帕金森病的基因疗法。

Takao Yasuhara, Isao Date
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引用次数: 3

摘要

帕金森病的特点是黑质纹状体多巴胺能神经元变性,表现为震颤、强直、运动障碍和姿势反射障碍。使用左旋多巴的药物和包括深部脑刺激在内的手术是治疗帕金森病的既定疗法。细胞疗法也是有效的,并且随着包括基因转移在内的分子生物学技术的最新进展而迅速发展。本文综述了利用基因工程细胞移植治疗帕金森病动物模型的离体基因治疗,包括带或不带包被的儿茶酚胺/神经营养因子分泌细胞移植,以及直接注射病毒载体的体内基因治疗,以增加多巴胺的产生,改善多巴胺能神经元的存活,纠正恶化的微环境,或使遗传异常正常化。此外,结合近年来基因治疗的临床试验,阐述了未来的临床应用方向。
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Gene therapy for Parkinson's disease.

Parkinson's disease is characterized by the degeneration of the nigrostriatal dopaminergic neurons with the manifestation of tremor, rigidity, akinesia, and disturbances of postural reflexes. Medication using L-DOPA and surgeries including deep brain stimulation are the established therapies for Parkinson's disease. Cell therapies are also effective and have rapidly developed with the recent advancement in molecular biological technology including gene transfer. In this review, ex vivo gene therapy using genetically engineered cell transplantation for Parkinson's disease model of animals is described, including catecholamine/neurotrophic factor-secreting cell transplantation with or without encapsulation, as well as in vivo gene therapy using direct injection of viral vector to increase dopamine-production, ameliorate the survival of dopaminergic neurons, correct the deteriorated microenvironment, or normalize genetic abnormality. Furthermore, the future directions for clinical application are described together with recent clinical trials of gene therapy.

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