Zhang Fengli, Ren Huaijuan, Shao Xiaohu, Zhuang Chao, Chen Yantian, Qi Nianmin
Cell Culture and Bioprocess Engineering Lab, School of Pharmacy, Shanghai Jiao Tong University, Shanghai, China.
Engineering Research Center of Cell & Therapeutic Antibody, Ministry of Education, and School of Pharmacy, Shanghai Jiao Tong University, Shanghai, China.
PeerJ. 2017 May 17;5:e3301. doi: 10.7717/peerj.3301. eCollection 2017.
Adipose-derived mesenchymal stem cells (ADSCs) have shown great potential in the treatment of various diseases. However, the optimum short-term storage condition of ADSCs in 2∼8 °C is rarely reported. This study aimed at optimizing a short-term storage condition to ensure the viability and function of ADSCs before transplantation.
Preservation media and durations of storage were evaluated by cell viability, apoptosis, adhesion ability and colony-forming unit (CFU) capacity of ADSCs. The abilities of cell proliferation and differentiation were used to optimize cell concentrations. Optimized preservation condition was evaluated by cell surface markers, cell cycle and immunosuppressive capacity.
A total of 5% human serum albumin in multiple electrolytes (ME + HSA) was the optimized medium with high cell viability, low cluster rate, good adhesion ability and high CFU capacity of ADSCs. Duration of storage should be limited to 24 h to ensure the quality of ADSCs before transplantation. A concentration of 5 × 10 cells/ml was the most suitable cell concentration with low late stage apoptosis, rapid proliferation and good osteogenic and adipogenic differentiation ability. This selected condition did not change surface markers, cell cycle, indoleamine 2, 3-dioxygenase 1 (IDO1) gene expression and kynurenine (Kyn) concentration significantly.
In this study, ME + HSA was found to be the best medium, most likely due to the supplement of HSA which could protect cells, the physiological pH (7.4) of ME and sodium gluconate ingredient in ME which could provide energy for cells. Duration should be limited to 24 h because of reduced nutrient supply and increased waste and lactic acid accumulation during prolonged storage. To keep cell proliferation and limit lactic acid accumulation, the proper cell concentration is 5× 10 cells/ml. Surface markers, cell cycle and immunosuppressive capacity did not change significantly after storage using the optimized condition, which confirmed our results that this optimized short-term storage condition of MSCs has a great potential for the application of cell therapy.
脂肪来源的间充质干细胞(ADSCs)在多种疾病的治疗中已显示出巨大潜力。然而,ADSCs在2至8°C下的最佳短期储存条件鲜有报道。本研究旨在优化短期储存条件,以确保ADSCs在移植前的活力和功能。
通过ADSCs的细胞活力、凋亡、黏附能力和集落形成单位(CFU)能力来评估保存培养基和储存时间。利用细胞增殖和分化能力来优化细胞浓度。通过细胞表面标志物、细胞周期和免疫抑制能力评估优化后的保存条件。
多种电解质(ME)中添加5%人血清白蛋白(ME + HSA)是优化后的培养基,具有高细胞活力、低聚集率、良好的黏附能力和高ADSCs的CFU能力。储存时间应限制在24小时以内,以确保移植前ADSCs的质量。浓度为5×10个细胞/毫升是最合适的细胞浓度,具有低晚期凋亡率、快速增殖以及良好的成骨和成脂分化能力。这种选定的条件不会显著改变表面标志物、细胞周期、吲哚胺2,3-双加氧酶1(IDO1)基因表达和犬尿氨酸(Kyn)浓度。
在本研究中,发现ME + HSA是最佳培养基,最可能的原因是HSA的补充可保护细胞,ME的生理pH值(7.4)以及ME中的葡萄糖酸钠成分可为细胞提供能量。由于长时间储存期间营养供应减少以及废物和乳酸积累增加,储存时间应限制在24小时以内。为保持细胞增殖并限制乳酸积累,合适的细胞浓度为5×10个细胞/毫升。使用优化条件储存后,表面标志物、细胞周期和免疫抑制能力没有显著变化,这证实了我们的结果,即这种优化的间充质干细胞短期储存条件在细胞治疗应用中具有巨大潜力。