Department of Burn Surgery, The First Affiliated Hospital of Naval Medical University, Shanghai, China.
Research Unit of Critical Techniques for Treatment of Burns and Combined Burns and Trauma Injury, Chinese Academy of Medical Sciences, Shanghai, China.
Front Endocrinol (Lausanne). 2023 Apr 14;14:1109456. doi: 10.3389/fendo.2023.1109456. eCollection 2023.
Diabetic foot ulcers (DFUs) are one of the most popular and severe complications of diabetes. The persistent non-healing of DFUs may eventually contribute to severe complications such as amputation, which presents patients with significant physical and psychological challenges. Fibroblasts are critical cells in wound healing and perform essential roles in all phases of wound healing. In diabetic foot patients, the disruption of fibroblast function exacerbates the non-healing of the wound. This study aimed to summarize the hotspots and evaluate the global research trends on fibroblast-related DFUs through bibliometric analysis.
Scientific publications on the study of fibroblast-related DFUs from January 1, 2000 to April 27, 2022 were retrieved from the Web of Science Core Collection (WoSCC). Biblioshiny software was primarily performed for the visual analysis of the literature, CiteSpace software and VOSviewer software were used to validate the results.
A total of 479 articles on fibroblast-related DFUs were retrieved. The most published countries, institutions, journals, and authors in this field were the USA, The Chinese University of Hong Kong, Wound Repair and Regeneration, and Seung-Kyu Han. In addition, keyword co-occurrence networks, historical direct citation networks, thematic map, and the trend topics map summarize the research hotspots and trends in this field.
Current studies indicated that research on fibroblast-related DFUs is attracting increasing concern and have clinical implications. The cellular and molecular mechanisms of the DFU pathophysiological process, the molecular mechanisms and therapeutic targets associated with DFUs angiogenesis, and the measures to promote DFUs wound healing are three worthy research hotspots in this field.
糖尿病足溃疡(DFU)是糖尿病最常见和最严重的并发症之一。DFU 的持续不愈合最终可能导致严重的并发症,如截肢,这给患者带来了巨大的身体和心理挑战。成纤维细胞是伤口愈合的关键细胞,在伤口愈合的所有阶段都发挥着重要作用。在糖尿病足患者中,成纤维细胞功能的破坏加剧了伤口的不愈合。本研究旨在通过文献计量学分析总结成纤维细胞相关 DFU 的热点,并评估全球研究趋势。
从 Web of Science 核心合集(WoSCC)中检索了 2000 年 1 月 1 日至 2022 年 4 月 27 日期间关于成纤维细胞相关 DFU 的科学出版物。主要使用 Biblioshiny 软件对文献进行可视化分析,使用 CiteSpace 软件和 VOSviewer 软件验证结果。
共检索到 479 篇关于成纤维细胞相关 DFU 的文章。该领域发表文章最多的国家、机构、期刊和作者分别是美国、中国香港中文大学、《伤口修复与再生》和 Seung-Kyu Han。此外,关键词共现网络、历史直接引文网络、主题图和趋势主题图总结了该领域的研究热点和趋势。
目前的研究表明,成纤维细胞相关 DFU 的研究越来越受到关注,并具有临床意义。DFU 病理生理过程中的细胞和分子机制、与 DFU 血管生成相关的分子机制和治疗靶点以及促进 DFU 伤口愈合的措施是该领域的三个值得研究的热点。