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激动型 TSPO 配体 XBD173 可减弱神经胶质反应,从而保护视网膜缺血模型中小鼠的内视网膜神经元。

The agonistic TSPO ligand XBD173 attenuates the glial response thereby protecting inner retinal neurons in a murine model of retinal ischemia.

机构信息

Institute of Human Genetics, University of Regensburg, Franz-Josef-Strauß-Allee 11, 93053, Regensburg, Germany.

Department of Medical Epidemiology and Biostatistics, Karolinska Institutet, Nobels väg 12A, Stockholm, Sweden.

出版信息

J Neuroinflammation. 2019 Feb 18;16(1):43. doi: 10.1186/s12974-019-1424-5.

Abstract

BACKGROUND

Ligand-driven modulation of the mitochondrial translocator protein 18 kDa (TSPO) was recently described to dampen the neuroinflammatory response of microglia in a retinal light damage model resulting in protective effects on photoreceptors. We characterized the effects of the TSPO ligand XBD173 in the postischemic retina focusing on changes in the response pattern of the major glial cell types of the retina-microglia and Müller cells.

METHODS

Retinal ischemia was induced by increasing the intraocular pressure for 60 min followed by reperfusion of the tissue in mice. On retinal cell types enriched via immunomagnetic separation expression analysis of TSPO, its ligand diazepam-binding inhibitor (DBI) and markers of glial activation were performed at transcript and protein level using RNA sequencing, qRT-PCR, lipid chromatography-mass spectrometry, and immunofluorescent labeling. Data on cell morphology and numbers were assessed in retinal slice and flatmount preparations. The retinal functional integrity was determined by electroretinogram recordings.

RESULTS

We demonstrate that TSPO is expressed by Müller cells, microglia, vascular cells, retinal pigment epithelium (RPE) of the healthy and postischemic retina, but only at low levels in retinal neurons. While an alleviated neurodegeneration upon XBD173 treatment was found in postischemic retinae as compared to vehicle controls, this neuroprotective effect of XBD173 is mediated putatively by its action on retinal glia. After transient ischemia, TSPO as a marker of activation was upregulated to similar levels in microglia as compared to their counterparts in healthy retinae irrespective of the treatment regimen. However, less microglia were found in XBD173-treated postischemic retinae at 3 days post-surgery (dps) which displayed a more ramified morphology than in retinae of vehicle-treated mice indicating a dampened microglia activation. Müller cells, the major retinal macroglia, show upregulation of the typical gliosis marker GFAP. Importantly, glutamine synthetase was more stably expressed in Müller glia of XBD173-treated postischemic retinae and homeostatic functions such as cellular volume regulation typically diminished in gliotic Müller cells remained functional.

CONCLUSIONS

In sum, our data imply that beneficial effects of XBD173 treatment on the postischemic survival of inner retinal neurons were primarily mediated by stabilizing neurosupportive functions of glial cells.

摘要

背景

最近的研究表明,配体驱动的线粒体转位蛋白 18kDa(TSPO)的调节可以抑制光损伤模型中小胶质细胞的神经炎症反应,从而对光感受器产生保护作用。我们描述了 TSPO 配体 XBD173 在缺血后视网膜中的作用,重点研究了主要视网膜神经胶质细胞类型-小胶质细胞和 Müller 细胞的反应模式变化。

方法

通过增加眼内压 60 分钟诱导视网膜缺血,然后再对组织进行再灌注。在富含视网膜细胞类型的免疫磁珠分离物中,通过 RNA 测序、qRT-PCR、脂质色谱-质谱和免疫荧光标记,在转录和蛋白水平上对 TSPO、其配体地西泮结合抑制剂(DBI)和神经胶质激活标志物的表达进行分析。在视网膜切片和平面贴片中评估细胞形态和数量的数据。通过视网膜电图记录确定视网膜功能完整性。

结果

我们证明 TSPO 在内皮细胞、小胶质细胞、Müller 细胞、视网膜色素上皮(RPE)的健康和缺血后视网膜中表达,但在视网膜神经元中的表达水平较低。与 vehicle 对照组相比,XBD173 治疗后的缺血性视网膜神经退行性变减轻,但 XBD173 的神经保护作用可能是通过其对视网膜神经胶质的作用介导的。短暂缺血后,TSPO 作为激活标志物的表达上调,与健康视网膜中的小胶质细胞相比,上调水平相似,而不管治疗方案如何。然而,在手术后 3 天(dps),XBD173 治疗的缺血后视网膜中的小胶质细胞数量减少,其形态比 vehicle 处理的小鼠更具分支状,表明小胶质细胞激活减弱。Müller 细胞,主要的视网膜大胶质细胞,GFAP 等典型的神经胶质标志物表达上调。重要的是,XBD173 治疗的缺血后视网膜中谷氨酸合成酶在 Müller 胶质细胞中更稳定表达,而在神经胶质增生的 Müller 细胞中通常消失的细胞体积调节等稳态功能仍然具有功能。

结论

总之,我们的数据表明,XBD173 治疗对缺血后内层神经元存活的有益作用主要是通过稳定神经支持性胶质细胞的功能来介导的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32fd/6378755/1a49be056e3d/12974_2019_1424_Fig1_HTML.jpg

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