Zhang Jia-Heng, Wang Mei-Juan, Tan Ya-Ting, Luo Jia, Wang Shu-Chao
Center for Medical Research, The Second Xiangya Hospital of Central South University, Changsha, Hunan, China.
Clinical Medicine 5-Year Program, 19 Grade, Xiangya School of Medicine, Central South University, Changsha, China.
Front Neurosci. 2023 Feb 6;17:1105158. doi: 10.3389/fnins.2023.1105158. eCollection 2023.
Glaucoma is the first irreversible and second blindness disease, which is characterized by the death of retinal ganglion cells (RGCs) and degeneration of the optic nerve. Previous works have indicated that apoptosis is the main reason for RGC death in glaucoma. Although many studies have investigated the mechanism of apoptosis and different strategies targeting apoptosis to protect the RGCs and finally recover the impaired vision in the glaucoma. However, the global trend and hotspots of apoptosis in glaucoma have not been well illustrated and discussed.
Documents were extracted from the Web of Science Core Collection on November 2, 2022. We selected articles and reviews published in English from January 1, 1999 to November 1, 2022 to perform visual analysis and statistical analysis of countries, institutions, authors, references and keywords by VOSviewer 1.6.18 and CiteSpace 5.8.
The publications about apoptosis in glaucoma show an increasing trend over time. Besides, the authors, institutions in the US and China published the most numbers of articles with the highest citation, which may be leading the research in the field of apoptosis in glaucoma. Last, series of advanced research results, technology and treatment for glaucoma, such as the discovery of key regulatory mechanisms on RGC apoptosis are emerging and will provide precise strategies for the treatment of glaucoma.
This research will broaden our comprehension about the role of apoptosis in the process of glaucoma, and provide guidelines for us in basic research and disease treatment in the further.
青光眼是首要的不可逆致盲性眼病,其特征为视网膜神经节细胞(RGCs)死亡和视神经变性。既往研究表明,细胞凋亡是青光眼患者RGCs死亡的主要原因。尽管许多研究已探究细胞凋亡机制,并采用不同的针对细胞凋亡的策略来保护RGCs,最终恢复青光眼受损视力。然而,青光眼细胞凋亡的整体趋势和热点尚未得到充分阐释和讨论。
于2022年11月2日从科学网核心合集提取文献。我们选取1999年1月1日至2022年11月1日以英文发表的文章和综述,通过VOSviewer 1.6.18和CiteSpace 5.8对国家、机构、作者、参考文献和关键词进行可视化分析和统计分析。
关于青光眼细胞凋亡的出版物数量随时间呈上升趋势。此外,美国和中国的作者及机构发表的文章数量最多且被引频次最高,可能引领着青光眼细胞凋亡领域的研究。最后,一系列关于青光眼的先进研究成果、技术和治疗方法不断涌现,如RGC细胞凋亡关键调控机制的发现,将为青光眼治疗提供精准策略。
本研究将拓宽我们对细胞凋亡在青光眼发病过程中作用的理解,并为我们今后的基础研究和疾病治疗提供指导。