Murenu Elisa, Kostidis Sarantos, Lahiri Shibojyoti, Geserich Anna S, Imhof Axel, Giera Martin, Michalakis Stylianos
Department of Ophthalmology, Ludwig-Maximilians-Universität München, Mathildenstraße 8, 80336 Munich, Germany.
Department of Pharmacy, Ludwig-Maximilians Universität München, Butenandtstr. 7, 81377 Munich, Germany.
Int J Mol Sci. 2021 Feb 26;22(5):2345. doi: 10.3390/ijms22052345.
Photoreceptors are the light-sensing cells of the retina and the major cell type affected in most inherited retinal degenerations. Different metabolic pathways sustain their high energetic demand in physiological conditions, particularly aerobic glycolysis. The principal metabolome of the mature retina has been studied, but only limited information is available on metabolic adaptations in response to key developmental events, such as eye opening. Moreover, dynamic metabolic changes due to retinal degeneration are not well understood. Here, we aimed to explore and map the ocular metabolic dynamics induced by eye opening in healthy (wild type) or -mutant (retinal degeneration 1, Rd1) mice, in which photoreceptors degenerate shortly after eye opening. To unravel metabolic differences emerging before and after eye opening under physiological and pathophysiological conditions, we performed nuclear magnetic resonance (NMR) spectroscopy-based metabolome analysis of wild type and Rd1 retina and vitreous/lens. We show that eye opening is accompanied by changes in the concentration of selected metabolites in the retina and by alterations in the vitreous/lens composition only in the retinal degeneration context. As such, we identify NAcetylaspartate as a potential novel vitreous/lens marker reflecting progressive retinal degeneration. Thus, our data can help elucidating mechanisms underlying key events in retinal physiology and reveal changes occurring in pathology, while highlighting the importance of the vitreous/lens in the characterization of retinal diseases.
光感受器是视网膜的感光细胞,也是大多数遗传性视网膜变性中受影响的主要细胞类型。在生理条件下,不同的代谢途径维持着它们对能量的高需求,尤其是有氧糖酵解。成熟视网膜的主要代谢组已被研究,但关于视网膜对诸如睁眼等关键发育事件的代谢适应性,目前仅有有限的信息。此外,视网膜变性引起的动态代谢变化尚不清楚。在这里,我们旨在探索并绘制健康(野生型)或突变(视网膜变性1型,Rd1)小鼠睁眼诱导的眼部代谢动态图谱,在这些小鼠中,光感受器在睁眼后不久就会退化。为了揭示生理和病理生理条件下睁眼前后出现的代谢差异,我们对野生型和Rd1小鼠的视网膜以及玻璃体/晶状体进行了基于核磁共振(NMR)光谱的代谢组分析。我们发现,仅在视网膜变性的情况下,睁眼伴随着视网膜中特定代谢物浓度的变化以及玻璃体/晶状体组成的改变。因此,我们确定N-乙酰天门冬氨酸是一种潜在的新型玻璃体/晶状体标志物,可反映进行性视网膜变性。因此,我们的数据有助于阐明视网膜生理关键事件的潜在机制,揭示病理状态下发生的变化,同时突出玻璃体/晶状体在视网膜疾病特征化中的重要性。