首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Use of Fluorescent Immuno-Chemistry for the detection of Edwardsiella ictaluri in channel catfish (I. punctatus) samples
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Use of Fluorescent Immuno-Chemistry for the detection of Edwardsiella ictaluri in channel catfish (I. punctatus) samples

机译:荧光免疫化学技术在斑点叉尾((I. punctatus)样品中检测爱德华氏菌的检测

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摘要

While Edwardsiella ictaluri is a major pathogen of channel catfish Ictalurus punctatus and has been discovered nearly three decades ago 1,2, so far, to the best of these authors' knowledge, no method has been developed to allow for the in situ visualization of the bacteria in histological sections.While bacterial localization has been determined in vivo in previous studies using plate counts 3, radiometric labeled 4, or bioluminescent bacteria 5, most of these studies have only been performed at the gross organ level, with one exception 6. This limitation is of particular concern because E. ictaluri has a complex infection cycle 1,7, and it has a variety of virulence factors 8,9. The complex interaction of E. ictaluri with its host is similar in many respects to Salmonella typhi 10, which is in the same taxonomic family.Here we describe a technique allowing for the detection of bacteria using indirect immuno-histochemistry using the monoclonal Ed9 antibody described by Ainsworth et al.11.Briefly, a blocking serum is applied to paraffin embedded histological sections to prevent non-specific biding. Then, the sections are incubated with the primary antibody: E. ictaluri specific monoclonal antibody Ed9. Excess antibodies are rinsed away and the FitC labeled secondary antibodies are added. After rinsing, the sections are mounted with a fluorescent specific mounting medium.This allowed for the detection of E. ictaluri in situ in histological sections of channel catfish tissues.
机译:尽管爱德华氏菌是河channel鱼的主要病原体,并已在近三十年前发现 1,2 ,但到目前为止,据这些作者所知,还没有一种方法可以允许在先前的研究中使用板计数 3 ,放射标记的 4 或生物发光细菌< sup> 5 ,其中大多数研究仅在大器官水平上进行,唯一的例外是 6 。该局限性特别令人关注,因为埃卡塔尔大肠杆菌具有复杂的感染周期 1,7 ,并且具有多种毒力因子 8,9 。 E. ictaluri与宿主的复杂相互作用在很多方面类似于伤寒沙门氏菌 10 ,后者属于同一分类学家族。在此,我们介绍了一种技术,可通过间接免疫-使用Ainsworth等人 11 中所述的单克隆Ed9抗体进行组织化学。简而言之,将封闭血清应用于石蜡包埋的组织学切片,以防止非特异性投标。然后,将切片与第一抗体:大肠杆菌大肠杆菌特异性单克隆抗体Ed9孵育。冲洗掉多余的抗体,并添加FitC标记的第二抗体。冲洗后,将切片用荧光特定的固定介质固定,从而可以在channel鱼组织的组织学切片中原位检测肠埃希氏菌。

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