Department of Biomedical Sciences and Veterinary Public Health, Section for Parasitology, Swedish University of Agricultural Sciences, Uppsala, Sweden.
Parasit Vectors. 2023 Apr 25;16(1):143. doi: 10.1186/s13071-023-05756-7.
The use of polymerase chain reaction (PCR)-based diagnostic approaches has steadily increased in the field of parasitology in recent decades. The most recent large-scale technological modification of the PCR formula, also known as third-generation PCR, came in the form of digital PCR (dPCR). Currently, the most common form of dPCR on the market is digital droplet PCR (ddPCR). Unlike quantitative real-time PCR (qPCR), the digital format allows for highly sensitive, absolute quantification of nucleic acid targets and does not require external standards to be included in the developed assays. Dividing each sample into thousands of compartments and using statistical models also eliminates the need for technical replicates. With unprecedented sensitivity and enforcement of binary endpoint reactions, ddPCR not only allows the use of tiny sample volumes (especially important when working with limited amounts of DNA) but also minimises the impact of variations in amplification efficiency and the presence of inhibitors. As ddPCR is characterised by excellent features such as high throughput, sensitivity and robust quantification, it is widely used as a diagnostic tool in clinical microbiology. Due to recent advances, both the theoretical background and the practical, current applications related to the quantification of nucleic acids of eukaryotic parasites need to be updated. In this review, we present the basics of this technology (particularly useful for new users) and consolidate recent advances in the field with a focus on applications to the study of helminths and protozoan parasites.
在寄生虫学领域,基于聚合酶链反应(PCR)的诊断方法在最近几十年中得到了稳步的应用。PCR 技术最近一次大规模的技术改进,也被称为第三代 PCR,是以数字 PCR(dPCR)的形式出现的。目前,市场上最常见的 dPCR 形式是数字液滴 PCR(ddPCR)。与定量实时 PCR(qPCR)不同,数字格式允许对核酸靶标进行高度敏感、绝对定量,并且不需要在开发的测定中包含外部标准。将每个样本分成数千个隔间并使用统计模型也消除了对技术重复的需求。ddPCR 具有前所未有的灵敏度和二进制终点反应的执行能力,不仅允许使用微小的样本量(当处理有限量的 DNA 时尤为重要),而且还最大限度地减少了扩增效率变化和抑制剂存在的影响。由于 ddPCR 具有高通量、灵敏度和稳健定量等出色特性,因此被广泛用作临床微生物学的诊断工具。由于最近的进展,需要更新有关真核寄生虫核酸定量的理论背景和实际应用。在这篇综述中,我们介绍了该技术的基础知识(对新用户特别有用),并整合了该领域的最新进展,重点介绍了在蠕虫和原生动物寄生虫研究中的应用。