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大脑中炎性小体与细胞焦亡的文献计量分析

Bibliometric Analysis of the Inflammasome and Pyroptosis in Brain.

作者信息

Chen Yuhua, Li Yan, Guo Limin, Hong Jun, Zhao Wenjuan, Hu Ximin, Chang Cuicui, Liu Wei, Xiong Kun

机构信息

Central Laboratory of Medicine School, Xi'an Peihua University, Xi'an, China.

Department of Anatomy and Neurobiology, School of Basic Medical Science, Central South University, Changsha, China.

出版信息

Front Pharmacol. 2021 Jan 20;11:626502. doi: 10.3389/fphar.2020.626502. eCollection 2020.

Abstract

Considering the pivotal role of inflammasome/pyroptosis in biological function, we visually analyzed the research hotspots of inflammasome/pyroptosis related to the brain in this work through the method of bibliometrics from the Web of Science (WOS) Core database over the past two decades. Documents were retrieved from WOS Core Collection on October 16, 2020. The search terms and strategies used for the WOS database are as follow: # 1, "pyroptosis"; # 2, "pyroptotic"; # 3, "inflammasome"; # 4, "pyroptosome"; # 5 "brain"; # 6, "# 1" OR "# 2" OR "# 3" OR "# 4"; # 7, "# 5" AND "# 6". We selected articles and reviews published in English from 2000 to 2020. Visualization analysis and statistical analysis were performed by VOSviewer 1.6.15 and CiteSpace 5.7. R2. 1,222 documents were selected for analysis. In the approximately 20 years since the pyroptosis was first presented, the publications regarding the inflammasome and pyroptosis in brain were presented since 2005. The number of annual publications increased gradually over a decade, which are involved in this work, and will continue to increase in 2020. The most prolific country was China with 523 documents but the United States was with 16,328 citations. The most influential author was Juan Pablo de Rivero Vaccari with 27 documents who worked at the University of Miami. The bibliometric analysis showed that inflammasome/pyroptosis involved a variety of brain cell types (microglia, astrocyte, neuron, etc.), physiological processes, ER stress, mitochondrial function, oxidative stress, and disease (traumatic brain injuries, stroke, Alzheimer's disease, and Parkinson's disease). The research of inflammasome/pyroptosis in brain will continue to be the hotspot. We recommend investigating the mechanism of mitochondrial molecules involved in the complex crosstalk of pyroptosis and regulated cell deaths (RCDs) in brain glial cells, which will facilitate the development of effective therapeutic strategies targeting inflammasome/pyroptosis and large-scale clinical trials. Thus, this study presents the trend and characteristic of inflammasome/pyroptosis in brain, which provided a helpful bibliometric analysis for researchers to further studies.

摘要

鉴于炎性小体/细胞焦亡在生物学功能中的关键作用,在这项工作中,我们通过文献计量学方法,对过去二十年来自Web of Science(WOS)核心数据库中与脑相关的炎性小体/细胞焦亡的研究热点进行了可视化分析。文献于2020年10月16日从WOS核心合集检索。用于WOS数据库的检索词和策略如下:#1,“细胞焦亡”;#2,“细胞焦亡的”;#3,“炎性小体”;#4,“细胞焦亡体”;#5,“脑”;#6,“#1”或“#2”或“#3”或“#4”;#7,“#5”与“#6”。我们选择了2000年至2020年以英文发表的文章和综述。通过VOSviewer 1.6.15和CiteSpace 5.7.R2进行可视化分析和统计分析。共选择1222篇文献进行分析。自细胞焦亡首次提出后的约20年里,关于脑内炎性小体和细胞焦亡的出版物自2005年开始出现。在本研究涉及的十年间,年出版物数量逐渐增加,并且在2020年仍将继续增加。发文量最多的国家是中国,有523篇文献,但美国的被引频次为16328次。最具影响力的作者是胡安·巴勃罗·德·里韦罗·瓦卡里,有27篇文献,他就职于迈阿密大学。文献计量分析表明,炎性小体/细胞焦亡涉及多种脑细胞类型(小胶质细胞、星形胶质细胞、神经元等)、生理过程、内质网应激、线粒体功能、氧化应激以及疾病(创伤性脑损伤、中风、阿尔茨海默病和帕金森病)。脑内炎性小体/细胞焦亡的研究仍将是热点。我们建议研究参与脑胶质细胞中细胞焦亡与调节性细胞死亡(RCDs)复杂相互作用的线粒体分子机制,这将有助于开发针对炎性小体/细胞焦亡的有效治疗策略并开展大规模临床试验。因此,本研究展示了脑内炎性小体/细胞焦亡的趋势和特征,为研究人员进一步开展研究提供了有益的文献计量分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b6f/7854385/a12194db6981/fphar-11-626502-g001.jpg

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