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首页> 外文期刊>Current drug targets-The International journal for timely in-depth reviews on drug targets >Electron microscopy in antiparasitic chemotherapy: a (close) view to a kill.
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Electron microscopy in antiparasitic chemotherapy: a (close) view to a kill.

机译:电子显微镜在抗寄生虫化疗中的作用:(近距离)观察杀灭。

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Electron microscopy may be useful in chemotherapy studies at distinct levels, such as the identification of subcellular targets in the parasites and the elucidation of the ultimate drug mechanism of action, inferred by the alterations induced by antiparasitic compounds. In this review we present data obtained by electron microscopy approaches of different parasitic protozoa, such as Trypanosoma cruzi, Leishmania spp., Giardia lamblia and trichomonads, under the action of drugs, demonstrating that the cell architecture organization is only determined in detail at the ultrastructural level. The transmission electron microscopy may shed light (i.e. electrons) not only on the affected compartment, but also on the manner it is altered, which may indicate presumable target metabolic pathways as well as the actual toxic or lethal effects of a drug. Cytochemical and analytical techniques can provide valuable information on the composition of the altered cell compartment, permitting the bona fide identificationof the drug target and a detailed understanding of the mechanism underneath its effect. Scanning electron microscopy permits the recognition of the drug-induced alterations on parasite surface and topography. Such observations may reveal cytokinetic dysfunctions or membrane lesions not detected by other approaches. In this context, electron microscopy techniques comprise valuable tools in chemotherapy studies.
机译:电子显微镜可能会在不同水平的化学研究中有用,例如鉴定寄生虫中的亚细胞靶标以及阐明由抗寄生虫化合物引起的变化所推断的最终药物作用机制。在这篇综述中,我们介绍了在药物作用下通过电子显微镜方法获得的不同寄生原生动物(如锥虫,利什曼原虫,贾第鞭毛虫和毛滴虫)的数据,表明仅在超微结构中详细确定了细胞结构组织。水平。透射电子显微镜不仅可以在受影响的隔室上发光,也可以在改变方式上散发出光(电子),这可能表明可能的靶代谢途径以及药物的实际毒性或致死作用。细胞化学和分析技术可以提供有关改变后的细胞区室组成的有价值的信息,从而可以真正鉴定出药物靶标并对其作用机理进行详细的了解。扫描电子显微镜可以识别药物引起的寄生虫表面和形貌的改变。这些观察结果可能显示其他方法未检测到细胞动力学功能障碍或膜损伤。在这种情况下,电子显微镜技术是化学疗法研究中的宝贵工具。

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