Tian Guoping, Zhou Jin, Wang Jing'e, Xu Bing, Li Li, Zhu Feng, Han Jian, Li Jianping, Zhang Siyang, Luo Xiaoguang
Department of Neurology, Shenyang First People's Hospital, Shenyang 110041, Liaoning Province, China.
Liaoning Blood Center, Shenyang 110044, Liaoning Province, China.
Neural Regen Res. 2012 Sep 5;7(25):1992-9. doi: 10.3969/j.issn.1673-5374.2012.25.011.
To review published data on the biological characteristics, differentiation and applications of adipose-derived stem cells in ischemic diseases.
A computer-based online search of reports published from January 2005 to June 2012 related to the development of adipose-derived stem cells and their transplantation for treatment of cerebral ischemia was performed in Web of Science using the key words "adipose-derived stem cells", "neural-like cells", "transplantation", "stroke", and "cerebral ischemia".
The documents associated with the development of adipose-derived stem cells and their transplantation for treatment of cerebral ischemia were selected, and those published in the last 3-5 years or in authoritative journals were preferred in the same field. Totally 89 articles were obtained in the initial retrieval, of which 53 were chosen based on the inclusion criteria.
Biological characteristics and induced differentiation of adipose-derived stem cells and cell transplantation for disease treatment as well as the underlying mechanism of clinical application.
The advantages of adipose-derived stem cells include their ease of procurement, wide availability, rapid expansion, low tumorigenesis, low immunogenicity, and absence of ethical constraints. Preclinical experiments have demonstrated that transplanted adipose-derived stem cells can improve neurological functions, reduce small regions of cerebral infarction, promote angiogenesis, and express neuron-specific markers. The improvement of neurological functions was demonstrated in experiments using different methods and time courses of adipose-derived stem cell transplantation, but the mechanisms remain unclear.
Further research into the treatment of ischemic disease by adipose-derived stem cell transplantation is needed to determine their mechanism of action.
综述已发表的关于脂肪干细胞在缺血性疾病中的生物学特性、分化及应用的数据。
于2005年1月至2012年6月期间发表的与脂肪干细胞的发育及其移植治疗脑缺血相关的报告进行基于计算机的在线检索,在科学网中使用关键词“脂肪干细胞”、“神经样细胞”、“移植”、“中风”和“脑缺血”。
选择与脂肪干细胞的发育及其移植治疗脑缺血相关的文献,并且优先选择同一领域最近3至5年发表的或发表在权威期刊上的文献。在初步检索中总共获得89篇文章,其中53篇根据纳入标准被选中。
脂肪干细胞的生物学特性和诱导分化、细胞移植治疗疾病以及临床应用的潜在机制。
脂肪干细胞的优点包括易于获取、来源广泛、增殖迅速、致瘤性低、免疫原性低且不存在伦理限制。临床前实验表明,移植的脂肪干细胞可改善神经功能、减少脑梗死小区域、促进血管生成并表达神经元特异性标志物。在使用不同方法和时间进程的脂肪干细胞移植实验中均证实了神经功能的改善,但其机制仍不清楚。
需要进一步研究脂肪干细胞移植治疗缺血性疾病以确定其作用机制。