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一种优化和验证的 384 孔板检测方法,用于高通量筛选格式下的血小板功能检测。

An optimized and validated 384-well plate assay to test platelet function in a high-throughput screening format.

机构信息

a Institute of Bioengineering , École Polytechnique Fédérale de Lausanne , Lausanne , Switzerland.

b BioImaging and Optics Core Facility , École Polytechnique Fédérale de Lausanne , Lausanne , Switzerland.

出版信息

Platelets. 2019;30(5):563-571. doi: 10.1080/09537104.2018.1514106. Epub 2018 Sep 5.

Abstract

Despite significant advances in the treatment of cardiovascular diseases, antiplatelet therapies are still associated with a high risk of hemorrhage. In order to develop new drugs, methods to measure platelet function must be adapted for the high-throughput screening (HTS) format. Currently, all assays capable of assessing platelet function are either expensive, complex, or not validated, which makes them unsuitable for drug discovery. Here, we propose a simple, low-cost, and high-throughput-compatible platelet function assay, validated for the 384-well plate. In the proposed assay, agonist-induced platelet activity was assessed by three different methods: (i) measurement of light absorbance, which decreases with platelet aggregation; (ii) luminescence measurement, based on ATP release from activated platelets and luciferin-luciferase reaction; and (iii) automated bright-field microscopy of the wells and further quantification of platelet image area, described here for the first time. Brightfield imaging results were validated by demonstrating the similarity of dose-response curves obtained with absorbance and luminescence measurements after stimulating platelets, pre-incubated with prostaglandin E1 or tirofiban, and demonstrating the similarity of dose-response curves obtained with agonists. Assay quality was confirmed using the Z'-factor, a statistical parameter used to validate the robustness and suitability of an HTS assay. The results showed that, under high rotations per minute (1200 RPM), an acceptable Z'-factor score is reached for absorbance measurements (Z'-factor - 0.58) and automated brightfield imaging (Z'-factor - 0.52), without the need of replicates, while triplicates must be used to achieve an acceptable Z'-factor score (0.54) for luminescence measurements. Using low platelet concentration (4 × 10/μl - 10 μl), the brightfield imaging test was further validated using washed platelets. Furthermore, drug screening was performed with compounds selected by structure-based virtual screening. Taken together, this study presents an optimized and validated assay for HTS to be used as a tool for antiplatelet drug discovery.

摘要

尽管心血管疾病的治疗取得了重大进展,但抗血小板治疗仍与高出血风险相关。为了开发新药,必须对血小板功能的测量方法进行适应,以适应高通量筛选(HTS)格式。目前,所有能够评估血小板功能的检测方法要么昂贵、复杂,要么未经验证,因此不适合药物发现。在这里,我们提出了一种简单、低成本且高通量兼容的血小板功能检测方法,已在 384 孔板中进行了验证。在提出的检测方法中,通过三种不同的方法评估激动剂诱导的血小板活性:(i)测量光吸收度,随着血小板聚集,光吸收度降低;(ii)基于从激活的血小板中释放的 ATP 的发光测量,以及荧光素-荧光素酶反应;(iii)孔的自动明场显微镜以及在此首次描述的血小板图像面积的进一步定量。通过证明在用前列腺素 E1 或替罗非班预孵育后刺激血小板获得的吸收和发光测量的剂量-反应曲线的相似性,以及证明激动剂获得的剂量-反应曲线的相似性,验证了明场成像结果。使用 Z'-因子(用于验证 HTS 检测的稳健性和适用性的统计参数)确认了检测方法的质量。结果表明,在高每分钟转速(1200 RPM)下,吸收测量(Z'-因子为-0.58)和自动明场成像(Z'-因子为-0.52)达到可接受的 Z'-因子评分,而无需重复测量,而使用三重复测量才能达到可接受的发光测量 Z'-因子评分(0.54)。使用低血小板浓度(4×10/μl-10 μl),进一步使用洗涤血小板验证了明场成像测试。此外,还使用基于结构的虚拟筛选选择的化合物进行了药物筛选。总之,这项研究提出了一种优化和验证的高通量筛选检测方法,可作为抗血小板药物发现的工具。

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