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The Effect of Cryopreservation of Bone Marrow Cells from Donor Mice that Carry the egfp Gene, on the Lifespan of Mice after Syngeneic Transplantation

机译:从携带<重点型=“斜体”> EGFP 基因的供体小鼠中骨髓细胞对骨髓细胞的影响,对小鼠的寿命在切面移植物中的寿命

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The effect of cryopreservation of bone marrow cells on the lifespan of mice after syngeneic transplantation has been studied in nonirradiated mice and 7 Gy-irradiated mice. Mice with the enhanced green fluorescent protein gene were the donors. Bone marrow cells were cryopreserved according to the method used in clinical practice in the field of bone marrow autotransplantation in the treatment for patients with cancer. Dimethyl sulfoxide dissolved in polyglucin at the final concentration of 5% acted as a cryoprotectant agent. Transplantation of the thawed stem cells was carried out without washing out the cryoprotectant. No side effects associated with the cryoprotectant toxicity were observed. It has been shown that staining of bonemarrow cells with trypan blue is a more selective technique to evaluate the extent of cell damage after cryopreservation. The mean lifespan of nonirradiated recipient mice was not statistically different from that of the intact control group. In irradiated recipient mice, the mean lifespan increased by 51 ± 2% compared to the group of irradiated controls. The analysis of a blood sample taken from the tail vein of irradiated mice revealed lifelong engraftment of donor-derived cells in the hematopoietic system of the recipient mice. Thus, model experiments on the syngeneic strain of mice showed that cryopreserved bone-marrow cells can be effectively used for cell therapy in autotransplantation in patients after X-ray radiation therapy.
机译:在非辐射小鼠和7 Gy辐照小鼠中研究了在非辐射小鼠中研究了骨髓细胞对小鼠寿命的影响。具有增强的绿色荧光蛋白基因的小鼠是供体。骨髓细胞根据患有癌症患者的骨髓自聚体瓣膜临床实践中使用的方法进行冷冻保存。溶解在聚葡聚糖中的二甲基亚甲醚,终浓度为5%的5%作用为冷冻保护剂。在不洗掉冷冻保护剂的情况下进行解冻干细胞的移植。观察到与冷冻保护剂毒性相关的副作用。已经表明,具有台盼蓝的Bonemarrow细胞染色是一种更具选择性的技术,以评估冷冻保存后的细胞损伤程度。非辐射受体小鼠的平均寿命与完整对照组的统计学上没有统计学不同。在辐照的受体小鼠中,与辐照对照组相比,平均寿命增加51±2%。从辐照小鼠尾静脉中取出的血液样品的分析揭示了受体小鼠造血系统中供体衍生细胞的终身植入。因此,对小鼠同胞菌株的模型实验表明,在X射线放射治疗后,可以有效地用于细胞治疗的细胞治疗细胞治疗。

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