RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Qualification of a flow cytometry-based method for the evaluation of in vitro cytotoxicity of GTA002 natural killer cell therapy.
Qualification of a flow cytometry-based method for the evaluation of in vitro cytotoxicity of GTA002 natural killer cell therapy.
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本文提供了一个“案例研究”,说明从早期临床阶段如何规划和执行细胞治疗的分析方法开发,并预见到需要建立稳健的程序,以克服方法验证期间的科学和监管挑战。
基于自然杀伤(NK)细胞的疗法为实体瘤和血液系统恶性肿瘤的治疗提供了突破性机会。在良好生产规范(GMP)下进行NK细胞生产是复杂的,需要通过质量控制(QC)对产品的安全性和有效性进行细致评估。放行检测包括监测体外细胞扩增、分化、纯度、表型和细胞毒性。由于NK细胞是生物活性产品,效力方法的建立尤为重要;替代性或不当的检测方法可能导致合格批次被拒收,或使虚假符合效力规格的产品被放行,从而可能在临床试验中导致低疗效。由于基于细胞的治疗产品高度异质,目前尚无通用的产品表征指南,开发者必须投入大量精力建立和验证稳健且适合目的的检测方法。在本研究中,我们描述了一种基于流式细胞术的分析方法的确认程序,用于评估GTA002 NK细胞的体外效力,该方法将应用于Glycostem Therapeutics的oNKord /inaleucel 异体现货NK细胞产品,该产品正在急性髓系白血病(AML)患者中进行I/IIa期临床试验(NCT04632316)。
首先,我们建立了多色流式细胞术检测 panel,以定量测定单独培养及在不同 E:T 比例(10:1、3:1、1:1)共培养条件下效应(E)GTA002 细胞和白血病靶(T)K562 细胞的数量。随后,效应 potency 以细胞毒性百分比进行定性表达。接下来,我们定义了方法确认方案,以评估这些检测的关键特征,包括准确度、精密度、线性、范围、特异性、稳健性和残留;并为所有参数确定了定量接受标准。本文报告了确认程序的结果,并依据预先定义的接受标准进行了讨论。
总体而言,我们的方法在所有参数上均表现出稳健的性能,确保将NK细胞效力的QC合规评估作为临床批次放行检测组合的一部分。值得注意的是,我们确定了在推进方法验证以支持关键性临床研究时需要解决的相关方面。
Natural Killer (NK) cell-based therapies represent a ground-breaking opportunity for the treatment of solid tumors and hematological malignancies. NK cell manufacturing under good manufacturing practice (GMP) is complex and requires attentive assessment the product's safety and efficacy through quality control (QC). Release testing includes monitoring of in vitro cell expansion, differentiation, purity, phenotype, and cytotoxicity. As NK cells are biologically active products, the establishment of potency methods is particularly relevant; surrogate or improper assays can lead to rejection of qualifiable batches or to release of products that falsely meet potency specifications, potentially causing low efficacy during clinical trials. As cell-based therapeutics are highly heterogeneous, no universal guidelines for product characterization are available, and developers must invest significant effort in establishing and validating robust and fit-to-purpose assays. In this study, we describe the qualification procedure of a flow cytometry-based analytical method to assess in vitro potency of GTA002 NK cells, to be applied to oNKord /inaleucel allogeneic off-the-shelf NK cell product from Glycostem Therapeutics, undergoing a Phase I/IIa clinical trial in acute myeloid leukemia (AML) patients (NCT04632316).
First, we established multi-color flow cytometry panels to quantitatively determine the count of effector (E) GTA002 cells and leukemia target (T) K562 cells alone and in co-culture at different E:T ratios (10:1, 3:1, 1:1). Effector potency was then qualitatively expressed as percentage of cytotoxicity. Next, we defined protocols for method qualification to assess the pivotal features of the assays, including accuracy, precision, linearity, range, specificity, robustness, and carryover; quantitative acceptance criteria were determined for all parameters. Results of the qualification procedure are reported and discussed against pre-defined acceptance criteria.
Overall, our methods show robust performance across all parameters, ensuring QC-compliant assessment of NK cell potency as part of the release test panel for clinical batches. Notably, we identified relevant aspects to address when progressing towards method validation to support pivotal clinical studies.
This article provides a "case-study" of how analytical method development for cell therapeutics is planned and executed from early clinical stages, anticipating the need to establish robust procedures to overcome scientific and regulatory challenges during method validation.
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