Division of Cellular and Gene Therapies, Center for Biologics Evaluation and Research, US Food and Drug Administration, Silver Spring, Maryland, USA; School of Chemical, Materials, and Biomedical Engineering, University of Georgia, Athens, Georgia, USA.
Division of Cellular and Gene Therapies, Center for Biologics Evaluation and Research, US Food and Drug Administration, Silver Spring, Maryland, USA.
Cytotherapy. 2019 Jan;21(1):17-31. doi: 10.1016/j.jcyt.2018.10.008. Epub 2018 Nov 28.
Although a preponderance of pre-clinical data demonstrates the immunosuppressive potential of mesenchymal stromal cells (MSCs), significant heterogeneity and lack of critical quality attributes (CQAs) based on immunosuppressive capacity likely have contributed to inconsistent clinical outcomes. This heterogeneity exists not only between MSC lots derived from different donors, tissues and manufacturing conditions, but also within a given MSC lot in the form of functional subpopulations. We therefore explored the potential of functionally relevant morphological profiling (FRMP) to identify morphological subpopulations predictive of the immunosuppressive capacity of MSCs derived from multiple donors, manufacturers and passages.
We profiled the single-cell morphological response of MSCs from different donors and passages to the functionally relevant inflammatory cytokine interferon (IFN)-γ. We used the machine learning approach visual stochastic neighbor embedding (viSNE) to identify distinct morphological subpopulations that could predict suppression of activated CD4 and CD8 T cells in a multiplexed quantitative assay.
Multiple IFN-γ-stimulated subpopulations significantly correlated with the ability of MSCs to inhibit CD4 and CD8 T-cell activation and served as effective CQAs to predict the immunosuppressive capacity of additional manufactured MSC lots. We further characterized the emergence of morphological heterogeneity following IFN-γ stimulation, which provides a strategy for identifying functional subpopulations for future single-cell characterization and enrichment techniques.
This work provides a generalizable analytical platform for assessing functional heterogeneity based on single-cell morphological responses that could be used to identify novel CQAs and inform cell manufacturing decisions.
尽管大量的临床前数据表明间充质基质细胞(MSCs)具有免疫抑制潜力,但基于免疫抑制能力的显著异质性和缺乏关键质量属性(CQAs)可能导致了不一致的临床结果。这种异质性不仅存在于来自不同供体、组织和制造条件的 MSC 批次之间,也存在于给定的 MSC 批次中,表现为功能亚群。因此,我们探索了功能相关形态分析(FRMP)的潜力,以鉴定预测来自多个供体、制造商和传代数的 MSC 免疫抑制能力的形态亚群。
我们对来自不同供体和传代的 MSC 的单细胞形态反应进行了分析,以响应功能相关的炎症细胞因子干扰素(IFN)-γ。我们使用机器学习方法可视化随机邻居嵌入(viSNE)来识别能够预测在多重定量测定中抑制激活的 CD4 和 CD8 T 细胞的独特形态亚群。
多个 IFN-γ 刺激的亚群与 MSC 抑制 CD4 和 CD8 T 细胞活化的能力显著相关,并作为有效的 CQAs,可预测其他制造 MSC 批次的免疫抑制能力。我们进一步描述了 IFN-γ 刺激后形态异质性的出现,这为识别功能亚群提供了一种策略,可用于未来的单细胞特征和富集技术。
这项工作提供了一种基于单细胞形态反应评估功能异质性的可推广分析平台,可用于鉴定新的 CQAs 并为细胞制造决策提供信息。