Ren Chao, Zhang Jingjing, Yang Ting, Wang Yao, Song Xiaoyu, Wang Hanrui, Liu Wanchen, Mou Yakui, Song Xicheng
Department of Otorhinolaryngology, Head and Neck Surgery, Yantai Yuhuangding Hospital, Qingdao University, Yantai, People's Republic of China.
Shandong Provincial Clinical Research Center for Otorhinolaryngologic Diseases, Yantai Yuhuangding Hospital, Yantai, People's Republic of China.
J Inflamm Res. 2025 May 16;18:6349-6362. doi: 10.2147/JIR.S522380. eCollection 2025.
The P2X7 receptor (P2X7R), activated by ATP, participates in mediating a variety of biological processes such as the release of inflammatory factors, thereby affecting the pathogenesis of numerous diseases. Despite its clinical significance, comprehensive bibliometric studies on P2X7R-related research remain scarce. To address this gap, we conducted a bibliometric investigation to quantify publication outputs, identify leading contributors, and map geographical distributions of P2X7R-related research, ultimately elucidating current research frontiers and emerging trends. Utilizing visualization techniques, complex bibliometric relationships were transformed into interpretable graphical representations. Our Web of Science query for "P2X7R" identified 4551 original research articles by 13,471 authors published since 1985. Publication volume demonstrated sustained growth, with China emerging as the predominant contributor in quantitative output (1871 articles) and the United States leading in international collaborations. Thematic mapping revealed two principal research areas: "P2X7R, inflammation, microglia" and "P2X7R, apoptosis, purinergic". Notably, "P2X7R, P2 receptors, oxidative stress" encompassed both motor and niche themes, thus representing the trajectory of future development potential. Through bibliometric and visualization analysis, we found that the literature related to P2X7R is on the rise and will enter a new stage of interdisciplinary integration development in the future.
P2X7受体(P2X7R)由三磷酸腺苷(ATP)激活,参与介导多种生物学过程,如炎症因子的释放,从而影响多种疾病的发病机制。尽管其具有临床意义,但关于P2X7R相关研究的全面文献计量学研究仍然匮乏。为了填补这一空白,我们进行了一项文献计量学调查,以量化出版物产出、确定主要贡献者并绘制P2X7R相关研究的地理分布图,最终阐明当前的研究前沿和新趋势。利用可视化技术,将复杂的文献计量学关系转化为可解释的图形表示。我们在科学网(Web of Science)上对“P2X7R”进行检索,共识别出自1985年以来由13471位作者发表的4551篇原创研究文章。出版物数量呈现持续增长态势,中国在定量产出方面成为主要贡献者(1871篇文章),而美国在国际合作方面领先。主题映射揭示了两个主要研究领域:“P2X7R、炎症、小胶质细胞”和“P2X7R、细胞凋亡、嘌呤能”。值得注意的是,“P2X7R、P2受体、氧化应激”涵盖了核心主题和新兴主题,因此代表了未来发展潜力的轨迹。通过文献计量学和可视化分析,我们发现与P2X7R相关的文献正在增加,未来将进入跨学科整合发展的新阶段。