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Characterization and Modulation of Human Mesenchymal Stem Cell Stress Pathway Response Following Hypothermic Storage

机译:低温保存后人间充质干细胞应激途径反应的表征和调节

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摘要

Human mesenchymal stem cell (hMSC) research has grown exponentially in the last decade. The ability to process and preserve these cells is vital to their use in stem cell therapy. As such, understanding the complex, molecular-based stress responses associated with biopreservation is necessary to improve outcomes and maintain the unique stem cell properties specific to hMSC. In this study hMSC were exposed to cold storage (4°C) for varying intervals in three different media. The addition of resveratrol or salubrinal was studied to determine if either could improve cell tolerance to cold. A rapid elevation in apoptosis at 1 hour post-storage as well as increased levels of necrosis through the 24 hours of recovery was noted in samples. The addition of resveratrol resulted in significant improvements to hMSC survival while the addition of salubrinal revealed a differential response based on the media utilized. Decreases in both apoptosis and necrosis together with decreased cell stress/death signaling protein levels were observed following modulation. Further, ER stress and subsequent Unfolded Protein Response (UPR) stress pathway activation was implicated in response to hMSC hypothermic storage. This study is an important first step in understanding hMSC stress responses to cold exposure and demonstrates the impact of targeted molecular modulation of specific stress pathways on cold tolerance thereby yielding improved outcomes. Continued research is necessary to further elucidate the molecular mechanisms involved in hypothermic-induced hMSC cell death. This study has demonstrated the potential for improving hMSC processing and storage through targeting select cell stress pathways.
机译:在过去十年中,人类间充质干细胞(hMSC)的研究呈指数增长。处理和保存这些细胞的能力对于它们在干细胞疗法中的使用至关重要。因此,必须了解与生物保存相关的复杂的,基于分子的应激反应,以改善疗效并维持hMSC特有的独特干细胞特性。在这项研究中,hMSC在三种不同的培养基中以不同的间隔暴露于冷库(4°C)中。研究了白藜芦醇或沙丁胺醇的添加,以确定两者是否都能提高细胞对寒冷的耐受性。在样品中发现在储存后1小时凋亡迅速升高,并且在整个24小时恢复中坏死水平增加。添加白藜芦醇可显着改善hMSC的存活率,而添加salubrinal则可显示基于所用培养基的差异反应。调节后观察到凋亡和坏死的减少以及细胞应激/死亡信号转导蛋白水平的降低。此外,内质网应激和随后的未折叠的蛋白质反应(UPR)应激途径激活牵涉到hMSC低温储存的反应。这项研究是了解hMSC对冷暴露的应激反应的重要第一步,并证明了特定应激途径的靶向分子调节对耐寒性的影响,从而产生了改善的结果。为了进一步阐明涉及低温诱导的hMSC细胞死亡的分子机制,有必要进行持续的研究。这项研究证明了通过靶向选择细胞应激途径改善hMSC加工和储存的潜力。

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