Wergenthaler Nousal, Dick H Burkhard, Tsai Teresa, Joachim Stephanie C
Experimental Eye Research Institute, University Eye Hospital, Ruhr-University Bochum, In der Schornau 23-25, 44892 Bochum, Germany.
Curr Issues Mol Biol. 2023 Jul 29;45(8):6339-6351. doi: 10.3390/cimb45080400.
The aim of this review was to identify a new potential explanation for the development of macular holes in relation to the female sex and to explain the possible underlying pathways. This approach was based on the evaluation of anatomical, physiological, and morphological analyses currently available in the literature. The findings showed that estrogen exerts a protective effect on the neuroretina and may influence Müller and cone cells. Both cell types are responsible for the building of the fovea structure. However, this protection may be lost due to the sudden decrease in estrogen levels during menopause. In conclusion, the fovea cones, through its sensitivity to estrogen and high energy consumption, may be very vulnerable to damage caused by a sudden changes in the concentration of estrogen in menopausal females. Such changes may result in cone degeneration, and thus a destroyed structure of the fovea, and may lead to the development of a hole in the fovea, as in the case of macular holes. This review revealed that under the decreasing influence of estrogen may cones play a key role with regard to the etiology of the development of macular holes. This aspect may be of strategic importance in prophylactic therapy for the prevention of the development of macular holes in premenopausal females or after ocular trauma.
本综述的目的是确定与女性性别相关的黄斑裂孔形成的一种新的潜在解释,并解释可能的潜在途径。这种方法基于对目前文献中可用的解剖学、生理学和形态学分析的评估。研究结果表明,雌激素对神经视网膜具有保护作用,并可能影响米勒细胞和视锥细胞。这两种细胞类型都负责中央凹结构的构建。然而,由于绝经期间雌激素水平的突然下降,这种保护作用可能会丧失。总之,中央凹视锥细胞因其对雌激素的敏感性和高能量消耗,可能极易受到绝经女性体内雌激素浓度突然变化所造成的损害。这种变化可能导致视锥细胞退化,进而导致中央凹结构破坏,并可能导致中央凹出现裂孔,如同黄斑裂孔的情况。本综述表明,在雌激素影响减弱的情况下,视锥细胞可能在黄斑裂孔形成的病因学方面起关键作用。这一方面在预防绝经前女性或眼外伤后黄斑裂孔形成的预防性治疗中可能具有重要战略意义。