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改进利什曼原虫属的绿色荧光蛋白报告系统,用于抗利什曼原虫药物的体外和体内筛选。

Improvement of the green fluorescent protein reporter system in Leishmania spp. for the in vitro and in vivo screening of antileishmanial drugs.

机构信息

Program for Study and Control of Tropical Diseases, School of Medicine, University of Antioquia, Medellin, Colombia.

出版信息

Acta Trop. 2012 Apr;122(1):36-45. doi: 10.1016/j.actatropica.2011.11.015. Epub 2011 Dec 6.

Abstract

Development of new therapeutic approaches for leishmaniasis treatment requires new high throughput screening methodologies for the antileishmanial activity of the new compounds both in vitro and in vivo. Reporter genes as the GFP have become one of the most promissory and widely used tools for drug screening in several models, since it offers live imaging, high sensibility, specificity and flexibility; additionally, the use of GFP as a reporter gene in screening assays eliminates all the drawbacks presented in conventional assays and also those technical problems found using other reporter genes. The utility of the GFP as a reporter gene in drug screening assays with Leishmania parasites depends on the homogeneity and stability of the GFP transfected strains. Stable expression of the GFP in the Old World Leishmania species has been demonstrated using integration vectors; however, no reports exist yet about the success of this methodology in the New World species. Here we report the generation of New World Leishmania strains expressing the GFP protein from an integration vector, which replaces one copy of the 18S RNA in the chromosome with the GFP coding sequence by homologous recombination. We also prove that the expression of the integrated GFP is stable and homogeneous in the transfected parasites after months in culture without selective pressure or during its use in hamster infection assays. The fluorescent strains are useful for in vitro, ex vivo and in vivo drug screening assays since no considerable variations in virulence or infectivity where seen attributable to the genetic manipulation during both in vitro and in vivo infection experiments. The platform described here for drug testing assays based on the use of stable fluorescent Leishmania strains coupled to flow cytometry and fluorescent microscopy is more sensitive, more specific and faster than conventional assays used normally for the evaluation of compounds with potential antileishmanial activity.

摘要

为了开发新的治疗方法来治疗利什曼病,需要开发新的高通量筛选方法,以评估新化合物在体外和体内的抗利什曼活性。报告基因(如 GFP)已成为药物筛选在几种模型中最有前途和广泛使用的工具之一,因为它提供了活体成像、高灵敏度、特异性和灵活性;此外,在筛选实验中使用 GFP 作为报告基因消除了传统实验中存在的所有缺点,也消除了使用其他报告基因时发现的技术问题。GFP 作为利什曼原虫药物筛选实验中的报告基因的应用取决于转染株的均一性和稳定性。已证明使用整合载体可在旧世界利什曼物种中稳定表达 GFP;然而,目前尚无关于该方法在新世界物种中成功应用的报道。在这里,我们报告了利用整合载体生成表达 GFP 蛋白的新世界利什曼菌株的方法,该载体通过同源重组将 GFP 编码序列替代染色体中 18S RNA 的一个拷贝。我们还证明,在没有选择性压力的情况下,转染寄生虫经过数月培养后,或在用于仓鼠感染实验时,整合 GFP 的表达是稳定和均一的。荧光株可用于体外、离体和体内药物筛选实验,因为在体外和体内感染实验中,遗传操作没有导致毒力或感染力的显著变化。与通常用于评估具有潜在抗利什曼活性的化合物的常规方法相比,本文描述的基于稳定荧光利什曼菌株与流式细胞术和荧光显微镜结合的药物测试平台更灵敏、更特异、更快速。

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