首页> 外文期刊>Acta biomaterialia >Photo-crosslinked poly(epsilon-caprolactone fumarate) networks for guided peripheral nerve regeneration: material properties and preliminary biological evaluations.
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Photo-crosslinked poly(epsilon-caprolactone fumarate) networks for guided peripheral nerve regeneration: material properties and preliminary biological evaluations.

机译:光交联的聚(ε-己内酯富马酸酯)网络用于指导周围神经再生:材料性能和初步生物学评估。

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摘要

In an effort to achieve suitable biomaterials for peripheral nerve regeneration, we present a material design strategy of combining a crystallite-based physical network and a crosslink-based chemical network. Biodegradable polymer disks and conduits have been fabricated by photo-crosslinking three poly(epsilon-caprolactone fumarate)s (PCLF530, PCLF1250, and PCLF2000), which were synthesized from the precursor poly(epsilon-caprolactone) (PCL) diols with nominal molecular weights of 530, 1250, and 2000 g mol(-1), respectively. Thermal properties such as glass transition temperature (T(g)), melting temperature (T(m)), and crystallinity of photo-crosslinked PCLFs were examined and correlated with their rheological and mechanical properties. Furthermore, in vitro degradation of uncrosslinked and crosslinked PCLFs in PBS crosslinked PCLFs in 1 N NaOH aqueous solution at 37 degrees C was studied. In vitro cytocompatibility, attachment, and proliferation of Schwann cell precursor line SPL201 cells on three PCLF networks were investigated. Crosslinked PCLF2000 with the highest crystallinity and mechanical properties was found to best support cell attachment and proliferation. Using a new photo-crosslinking method, single-lumen crosslinked PCLF nerve conduits without defects were fabricated in a glass mold. Crosslinked PCLF2000 nerve conduits were selected for evaluation in a 1cm gap rat sciatic nerve model. Histological evaluation demonstrated that the material was biocompatible with sufficient strength to hold sutures in place after 6 and 17 weeks of implantation. Nerve cable with myelinated axons was found in the crosslinked PCLF2000 nerve conduit.
机译:为了获得适合于周围神经再生的生物材料,我们提出了将基于微晶的物理网络和基于交联的化学网络相结合的材料设计策略。通过将三种聚(ε-己内酯富马酸酯)(PCLF530,PCLF1250和PCLF2000)光交联来制备可生物降解的聚合物圆盘和导管,它们是由具有标称分子量的前体聚(ε-己内酯)(PCL)二醇合成的分别为530、1250和2000 g mol(-1)。研究了热性能,例如玻璃化转变温度(T(g)),熔融温度(T(m))和光交联PCLF的结晶度,并将其与流变和机械性能相关联。此外,研究了在37 N的1 N NaOH水溶液中PBS交联的PCLF中未交联和交联的PCLF的体外降解。研究了三个PCLF网络上雪旺细胞前体细胞SPL201细胞的体外细胞相容性,附着和增殖。发现具有最高结晶度和机械性能的交联PCLF2000可以最好地支持细胞附着和增殖。使用一种新的光交联方法,在玻璃模具中制造了无缺陷的单腔交联的PCLF神经导管。选择交联的PCLF2000神经导管在1cm间隙大鼠坐骨神经模型中进行评估。组织学评估表明,该材料具有良好的生物相容性,可以在植入6周和17周后将缝合线固定在适当位置。在交联的PCLF2000神经导管中发现带有髓鞘轴突的神经电缆。

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