Sakai Yoshihito, Matsuyama Yukihiro, Takahashi Katsuya, Sato Tomoya, Hattori Tatsuya, Nakashima Shojiro, Ishiguro Naoki
Department of Orthopaedics, Nagoya University School of Medicine, Nagoya City, Japan.
Biomed Mater Eng. 2007;17(3):191-7.
For peripheral nerve regeneration, three-dimensional distribution and growth of cells within the porous scaffold are of clinical significance. We demonstrate that cultured rat Schwann cells and neurospheres grow in vitro on new artificial nerve conduits made with photocrosslinked hyaluronic acid (HA). HA tubular conduits have an inner diameter of 1.2 mm with porous nano-structure of 50 microm. After 3 weeks of cultivation, HA conduits remained circular with a round lumen, and construct of cell-conduits maintained the size and shape of the original architecture of the tube. HA itself has the function to facilitate a pathway for cellular and axonal ingrowth during peripheral nerve regeneration. These findings provide the feasibility of using the HA conduits for better cell adhesion and differentiation, leading to axonal regeneration in peripheral nerve reconstruction.
对于周围神经再生而言,多孔支架内细胞的三维分布和生长具有临床意义。我们证明,培养的大鼠雪旺细胞和神经球在由光交联透明质酸(HA)制成的新型人工神经导管上进行体外生长。HA管状导管的内径为1.2毫米,具有50微米的多孔纳米结构。培养3周后,HA导管保持圆形且管腔呈圆形,细胞-导管构建体保持了原始管状结构的尺寸和形状。HA本身具有促进周围神经再生过程中细胞和轴突向内生长途径的功能。这些发现为使用HA导管实现更好的细胞黏附和分化提供了可行性,从而在外周神经重建中实现轴突再生。