Yip Ping K, Wong Liang-Fong, Pattinson Damian, Battaglia Anna, Grist John, Bradbury Elizabeth J, Maden Malcolm, McMahon Stephen B, Mazarakis Nicholas D
Neurorestoration Group, Wolfson CARD, 2 MRC Centre for Developmental Biology, King's College London, Guy's Campus, London Bridge, London SE1 1UL, UK.
Hum Mol Genet. 2006 Nov 1;15(21):3107-18. doi: 10.1093/hmg/ddl251. Epub 2006 Sep 19.
Spinal cord injury often results in permanent and devastating neurological deficits and disability. This is due to the limited regenerative capacity of neurones in the central nervous system (CNS). We recently demonstrated that a transcription factor retinoic acid receptor beta2 (RARbeta2) promoted axonal regeneration in adult sensory neurones located peripherally. However, it is not known if RARbeta2 can promote axonal regeneration in cortical neurones of the CNS. Here, we demonstrate that delivery of RARbeta2 via a lentiviral vector to adult dissociated cortical neurones significantly enhances neurite outgrowth on adult cortical cryosections, which normally provide an unfavourable substrate for growth. We also show that lentiviral-mediated transduction of corticospinal neurones resulted in robust transgene expression in layer V corticospinal neurones and their axonal projections in the corticospinal tract (CST) of the spinal cord. Expression of RARbeta2 in these neurones enhanced regeneration of the descending CST fibres after injury to these axons in the mid-cervical spinal cord. Furthermore, we observed functional recovery in sensory and locomotor behavioural tests in RARbeta2-treated animals. These results suggest that a direct and selective delivery of RARbeta2 to the corticospinal neurones promotes long-distance functional regeneration of axons in the spinal cord and may thus offer new therapeutic gene strategy for the treatment of human spinal cord injuries.
脊髓损伤常导致永久性且严重的神经功能缺损和残疾。这是由于中枢神经系统(CNS)中神经元的再生能力有限。我们最近证明,转录因子视黄酸受体β2(RARβ2)可促进外周成年感觉神经元的轴突再生。然而,尚不清楚RARβ2是否能促进CNS皮质神经元的轴突再生。在此,我们证明,通过慢病毒载体将RARβ2传递给成年离体皮质神经元,可显著增强其在成年皮质冷冻切片上的神经突生长,而成年皮质冷冻切片通常为生长提供不利的底物。我们还表明,慢病毒介导的皮质脊髓神经元转导导致V层皮质脊髓神经元及其在脊髓皮质脊髓束(CST)中的轴突投射中出现强大的转基因表达。在颈髓中部这些轴突受损后,RARβ2在这些神经元中的表达增强了下行CST纤维的再生。此外,我们在接受RARβ2治疗的动物的感觉和运动行为测试中观察到了功能恢复。这些结果表明,将RARβ2直接且选择性地传递给皮质脊髓神经元可促进脊髓中轴突的长距离功能再生,因此可能为治疗人类脊髓损伤提供新的治疗性基因策略。