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基因素作为一种有效、生物相容、抗炎的神经导管交联方法的应用。

The Use of Genipin as an Effective, Biocompatible, Anti-Inflammatory Cross-Linking Method for Nerve Guidance Conduits.

机构信息

Tissue Engineering Research Group (TERG), Department of Anatomy and Regenerative Medicine, Royal College of Surgeons in Ireland, Dublin 2, D02YN77, Ireland.

Trinity Centre for Biomedical Engineering (TCBE), Trinity College Dublin, Dublin, D02PN40, Ireland.

出版信息

Adv Biosyst. 2020 Mar;4(3):e1900212. doi: 10.1002/adbi.201900212. Epub 2020 Feb 6.

DOI:10.1002/adbi.201900212
PMID:32293152
Abstract

A number of natural polymer biomaterial-based nerve guidance conduits (NGCs) are developed to facilitate repair of peripheral nerve injuries. Cross-linking ensures mechanical integrity and desired degradation properties of the NGCs; however, common methods such as formaldehyde are associated with cellular toxicity. Hence, there is an unmet clinical need for alternative nontoxic cross-linking agents. In this study, collagen-based NGCs with a collagen/chondroitin sulfate luminal filler are used to study the effect of cross-linking on mechanical and structural properties, degradation, biocompatibility, and immunological response. A simplified manufacturing method of genipin cross-linking is developed, by incorporating genipin into solution prior to freeze-drying the NGCs. This leads to successful cross-linking as demonstrated by higher cross-linking degree and similar tensile strength of genipin cross-linked conduits compared to formaldehyde cross-linked conduits. Genipin cross-linking also preserves NGC macro and microstructure as observed through scanning electron microscopy and spectral analysis. Most importantly, in vitro cell studies show that genipin, unlike the formaldehyde cross-linked conduits, supports the viability of Schwann cells. Moreover, genipin cross-linked conduits direct macrophages away from a pro-inflammatory and toward a pro-repair state. Overall, genipin is demonstrated to be an effective, safe, biocompatible, and anti-inflammatory alternative to formaldehyde for cross-linking clinical grade NGCs.

摘要

许多基于天然聚合物生物材料的神经引导导管(NGC)被开发出来,以促进周围神经损伤的修复。交联确保了 NGC 的机械完整性和所需的降解特性;然而,常见的方法,如甲醛,与细胞毒性有关。因此,临床上需要替代非毒性的交联剂。在这项研究中,使用基于胶原蛋白的 NGC,其内腔填充有胶原蛋白/硫酸软骨素,以研究交联对机械和结构特性、降解、生物相容性和免疫反应的影响。通过在 NGC 冷冻干燥前将京尼平掺入溶液中,开发了一种简化的京尼平交联制造方法。这导致了成功的交联,京尼平交联导管的交联程度更高,拉伸强度与甲醛交联导管相似。扫描电子显微镜和光谱分析表明,京尼平交联还保留了 NGC 的宏观和微观结构。最重要的是,体外细胞研究表明,与甲醛交联导管不同,京尼平支持雪旺细胞的活力。此外,京尼平交联导管将巨噬细胞从促炎状态引导向修复状态。总的来说,京尼平被证明是一种有效的、安全的、生物相容的、抗炎的替代甲醛交联临床级 NGC 的方法。

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