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免疫细胞化学分析藏红花素对角膜感觉神经元氧化应激的作用。

Immunocytochemical Analysis of Crocin against Oxidative Stress in Trigeminal Sensory Neurons Innervating the Cornea.

机构信息

Instituto Universitario Fernández-Vega, Fundación de Investigación Oftalmológica, Universidad de Oviedo, 33012 Oviedo, Spain.

Instituto de Investigación Sanitaria del Principado de Asturias (ISPA), 33011 Oviedo, Spain.

出版信息

Molecules. 2024 Jan 17;29(2):456. doi: 10.3390/molecules29020456.

Abstract

Corneal diseases are a major cause of vision loss, often associated with aging, trauma and disease. Damage to corneal sensory innervation leads to discomfort and pain. Environmental stressors, such as short-wavelength light, can induce oxidative stress that alters mitochondrial function and affects cell and tissue homeostasis, including corneal innervation. Cellular antioxidant mechanisms may attenuate oxidative stress. This study investigates crocin, a derivative of saffron, as a potential antioxidant therapy. In vitro rat trigeminal sensory ganglion neurons were exposed to both sodium azide and blue light overexposure as a model of oxidative damage. Crocin was used as a neuroprotective agent. Mitochondrial and cytoskeletal markers were studied by immunofluorescence analysis to determine oxidative damage and neuroprotection. In vivo corneal innervation degeneration was evaluated in cornea whole mount preparations using Sholl analyses. Blue light exposure induces oxidative stress that affects trigeminal neuron mitochondria and alters sensory axon dynamics in vitro, and it also affects corneal sensory innervation in an in vivo model. Our results show that crocin was effective in preserving mitochondrial function and protecting corneal sensory neurons from oxidative stress. Crocin appears to be a promising candidate for the neuroprotection of corneal innervation.

摘要

角膜疾病是视力丧失的主要原因,常与衰老、创伤和疾病有关。角膜感觉神经支配的损伤会导致不适和疼痛。环境应激源,如短波长光,会引起氧化应激,改变线粒体功能,并影响细胞和组织的内稳态,包括角膜神经支配。细胞抗氧化机制可能减轻氧化应激。本研究探讨藏红花衍生的藏红花酸作为一种潜在的抗氧化治疗方法。体外大鼠三叉神经感觉神经节神经元暴露于叠氮化钠和蓝光过度暴露中,作为氧化损伤的模型。藏红花酸被用作神经保护剂。通过免疫荧光分析研究线粒体和细胞骨架标志物,以确定氧化损伤和神经保护作用。在角膜整体标本中使用 Sholl 分析评估体内角膜感觉神经支配变性。蓝光暴露会引起氧化应激,影响三叉神经神经元的线粒体,并改变体外感觉轴突的动力学,而且在体内模型中也会影响角膜感觉神经支配。我们的结果表明,藏红花酸能有效维持线粒体功能,保护角膜感觉神经元免受氧化应激。藏红花酸似乎是保护角膜神经支配的有前途的候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3ba/10818698/35b51835ac6b/molecules-29-00456-g001.jpg

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