Departamento de Física, Instituto Nacional de Investigaciones Nucleares, Carr. México-Toluca, km 36.5, CP 52750 Ocoyoacac, Edo. Mex., Mexico.
J Mater Sci Mater Med. 2012 Oct;23(10):2583-92. doi: 10.1007/s10856-012-4715-2. Epub 2012 Jul 14.
We studied the use of three biocompatible materials obtained by plasma polymerization of pyrrole (PPy), pyrrole doped with iodine (PPy/I) and a copolymer formed with pyrrole and polyethylene glycol (PPy/PEG), implanted, separately, after a complete spinal cord transection in rats. Motor function assessed with the BBB scale and somatosensory evoked potentials (SEPs) in the implanted rats were studied. Results showed that the highest motor recovery was obtained in rats with PPy/I implants. They also showed a significant reduction in the latency of SEPs. Histological analyses showed no signs of implant rejection; on the contrary, implants based on PPy improved the SEPs conduction and motor function after lesion.
我们研究了三种生物相容性材料的使用,这些材料是通过等离子体聚合吡咯(PPy)、掺杂碘的吡咯(PPy/I)和由吡咯和聚乙二醇形成的共聚物(PPy/PEG)获得的,分别在大鼠完全脊髓横断后进行植入。研究了用 BBB 量表评估运动功能和植入大鼠体感诱发电位(SEPs)。结果表明,植入 PPy/I 的大鼠运动功能恢复最高。它们还显示 SEPs 潜伏期显著降低。组织学分析显示没有排斥迹象;相反,基于 PPy 的植入物改善了损伤后的 SEPs 传导和运动功能。