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A Viral Nanoparticle with Dual Function as an Anthrax Antitoxin and Vaccine

机译:具有双重功能作为炭疽抗毒素和疫苗的病毒纳米颗粒。

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摘要

The recent use of Bacillus anthracis as a bioweapon has stimulated the search for novel antitoxins and vaccines that act rapidly and with minimal adverse effects. B. anthracis produces an AB-type toxin composed of the receptor-binding moiety protective antigen (PA) and the enzymatic moieties edema factor and lethal factor. PA is a key target for both antitoxin and vaccine development. We used the icosahedral insect virus Flock House virus as a platform to display 180 copies of the high affinity, PA-binding von Willebrand A domain of the ANTXR2 cellular receptor. The chimeric virus-like particles (VLPs) correctly displayed the receptor von Willebrand A domain on their surface and inhibited lethal toxin action in in vitro and in vivo models of anthrax intoxication. Moreover, VLPs complexed with PA elicited a potent toxin-neutralizing antibody response that protected rats from anthrax lethal toxin challenge after a single immunization without adjuvant. This recombinant VLP platform represents a novel and highly effective, dually-acting reagent for treatment and protection against anthrax.
机译:炭疽芽孢杆菌作为生物武器的最新用途刺激了对新的抗毒素和疫苗的搜寻,这些毒素和疫苗起效快且副作用最小。炭疽芽胞杆菌产生由受体结合​​部分保护性抗原(PA)和酶部分水肿因子和致死因子组成的AB型毒素。 PA是抗毒素和疫苗开发的关键目标。我们使用二十面体昆虫病毒群之家病毒作为平台展示ANTXR2细胞受体的180个高亲和力,结合PA的von Willebrand A域。在炭疽中毒的体外和体内模型中,嵌合病毒样颗粒(VLP)在其表面正确显示了受体von Willebrand A结构域,并抑制了致命的毒素作用。此外,与PA复合的VLP引发了有效的毒素中和抗体反应,在没有佐剂的单次免疫后,可保护大鼠免受炭疽致死毒素的攻击。该重组VLP平台代表了一种新型的高效双作用试剂,可用于治疗和预防炭疽。

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