Department of Trauma Surgery, Affiliated Hospital of Medical College, Qingdao University, Qingdao 266000, Shandong Province, China.
Neural Regen Res. 2012 Oct 15;7(29):2286-92. doi: 10.3969/j.issn.1673-5374.2012.29.007.
Bone marrow mesenchymal stem cells were isolated from New Zealand white rabbits, culture-expanded and differentiated into Schwann cell-like cells. Autologous platelet-rich plasma and Schwann cell-like cells were mixed in suspension at a density of 1 × 10(6) cells/mL, prior to introduction into a poly (lactic-co-glycolic acid) conduit. Fabricated tissue-engineered nerves were implanted into rabbits to bridge 10 mm sciatic nerve defects (platelet-rich plasma group). Controls were established using fibrin as the seeding matrix for Schwann cell-like cells at identical density to construct tissue-engineered nerves (fibrin group). Twelve weeks after implantation, toluidine blue staining and scanning electron microscopy were used to demonstrate an increase in the number of regenerating nerve fibers and thickness of the myelin sheath in the platelet-rich plasma group compared with the fibrin group. Fluoro-gold retrograde labeling revealed that the number of Fluoro-gold-positive neurons in the dorsal root ganglion and the spinal cord anterior horn was greater in the platelet-rich plasma group than in the fibrin group. Electrophysiological examination confirmed that compound muscle action potential and nerve conduction velocity were superior in the platelet-rich plasma group compared with the fibrin group. These results indicate that autologous platelet-rich plasma gel can effectively serve as a seeding matrix for Schwann cell-like cells to construct tissue-engineered nerves to promote peripheral nerve regeneration.
从新西兰白兔中分离骨髓间充质干细胞,进行培养扩增并分化为施万细胞样细胞。将富血小板血浆和施万细胞样细胞以 1×10(6)个细胞/mL 的密度悬浮混合,然后注入聚(乳酸-共-乙醇酸)导管中。将构建的组织工程神经植入兔子体内,以桥接 10mm 坐骨神经缺损(富血小板血浆组)。对照组采用纤维蛋白作为施万细胞样细胞的种子基质,以相同密度构建组织工程神经(纤维蛋白组)。植入 12 周后,甲苯胺蓝染色和扫描电镜显示,富血小板血浆组再生神经纤维数量和髓鞘厚度均高于纤维蛋白组。荧光金逆行标记显示,富血小板血浆组背根神经节和脊髓前角中荧光金阳性神经元数量多于纤维蛋白组。电生理检查证实,富血小板血浆组的复合肌肉动作电位和神经传导速度优于纤维蛋白组。这些结果表明,自体富血小板血浆凝胶可以有效地作为施万细胞样细胞的种子基质,构建组织工程神经,促进周围神经再生。