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首页> 外文期刊>Neuroreport >Use of engineered peripheral nerve autografts for spinal cord repair.
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Use of engineered peripheral nerve autografts for spinal cord repair.

机译:使用工程化的周围神经自体移植物修复脊髓。

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摘要

We developed a clinically compatible protocol for the production of engineered tissue for grafting into the injured spinal cord. We used autologous tissue derived from pre-ligated peripheral nerves, which avoids supply, immunocompatibility and ethical hinderances, combined with non-viral transfection, which is a versatile and non-immunogenic gene transfer method. In-vitro transfection of glial cells or primary tissue from pre-ligated rat peripheral nerve with the neurotrophic gene brain-derived neurotrophic factor significantly enhanced its expression, when quantified or labelled by immunofluorescence. Engineered tissue expressed brain-derived neurotrophic factor after being grafted into the spinal cord of rats that had received spinal contusion injury 3 weeks before. Anatomical and functional assays of repair, conducted on a small cohort, showed that the treatment may promote axonal regeneration and improve motor performance.
机译:我们开发了一种临床兼容的方案,用于生产工程组织以移植到受伤的脊髓中。我们使用源自预先结扎的周围神经的自体组织避免了供应,免疫相容性和道德障碍,并结合了非病毒转染,这是一种通用且非免疫原性的基因转移方法。当用免疫荧光定量或标记时,用神经营养性基因脑源性神经营养因子对预先连接的大鼠周围神经的神经胶质细胞或初级组织进行体外转染,可显着增强其表达。经过工程改造的组织移植到3周前遭受脊髓挫伤的大鼠的脊髓中后,表达了脑源性神经营养因子。在一个较小的队列中进行的修复的解剖学和功能分析表明,该治疗可促进轴突再生并改善运动能力。

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