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银行田鼠朊病毒蛋白可将 RT-QuIC 检测方法的应用范围扩大到一系列遗传性朊病毒疾病。

Bank vole prion protein extends the use of RT-QuIC assays to detect prions in a range of inherited prion diseases.

机构信息

MRC Prion Unit at UCL, Institute of Prion Diseases, Courtauld Building, 33 Cleveland Street, London, W1W 7FF, UK.

出版信息

Sci Rep. 2021 Mar 4;11(1):5231. doi: 10.1038/s41598-021-84527-9.

Abstract

The cerebrospinal fluid (CSF) real-time quaking-induced conversion assay (RT-QuIC) is an ultrasensitive prion amyloid seeding assay for diagnosis of sporadic Creutzfeldt-Jakob disease (CJD) but several prion strains remain unexplored or resistant to conversion with commonly used recombinant prion protein (rPrP) substrates. Here, bank vole (BV) rPrP was used to study seeding by a wide range of archived post-mortem human CSF samples from cases of sporadic, acquired and various inherited prion diseases in high throughput 384-well format. BV rPrP substrate yielded positive reactions in 70/79 cases of sporadic CJD [Sensitivity 88.6% (95% CI 79.5-94.7%)], 1/2 variant CJD samples, and 9/20 samples from various inherited prion diseases; 5/57 non-prion disease control CSFs had positive reactions, yielding an overall specificity of 91.2% (95% CI 80.1-97.1%). Despite limitations of using post-mortem samples and our results' discrepancy with other studies, we demonstrated for the first time that BV rPrP is susceptible to conversion by human CSF samples containing certain prion strains not previously responsive in conventional rPrPs, thus justifying further optimisation for wider diagnostic and prognostic use.

摘要

脑脊液(CSF)实时震颤诱导转化分析(RT-QuIC)是一种超灵敏的朊病毒淀粉样蛋白种子检测分析,用于诊断散发性克雅氏病(CJD),但仍有几种朊病毒株未被探索或对常用重组朊蛋白(rPrP)底物的转化具有抗性。在此,我们使用 bank vole(BV)rPrP 研究了一系列存档的死后人类 CSF 样本中不同来源的朊病毒的种子,这些样本来自散发性、获得性和各种遗传性朊病毒疾病,检测是在高通量 384 孔格式下进行的。BV rPrP 底物在 70/79 例散发性 CJD 病例[敏感性 88.6%(95% CI 79.5-94.7%)]、2 例变异 CJD 样本和 20 例各种遗传性朊病毒疾病样本中产生了阳性反应;5/57 例非朊病毒疾病对照 CSF 有阳性反应,总特异性为 91.2%(95% CI 80.1-97.1%)。尽管我们的研究结果存在使用死后样本的局限性,并且与其他研究存在差异,但我们首次证明了 BV rPrP 容易被包含某些以前在常规 rPrP 中不响应的朊病毒株的人类 CSF 样本转化,从而为更广泛的诊断和预后应用进一步优化提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e96/7933407/28fc76c6941e/41598_2021_84527_Fig1_HTML.jpg

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