神经胶质细胞是治疗青光眼的理想靶点:超越眼压的影响

Youichi Shinozaki, K. Namekata, Xiaoli Guo, T. Harada
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摘要

神经胶质细胞是中枢神经系统(CNS)中的一种非神经元细胞,在维持中枢神经系统平衡和调节中枢神经系统功能方面发挥着至关重要的作用。最近的技术进步为抗击青光眼的新治疗策略铺平了道路。虽然眼压(IOP)是最著名的可改变风险因素,但相当多的青光眼患者眼压水平正常。由于青光眼是一种复杂的多因素疾病,其发病和发展受多种因素的影响,因此我们必须考虑眼压以外的因素,以有效预防或减缓疾病的发展。在中枢神经系统神经退行性疾病领域,神经胶质细胞因其在引发和加速疾病进展方面的关键作用而成为关键角色。抑制失调的神经胶质功能有可能保护神经元并恢复大脑功能。因此,尽管大多数青光眼研究历来只关注视网膜神经节细胞(RGC),但神经胶质细胞是青光眼的诱人治疗候选者。除了对 RGC 的神经保护外,适当调节神经胶质细胞的功能还能促进视网膜结构和功能的恢复。在这篇综述中,我们概述了在了解青光眼发病机制的非细胞自主机制方面取得的最新进展。此外,最先进的技术为视神经的再生提供了可能,而视神经以前被认为是无法再生的。我们还将深入探讨神经胶质细胞在视神经再生和视觉功能恢复中的潜在作用。
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Glial cells as a promising therapeutic target of glaucoma: beyond the IOP
Glial cells, a type of non-neuronal cell found in the central nervous system (CNS), play a critical role in maintaining homeostasis and regulating CNS functions. Recent advancements in technology have paved the way for new therapeutic strategies in the fight against glaucoma. While intraocular pressure (IOP) is the most well-known modifiable risk factor, a significant number of glaucoma patients have normal IOP levels. Because glaucoma is a complex, multifactorial disease influenced by various factors that contribute to its onset and progression, it is imperative that we consider factors beyond IOP to effectively prevent or slow down the disease’s advancement. In the realm of CNS neurodegenerative diseases, glial cells have emerged as key players due to their pivotal roles in initiating and hastening disease progression. The inhibition of dysregulated glial function holds the potential to protect neurons and restore brain function. Consequently, glial cells represent an enticing therapeutic candidate for glaucoma, even though the majority of glaucoma research has historically concentrated solely on retinal ganglion cells (RGCs). In addition to the neuroprotection of RGCs, the proper regulation of glial cell function can also facilitate structural and functional recovery in the retina. In this review, we offer an overview of recent advancements in understanding the non-cell-autonomous mechanisms underlying the pathogenesis of glaucoma. Furthermore, state-of-the-art technologies have opened up possibilities for regenerating the optic nerve, which was previously believed to be incapable of regeneration. We will also delve into the potential roles of glial cells in the regeneration of the optic nerve and the restoration of visual function.
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