Hyaluronan, neural stem cells and tissue reconstruction after acute ischemic stroke.

Biomatter Pub Date : 2013-01-01 DOI:10.4161/biom.23863
Pouria Moshayedi, S Thomas Carmichael
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引用次数: 60

Abstract

Focal stroke is a disabling disease with lifelong sensory, motor and cognitive impairments. Given the paucity of effective clinical treatments, basic scientists are developing novel options for protection of the affected brain and regeneration of lost tissue. Tissue bioengineering and stem/progenitor cell treatments have both been individually pursued for stroke neural repair therapies, with some benefit in tissue recovery. Emerging directions in stroke neural repair approaches combine these two therapies to use biopolymers with stem/progenitor transplants to promote greater cell survival in the transplant and directed delivery of bioactive molecules to the transplanted cells and the adjacent injured tissue. In this review the background literature on a combined use of neural stem/progenitor cells encapsulated in hyaluronan gels is discussed and the way this therapeutic approach can affect the important processes involved in brain tissue reconstruction, such as angiogenesis, axon regeneration, neural differentiation and inflammation is clarified. The glycosaminoglycan hyaluronan can optimize those processes and be employed in a successful neural tissue engineering approach.

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急性缺血性脑卒中后透明质酸、神经干细胞与组织重建。
局灶性中风是一种终身感觉、运动和认知障碍的致残疾病。鉴于缺乏有效的临床治疗方法,基础科学家正在开发新的选择来保护受影响的大脑和再生失去的组织。组织生物工程和干细胞/祖细胞治疗都是中风神经修复治疗的单独追求,在组织恢复方面有一些好处。中风神经修复方法的新兴方向将这两种疗法结合起来,使用生物聚合物和干细胞/祖细胞移植来促进移植细胞的更大存活,并将生物活性分子定向递送到移植细胞和邻近的损伤组织中。本文综述了透明质酸凝胶包裹神经干/祖细胞联合应用的背景文献,并阐明了这种治疗方法如何影响脑组织重建的重要过程,如血管生成、轴突再生、神经分化和炎症。糖胺聚糖透明质酸可以优化这些过程,并应用于成功的神经组织工程方法。
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