神经保护
细胞凋亡
下调和上调
视网膜
再灌注损伤
体内
生物
化学
药理学
缺血
细胞生物学
医学
内科学
生物化学
生物技术
基因
作者
Mohamed J. Saadh,Roxana Yolanda Castillo-Acobo,Hala Baher,Jayasankar Narayanan,Jéssica Paola Palacios Garay,Michio Yamaguchi,José L. Gonzáles,Juan Carlos Cotrina-Aliaga,Shaik Vaseem Akram,Natrayan Lakshmaiya,Ali Hama Amin,Mohamed Mohany,Salim S. Al‐Rejaie,Muhammad Ahsan,Abolfazl Bahrami,Reza Akhavan‐Sigari
出处
期刊:Life Sciences
[Elsevier]
日期:2023-09-01
卷期号:329: 121968-121968
被引量:1
标识
DOI:10.1016/j.lfs.2023.121968
摘要
Retinal ischemia/reperfusion (I/R) injury is a common pathological basis for various ophthalmic diseases. This study aimed to investigate the potential of sulforaphane (SFN) and Homer1a in regulating cell apoptosis induced by retinal I/R injury and to explore the underlying regulatory mechanism between them.In in vivo experiments, C57BL/6J mice and Homer1flox/-/Homer1a+/-/Nestin-Cre+/- mice were used to construct retinal I/R injury models. In vitro experiments utilized the oxygen-glucose deprivation-reperfusion (OGD/R) injury model with primary retinal ganglion cells (RGCs). The effects of Homer1a and SFN on cell apoptosis were observed through pathological analyses, flow cytometry, and visual electrophysiological assessments.We discovered that after OGD/R injury, apoptosis of RGCs and intracellular Ca2+ activity significantly increased. However, these changes were reversed upon the addition of SFN, and similar observations were reproduced in in vivo studies. Furthermore, both in vivo and in vitro studies confirmed the upregulation of Homer1a after I/R, which could be further enhanced by the administration of SFN. Moreover, upregulation of Homer1a resulted in a reduction in cell apoptosis and pro-apoptotic proteins, while downregulation of Homer1a had the opposite effect. Flash visual evoked potential, oscillatory potentials, and escape latency measurements in mice supported these findings. Furthermore, the addition of SFN strengthened the neuroprotective effects in the OGD/R + H+ group but weakened them in Homer1flox/-/Homer1a+/-/Nestin-Cre+/- mice.These results indicate that Homer1a plays a significant role in the therapeutic potential of sulforaphane for retinal I/R injury, thereby providing a theoretical basis for clinical treatment.
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