Laboratório de Cronobiologia Molecular, Departamento de Ciências Biológicas, Instituto de Ciências Ambientais Químicas e Farmacêuticas, Universidade Federal de São Paulo, Diadema, Brazil.
Programa de Pós-graduação em Fisiologia, Instituto de Biociências, Universidade de São Paulo, São Paulo, Brazil.
FASEB J. 2024 Oct 31;38(20):e70109. doi: 10.1096/fj.202401105R.
Glaucoma is a chronic optic neuropathy characterized by the progressive degeneration of retinal ganglion cells (RGC). These cells play a crucial role in transmitting visual and non-visual information to brain regions, including the suprachiasmatic nucleus (SCN), responsible for synchronizing biological rhythms. To understand how glaucoma affects circadian rhythm synchronization, we investigated potential changes in the molecular clock machinery in the SCN. We found that the progressive increase in intraocular pressure (IOP) negatively correlated with spontaneous locomotor activity (SLA). Transcriptome analysis revealed significant alterations in the SCN of glaucomatous mice, including downregulation of genes associated with circadian rhythms. In fact, we showed a loss of diurnal oscillation in the expression of vasoactive intestinal peptide (Vip), its receptor (Vipr2), and period 1 (Per1) in the SCN of glaucomatous mice. These findings were supported by the 7-h phase shift in the peak expression of arginine vasopressin (Avp) in the SCN of mice with glaucoma. Despite maintaining a 24-h period under both light/dark (LD) and constant dark (DD) conditions, glaucomatous mice exhibited altered SLA rhythms, characterized by decreased amplitude. Taken altogether, our findings provide evidence of how glaucoma affects the regulation of the central circadian clock and its consequence on the regulation of circadian rhythms.
青光眼是一种慢性视神经病变,其特征是视网膜神经节细胞(RGC)的进行性退化。这些细胞在将视觉和非视觉信息传递到大脑区域(包括负责同步生物节律的视交叉上核(SCN))中起着至关重要的作用。为了了解青光眼如何影响昼夜节律同步,我们研究了 SCN 中分子钟机制的潜在变化。我们发现,眼内压(IOP)的逐渐升高与自发运动活动(SLA)呈负相关。转录组分析显示,青光眼小鼠的 SCN 发生了显著变化,包括与昼夜节律相关的基因下调。事实上,我们发现青光眼小鼠 SCN 中血管活性肠肽(Vip)、其受体(Vipr2)和周期 1(Per1)的表达失去了昼夜振荡。这些发现得到了青光眼小鼠 SCN 中精氨酸加压素(Avp)表达峰值 7 小时相移的支持。尽管在光/暗(LD)和恒定暗(DD)条件下均保持 24 小时周期,但青光眼小鼠的 SLA 节律发生了改变,表现为振幅降低。总之,我们的研究结果提供了证据,证明了青光眼如何影响中枢昼夜节律的调节及其对昼夜节律调节的影响。