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Development of a bead-based Luminex assay using lipopolysaccharide specific monoclonal antibodies to detect biological threats from Brucella species

机译:使用脂多糖特异性单克隆抗体开发基于珠子的Luminex测定,以检测来自布鲁氏菌物种的生物威胁

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摘要

Brucella, a Gram-negative bacterium, is classified as a potential bioterrorism agent mainly due to the low dose needed to cause infection and the ability to transmit the bacteria via aerosols. Goats/sheep, cattle, pigs, dogs, sheep and rodents are infected by B. melitensis, B. abortus, B. suis, B. canis, B. ovis and B. neotomae, respectively, the six classical Brucella species. Most human cases are caused by B. melitensis and B. abortus. Our aim was to specifically detect Brucellae with 'smooth' lipopolysaccharide (LPS) using a highly sensitive monoclonal antibody (mAb) based immunological assay.; To complement molecular detection systems for potential bioterror agents, as required by international biodefense regulations, sets of mAbs were generated by B cell hybridoma technology and used to develop immunological assays. The combination of mAbs most suitable for an antigen capture assay format was identified and an immunoassay using the Luminex xMAP technology was developed.; MAbs specific for the LPS O-antigen of Brucella spp. were generated by immunising mice with inactivated B. melitensis or B. abortus cells. Most mAbs recognised both B. melitensis and B. abortus and antigen binding was not impeded by inactivation of the bacterial cells by γ irradiation, formalin or heat treatment, a step required to analyse the samples immunologically under biosafety level two conditions. The Luminex assay recognised all tested Brucella species with 'smooth' LPS with detection limits of 2 × 10(2) to 8 × 10(4) cells per mL, depending on the species tested. Milk samples spiked with Brucella spp. cells were identified successfully using the Luminex assay. In addition, the bead-based immunoassay was integrated into a multiplex format, allowing for simultaneous, rapid and specific detection of Brucella spp., Bacillus anthracis, Francisella tularensis and Yersinia pestis within a single sample.; Overall, the robust Luminex assay should allow detection of Brucella spp. in both natural outbreak and bio-threat situations.
机译:布鲁氏菌(革兰氏阴性菌)被归类为潜在的生物恐怖药,主要是因为引起感染所需的剂量低以及能够通过气溶胶传播细菌。山羊/绵羊,牛,猪,狗,绵羊和啮齿动物分别被六个经典布鲁氏菌属物种B. melitensis,B。流产,B。suis,B。canis,B。ovis和B. neotomae感染。大多数人类病例是由梅毒双歧杆菌和流产双歧杆菌引起的。我们的目标是使用基于高灵敏度单克隆抗体(mAb)的免疫学检测方法,以“平滑”脂多糖(LPS)特异性检测布鲁氏菌。根据国际生物防御法规的要求,为了补充潜在生物恐怖分子的分子检测系统,B细胞杂交瘤技术产生了一系列单克隆抗体,并用于开发免疫学检测方法。鉴定出最适合抗原捕获测定形式的mAb组合,并开发了使用Luminex xMAP技术的免疫测定。布鲁氏菌属LPS O抗原特异的单克隆抗体。通过用灭活的苜蓿芽孢杆菌或流产芽孢杆菌细胞免疫小鼠而产生。大多数mAb都能识别出B. melitensis和B.流产,并且通过γ射线照射,福尔马林或热处理使细菌细胞失活不会阻碍抗原结合,这是在两个生物安全水平条件下对样品进行免疫学分析的步骤。 Luminex分析可识别所有测试过的具有“平滑” LPS的布鲁氏菌物种,检测限为每毫升2×××10(2)至8××10(4)个细胞,具体取决于所测试的物种。加布鲁氏菌属的牛奶样品。使用Luminex分析法成功鉴定出细胞。此外,基于珠子的免疫测定已整合为多重形式,可在单个样品中同时,快速,特异性地检测布鲁氏菌属,炭疽芽孢杆菌,土生弗朗西斯菌和鼠疫耶尔森氏菌。总体而言,强大的Luminex分析应可检测布鲁氏菌属。在自然爆发和生物威胁的情况下。

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