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基因表达模式揭示了受损脊髓中按时间编排的伤口愈合反应。

Patterns of gene expression reveal a temporally orchestrated wound healing response in the injured spinal cord.

作者信息

Velardo Margaret J, Burger Corinna, Williams Philip R, Baker Henry V, López M Cecilia, Mareci Thomas H, White Todd E, Muzyczka Nicholas, Reier Paul J

机构信息

Department of Neuroscience, McKnight Brain Institute of the University of Florida, Gainesville, Florida 32610-0244, USA.

出版信息

J Neurosci. 2004 Sep 29;24(39):8562-76. doi: 10.1523/JNEUROSCI.3316-04.2004.

Abstract

Spinal cord injury (SCI) induces a progressive pathophysiology affecting cell survival and neurological integrity via complex and evolving molecular cascades whose interrelationships are not fully understood. The present experiments were designed to: (1) determine potential functional interactions within transcriptional expression profiles obtained after a clinically relevant SCI and (2) test the consistency of transcript expression after SCI in two genetically and immunologically diverse rat strains characterized by differences in T cell competence and associated inflammatory responses. By interrogating Affymetrix U34A rat genome GeneChip microarrays, we defined the transcriptional expression patterns in midcervical contusion lesion sites between 1 and 90 d postinjury of athymic nude (AN) and Sprague Dawley (SD) strains. Stringent statistical analyses detected significant changes in 3638 probe sets, with 80 genes differing between the AN and SD groups. Subsequent detailed functional categorization of these transcripts unveiled an overall tissue remodeling response that was common to both strains. The functionally organized gene profiles were temporally distinct and correlated with repair indices observed microscopically and by magnetic resonance microimaging. Our molecular and anatomical observations have identified a novel, longitudinal perspective of the post-SCI response, namely, that of a highly orchestrated tissue repair and remodeling repertoire with a prominent cutaneous wound healing signature that is conserved between two widely differing rat strains. These results have significant bearing on the continuing development of cellular and pharmacological therapeutics directed at tissue rescue and neuronal regeneration in the injured spinal cord.

摘要

脊髓损伤(SCI)会引发一种渐进性病理生理学过程,通过复杂且不断演变的分子级联反应影响细胞存活和神经完整性,而这些分子级联反应之间的相互关系尚未完全明确。本实验旨在:(1)确定在具有临床相关性的脊髓损伤后获得的转录表达谱内潜在的功能相互作用,以及(2)在两种基因和免疫特性不同的大鼠品系中测试脊髓损伤后转录本表达的一致性,这两种品系在T细胞能力和相关炎症反应方面存在差异。通过检测Affymetrix U34A大鼠基因组基因芯片微阵列,我们确定了无胸腺裸鼠(AN)和Sprague Dawley(SD)品系在损伤后1至90天颈中部挫伤损伤部位的转录表达模式。严格的统计分析检测到3638个探针集有显著变化,其中80个基因在AN组和SD组之间存在差异。随后对这些转录本进行详细的功能分类,揭示了两种品系共有的整体组织重塑反应。功能组织化的基因谱在时间上有所不同,并且与通过显微镜和磁共振显微成像观察到的修复指标相关。我们的分子和解剖学观察确定了脊髓损伤后反应的一种新的纵向视角,即高度协调的组织修复和重塑过程,具有显著的皮肤伤口愈合特征,在两种差异很大的大鼠品系中是保守的。这些结果对于针对损伤脊髓组织抢救和神经元再生的细胞和药物治疗的持续发展具有重要意义。

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