A Bibliometric Analysis of P2X7R in Cardiovascular Diseases From 2005 to 2024

嘌呤能受体 医学 文献计量学 中国 基础研究 生物信息学 替代医学 病理 图书馆学 政治学 生物 法学 计算机科学
作者
Juanjuan Tan,Wenqi Zhou,Zhiye Guo,Li Cheng,Yalong Kang,Qiong Wang,Jing Dong,Haifang Wang,Qi Zhang,Li Shen,Kai Huang
出处
期刊:Current Cardiology Reviews [Bentham Science Publishers]
卷期号:21
标识
DOI:10.2174/011573403x376830250619055153
摘要

Introduction: The P2X7 receptor (P2X7R), which mediates inflammation, is implicated in an extensive variety of diseases, including cardiovascular dysfunction. Recently, studies focusing on the role of P2X7R in cardiovascular disorders have garnered significant attention. However, a bibliometric evaluation within this area has yet to be carried out. Methods: A bibliometric analysis was performed by searching for research related to P2X7R and cardiovascular diseases in the Web of Science Core Collection (WoSCC) database from 2005 to 2024. The tools CiteSpace and VOSviewer were utilized to analyze data and create visual representations of various elements, including countries, institutions, authors, journals, and keywords. Results: Over the past two decades, 371 articles in English were obtained in the last 20 years. The People's Republic of China, Nanchang University, the journal 'Purinergic Signalling,' and author Shandong Liang had the highest productivity in their respective categories. The top 4 keywords were ''activation,'' ''p2x7 receptor,'' ''ATP,'' and ''inflammation''. Burst keyword analysis indicated that ''purinergic signaling'' and ''oxidative stress'' are emerging key areas worthy of further investigation. These topics, seeing a surge in interest, are predicted to remain prominent in research. Discussion: This is the first bibliometric analysis of P2X7R in cardiovascular disorders, which reports the hot spots and emerging trends. The interaction between ''purinergic signaling,'' ''inflammation,'' and ''oxidative stress'' are considered to be the current research priorities, suggesting that these topics are likely to remain central in future research. Conclusion: This study underscores the growing importance of P2X7R in cardiovascular research and offers valuable insights to guide future investigations.
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