Mechanical Engineering Department, Federal University of Santa Catarina, Florianópolis, Brazil.
Materials Engineering Special Coordinating, Federal University of Santa Catarina, Blumenau, Brazil.
Artif Organs. 2021 Aug;45(8):813-818. doi: 10.1111/aor.13942. Epub 2021 Apr 1.
Peripheral nerve injuries affect the quality of life of people worldwide. Despite advances in materials and processing in recent decades, nerve repair remains a challenge. The autograft is considered the most effective nerve repair in cases of serious injuries in which direct suture is not applied. However, the autograft causes the loss of functionality of the donor site, and additionally, there is a limited availability of donor nerves. Nerve conduits emerge as an alternative to the autograft and nowadays some conduits are available for clinical use. Nevertheless, they still need to be optimized for better functional nerve response. This review proposes to analyze the use of aligned electrospun nerve conduits with electrical activity as a strategy to enhance a satisfactory nerve regeneration and functional recovery.
周围神经损伤影响着全球人民的生活质量。尽管近几十年来材料和处理技术取得了进步,但神经修复仍然是一个挑战。在严重损伤的情况下,当无法直接缝合时,自体移植物被认为是最有效的神经修复方法。然而,自体移植物会导致供体部位的功能丧失,此外,供体神经的可用性有限。神经导管作为自体移植物的一种替代方法出现,如今已有一些导管可用于临床应用。然而,它们仍需要进一步优化,以获得更好的神经功能恢复。本综述旨在分析使用具有电活性的取向电纺神经导管作为一种增强满意神经再生和功能恢复的策略。