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鞘脂生物合成抑制剂 L-环丝氨酸可预防光感受器衍生 661W 细胞体外模型中的氧化应激介导的死亡。

Sphingolipid biosynthetic inhibitor L-Cycloserine prevents oxidative-stress-mediated death in an in vitro model of photoreceptor-derived 661W cells.

机构信息

Department of Pharmaceutical Sciences, University of Tennessee Health Science Center, Memphis, TN, 38163, USA; Department of Ophthalmology, University of Tennessee Health Science Center, Memphis, TN, 38163, USA.

Department of Ophthalmology, University of Tennessee Health Science Center, Memphis, TN, 38163, USA.

出版信息

Exp Eye Res. 2024 May;242:109852. doi: 10.1016/j.exer.2024.109852. Epub 2024 Mar 8.

Abstract

Oxidative stress plays a pivotal role in the pathogenesis of several neurodegenerative diseases. Retinal degeneration causes irreversible death of photoreceptor cells, ultimately leading to vision loss. Under oxidative stress, the synthesis of bioactive sphingolipid ceramide increases, triggering apoptosis in photoreceptor cells and leading to their death. This study investigates the effect of L-Cycloserine, a small molecule inhibitor of ceramide biosynthesis, on sphingolipid metabolism and the protection of photoreceptor-derived 661W cells from oxidative stress. The results demonstrate that treatment with L-Cycloserine, an inhibitor of Serine palmitoyl transferase (SPT), markedly decreases bioactive ceramide and associated sphingolipids in 661W cells. A nontoxic dose of L-Cycloserine can provide substantial protection of 661W cells against HO-induced oxidative stress by reversing the increase in ceramide level observed under oxidative stress conditions. Analysis of various antioxidant, apoptotic and sphingolipid pathway genes and proteins also confirms the ability of L-Cycloserine to modulate these pathways. Our findings elucidate the generation of sphingolipid mediators of cell death in retinal cells under oxidative stress and the potential of L-Cycloserine as a therapeutic candidate for targeting ceramide-induced degenerative diseases by inhibiting SPT. The promising therapeutic prospect identified in our findings lays the groundwork for further validation in in-vivo and preclinical models of retinal degeneration.

摘要

氧化应激在几种神经退行性疾病的发病机制中起着关键作用。视网膜变性导致光感受器细胞不可逆转的死亡,最终导致视力丧失。在氧化应激下,生物活性神经酰胺的合成增加,引发光感受器细胞凋亡,导致其死亡。本研究探讨了 L-环丝氨酸(一种神经酰胺生物合成的小分子抑制剂)对神经鞘脂代谢的影响以及对光感受器衍生的 661W 细胞的保护作用,使其免受氧化应激的影响。结果表明,丝氨酸棕榈酰转移酶(SPT)抑制剂 L-环丝氨酸处理可显著降低 661W 细胞中的生物活性神经酰胺和相关神经鞘脂。非毒性剂量的 L-环丝氨酸可通过逆转氧化应激条件下观察到的神经酰胺水平升高,为 661W 细胞提供针对 HO 诱导的氧化应激的显著保护。对各种抗氧化、凋亡和神经鞘脂途径基因和蛋白的分析也证实了 L-环丝氨酸调节这些途径的能力。我们的研究结果阐明了氧化应激下视网膜细胞中细胞死亡的神经鞘脂介质的产生,以及 L-环丝氨酸通过抑制 SPT 作为靶向神经酰胺诱导的退行性疾病的治疗候选物的潜力。我们研究结果中确定的有前途的治疗前景为在视网膜变性的体内和临床前模型中进一步验证奠定了基础。

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