Kimura Koji, Tabata Yasuhiko
Iwatani Corporation, 3-16, Tsugiya 3-chome, Amagasaki, Hyogo, 661-0965, Japan.
"Cell Biotechnology" group, Department of Plastic and Reconstructive Surgery, Graduate School of Medicine, Kyoto University South Research Bldg. No.1, 53 Kawara-cho Shogoin, Sakyo-ku, Kyoto 606-8507, Japan.
Regen Ther. 2024 Aug 14;26:571-577. doi: 10.1016/j.reth.2024.08.004. eCollection 2024 Jun.
The objective of this study is to evaluate the effect of hydrogen gas on the biological functions of human adipose-derived stem cells (hADSC) in cryopreservation. hADSC were cryopreserved by a commercial cell preservation solution in the presence of hydrogen gas. After cryopreservation at -80 °C, the viability, initial attachment morphology, and biological parameters of cells cryopreserved were evaluated to compare with those of cells cryopreserved in the absence of hydrogen gas. The hydrogen concentration in the cell preservation solution was 2.0 ppm immediately after preparation and after that decreased with time. The presence of hydrogen gas permitted cells to significantly increase the proliferation of cells in addition to the percent initial adhesion. The number of cells in the spread state was significantly high compared with that of hydrogen gas-free cryopreserved cells. The cell cycle measurement with the flow cytometry and measurement of intracellular reactive oxygen species (ROS) were performed to demonstrate an enhanced cell cycle and a decreased ROS production. In the cell cycle assay, the percentage of cells in the mitotic phase increased. The presence of hydrogen gas decreased hydroxyl radicals immediately to a significantly great extent after thawing. It is concluded that the presence of hydrogen gas during cryopreservation is promising to improve the biological behavior of cells after cell thawing in terms of cells viability, proliferation or metabolic activity.
本研究的目的是评估氢气对人脂肪来源干细胞(hADSC)冷冻保存过程中生物学功能的影响。hADSC在氢气存在的情况下,通过一种商业细胞保存溶液进行冷冻保存。在-80°C冷冻保存后,对冷冻保存的细胞的活力、初始附着形态和生物学参数进行评估,并与在无氢气条件下冷冻保存的细胞进行比较。细胞保存溶液中的氢气浓度在制备后立即为2.0 ppm,之后随时间降低。氢气的存在除了使细胞初始黏附百分比增加外,还能显著促进细胞增殖。与无氢气冷冻保存的细胞相比,铺展状态的细胞数量显著增多。通过流式细胞术进行细胞周期测量以及测量细胞内活性氧(ROS),以证明细胞周期增强和ROS产生减少。在细胞周期分析中,有丝分裂期细胞的百分比增加。解冻后,氢气的存在能立即显著降低羟基自由基的水平。得出的结论是,在冷冻保存过程中氢气的存在有望在细胞活力、增殖或代谢活性方面改善细胞解冻后的生物学行为。