Korchak Jennifer A, Wiest Elani F, Zubair Abba C
Center for Regenerative Biotherapeutics, Jacksonville, Florida, USA.
Department of Laboratory Medicine and Pathology, Jacksonville, Florida, USA.
Transfusion. 2023 Feb;63(2):279-287. doi: 10.1111/trf.17156. Epub 2022 Nov 3.
Extracellular vesicles (EVs) have gained interest in the field of regenerative and transfusion medicine. Specifically, current Good Manufacturing Practice (cGMP)-grade EVs produced by mesenchymal stromal cells (MSCs) are an intriguing option for cell-free therapeutics. With the development of cGMP-grade EV products, a simple and reliable method for batch-to-batch consistency is needed.
The objective of this study was to validate a method to semiquantitatively assess the batch-to-batch consistency of isolated EVs. A multiplex bead-based flow cytometric assay containing 37 surface markers and 2 assay control antibody-coated capture beads was validated. Detection limits (n = 10 buffer samples), repeatability (n = 9 EV samples), and intra-observer reproducibility over 2 days (n = 10 EV batches) were assessed. A Spearman correlation matrix was used to evaluate the batch-to-batch consistency of independently isolated EV products (n = 37 surface markers). Batches with a Spearman correlation coefficient ≥0.9 and p < 0.05 were considered statistically indistinguishable from previous batches.
This assay demonstrated robust repeatability as well as intra- and inter-assay reproducibility. In-house batches of EVs were significantly correlated (r ≥ 0.90; p ≤ 1×10 ). Compared with buffer, EV batches had correlation coefficients near zero (r ≤ -0.10; p ≥ 0.12). Commercially sourced EVs significantly correlated with in-house EV batches, but fell below the 90% correlation cutoff (r ≤ 0.71; p ≤ 0.0004).
This time-efficient and technically simple assay offers a robust method of quality control for assessing the batch-to-batch reproducibility of cGMP-grade EV products.
细胞外囊泡(EVs)在再生医学和输血医学领域引起了关注。具体而言,间充质基质细胞(MSCs)产生的现行良好生产规范(cGMP)级EVs是无细胞治疗的一个有趣选择。随着cGMP级EV产品的发展,需要一种简单可靠的方法来确保批次间的一致性。
本研究的目的是验证一种半定量评估分离的EVs批次间一致性的方法。验证了一种基于多重微珠的流式细胞术检测方法,该方法包含37种表面标志物和2种检测对照抗体包被的捕获微珠。评估了检测限(n = 10个缓冲液样本)、重复性(n = 9个EV样本)以及2天内观察者内部的再现性(n = 10个EV批次)。使用Spearman相关矩阵评估独立分离的EV产品(n = 37种表面标志物)的批次间一致性。Spearman相关系数≥0.9且p < 0.05的批次被认为与先前批次在统计学上无显著差异。
该检测方法显示出强大的重复性以及批内和批间的再现性。内部生产的EV批次具有显著相关性(r ≥ 0.90;p ≤ 1×10 )。与缓冲液相比,EV批次的相关系数接近零(r ≤ -0.10;p ≥ 0.12)。商业来源的EVs与内部生产的EV批次显著相关,但低于90%的相关临界值(r ≤ 0.71;p ≤ 0.0004)。
这种省时且技术简单的检测方法为评估cGMP级EV产品的批次间再现性提供了一种强大的质量控制方法。