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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Removal of melatonin receptor type 1 increases intraocular pressure and retinal ganglion cells death in the mouse.
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Removal of melatonin receptor type 1 increases intraocular pressure and retinal ganglion cells death in the mouse.

机译:删除1型褪黑激素受体会增加小鼠眼内压和视网膜神经节细胞死亡。

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摘要

Previous studies have demonstrated that melatonin is effective in lowering intraocular pressure and that it may also protect ganglion cells. We have recently reported that, in mice lacking the melatonin receptors type 1, 25-30% ganglion cells die out by 18months of age, suggesting that these receptors might be important for ganglion cells survival. In this study we show that the loss of ganglion cells is specific for melatonin receptors type 1 knock-out since mice lacking the melatonin receptors type 2 did not show any significant change in the number ganglion cells during aging. Furthermore, we report that melatonin receptors type 1 knock-out mice have higher intraocular pressure during the nocturnal hours than control or melatonin receptors type 2 knock-out mice at 3 and 12months of age. Finally, our data indicate that administration of exogenous melatonin in wild-type, but not in melatonin receptors type 1 knock-out, can significantly reduce intraocular pressure. Our studies indicate that the decreased viability of ganglion cells observed in melatonin receptors type 1 knock-out mice may be a consequence of the increases in the nocturnal intraocular pressure thus suggesting that intraocular pressure levels at night and melatonin signaling should be considered as risk factor in the pathogenesis of glaucoma.
机译:先前的研究表明褪黑激素可以有效降低眼内压,并且还可以保护神经节细胞。我们最近报道,在缺乏1型褪黑激素受体的小鼠中,到18个月大时,有25-30%的神经节细胞死亡,这表明这些受体可能对神经节细胞的存活很重要。在这项研究中,我们发现神经节细胞的丢失对1型褪黑激素受体具有特异性,因为缺少2型褪黑激素受体的小鼠在衰老过程中神经节细胞的数量没有任何显着变化。此外,我们报告说,在3个月和12个月大时,夜间褪黑激素受体1型敲除小鼠比对照组或褪黑激素受体2型小鼠具有更高的眼内压。最后,我们的数据表明,在野生型而非1型褪黑激素受体敲除中施用外源性褪黑素可以显着降低眼内压。我们的研究表明,在1型褪黑素受体基因敲除小鼠中观察到的神经节细胞活力降低可能是夜间眼压升高的结果,因此,建议将夜间眼压水平和褪黑激素信号转导为高眼压的危险因素。青光眼的发病机理。

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