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通过一轮基于微孔板的蛋白质错误折叠循环扩增产生的高传染性朊病毒。

Highly infectious prions generated by a single round of microplate-based protein misfolding cyclic amplification.

作者信息

Moudjou Mohammed, Sibille Pierre, Fichet Guillaume, Reine Fabienne, Chapuis Jérôme, Herzog Laetitia, Jaumain Emilie, Laferrière Florent, Richard Charles-Adrien, Laude Hubert, Andréoletti Olivier, Rezaei Human, Béringue Vincent

出版信息

mBio. 2013 Dec 31;5(1):e00829-13. doi: 10.1128/mBio.00829-13.

Abstract

Measurements of the presence of prions in biological tissues or fluids rely more and more on cell-free assays. Although protein misfolding cyclic amplification (PMCA) has emerged as a valuable, sensitive tool, it is currently hampered by its lack of robustness and rapidity for high-throughput purposes. Here, we made a number of improvements making it possible to amplify the maximum levels of scrapie prions in a single 48-h round and in a microplate format. The amplification rates and the infectious titer of the PMCA-formed prions appeared similar to those derived from the in vivo laboratory bioassays. This enhanced technique also amplified efficiently prions from different species, including those responsible for human variant Creutzfeldt-Jakob disease. This new format should help in developing ultrasensitive, high-throughput prion assays for cognitive, diagnostic, and therapeutic applications. IMPORTANCE The method developed here allows large-scale, fast, and reliable cell-free amplification of subinfectious levels of prions from different species. The sensitivity and rapidity achieved approach or equal those of other recently developed prion-seeded conversion assays. Our simplified assay may be amenable to high-throughput, automated purposes and serve in a complementary manner with other recently developed assays for urgently needed antemortem diagnostic tests, by using bodily fluids containing small amounts of prion infectivity. Such a combination of assays is of paramount importance to reduce the transfusion risk in the human population and to identify asymptomatic carriers of variant Creutzfeldt-Jakob disease.

摘要

对生物组织或体液中朊病毒的检测越来越依赖无细胞检测方法。尽管蛋白质错误折叠循环扩增(PMCA)已成为一种有价值的、灵敏的工具,但目前它因缺乏高通量所需的稳健性和快速性而受到限制。在此,我们进行了多项改进,使得在单个48小时周期内以微孔板形式扩增最高水平的羊瘙痒病朊病毒成为可能。PMCA形成的朊病毒的扩增率和感染滴度似乎与体内实验室生物测定法得出的结果相似。这种改进后的技术还能有效扩增来自不同物种的朊病毒,包括那些导致人类变异型克雅氏病的朊病毒。这种新形式应有助于开发用于认知、诊断和治疗应用的超灵敏、高通量朊病毒检测方法。重要性:这里开发的方法允许对来自不同物种的亚感染水平的朊病毒进行大规模、快速且可靠的无细胞扩增。所实现的灵敏度和速度接近或等同于其他最近开发的朊病毒种子转化检测方法。我们简化后的检测方法可能适用于高通量、自动化目的,并通过使用含有少量朊病毒感染性的体液,与其他最近开发的检测方法以互补的方式用于急需的生前诊断测试。这样的检测方法组合对于降低人群中的输血风险以及识别变异型克雅氏病的无症状携带者至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3188/3884057/f3c64815a90e/mbo0061316950001.jpg

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