Jovanovic Macura Irena, Zivanovic Ana, Perovic Milka, Ciric Jelena, Major Tamara, Kanazir Selma, Ivkovic Sanja
Institute for Biological Research "Sinisa Stankovic", National Institute of Republic of Serbia, University of Belgrade, 11060 Belgrade, Serbia.
Vinca-Institute for Nuclear Sciences, National Institute of Republic of Serbia, University of Belgrade, 11351 Belgrade, Serbia.
Int J Mol Sci. 2023 Sep 14;24(18):14092. doi: 10.3390/ijms241814092.
Cerebral amyloid angiopathy (CAA) is characterized by amyloid β (Aβ) accumulation in the blood vessels and is associated with cognitive impairment in Alzheimer's disease (AD). The increased accumulation of Aβ is also present in the retinal blood vessels and a significant correlation between retinal and brain amyloid deposition was demonstrated in living patients and animal AD models. The Aβ accumulation in the retinal blood vessels can be the result of impaired transcytosis and/or the dysfunctional ocular glymphatic system in AD and during aging. We analyzed the changes in the mRNA and protein expression of major facilitator superfamily domain-containing protein2a (Mfsd2a), the major regulator of transcytosis, and of Aquaporin4 (Aqp4), the key player implicated in the functioning of the glymphatic system, in the retinas of 4- and 12-month-old WT and 5xFAD female mice. A strong decrease in the Mfsd2a mRNA and protein expression was observed in the 4 M and 12 M 5xFAD and 12 M WT retinas. The increase in the expression of could be at least partially responsible for the Mfsd2a decrease in the 4 M 5xFAD retinas. The decrease in the pericyte (CD13+) coverage of retinal blood vessels in the 4 M and 12 M 5xFAD retinas and in the 12 M WT retinas suggests that pericyte loss could be associated with the Mfsd2a downregulation in these experimental groups. The observed increase in Aqp4 expression in 4 M and 12 M 5xFAD and 12 M WT retinas accompanied by the decreased perivascular Aqp4 expression is indicative of the impaired glymphatic system. The findings in this study reveal the impaired Mfsd2a and Aqp4 expression and Aqp4 perivascular mislocalization in retinal blood vessels during physiological (WT) and pathological (5xFAD) aging, indicating their importance as putative targets for the development of new treatments that can improve the regulation of transcytosis or the function of the glymphatic system.
脑淀粉样血管病(CAA)的特征是淀粉样β(Aβ)在血管中积聚,并与阿尔茨海默病(AD)中的认知障碍相关。Aβ在视网膜血管中的积聚也会增加,并且在活体患者和动物AD模型中证实了视网膜与脑淀粉样蛋白沉积之间存在显著相关性。视网膜血管中Aβ的积聚可能是AD和衰老过程中跨细胞转运受损和/或眼内类淋巴系统功能失调的结果。我们分析了4个月和12个月大的野生型(WT)和5xFAD雌性小鼠视网膜中主要促进剂超家族结构域蛋白2a(Mfsd2a,跨细胞转运的主要调节因子)和水通道蛋白4(Aqp4,参与类淋巴系统功能的关键因子)的mRNA和蛋白表达变化。在4个月和12个月大的5xFAD以及12个月大的WT视网膜中,观察到Mfsd2a的mRNA和蛋白表达显著降低。 表达的增加可能至少部分导致了4个月大的5xFAD视网膜中Mfsd2a的减少。4个月和12个月大的5xFAD视网膜以及12个月大的WT视网膜中视网膜血管周细胞(CD13+)覆盖范围的减少表明,周细胞丢失可能与这些实验组中Mfsd2a的下调有关。在4个月和12个月大的5xFAD以及12个月大的WT视网膜中观察到Aqp4表达增加,同时血管周围Aqp4表达减少,这表明类淋巴系统功能受损。本研究结果揭示了在生理(WT)和病理(5xFAD)衰老过程中,视网膜血管中Mfsd2a和Aqp4表达受损以及Aqp4在血管周围的定位错误,表明它们作为开发能够改善跨细胞转运调节或类淋巴系统功能的新疗法的潜在靶点具有重要意义。