Ginsenoside Re Mitigates Photooxidative Stress-Mediated Photoreceptor Degeneration and Retinal Inflammation.

IF 6.2
Jie Chang, Yujue Wang, Jing Xu, Xiaoye Du, Jingang Cui, Teng Zhang, Yu Chen
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Abstract

Loss of photoreceptors is the central pathology accountable for irreversible vision impairment in patients with photoreceptor degenerative disorders. Currently, mechanisms-based pharmacological therapies protecting photoreceptors from degenerative progression remain clinically unavailable. Photooxidative stress plays a pivotal role in initiating the degenerative cascade in photoreceptors. Meanwhile, photoreceptor degeneration interacts closely with neurotoxic inflammatory responses primarily mediated by aberrantly activated microglia in the retina. Thus, therapies with anti-oxidant and anti-inflammatory properties have been actively investigated for their pharmacological value in controlling photoreceptor degeneration. In the current study, we examined the pharmacological potentials of ginsenoside Re (Re), a naturally occurring antioxidant with anti-inflammatory activities, in photooxidative stress-mediated photoreceptor degeneration. Our results demonstrate that Re attenuates photooxidative stress and associated lipid peroxidation in the retina. Furthermore, Re treatment preserves the morphological and functional integrity of the retina, counteracts photooxidative stress-induced perturbation of the retinal gene expression profiles and mitigates photoreceptor degeneration-associated neuroinflammatory responses and microglia activation in the retina. Lastly, Re partially antagonizes the deleterious effects of photooxidative stress on müller cells, verifying its beneficial impact on retina homeostasis. In conclusion, the work here provides experimental evidence supporting novel pharmacological implications of Re in attenuating photooxidative stress-mediated photoreceptor degeneration and ensuing neuroinflammation.

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人参皂苷Re减轻光氧化应激介导的光受体变性和视网膜炎症。
光感受器丧失是光感受受器退行性疾病患者不可逆视力损伤的核心病理学。目前,基于机制的药物疗法保护光感受器免受退行性进展的影响在临床上仍然不可用。光氧化应激在启动光感受器的退行性级联反应中起着关键作用。同时,光感受器变性与主要由视网膜中异常激活的小胶质细胞介导的神经毒性炎症反应密切相互作用。因此,具有抗氧化和抗炎特性的疗法因其在控制光感受器变性方面的药理学价值而受到积极研究。在目前的研究中,我们检测了人参皂苷Re(Re)在光氧化应激介导的光感受器变性中的药理学潜力,Re是一种具有抗炎活性的天然抗氧化剂。我们的研究结果表明,Re可以减轻视网膜中的光氧化应激和相关的脂质过氧化。此外,再治疗保留了视网膜的形态和功能完整性,抵消了光氧化应激诱导的视网膜基因表达谱紊乱,并减轻了视网膜中与光感受器变性相关的神经炎症反应和小胶质细胞活化。最后,Re部分拮抗了光氧化应激对穆勒细胞的有害影响,验证了其对视网膜稳态的有益影响。总之,本文的工作提供了实验证据,支持Re在减轻光氧化应激介导的光感受器变性和随后的神经炎症方面的新药理学意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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