对基于细胞外囊泡的自然杀伤细胞衍生癌症生物疗法的高灵敏度细胞存活率效力测定--重氮酚嗪染料的评估。

Frederic St-Denis-Bissonnette, Shirley Qiu, Sarah E. Cummings, Melanie Kirkby, Yohannes Haile, Sarah Wassmer, Gauri Muradia, Jelica Mehic, Andrew Stalker, Amit Shrestha, Michele Ardolino, Seung-Hwan Lee, Dylan Burger, Lisheng Wang, Jessie R. Lavoie
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引用次数: 0

摘要

天然杀伤细胞衍生的细胞外囊泡(NK-EVs)是针对各种癌症的候选生物治疗药物。然而,要对 NK-EV 的细胞毒性进行可靠评估,就必须采用标准化的效力测定方法。本研究旨在全面评估一种高灵敏度的基于石炭酸吩嗪的细胞活力效力测定法(测量细胞的氧化还原代谢),以量化 NK-EV 在体外对白血病 K562 细胞(悬浮模型)和乳腺癌 MDA-MB-231 细胞(粘附模型)的细胞毒性。根据监管指南规定的常用分析参数,包括特异性、选择性、准确性、精确性、线性、范围和稳定性,对该检测方法进行了评估。我们的结果表明,这种基于利马唑啉的细胞活力效力测定法可靠且可重复地测量了 NK-EV 对两种癌症模型的细胞毒性活性的剂量反应。该检测方法的精确度为 5%,运行内和运行间变异性为 20%。检测信号表明,NK-EV 对癌症靶细胞具有特异性和选择性,这体现在用 NK-EV 处理 5 小时后,癌细胞的存活率降低,而且没有任何可检测到的干扰或背景。对目标癌细胞的线性分析表明,在每次测试中,5000 个 K562 细胞和 1000 个 MDA-MB-231 细胞的密度具有很强的线性,且范围一致。重要的是,NK-EV 的细胞毒性剂量反应与与 NK-EV 日冕相关的已知细胞毒性因子(FasL、GNLY、GzmB、PFN 和 IFN-γ)的水平有很强的相关性(|ρ| ∼ 0.8),从而验证了该检测方法的准确性。该测定还能区分降解的 NK-EV 的细胞毒性变化,表明该测定有能力检测样品完整性的潜在损失。与其他常见的生物检测方法(如流式细胞术、细胞计数、乳酸脱氢酶释放检测、DNA 结合报告检测和汇合检测)相比,我们的结果支持这种高灵敏度、基于利马唑啉的活力效力检测法,它是一种高通量的定量方法,可用于评估 NK-EV 对悬浮和粘附癌症模型的细胞毒性,从而评估 NK-EV 的生物治疗效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Evaluation of resazurin phenoxazine dye as a highly sensitive cell viability potency assay for natural killer cell-derived extracellular vesicle-based cancer biotherapeutics

Evaluation of resazurin phenoxazine dye as a highly sensitive cell viability potency assay for natural killer cell-derived extracellular vesicle-based cancer biotherapeutics

Natural killer cell-derived extracellular vesicles (NK-EVs) are candidate biotherapeutics against various cancers. However, standardised potency assays are necessary for a reliable assessment of NK-EVs' cytotoxicity. This study aims to thoroughly evaluate a highly sensitive resazurin phenoxazine-based cell viability potency assay (measurement of the cellular redox metabolism) for quantifying the cytotoxicity of NK-EVs against leukaemia K562 cells (suspension model) and breast cancer MDA-MB-231 cells (adherent model) in vitro. The assay was evaluated based on common analytical parameters setforth by regulatory guidelines, including specificity, selectivity,accuracy, precision, linearity, range and stability. Our results revealed that this resazurin-based cell viability potency assay reliably and reproducibly measured a dose-response of NK-EVs’ cytotoxic activity against both cancer models. The assay showed precision with 5% and 20% variation for intra-run and inter-run variability. The assay signal showed specificity and selectivity of NK-EVs against cancer target cells, as evidenced by the diminished viability of cancer cells following a 5-hour treatment with NK-EVs, without any detectable interference or background. The linearity analysis of target cancer cells revealed strong linearity for densities of 5000 K562 and 1000 MDA-MB-231 cells per test with a consistent range. Importantly, NK-EVs’ dose-response for cytotoxicity showed a strong correlation (|ρ| ∼ 0.8) with the levels of known cytotoxic factors associated with the NK-EVs’ corona (FasL, GNLY, GzmB, PFN and IFN-γ), thereby validating the accuracy of the assay. The assay also distinguished cytotoxicity changes in degraded NK-EVs, indicating the ability of the assay to detect the potential loss of sample integrity. Compared to other commonly reported bioassays (i.e., flow cytometry, cell counting, lactate dehydrogenase release assay, DNA-binding reporter assay and confluence assay), our results support this highly sensitive resazurin-based viability potency assay as a high-throughput and quantitative method for assessing NK-EVs’ cytotoxicity against both suspension and adherent cancer models for evaluating NK-EVs’ biotherapeutics.

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