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酪氨酸衍生的聚碳酸酯神经导管在用于桥接猪的节段性神经缺损时会引发促再生细胞外基质的沉积。

Tyrosine-derived polycarbonate nerve guidance tubes elicit proregenerative extracellular matrix deposition when used to bridge segmental nerve defects in swine.

机构信息

Center for Brain Injury & Repair, Department of Neurosurgery, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA.

Center for Neurotrauma, Neurodegeneration & Restoration, Corporal Michael J. Crescenz Veterans Affairs Medical Center, Philadelphia, Pennsylvania, USA.

出版信息

J Biomed Mater Res A. 2021 Jul;109(7):1183-1195. doi: 10.1002/jbm.a.37110. Epub 2020 Oct 12.

Abstract

Promising biomaterials should be tested in appropriate large animal models that recapitulate human inflammatory and regenerative responses. Previous studies have shown tyrosine-derived polycarbonates (TyrPC) are versatile biomaterials with a wide range of applications across multiple disciplines. The library of TyrPC has been well studied and consists of thousands of polymer compositions with tunable mechanical characteristics and degradation and resorption rates that are useful for nerve guidance tubes (NGTs). NGTs made of different TyrPCs have been used in segmental nerve defect models in small animals. The current study is an extension of this work and evaluates NGTs made using two different TyrPC compositions in a 1 cm porcine peripheral nerve repair model. We first evaluated a nondegradable TyrPC formulation, demonstrating proof-of-concept chronic regenerative efficacy up to 6 months with similar nerve/muscle electrophysiology and morphometry to the autograft repair control. Next, we characterized the acute regenerative response using a degradable TyrPC formulation. After 2 weeks in vivo, TyrPC NGT promoted greater deposition of pro-regenerative extracellular matrix (ECM) constituents (in particular collagen I, collagen III, collagen IV, laminin, and fibronectin) compared to commercially available collagen-based NGTs. This corresponded with dense Schwann cell infiltration and axon extension across the lumen. These findings confirmed results reported previously in a mouse model and reveal that TyrPC NGTs were well tolerated in swine and facilitated host axon regeneration and Schwann cell infiltration in the acute phase across segmental defects - likely by eliciting a favorable neurotrophic ECM milieu. This regenerative response ultimately can contribute to functional recovery.

摘要

有前途的生物材料应在适当的大动物模型中进行测试,这些模型应能重现人类的炎症和再生反应。先前的研究表明,酪氨酸衍生的聚碳酸酯(TyrPC)是一种多功能生物材料,在多个学科中有广泛的应用。TyrPC 库已得到充分研究,由数千种具有可调机械特性以及降解和再吸收速率的聚合物组成,这些特性对神经引导管(NGT)很有用。不同 TyrPC 制成的 NGT 已在小动物的节段性神经缺损模型中使用。本研究是对该工作的扩展,评估了两种不同 TyrPC 成分在 1cm 猪周围神经修复模型中制成的 NGT。我们首先评估了一种不可降解的 TyrPC 配方,证明了长达 6 个月的慢性再生功效的概念验证,其神经/肌肉电生理学和形态计量学与自体移植物修复对照相似。接下来,我们使用可降解的 TyrPC 配方来表征急性再生反应。在体内 2 周后,与市售的基于胶原蛋白的 NGT 相比,TyrPC NGT 促进了更多的促再生细胞外基质(ECM)成分(特别是胶原蛋白 I、胶原蛋白 III、胶原蛋白 IV、层粘连蛋白和纤维连接蛋白)的沉积。这与密集的雪旺细胞浸润和穿过管腔的轴突延伸相对应。这些发现证实了先前在小鼠模型中报告的结果,并表明 TyrPC NGT 在猪中耐受性良好,并在急性阶段通过引发有利的神经营养 ECM 环境促进了宿主轴突再生和雪旺细胞浸润-可能最终有助于功能恢复。

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