布司特保护视网膜双极细胞免受兴奋性视网膜损伤并激活mTOR通路。

IF 5.1 2区 医学 Q1 NEUROSCIENCES
Glia Pub Date : 2025-02-06 DOI:10.1002/glia.24657
Sumaya Hamadmad, Tyler Heisler-Taylor, Sandeep Goswami, Evan Hawthorn, Sameer Chaurasia, Dena Martini, Diana Summitt, Ali Zatari, Rahaf Shalash, Misha Sohail, Elizabeth G. Urbanski, Kayla Bernstein, Julie Racine, Abhay Satoskar, Heithem M. El-Hodiri, Andy J. Fischer, Colleen M. Cebulla
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引用次数: 0

摘要

伊布司特是一种巨噬细胞迁移抑制因子(MIF)和磷酸二酯酶(PDE)的抑制剂,最近被证明在多种神经系统疾病中具有神经保护作用。我们利用鸡兴奋性视网膜损伤模型来研究布司特保护视网膜神经元的潜力。通过单细胞rna测序(scRNA-seq),我们发现MIF、推测的MIF受体CD74和CD44以及几种PDEs在不同的视网膜细胞损伤期间上调。玻璃体内布司特在眼内耐受性良好,无毒性迹象。通过视网膜电图评估,伊布司特能有效保护内核层神经元免受nmda诱导的细胞死亡,在光谱域光学相干断层扫描(SD-OCT)上恢复视网膜层厚度,并保持视网膜神经元功能,特别是on双极细胞。抑制PDE似乎对布司特的神经保护至关重要,因为缺乏PDE抑制剂活性的类似物AV1013是无效的。scRNA-seq分析显示,与AV1013相比,伊布司特治疗可上调损伤的勒神经胶质细胞(MG)的多种信号通路,包括mTOR。mTORC1和mTORC2的成分在双极细胞和服用布司特的MG中均上调。mTOR抑制剂雷帕霉素阻断了pS6的积累,但没有减少TUNEL阳性垂死细胞。此外,通过配体-受体相互作用分析,双极细胞和MG之间的串扰可能对神经保护很重要。我们已经确定了几种已知有助于细胞存活和神经保护的旁分泌信号通路,并可能在布司特的功能中发挥重要作用。这些发现强调了布司特在损伤期间保护视网膜内神经元的潜力,并显示了未来临床转化的希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ibudilast Protects Retinal Bipolar Cells From Excitotoxic Retinal Damage and Activates the mTOR Pathway

Ibudilast Protects Retinal Bipolar Cells From Excitotoxic Retinal Damage and Activates the mTOR Pathway

Ibudilast, an inhibitor of macrophage migration inhibitory factor (MIF) and phosphodiesterase (PDE), has been recently shown to have neuroprotective effects in a variety of neurologic diseases. We utilize a chick excitotoxic retinal damage model to investigate ibudilast's potential to protect retinal neurons. Using single cell RNA-sequencing (scRNA-seq), we find that MIF, putative MIF receptors CD74 and CD44, and several PDEs are upregulated in different retinal cells during damage. Intravitreal ibudilast is well tolerated in the eye and causes no evidence of toxicity. Ibudilast effectively protects neurons in the inner nuclear layer from NMDA-induced cell death, restores retinal layer thickness on spectral domain optical coherence tomography (SD-OCT), and preserves retinal neuron function, particularly for the ON bipolar cells, as assessed by electroretinography. PDE inhibition seems essential for ibudilast's neuroprotection, as AV1013, the analogue that lacks PDE inhibitor activity, is ineffective. scRNA-seq analysis reveals upregulation of multiple signaling pathways, including mTOR, in damaged Müller glia (MG) with ibudilast treatment compared to AV1013. Components of mTORC1 and mTORC2 are upregulated in both bipolar cells and MG with ibudilast. The mTOR inhibitor rapamycin blocked accumulation of pS6 but did not reduce TUNEL positive dying cells. Additionally, through ligand-receptor interaction analysis, crosstalk between bipolar cells and MG may be important for neuroprotection. We have identified several paracrine signaling pathways that are known to contribute to cell survival and neuroprotection and might play essential roles in ibudilast function. These findings highlight ibudilast's potential to protect inner retinal neurons during damage and show promise for future clinical translation.

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来源期刊
Glia
Glia 医学-神经科学
CiteScore
13.10
自引率
4.80%
发文量
162
审稿时长
3-8 weeks
期刊介绍: GLIA is a peer-reviewed journal, which publishes articles dealing with all aspects of glial structure and function. This includes all aspects of glial cell biology in health and disease.
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