Clinical Experimental Research, Glostrup Research Institute, Rigshospitalet, 2600 Glostrup, Denmark.
Clinical and Medical Affairs, Radiometer, 2700 Brønshøj, Denmark.
Cells. 2023 Aug 2;12(15):1987. doi: 10.3390/cells12151987.
Endothelin-1 (ET-1) overactivity has been implicated as a factor contributing to glaucomatous neuropathy, and it has been utilized in animal models of retinal ischemia. The functional effects of long-term ET-1 exposure and possible compensatory mechanisms have, however, not been investigated. This was therefore the purpose of our study. ET-1 was delivered into rat eyes via a single intravitreal injection of 500 µM or via transgene delivery using an adeno-associated viral (AAV) vector. Retinal function was assessed using electroretinography (ERG) and the retinal expression of potentially compensatory genes was evaluated by means of qRT-PCR. Acute ET-1 delivery led to vasoconstriction and a significant reduction in the ERG response. AAV-ET-1 resulted in substantial transgene expression and ERG results similar to the acute ET-1 injections and comparable to other models of retinal ischemia. Compensatory changes were observed, including an increase in calcitonin gene-related peptide (CGRP) gene expression, which may both counterbalance the vasoconstrictive effects of ET-1 and provide neuroprotection. This chronic ET-1 ischemia model might be especially relevant to glaucoma research, mimicking the mild and repeated ischemic events in patients with long-term vascular dysfunction. The compensatory mechanisms, and particularly the role of vasodilatory CGRP in mitigating the retinal damage, warrant further investigation with the aim of evaluating new therapeutic strategies.
内皮素-1(ET-1)活性过强被认为是导致青光眼神经病变的一个因素,它已被用于视网膜缺血的动物模型中。然而,长期 ET-1 暴露的功能影响和可能的代偿机制尚未得到研究。这就是我们研究的目的。通过单次玻璃体内注射 500µM 的 ET-1 或使用腺相关病毒(AAV)载体进行转基因传递,将 ET-1 递送至大鼠眼内。通过视网膜电图(ERG)评估视网膜功能,并通过 qRT-PCR 评估潜在补偿基因的视网膜表达。急性 ET-1 给药导致血管收缩和 ERG 反应显著降低。AAV-ET-1 导致大量的转基因表达和与急性 ET-1 注射相似的 ERG 结果,与其他视网膜缺血模型相当。观察到代偿性变化,包括降钙素基因相关肽(CGRP)基因表达增加,这可能抵消 ET-1 的血管收缩作用并提供神经保护。这种慢性 ET-1 缺血模型可能与青光眼研究特别相关,模拟了长期血管功能障碍患者中轻度和反复发生的缺血事件。代偿机制,特别是血管扩张性 CGRP 在减轻视网膜损伤方面的作用,需要进一步研究,目的是评估新的治疗策略。