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用于组织工程应用的挤出胶原纤维:交联方法对机械和生物性能的影响。

Extruded collagen fibres for tissue engineering applications: effect of crosslinking method on mechanical and biological properties.

机构信息

Orthopaedic Research Unit, Department of Surgery, Cambridge University, Addenbrooke's Hospital, Hills Rd, CB22QQ Cambridge, UK.

出版信息

J Mater Sci Mater Med. 2011 Jun;22(6):1569-78. doi: 10.1007/s10856-011-4336-1. Epub 2011 May 10.

Abstract

Reconstituted collagen fibres are promising candidates for tendon and ligament tissue regeneration. The crosslinking procedure determines the fibres' mechanical properties, degradation rate, and cell-fibre interactions. We aimed to compare mechanical and biological properties of collagen fibres resulting from two different types of crosslinking chemistry based on 1-ethyl-3-(3-dimethyllaminopropyl)carbodiimide (EDC). Fibres were crosslinked with either EDC or with EDC and ethylene-glycol-diglycidyl-ether (EDC/EGDE). Single fibres were mechanically tested to failure and bundles of fibres were seeded with tendon fibroblasts (TFs) and cell attachment and proliferation were determined over 14 days in culture. Collagen type I and tenascin-C production were assessed by immunohistochemistry and dot-blotting. EDC chemistry resulted in fibres with average mechanical properties but the highest cell proliferation rate and matrix protein production. EDC/EGDE chemistry resulted in fibres with improved mechanical properties but with a lower biocompatibility profile. Both chemistries may provide useful structures for scaffolding regeneration of tendon and ligament tissue and will be evaluated for in vivo tendon regeneration in future experiments.

摘要

重构胶原纤维是肌腱和韧带组织再生有前途的候选材料。交联过程决定了纤维的机械性能、降解速率和细胞-纤维相互作用。我们旨在比较两种不同的基于 1-乙基-3-(3-二甲基氨基丙基)碳化二亚胺(EDC)的交联化学的胶原纤维的机械和生物学特性。纤维分别用 EDC 或 EDC 和乙二醇二缩水甘油醚(EDC/EGDE)交联。将单根纤维进行机械破坏测试,将纤维束接种肌腱成纤维细胞(TFs),并在培养中测定 14 天内的细胞附着和增殖情况。通过免疫组织化学和斑点印迹法评估 I 型胶原和腱糖蛋白-C 的产生。EDC 化学导致纤维具有平均机械性能,但细胞增殖率和基质蛋白产生率最高。EDC/EGDE 化学导致纤维具有改善的机械性能,但生物相容性较低。这两种化学物质都可能为肌腱和韧带组织的再生支架提供有用的结构,并将在未来的实验中评估其体内肌腱再生的效果。

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