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体外间充质基质细胞自组装模式中的拓扑缺陷是凝聚和软骨形成的预测属性。

Topological defects in self-assembled patterns of mesenchymal stromal cells in vitro are predictive attributes of condensation and chondrogenesis.

机构信息

Critical Analytics for Manufacturing Personalized-medicine (CAMP) Interdisciplinary Research Group, Singapore-MIT Alliance for Research and Technology (SMART), Campus for Research Excellence and Technological Enterprise (CREATE), Singapore, Singapore.

NUS Tissue Engineering Programme, Life Sciences Institute, National University of Singapore, Singapore, Singapore.

出版信息

PLoS One. 2024 Mar 28;19(3):e0297769. doi: 10.1371/journal.pone.0297769. eCollection 2024.

Abstract

Mesenchymal stromal cells (MSCs) are promising therapeutic agents for cartilage regeneration, including the potential of cells to promote chondrogenesis in vivo. However, process development and regulatory approval of MSCs as cell therapy products benefit from facile in vitro approaches that can predict potency for a given production run. Current standard in vitro approaches include a 21 day 3D differentiation assay followed by quantification of cartilage matrix proteins. We propose a novel biophysical marker that is cell population-based and can be measured from in vitro monolayer culture of MSCs. We hypothesized that the self-assembly pattern that emerges from collective-cell behavior would predict chondrogenesis motivated by our observation that certain features in this pattern, namely, topological defects, corresponded to mesenchymal condensations. Indeed, we observed a strong predictive correlation between the degree-of-order of the pattern at day 9 of the monolayer culture and chondrogenic potential later estimated from in vitro 3D chondrogenic differentiation at day 21. These findings provide the rationale and the proof-of-concept for using self-assembly patterns to monitor chondrogenic commitment of cell populations. Such correlations across multiple MSC donors and production batches suggest that self-assembly patterns can be used as a candidate biophysical attribute to predict quality and efficacy for MSCs employed therapeutically for cartilage regeneration.

摘要

间充质基质细胞 (MSCs) 是软骨再生的有前途的治疗剂,包括细胞在体内促进软骨形成的潜力。然而,间充质基质细胞作为细胞治疗产品的工艺开发和监管批准受益于能够预测给定生产批次效力的简便体外方法。当前的标准体外方法包括 21 天的 3D 分化测定,随后定量测定软骨基质蛋白。我们提出了一种新的基于细胞群体的生物物理标记物,可以从间充质基质细胞的体外单层培养中测量。我们假设,从细胞群体行为中出现的自组装模式将预测软骨形成,这是基于我们观察到该模式中的某些特征,即拓扑缺陷,与间充质凝聚相对应。事实上,我们观察到在单层培养的第 9 天,模式的有序程度与稍后从第 21 天的体外 3D 软骨分化估计的软骨形成潜力之间存在很强的预测相关性。这些发现为使用自组装模式来监测细胞群体的软骨形成承诺提供了原理和概念验证。在多个间充质基质细胞供体和生产批次中的这些相关性表明,自组装模式可以用作预测用于软骨再生的治疗性间充质基质细胞质量和功效的候选生物物理属性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b54b/10977694/a5214d7a3731/pone.0297769.g001.jpg

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