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Docosanoid signaling modulates corneal nerve regeneration: effect on tear secretion wound healing and neuropathic pain

机译:二糖烷信号调制角膜神经再生:对撕裂分泌伤口愈合和神经性疼痛的影响

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摘要

The cornea is densely innervated, mainly by sensory nerves of the ophthalmic branch of the trigeminal ganglia (TG). These nerves are important to maintain corneal homeostasis, and nerve damage can lead to a decrease in wound healing, an increase in corneal ulceration and dry eye disease (DED), and neuropathic pain. Pathologies, such as diabetes, aging, viral and bacterial infection, as well as prolonged use of contact lenses and surgeries to correct vision can produce nerve damage. There are no effective therapies to alleviate DED (a multifunctional disease) and several clinical trials using ω-3 supplementation show unclear and sometimes negative results. Using animal models of corneal nerve damage, we show that treating corneas with pigment epithelium-derived factor plus DHA increases nerve regeneration, wound healing, and tear secretion. The mechanism involves the activation of a calcium-independent phospholipase A2 that releases the incorporated DHA from phospholipids and enhances the synthesis of the docosanoids, neuroprotectin D1 (NPD1) and a new resolvin stereoisomer, resolvin D6i (RvD6i). NPD1 stimulates the synthesis of brain-derived neurotrophic factor, nerve growth factor, and semaphorin 7A. RvD6i treatment of injured corneas modulates gene expression in the TG resulting in enhanced neurogenesis, decreased neuropathic pain, and increased sensitivity. Taken together, these results represent a promising therapeutic option to reestablish the homeostasis of the cornea.
机译:角膜浓密地被称为,主要是由三叉甘氨酸(Tg)的眼科分支的感觉神经。这些神经对维持角膜稳态来说很重要,并且神经损伤会导致伤口愈合减少,导角角膜溃疡和干眼症(DED)和神经性疼痛的增加。病理学,例如糖尿病,衰老,病毒和细菌感染,以及长期使用隐形眼镜和矫正视觉的手术可以产生神经损伤。除了使用ω-3补充的仪表和几种临床试验,没有有效的疗法,不清楚,有时是阴性结果。使用角膜神经损伤的动物模型,我们表明用颜料上皮衍生的因子加DHA治疗角膜,增加神经再生,伤口愈合和撕裂分泌。该机制涉及激活钙依赖性磷脂酶A2,其释放来自磷脂的掺入的DHA,并增强二糖苷,神经保护素D1(NPD1)和新的分辨素立体异构体,reatvin D6i(RVD6i)的合成。 NPD1刺激脑衍生的神经营养因子,神经生长因子和信号蛋白7a的合成。 RVD6I治疗受伤的玉米体调节TG中的基因表达,导致神经发生增强,降低神经性疼痛和增加的敏感性。在一起,这些结果代表了一种有希望的治疗选择,可以重新建立角膜的稳态。

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