Department of Neuroscience and Biomedical Engineering, School of Science, Aalto University, 00076 Espoo, Finland.
Department of Clinical Neuroscience, Division of Eye and Vision, St. Erik Eye Hospital, Karolinska Institutet, 17177 Stockholm, Sweden.
Int J Mol Sci. 2020 Mar 17;21(6):2063. doi: 10.3390/ijms21062063.
The induction of heat shock response in the macula has been proposed as a useful therapeutic strategy for retinal neurodegenerative diseases by promoting proteostasis and enhancing protective chaperone mechanisms. We applied transpupillary 1064 nm long-duration laser heating to the mouse (C57Bl/6J) fundus to examine the heat shock response in vivo. The intensity and spatial distribution of heat shock protein (HSP) 70 expression along with the concomitant probability for damage were measured 24 h after laser irradiation in the mouse retinal pigment epithelium (RPE) as a function of laser power. Our results show that the range of heating powers for producing heat shock response while avoiding damage in the mouse RPE is narrow. At powers of 64 and 70 mW, HSP70 immunostaining indicates 90 and 100% probability for clearly elevated HSP expression while the corresponding probability for damage is 20 and 33%, respectively. Tunel staining identified the apoptotic regions, and the estimated 50% damaging threshold probability for the heating (ED50) was ~72 mW. The staining with Bestrophin1 (BEST1) demonstrated RPE cell atrophy with the most intense powers. Consequently, fundus heating with a long-duration laser provides an approachable method to develop heat shock-based therapies for the RPE of retinal disease model mice.
已经提出在黄斑中诱导热休克反应是治疗视网膜神经退行性疾病的一种有用的治疗策略,通过促进蛋白质平衡和增强保护性伴侣分子机制。我们应用经瞳孔 1064nm 长时激光加热来研究体内的热休克反应。在激光照射后 24 小时,我们测量了 HSP70 表达的强度和空间分布以及随之而来的损伤概率,作为激光功率的函数。我们的结果表明,在不损伤小鼠 RPE 的情况下产生热休克反应的加热功率范围很窄。在 64 和 70mW 的功率下,HSP70 免疫染色表明 HSP 表达明显升高的概率分别为 90%和 100%,而相应的损伤概率分别为 20%和 33%。TUNEL 染色鉴定了凋亡区域,加热的 50%损伤阈值概率(ED50)约为 72mW。用 Bestrophin1(BEST1)染色显示了最强功率下的 RPE 细胞萎缩。因此,用长时激光进行眼底加热为开发基于热休克的视网膜疾病模型小鼠 RPE 治疗方法提供了一种可行的方法。