浓度对于疟疾预防来说太高,但两种植物化合物之间协同作用的证明可能为药物发现开辟新途径。