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首页> 外文期刊>Journal of biomaterials and tissue engineering >Evaluation of Extracellular Matrix-Based Nerve Conduits for Long-Gap Peripheral Nerve Repair in a Goat Model
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Evaluation of Extracellular Matrix-Based Nerve Conduits for Long-Gap Peripheral Nerve Repair in a Goat Model

机译:山羊模型中基于细胞外基质的神经导管对长间隙周围神经修复的评估

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摘要

Peripheral nerve injury is a common traumatic illness in clinic, and long-gap injury in particular has been difficult to repair. In this study, a new type of biological nerve conduits with tunable diameters and lengths were fabricated from extracellular matrices (ECM) derived from porcine small intestinal submucosa. A peroneal nerve defect model was established by removing the left common peroneal nerve of pre-defined lengths in goats. The biological conduits were sutured in and their functions to repair 2 cm, 4 cm, 6 cm and 8 cm nerve defects were investigated for a 12 month period. Electrophysiological, histological, and TEM examinations showed normal nerve conductive velocities and regeneration of myelinated nerve fibers in 2 cm and 4 cm defects grafted with ECM-based conduits. The effects of these biological conduits on the repair of 2 cm and 4 cm nerve defects were comparable to those of allograft nerves. The repair function of nerve conduits was found to decrease with the defect lengths. The ECM-based nerve conduits may possess advantageous bioactive properties to support nerve tissue regeneration and have potential for future clinical use in long-gap nerve injury repair.
机译:周围神经损伤是临床上常见的创伤性疾病,尤其是长间隙损伤很难修复。在这项研究中,从猪小肠粘膜下层细胞外基质(ECM)制造了一种新型的直径和长度可调的生物神经导管。通过去除山羊中预定长度的左腓总神经建立腓神经缺损模型。缝合生物导管,并研究其修复2厘米,4厘米,6厘米和8厘米神经缺损的功能,为期12个月。电生理,组织学和TEM检查显示,正常的神经传导速度和2厘米和4厘米缺损中植入了基于ECM的导管的髓鞘神经纤维再生。这些生物导管对2 cm和4 cm神经缺损的修复作用与同种异体神经相当。发现神经导管的修复功能随着缺损长度的增加而降低。基于ECM的神经导管可能具有有利的生物活性,可支持神经组织的再生,并具有在长间隙神经损伤修复中未来临床应用的潜力。

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