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Specific and Sensitive Detection of H. pylori in Biological Specimens by Real-Time RT-PCR and In Situ Hybridization

机译:实时RT-PCR和原位杂交技术特异性灵敏地检测生物标本中的幽门螺杆菌

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摘要

PCR detection of H. pylori in biological specimens is rendered difficult by the extensive polymorphism of H. pylori genes and the suppressed expression of some genes in many strains. The goal of the present study was to (1) define a domain of the 16S rRNA sequence that is both highly conserved among H. pylori strains and also specific to the species, and (2) to develop and validate specific and sensitive molecular methods for the detection of H. pylori. We used a combination of in silico and molecular approaches to achieve sensitive and specific detection of H. pylori in biologic media. We sequenced two isolates from patients living in different continents and demonstrated that a 546-bp domain of the H. pylori 16S rRNA sequence was conserved in those strains and in published sequences. Within this conserved sequence, we defined a 229-bp domain that is 100% homologous in most H. pylori strains available in GenBank and also is specific for H. pylori. This sub-domain was then used to design (1) a set of high quality RT-PCR primers and probe that encompassed a 76-bp sequence and included at least two mismatches with other Helicobacter sp. 16S rRNA; and (2) in situ hybridization antisense probes. The sensitivity and specificity of the approaches were then demonstrated by using gastric biopsy specimens from patients and rhesus monkeys. This H. pylori-specific region of the 16S rRNA sequence is highly conserved among most H. pylori strains and allows specific detection, identification, and quantification of this bacterium in biological specimens.
机译:由于幽门螺杆菌基因的广泛多态性和许多菌株中某些基因的表达受到抑制,因此难以在生物样本中进行PCR检测。本研究的目标是(1)定义16S rRNA序列的结构域,该结构域在幽门螺杆菌菌株中高度保守,并且也对该物种具有特异性,以及(2)开发和验证特异性和灵敏的分子方法用于幽门螺杆菌的检测。我们结合了计算机方法和分子方法,以在生物介质中实现灵敏和特异性的幽门螺杆菌检测。我们对来自生活在不同大陆的患者的两个分离株进行了测序,并证明了幽门螺杆菌16S rRNA序列的546 bp结构域在这些菌株和公开的序列中均是保守的。在这个保守序列内,我们定义了一个229-bp结构域,在GenBank中可获得的大多数幽门螺杆菌菌株中100%同源,并且对幽门螺杆菌具有特异性。然后,该子域用于设计(1)一组高质量的RT-PCR引物和探针,这些引物和探针包含76 bp的序列,并与其他幽门螺杆菌有至少两个错配。 16S rRNA; (2)原位杂交反义探针。然后通过使用来自患者和恒河猴的胃活检标本证明了这些方法的敏感性和特异性。在大多数幽门螺杆菌菌株中,16S rRNA序列的幽门螺杆菌特异性区域高度保守,并允许在生物样本中对该细菌进行特异性检测,鉴定和定量。

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