与 Me2SO 接触的 hMSCs 的渗透损伤和细胞毒性:细胞大小分布的影响。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-08-02 DOI:10.1016/j.cryobiol.2024.104943
Gabriele Traversari, Antonio Mario Locci, Alessandro Concas, Nicola Lai, Alberto Cincotti
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引用次数: 0

摘要

论文讨论了细胞大小对 UCB 的 hMSCs 与 Me2SO 接触时产生的渗透激增的细胞毒性和扩增裂解的影响。文章以作者最近提出的数学模型为基础,该模型适用于大小一致的细胞群。其目的是利用种群平衡方程方法,将更现实的细胞大小分布情况纳入模型,从而增强模型的相关性。这项研究比较了多大小模型和单大小模型在描述系统行为方面的能力,实验测量是通过细胞荧光测定法和库尔特计数器进行的,首先将 hMSCs 悬浮在高渗的 Me2SO 溶液中(在不同的渗透压、系统温度和接触时间下),然后(在室温下)通过离心造粒,再将细胞悬浮回等渗条件下。模拟结果表明,对于特定系统 hMSCs/Me2SO 而言,扩增裂解和细胞毒性效应不受细胞大小的影响,从而证实了作者迄今为止通过单一细胞大小模型所发现的结果。另一方面,模拟结果表明,当改变模型的可调参数(这些参数预计会因细胞系的不同而变化)时,扩增裂解对细胞大小敏感,而细胞毒性则不敏感,主要受外部 CPA 浓度和接触持续时间的影响。更具体地说,研究发现较小的细胞比较大的细胞更容易受到扩增裂解的影响。研究结果表明,不同的 hMSCs 细胞可能需要多种大小的模型来评估低温保存过程中渗透压偏移对细胞造成的损伤。
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Osmotic injury and cytotoxicity for hMSCs in contact with Me2SO: The effect of cell size distribution

The paper discusses the impact of cell size on cytotoxicity and expansion lysis during the osmotic excursions resulting from the contact of hMSCs from UCB with Me2SO. It builds upon the mathematical model recently presented by the authors, which pertains to a population of cells with uniform size. The objective is to enhance the model's relevance by incorporating the more realistic scenario of cell size distribution, utilizing a Population Balance Equations approach. The study compares the capability of the multiple-sized model to the single-sized one to describe system behavior experimentally measured through cytofluorimetry and Coulter counter when, first, suspending hMSCs in hypertonic solutions of Me2SO (at varying osmolality, system temperature, and contact times), and then (at room temperature) pelleting by centrifugation before suspending the cells back to isotonic conditions. Simulations demonstrate that expansion lysis and cytotoxic effect are not affected by cell size for the specific system hMSCs/Me2SO, thus confirming what was found so far by the authors through a single-size model. On the other hand, simulations show that, when varying the adjustable parameters of the model that are expected to change from cell to cell lineages, expansion lysis is sensitive to cell size, while cytotoxicity is not, being mainly influenced by external CPA concentration and contact duration. More specifically, it is found that smaller cells suffer expansion lysis more than larger ones. The findings suggest that different cells from hMSCs may require a multiple-sized model to assess cell damage during osmotic excursions in cryopreservation.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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