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用于周围神经修复的可注射系统和可植入导管。

Injectable systems and implantable conduits for peripheral nerve repair.

机构信息

Department of Surgery, University of Pittsburgh, Pittsburgh, PA, USA.

出版信息

Biomed Mater. 2012 Apr;7(2):024102. doi: 10.1088/1748-6041/7/2/024102. Epub 2012 Mar 29.

Abstract

Acute sensory problems following peripheral nerve injury include pain and loss of sensation. Approximately 360,000 people in the United States suffer from upper extremity paralytic syndromes every year. Restoration of sufficient functional recovery after long-gap peripheral nerve damage remains a clinical challenge. Potential nerve repair therapies have increased in the past decade as the field of tissue engineering expands. The following review describes the use of biomaterials in nerve tissue engineering. Namely, the use of both synthetic and natural biomaterials, including non-degradable and degradable nerve grafts, is addressed. The enhancement of axonal regeneration can be achieved by further modification of the nerve guides. These approaches include injectable hydrogel fillers, controlled drug delivery systems, and cell incorporation. Hydrogels are a class of liquid-gel biomaterials with high water content. Injectable and gelling hydrogels can serve as growth factor delivery vehicles and cell carriers for tissue engineering applications. While natural hydrogels and polymers are suitable for short gap nerve repair, the use of polymers for relatively long gaps remains a clinical challenge.

摘要

外周神经损伤后的急性感觉问题包括疼痛和感觉丧失。美国每年约有 36 万人患有上肢瘫痪综合征。长间隙周围神经损伤后恢复足够的功能恢复仍然是一个临床挑战。随着组织工程领域的发展,潜在的神经修复治疗方法在过去十年中有所增加。以下综述描述了生物材料在神经组织工程中的应用。即,包括不可降解和可降解神经移植物在内的合成和天然生物材料的使用。通过进一步修饰神经导管可以实现轴突再生的增强。这些方法包括可注射水凝胶填充物、控制药物释放系统和细胞掺入。水凝胶是一类具有高含水量的液体凝胶生物材料。可注射和胶凝水凝胶可用作组织工程应用的生长因子传递载体和细胞载体。虽然天然水凝胶和聚合物适用于短间隙神经修复,但聚合物在相对长间隙中的使用仍然是一个临床挑战。

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