학술논문

建立Duchenne型肌营养不良鼠的骨髓移植模型 / Establishment of Marrow Transplantation Model in Mice with Duchenne Muscular Dystrophy
Document Type
Academic Journal
Source
中山医科大学学报 / Academic Journal of Sun Yat-Sen University of Medical Sciences. 22(2):89-92
Subject
小鼠
骨髓移植
肌营养不良
疾病模型,动物
Language
Chinese
ISSN
1672-3554
Abstract
【目的】建立Duchenne型肌营养不良鼠(mdx鼠)的骨髓移植模型,摸索有效的放疗剂量。【方法】用体外培养的不同数量的C57BL/6雄鼠的骨髓细胞、骨髓基质细胞、骨髓悬浮细胞,用不同方法移植给不同剂量放疗后的mdx鼠,观察受体鼠的存活率及存活时间,并对死亡鼠作GVHD(移植物抗宿主病)的病理学检测。【结果】16只mdx鼠移植前3d12Gyγ射线照射,在移植后7d内全部死亡,且注射细胞数较多者,存活时间相对较长;8只经6Gyγ射线照射的mdx鼠,移植后60d,存活4只,其中1例经腹腔注射骨髓细胞、1例肌肉局部注射骨髓细胞,移植后7d内死亡;而8Gyγ射线照射的14只mdx鼠,移植后60d10例存活,4例死亡。【结论】本实验条件下,移植前8Gyγ射线放疗较合理,在有效剂量放疗破坏受体骨髓造血系统后,静脉注射移植同种鼠的骨髓细胞、基质细胞、悬浮细胞,mdx鼠存活率较高,且移植细胞数量以1×107个/只鼠为佳。
【Objective】 To establish an marrow transplantation model in micewith Duchenne muscular dystrophy(mdx), in order to study the effective irradiation dose. 【Methods】 Different amounts of bone marrow cells, stromal cells, suspension cells were cultured in vitro from C57BL/6 male mice, and the cells were transplanted into the irradiated mdx mice with different means. The survival rate and survival time were investigated. Histopathology of GVHD (graft versus host disease) was assessed for the died mice. 【Results】 16 mdx mice irradiated with 12 Gy γ-ray 3 d before transplantation died within 7 d, and the mice injected with more cells lived longer; 8 mice irradiated with 6 Gy, 4 of them survived 60 d after transplantation, one of them was transplanted by intraperitoneal injection with bone marrow cells, another was injected by local muscle, both of them died within 7 d after transplantation; 14 mice irradiated with 8 Gy, 10 of them survived 60 d after transplantation, 4 died. 【Conclusion】 This study shows that 8 Gy γ-ray is the best effective irradiation dose. After the hematopoietic system is destroyed by effective irradiation, mdx mice are able to survive longer after injection with syngeneic bone marrow cells, stromal cells, and suspension cells, and the better survive rate can be achieved by injection of 1×107 transplantation cells for each mouse.