Fleisch Valerie C, Fraser Brittany, Allison W Ted
Centre for Prions & Protein Folding Disease, University of Alberta, Edmonton, Alberta, Canada.
Biochim Biophys Acta. 2011 Mar;1812(3):364-80. doi: 10.1016/j.bbadis.2010.10.012. Epub 2010 Oct 28.
Zebrafish possess a robust, innate CNS regenerative ability. Combined with their genetic tractability and vertebrate CNS architecture, this ability makes zebrafish an attractive model to gain requisite knowledge for clinical CNS regeneration. In treatment of neurological disorders, one can envisage replacing lost neurons through stem cell therapy or through activation of latent stem cells in the CNS. Here we review the evidence that radial glia are a major source of CNS stem cells in zebrafish and thus activation of radial glia is an attractive therapeutic target. We discuss the regenerative potential and the molecular mechanisms thereof, in the zebrafish spinal cord, retina, optic nerve and higher brain centres. We evaluate various cell ablation paradigms developed to induce regeneration, with particular emphasis on the need for (high throughput) indicators that neuronal regeneration has restored sensory or motor function. We also examine the potential confound that regeneration imposes as the community develops zebrafish models of neurodegeneration. We conclude that zebrafish combine several characters that make them a potent resource for testing hypotheses and discovering therapeutic targets in functional CNS regeneration. This article is part of a Special Issue entitled Zebrafish Models of Neurological Diseases.
斑马鱼具有强大的先天性中枢神经系统再生能力。结合其遗传易处理性和脊椎动物中枢神经系统结构,这种能力使斑马鱼成为一个有吸引力的模型,有助于获取临床中枢神经系统再生所需的知识。在治疗神经疾病时,可以设想通过干细胞疗法或激活中枢神经系统中潜在的干细胞来替代丢失的神经元。在此,我们综述了相关证据,即放射状胶质细胞是斑马鱼中枢神经系统干细胞的主要来源,因此激活放射状胶质细胞是一个有吸引力的治疗靶点。我们讨论了斑马鱼脊髓、视网膜、视神经和高级脑中枢的再生潜力及其分子机制。我们评估了为诱导再生而开发的各种细胞消融范例,特别强调需要(高通量)指标来表明神经元再生已恢复感觉或运动功能。我们还研究了在该领域开发斑马鱼神经退行性疾病模型时,再生可能带来的潜在干扰因素。我们得出结论,斑马鱼具备多种特性,使其成为检验假说和发现功能性中枢神经系统再生治疗靶点的有力资源。本文是名为“神经疾病的斑马鱼模型”特刊的一部分。