Analytical validation of the DropXpert S6 system for diagnosis of chronic myelocytic leukemia

IF 6.1 2区 工程技术 Q1 BIOCHEMICAL RESEARCH METHODS Lab on a Chip Pub Date : 2024-05-03 DOI:10.1039/D4LC00175C
Wenjia Wei, Shujun Li, Ying Zhang, Simin Deng, Qun He, Xielan Zhao, Yajing Xu, Linfen Yu, Junwei Ye, Weiwei Zhao and Zhiping Jiang
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Abstract

Digital PCR is a powerful method for absolute nucleic acid quantification and is widely used in the absolute quantification of viral copy numbers, tumor marker detection, and prenatal diagnosis. However, for most of the existing droplet-based dPCR systems, the droplet generation, PCR reaction, and droplet detection are performed separately using different instruments. Making digital PCR both easy to use and practical by integrating the qPCR workflow into a superior all-in-one walkaway solution is one of the core ideas. A new innovative and integrated digital droplet PCR platform was developed that utilizes cutting-edge microfluidics to integrate dPCR workflows onto a single consumable chip. This makes previously complex workflows fast and simple; the whole process of droplet generation, PCR amplification, and droplet detection is completed on one chip, which meets the clinical requirement of “sample in, result out”. It provides high multiplexing capabilities and strong sensitivity while all measurements were within the 95% confidence interval. This study is the first validation of the DropXpert S6 system and focuses primarily on verifying its reliability, repeatability, and consistency. In addition, the accuracy, detection limit, linearity, and precision of the system were evaluated after sample collection. Among them, the accuracy assessment by calculating the absolute bias of each target gene yielded a range from −0.1 to 0.08, all within ±0.5 logarithmic orders of magnitude; the LOB for the assay was set at 0, and the LoD value calculated using probit curves is MR4.7 (0.002%); the linearity evaluation showed that the R2 value of the BCR-ABL was 0.9996, and the R2 value of the ABL metrics calculated using the ERM standard was 0.9999; and the precision evaluation showed that all samples had a CV of less than 4% for intra-day, inter-day, and inter-instrument variation. The CV of inter-batch variation was less than 7%. The total CV was less than 5%. The results of the study demonstrate that dd-PCR can be applied to molecular detection and the clinical evaluation of CML patients and provide more precise personal treatment guidance, and its reproducibility predicts the future development of a wide range of clinical applications.

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用于诊断慢性粒细胞白血病的 DroXpert S6 系统的分析验证
数字 PCR 是一种强大的核酸绝对定量方法,广泛应用于病毒拷贝数的绝对定量、肿瘤标志物检测和产前诊断。然而,对于大多数现有的基于液滴的 dPCR 系统来说,液滴生成、PCR 反应和液滴检测是在不同的仪器中分别进行的。通过将 qPCR 工作流程集成到一个卓越的一体化可移动解决方案中,使数字 PCR 既简单又实用,是我们的核心理念之一。新开发的创新型集成数字液滴 PCR 平台利用最先进的微流控技术,将 dPCR 工作流程集成到单个耗材芯片上。这使得以往复杂的工作流程变得快速而简单,液滴生成、PCR 扩增和液滴检测的整个过程都在一个芯片上完成,满足了 "样品进,结果出 "的临床要求。它具有复用能力强、灵敏度高的特点,所有测量结果均在 95% 的置信区间内。本研究是 DropXpert S6 系统的首次验证,主要侧重于验证其可靠性、可重复性和一致性。此外,还对样本采集后系统的准确度、检测限、线性度和精密度进行了评估。其中,准确度评估通过计算各目标基因的绝对偏差得出-0.1至0.08的范围,均在±0.5个对数数量级内;检测限(LOB)设定为0,利用probit曲线计算出的LoD值为MR4.7(0.线性度评价结果表明,BCR-ABL 的 R² 值为 0.9996,用 ERM 标准计算的 ABL 指标的 R² 值为 0.9999;精密度评价结果表明,所有样品的日内、日间和仪器间变异的 CV 均小于 4%。批间变异的 CV 小于 7%。总 CV 小于 5%。研究结果表明,dd-PCR 可应用于 CML 患者的分子检测和临床评估,并提供更精确的个人治疗指导,其可重复性预示着未来在临床上的广泛应用。
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来源期刊
Lab on a Chip
Lab on a Chip 工程技术-化学综合
CiteScore
11.10
自引率
8.20%
发文量
434
审稿时长
2.6 months
期刊介绍: Lab on a Chip is the premiere journal that publishes cutting-edge research in the field of miniaturization. By their very nature, microfluidic/nanofluidic/miniaturized systems are at the intersection of disciplines, spanning fundamental research to high-end application, which is reflected by the broad readership of the journal. Lab on a Chip publishes two types of papers on original research: full-length research papers and communications. Papers should demonstrate innovations, which can come from technical advancements or applications addressing pressing needs in globally important areas. The journal also publishes Comments, Reviews, and Perspectives.
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