中国组织工程研究 ›› 0, Vol. ›› Issue (0): 76-80.doi: 10.3969/j.issn.1673-8225.2012.01.016

• 骨髓干细胞 • 上一篇    下一篇

骨髓间充质干细胞移植促进糖尿病大鼠后肢缺血血管的新生

吴春朋1,张  潜2,方  宁1,蔡  争3,石荣书3,刘祖林1,刘金伟1,章  涛1
  

  1. 遵义医学院附属医院,1贵州省细胞工程重点实验室,3介入治疗中心,贵州省遵义市563003;2遵义医学院人体解剖学教研室,贵州省遵义市  563003
  • 收稿日期:2011-07-17 修回日期:2011-09-26
  • 通讯作者: 章涛,博士,教授,遵义医学院附属医院贵州省细胞工程重点实验室,贵州省遵义市 563003 oceanzt@163.com
  • 作者简介:吴春朋★,男,1982年生,河南省濮阳市人,汉族,2011年遵义医学院毕业,硕士,主要从事成体干细胞应用基础研究。 wuchunpeng4894701@126.com

Angiogenesis in lower limb ischemia of diabetic rats after bone mesenchymal stem cellstransplantation

Wu Chun-peng1, Zhang Qian2, Fang Ning1, Cai Zheng3, Shi Rong-shu3, Liu Zu-lin1, Liu Jin-wei1, Zhang Tao1
  

  1. 1Key Laboratory of Cell Engineering, 3Interventional Therapy Center, Affiliated Hospital of Zunyi Medical College, Zunyi  563003, Guizhou Province, China; 2Department of Human Anatomy, Zunyi Medical College, Zunyi  563003, Guizhou Province, China
     
  • Received:2011-07-17 Revised:2011-09-26
  • Contact: Zhang Tao, Doctor, Professor, Key Laboratory of Cell Engineering, Affiliated Hospital of Zunyi Medical College, Zunyi 563003, Guizhou Province, China oceanzt@163.com
  • About author:Wu Chun-peng★, Master, Key Laboratory of Cell Engineering, Affiliated Hospital of Zunyi Medical College, Zunyi 563003, Guizhou Province, China wuchunpeng4894701@126.com

摘要:

背景:骨髓间充质干细胞是否是促进下肢缺血血管新生的主要种子细胞来源呢?
目的:探讨骨髓间充质干细胞肌肉注射移植诱导大鼠糖尿病后肢缺血的血管新生证据。
方法:采用腹腔注射链脲佐菌素(STZ)结合双侧股动脉结扎制备雄性SD大鼠糖尿病后肢缺血模型。自股动脉离断处起分10个点将BrdU标记BMSCs悬液注射入模型大鼠左后肢股直肌和腓肠肌中;右后肢采用等量生理盐水注射作为对照。
结果与结论:移植2 周后模型大鼠双后肢可见血管显影,6周后血管更为丰富,左侧均高于右侧。移植后2周,左后肢股直肌与腓肠肌的毛细血管密度分别高于右后肢的密度(P < 0.05);BrdU标记阳性移植细胞参与了左后肢血管壁构成。表明局部注射移植骨髓间充质干细胞可改善糖尿病后肢缺血大鼠的血供,并参与小血管重建,有助于糖尿病后肢缺血的血管新生。

关键词: 血管新生, 间充质干细胞, 疾病模型, 大鼠, 糖尿病血管病变, 下肢缺血

Abstract:

BACKGROUND: Whether bone marrow mesenchymal stem cells (BMSCs) is the major source of seed cells to promote angiogenesis in lower limb ischemia.
OBJECTIVE: To investigate the angiogenesis evidence in lower limb ischemia of diabetic rats after intramuscular injection of BMSCs.
METHODS: A rat diabetic ischemic lower limb model was made by intraperitoneal injection of streptozotocin plus ligation of the bilateral femoral arteries. BrdU-labeled BMSCs were injected into 10 points of the left lower limb ischemic muscles such as rectus femoris and gastrocnemius beginning at ligation site. The same muscles of right lower limb were injected with equivalent normal saline as control.
RESULTS AND CONCLUSION: Digital subtraction angiography imaging analysis showed that vasculature of bilateral legs in model rats could be observed at 2 weeks post-transplantation, and was obviously increased at 6 weeks after implantation of BMSCs, the vasculature in left leg was always higher than that in the right. At 2 weeks after transplantation, capillary densities of rectus femoris and gastrocnemius in left leg were higher than right leg (P < 0.05), and some implanted BMSCs with positive BrdU in vascular wall, which might have been incorporated into the vasculature. It is indicated that transplantation of BMSCs by local injection can improve blood supply and contribute to angiogenesis in lower limb ischemia of diabetic rats.

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