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高内涵成像的形态景观揭示了增强间充质基质细胞免疫抑制作用的细胞因子预刺激策略。

Morphological landscapes from high content imaging reveal cytokine priming strategies that enhance mesenchymal stromal cell immunosuppression.

机构信息

School of Chemical, Materials and Biomedical Engineering, University of Georgia, Athens, Georgia, USA.

Regenerative Bioscience Center, University of Georgia, Athens, Georgia, USA.

出版信息

Biotechnol Bioeng. 2022 Feb;119(2):361-375. doi: 10.1002/bit.27974. Epub 2021 Nov 17.

Abstract

Successful clinical translation of mesenchymal stromal cell (MSC) products has not been achieved in the United States and may be in large part due to MSC functional heterogeneity. Efforts have been made to identify "priming" conditions that produce MSCs with consistent immunomodulatory function; however, challenges remain with predicting and understanding how priming impacts MSC behavior. The purpose of this study was to develop a high throughput, image-based approach to assess MSC morphology in response to combinatorial priming treatments and establish morphological profiling as an effective approach to screen the effect of manufacturing changes (i.e., priming) on MSC immunomodulation. We characterized the morphological response of multiple MSC lines/passages to an array of Interferon-gamma (IFN-γ) and tumor necrosis factor-⍺ (TNF-⍺) priming conditions, as well as the effects of priming on MSC modulation of activated T cells and MSC secretome. Although considerable functional heterogeneity, in terms of T-cell suppression, was observed between different MSC lines and at different passages, this heterogeneity was significantly reduced with combined IFN-γ/TNF-⍺ priming. The magnitude of this change correlated strongly with multiple morphological features and was also reflected by MSC secretion of immunomodulatory factors, for example, PGE2, ICAM-1, and CXCL16. Overall, this study further demonstrates the ability of priming to enhance MSC function, as well as the ability of morphology to better understand MSC heterogeneity and predict changes in function due to manufacturing.

摘要

间充质基质细胞(MSC)产品的成功临床转化尚未在美国实现,这可能在很大程度上是由于 MSC 功能异质性所致。人们已经努力确定产生具有一致免疫调节功能的 MSC 的“启动”条件;然而,预测和理解启动如何影响 MSC 行为仍然存在挑战。本研究旨在开发一种高通量、基于图像的方法来评估 MSC 对组合启动处理的形态反应,并将形态分析确立为筛选制造变化(即启动)对 MSC 免疫调节影响的有效方法。我们描述了多种 MSC 系/传代数对干扰素-γ(IFN-γ)和肿瘤坏死因子-α(TNF-α)启动条件的形态反应,以及启动对激活 T 细胞和 MSC 分泌组中 MSC 调节的影响。尽管在不同的 MSC 系和不同的传代数之间观察到 T 细胞抑制的功能异质性,但通过联合 IFN-γ/TNF-α 启动可显著降低这种异质性。这种变化的幅度与多种形态特征密切相关,也反映在 MSC 分泌的免疫调节因子上,例如 PGE2、ICAM-1 和 CXCL16。总体而言,这项研究进一步证明了启动增强 MSC 功能的能力,以及形态学更好地理解 MSC 异质性和预测因制造而导致功能变化的能力。

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