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慢病毒介导的脊髓背侧胶质细胞靶向转基因表达:用于研究胶质细胞在慢性疼痛发生机制中的作用的工具。

Lentiviral-mediated targeted transgene expression in dorsal spinal cord glia: tool for the study of glial cell implication in mechanisms underlying chronic pain development.

作者信息

Meunier Alice, Mauborgne Annie, Masson Justine, Mallet Jacques, Pohl Michel

机构信息

INSERM, UMR S 713, Paris F-75013, France.

出版信息

J Neurosci Methods. 2008 Jan 30;167(2):148-59. doi: 10.1016/j.jneumeth.2007.07.022. Epub 2007 Aug 19.

Abstract

Activated glial cells in the dorsal spinal cord take an important part in the development of pain after peripheral nerve injury. Our understanding of mechanisms involved in functional changes of spinal glia remains incomplete. Excepting drugs that completely disrupt glial function, pharmacological studies fail to target glia and to modify locally its function in order to really discriminate the role of neuronal versus glial cells in chronic pain. We developed an intraspinal gene transfer approach using pseudotyped lentiviral-derived vector targeting highly preferentially glial cells. Single microinjection of vector expressing EGFP under a CMV promoter control (LV-EGFP) allowed vector diffusion along a rostro-caudal axis but strictly restricted to the grey matter of the ipsilateral dorsal spinal cord. EGFP transgene was mainly expressed in astrocytes and microglial cells whereas less than 9% of cells containing EGFP were neurons. Notably, LV-EGFP administration and EGFP overexpression in glial cells did neither modify glial activity, nor alter animal's nociceptive or locomotor behaviors. Targeted modulation of the expression of gene of interest in glial cells, closely restricted to a particular region of the spinal cord, may thus represent an interesting approach to refine the understanding of mechanisms by which spinal glial cells participate in pain processing.

摘要

脊髓背角中被激活的胶质细胞在周围神经损伤后疼痛的发生发展中起重要作用。我们对脊髓胶质细胞功能变化所涉及机制的理解仍不完整。除了那些完全破坏胶质细胞功能的药物外,药理学研究未能靶向胶质细胞并局部改变其功能,从而无法真正区分神经元与胶质细胞在慢性疼痛中的作用。我们开发了一种脊髓内基因转移方法,使用伪型慢病毒衍生载体高度优先靶向胶质细胞。在巨细胞病毒(CMV)启动子控制下,单次显微注射表达增强绿色荧光蛋白(EGFP)的载体(LV-EGFP)可使载体沿头尾轴扩散,但严格局限于同侧脊髓背角的灰质。EGFP转基因主要在星形胶质细胞和小胶质细胞中表达,而含有EGFP的细胞中神经元不到9%。值得注意的是,给予LV-EGFP以及胶质细胞中EGFP的过表达既未改变胶质细胞活性,也未改变动物的伤害性感受或运动行为。因此,在脊髓特定区域严格限制对胶质细胞中感兴趣基因表达的靶向调节,可能是一种有助于深化对脊髓胶质细胞参与疼痛处理机制理解的有趣方法。

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