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部分氧化聚乙烯醇导管用于周围神经再生。

Partially oxidized polyvinyl alcohol conduitfor peripheral nerve regeneration.

机构信息

Section of Human Anatomy, Department of Neurosciences, University of Padua, Via Gabelli 65, 35121, Padua, Italy.

Foundation for Biology and Regenerative Medicine, Tissue Engineering and Signaling (TES) ONLUS, Via De Sanctis 10, Caselle di Selvazzano Dentro, 35030, Padua, Italy.

出版信息

Sci Rep. 2018 Jan 12;8(1):604. doi: 10.1038/s41598-017-19058-3.

Abstract

Surgical reconstruction of peripheral nerves injuries with wide substance-loss is still a challenge. Many studies focused on the development of artificial nerve conduits made of synthetic or biological materials but the ideal device has not yet been identified. Here, we manufactured a conduit for peripheral nerve regeneration using a novel biodegradable hydrogel we patented that is oxidized polyvinyl alcohol (OxPVA). Thus, its characteristics were compared with neat polyvinyl alcohol (PVA) and silk-fibroin (SF) conduits, through in vitro and in vivo analysis. Unlike SF, OxPVA and neat PVA scaffolds did not support SH-SY5Y adhesion and proliferation in vitro. After implantation in rat model of sciatic nerve transection, the three conduits sustained the regeneration of the injured nerve filling a gap of 5 mm in 12 weeks. Implanted animals showed a good gait recovery. Morphometric data related to the central portion of the explanted conduit interestingly highlighted a significantly better outcome for OxPVA scaffolds compared to PVA conduits in terms of axon density, also with respect to the autograft group. This study suggests the potential of our novel biomaterial for the development of conduits for clinical use in case of peripheral nerve lesions with substance loss.

摘要

外周神经损伤伴广泛缺损的手术重建仍然是一个挑战。许多研究都集中在开发由合成或生物材料制成的人工神经导管,但尚未确定理想的装置。在这里,我们使用我们专利的新型可生物降解水凝胶氧化聚乙烯醇(OxPVA)制造了一种用于周围神经再生的导管。因此,通过体外和体内分析,将其特性与纯聚乙烯醇(PVA)和丝素(SF)导管进行了比较。与 SF 不同,OxPVA 和纯 PVA 支架在体外不支持 SH-SY5Y 的粘附和增殖。在大鼠坐骨神经横断模型中植入后,三种导管在 12 周内维持了损伤神经的再生,填充了 5mm 的间隙。植入动物表现出良好的步态恢复。与 PVA 导管相比,与自体移植物组相比,有关植入物中心部分的形态计量数据表明 OxPVA 支架在轴突密度方面具有更好的结果。这项研究表明,我们的新型生物材料有可能开发用于治疗伴有物质损失的外周神经损伤的临床用导管。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5678/5766572/8551a2699cd2/41598_2017_19058_Fig1_HTML.jpg

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