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一种用于测量热休克蛋白27和70的新型基于珠子的免疫测定法。

A Novel Bead-Based Immunoassay for the Measurement of Heat Shock Proteins 27 and 70.

作者信息

Njemini Rose, Verhaeghen Katrijn, Mets Tony, Weets Ilse, Bautmans Ivan

机构信息

Frailty in Ageing Research Group, Vrije Universiteit Brussel, Laarbeeklaan 103, B-1090 Brussels, Belgium.

Gerontology Department, Vrije Universiteit Brussel, Laarbeeklaan 103, B-1090 Brussels, Belgium.

出版信息

Pathogens. 2020 Oct 22;9(11):863. doi: 10.3390/pathogens9110863.

Abstract

Heat shock proteins (HSPs) play an essential role in protecting proteins from denaturation and are implicated in diverse pathophysiological conditions like cardiovascular diseases, cancer, infections, and neurodegenerative diseases. Scientific evidence indicates that if HSP expression falls below a certain level, cells become sensitive to oxidative damage that accelerates protein aggregation diseases. On the other hand, persistently enhanced levels of HSP can lead to inflammatory and oncogenic changes. To date, although techniques for measuring HSPs exist, these assays are limited for use in specific sample types or are time consuming. Therefore, in the present study, we developed a single-molecule assay digital ELISA technology (Single Molecule Array-SIMOA) for the measurement of HSPs, which is time effective and can be adapted to measure multiple analytes simultaneously from a single sample. This technique combines two distinct HSP-specific antibodies that recognize different epitopes on the HSP molecule. A recombinant human HSP protein was used as the standard material. The assay performance characteristics were evaluated by repeated testing of samples spiked with HSP peptide at different levels. The limit of detection was 0.16 and 2 ng/mL for HSP27 and HSP70, respectively. The inter- and intra-assay coefficients of variation were less than 20% in all tested conditions for both HSPs. The HSP levels assayed after serial dilution of samples portrayed dilutional linearity (on average 109%, R = 0.998, < 0.001, for HSP27 and 93%, R = 0.994, < 0.001, for HSP70). A high linear response was also demonstrated with admixtures of plasma exhibiting relatively very low and high levels of HSP70 (R = 0.982, < 0.001). Analyte spike recovery varied between 57% and 95%. Moreover, the relative HSP values obtained using Western blotting correlated significantly with HSP values obtained with the newly developed SIMOA assay (r = 0.815, < 0.001 and r = 0,895, < 0.001 for HSP70 and HSP27, respectively), indicating that our method is reliable. In conclusion, the assay demonstrates analytical performance for the accurate assessment of HSPs in various sample types and offers the advantage of a huge range of dilution linearity, indicating that samples with HSP concentration highly above the calibration range can be diluted into range without affecting the precision of the assay.

摘要

热休克蛋白(HSPs)在保护蛋白质免于变性方面发挥着至关重要的作用,并与多种病理生理状况有关,如心血管疾病、癌症、感染和神经退行性疾病。科学证据表明,如果HSP的表达低于一定水平,细胞会对加速蛋白质聚集疾病的氧化损伤变得敏感。另一方面,HSP水平持续升高会导致炎症和致癌性变化。迄今为止,尽管存在测量HSPs的技术,但这些检测方法仅限于特定样本类型使用或耗时较长。因此,在本研究中,我们开发了一种用于测量HSPs的单分子检测数字ELISA技术(单分子阵列-SIMOA),该技术省时高效,并且可以适用于从单个样本中同时测量多种分析物。该技术结合了两种识别HSP分子上不同表位的不同HSP特异性抗体。使用重组人HSP蛋白作为标准物质。通过对添加不同水平HSP肽的样本进行重复测试来评估检测性能特征。HSP27和HSP70的检测限分别为0.16和2 ng/mL。在所有测试条件下,两种HSP的批间和批内变异系数均小于 20%。对样本进行系列稀释后检测的HSP水平呈现稀释线性(HSP27平均为109%,R = 0.998,< 0.001;HSP70为93%,R = 0.994,< 0.001)。对于HSP70水平相对非常低和非常高的血浆混合物,也显示出高线性响应(R = 0.982,< 0.001)。分析物加标回收率在57%至95%之间。此外,使用蛋白质印迹法获得的相对HSP值与使用新开发的SIMOA检测法获得的HSP值显著相关(HSP70和HSP27的r分别为0.815,< 0.001和r = 0.895,< 0.001),表明我们的方法可靠。总之,该检测方法展示了对各种样本类型中HSPs进行准确评估的分析性能,并具有大范围稀释线性的优势,这表明HSP浓度远高于校准范围的样本可以稀释至范围内而不影响检测的精密度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c48b/7690633/c3acc274e0c9/pathogens-09-00863-g001.jpg

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