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Neurosurgery. 2011 Jun;68(6):1733-42; discussion 1742. doi: 10.1227/NEU.0b013e31820edd63.
2
Near-infrared fluorescence labeling allows noninvasive tracking of bone marrow stromal cells transplanted into rat infarct brain.近红外荧光标记可实现对移植到大鼠梗死脑内的骨髓基质细胞的非侵入性示踪。
Neurosurgery. 2011 Apr;68(4):1036-47; discussion 1047. doi: 10.1227/NEU.0b013e318208f891.
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Bone marrow stromal cell transplantation attenuates cognitive dysfunction due to chronic cerebral ischemia in rats.骨髓基质细胞移植可减轻大鼠慢性脑缺血引起的认知功能障碍。
Dement Geriatr Cogn Disord. 2010;30(4):293-301. doi: 10.1159/000320486. Epub 2010 Sep 23.
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Expression of cytokines in rat brain with focal cerebral ischemia after grafting with bone marrow stromal cells and endothelial progenitor cells.骨髓基质细胞和内皮祖细胞移植治疗大鼠局灶性脑缺血后细胞因子在脑内的表达。
Cytotherapy. 2011 Jan;13(1):46-53. doi: 10.3109/14653249.2010.510505. Epub 2010 Aug 24.
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Noninvasive transplantation of bone marrow stromal cells for ischemic stroke: preliminary study with a thermoreversible gelation polymer hydrogel.骨髓基质细胞非侵入性移植治疗缺血性脑卒中:一种温敏凝胶聚合物水凝胶的初步研究。
Neurosurgery. 2010 Jun;66(6):1140-7; discussion 1147. doi: 10.1227/01.NEU.0000369610.76181.CF.
6
Synergistic effects of bone marrow stromal cells and a Rho kinase (ROCK) inhibitor, fasudil on axon regeneration in rat spinal cord injury.骨髓基质细胞与 Rho 激酶(ROCK)抑制剂法舒地尔协同促进大鼠脊髓损伤轴突再生。
Neuropathology. 2010 Jun;30(3):241-50. doi: 10.1111/j.1440-1789.2009.01077.x. Epub 2009 Nov 18.
7
Ex vivo-expanded autologous bone marrow-derived mesenchymal stromal cells in human spinal cord injury/paraplegia: a pilot clinical study.体外扩增自体骨髓间充质基质细胞治疗人类脊髓损伤/截瘫:一项初步临床研究。
Cytotherapy. 2009;11(7):897-911. doi: 10.3109/14653240903253857.
8
Neurotrophic actions of bone marrow stromal cells on primary culture of dorsal root ganglion tissues and neurons.骨髓基质细胞对背根神经节组织和神经元原代培养的神经营养作用。
J Mol Neurosci. 2010 Mar;40(3):332-41. doi: 10.1007/s12031-009-9304-6. Epub 2009 Nov 6.
9
Mesenchymal stem cell transplantation in amyotrophic lateral sclerosis: A Phase I clinical trial.肌源性干细胞移植治疗肌萎缩侧索硬化症:I 期临床试验。
Exp Neurol. 2010 May;223(1):229-37. doi: 10.1016/j.expneurol.2009.08.007. Epub 2009 Aug 13.
10
Transplanted bone marrow stromal cells promote axonal regeneration and improve motor function in a rat spinal cord injury model.移植的骨髓基质细胞可促进大鼠脊髓损伤模型中的轴突再生并改善运动功能。
Neurosurgery. 2009 May;64(5):991-9; discussion 999-1000. doi: 10.1227/01.NEU.0000341905.57162.1D.

自体骨髓基质细胞移植治疗中枢神经系统疾病——近期进展及临床应用前景

Autologous bone marrow stromal cell transplantation for central nervous system disorders - recent progress and perspective for clinical application.

作者信息

Kuroda S, Shichinohe H, Houkin K, Iwasaki Y

机构信息

Department of Neurosurgery, Hokkaido University Graduate School of Medicine , Sapporo, Japan.

出版信息

J Stem Cells Regen Med. 2011 Apr 1;7(1):2-13. doi: 10.46582/jsrm.0701002. eCollection 2011.

DOI:10.46582/jsrm.0701002
PMID:24693168
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3908285/
Abstract

There is increasing evidence that the transplanted BMSC significantly promote functional recovery after CNS damage in the animal models of various kinds of CNS disorders, including cerebral infarct, traumatic brain injury and spinal cord injury. However, there are several shortages of information when considering clinical application of BMSC transplantation for patients with CNS disorders. In this review, therefore, we discuss what we should clarify to establish cell transplantation therapy as the scientifically proven entity in clinical situation and describe our recent works for this purpose. The BMSC have the ability to alter their gene expression profile and phenotype in response to the surrounding circumstances and to protect the neurons by producing some neurotrophic factors. They also promote neurite extension and rebuild the neural circuits in the injured CNS. The BMSC can be expanded in vitro using the animal serum-free medium. Pharmacological modulation may accelerate the in vitro proliferation of the BMSC. Using in vivo optical imaging technique, the transplanted BMSC can non-invasively be tracked in the living animals for at least 8 weeks after transplantation. It is urgent issues to develop clinical imaging technique to track the transplanted cells in the CNS and evaluate the therapeutic significance of BMSC transplantation in order to establish it as a definite therapeutic strategy in clinical situation in the future.

摘要

越来越多的证据表明,在包括脑梗死、创伤性脑损伤和脊髓损伤在内的各种中枢神经系统疾病的动物模型中,移植的骨髓间充质干细胞(BMSC)能显著促进中枢神经系统损伤后的功能恢复。然而,在考虑将BMSC移植应用于中枢神经系统疾病患者的临床治疗时,仍存在一些信息不足的问题。因此,在本综述中,我们讨论了为在临床情况下将细胞移植治疗确立为经科学验证的实体,我们需要明确哪些内容,并描述我们为此目的所做的近期工作。BMSC能够根据周围环境改变其基因表达谱和表型,并通过产生一些神经营养因子来保护神经元。它们还能促进神经突延伸,并在受损的中枢神经系统中重建神经回路。BMSC可以使用无动物血清培养基在体外进行扩增。药物调节可能会加速BMSC的体外增殖。利用体内光学成像技术,移植后的BMSC在活体动物中至少可被无创追踪8周。开发临床成像技术以追踪中枢神经系统中移植的细胞,并评估BMSC移植的治疗意义,以便在未来将其确立为临床治疗的明确策略,这是当务之急。