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Methods for parasitic protozoans detection in the environmental samples

机译:环境样品中寄生虫原生动物的检测方法

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The environmental route of transmission of many parasitic protozoa and their potential for producing large numbers of transmissive stages constitute persistent threats to public and veterinary health. Conventional and new immunological and molecular methods enable to assess the occurrence, prevalence, levels and sources of waterborne protozoa. Concentration, purification, and detection are the three key steps in all methods that have been approved for routine monitoring of waterborne cysts and oocysts. These steps have been optimized to such an extent that low levels of naturally occurring (oo)cysts of protozoan can be efficiently recovered from water. Ten years have passed since the United States Environmental Protection Agency (USEPA) introduced the 1622 and 1623 methods and used them to concentrate and detect the oocysts of Cryptosporidium and cysts of Giardia in water samples. Nevertheless, the methods still need studies and improvements. Pre-PCR processing procedures have been developed and they are still improved to remove or reduce the effects of PCR inhibitors. The progress in molecular methods allows to more precise distinction of species or simultaneous detection of several parasites, however, they are still not routinely used and need standardization. Standardized methods are required to maximize public health surveillance.
机译:许多寄生虫的环境传播途径及其产生大量传播阶段的潜力对公共和兽医健康构成持续威胁。常规和新的免疫学和分子方法能够评估水生原生动物的发生,流行,水平和来源。浓缩,纯化和检测是已被批准用于常规监测水性囊肿和卵囊的所有方法中的三个关键步骤。这些步骤已优化到一定程度,可以从水中有效回收低水平的原生动物原生(oo)囊肿。自美国环境保护局(USEPA)引入1622和1623方法并将其用于浓缩和检测水样中隐孢子虫的卵囊和贾第虫的囊肿以来已经过去了十年。尽管如此,这些方法仍然需要研究和改进。已经开发了PCR前处理程序,并且仍对其进行了改进,以消除或减少PCR抑制剂的作用。分子方法的进步允许对物种进行更精确的区分或同时检测几种寄生虫,但是,它们仍未被常规使用并且需要标准化。需要标准化的方法来最大化公共卫生监督。

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