组织工程技术在气管修复中的应用:文献计量学研究。

IF 4.2 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Bioengineered Pub Date : 2023-12-01 Epub Date: 2023-11-06 DOI:10.1080/21655979.2023.2274150
Xiangyu Xu, Zhiming Shen, Yibo Shan, Fei Sun, Yi Lu, Jianwei Zhu, Yiqi Sun, Hongcan Shi
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引用次数: 0

摘要

组织工程气管移植是治疗长段气管损伤的有效方法。这项技术避免了与缺乏供体资源和免疫排斥相关的问题,产生了具有良好生物相容性的人工气管。据我们所知,最近20年组织工程气管的基础和临床研究的系统总结 多年来一直没有进行。在此,我们通过文献计量学的方法分析了组织工程气管研究的发展趋势,并概述了该领域的未来前景。科学网门户网站被选为数据来源。CiteSpace、VOSviewer和文献计量在线分析平台用于分析475项筛选研究的出版物、期刊、国家、机构、作者和关键词的数量。2000年至2023年间,发表的关于组织工程气管的研究数量一直在增加。《生物材料》发表的论文数量最多。美国和中国在这一领域做出了最大贡献。伦敦大学学院发表的研究数量最多,最有成效的研究者是意大利学者Paolo Macchiarini。然而,来自不同国家的各种研究人员和机构之间普遍缺乏密切合作。尽管如此,关键词分析表明,气管支架的制造方法、水凝胶材料和3D生物打印技术是当前流行的研究课题。我们的文献计量学研究将帮助该领域的科学家深入了解当前的研究进展和发展趋势,以指导他们未来的工作,相关领域的研究人员将受益于组织工程气管移植方法的介绍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Application of tissue engineering techniques in tracheal repair: a bibliometric study.

Application of tissue engineering techniques in tracheal repair: a bibliometric study.

Application of tissue engineering techniques in tracheal repair: a bibliometric study.

Application of tissue engineering techniques in tracheal repair: a bibliometric study.

Transplantation of tissue-engineered trachea is an effective treatment for long-segment tracheal injury. This technology avoids problems associated with a lack of donor resources and immune rejection, generating an artificial trachea with good biocompatibility. To our knowledge, a systematic summary of basic and clinical research on tissue-engineered trachea in the last 20 years has not been conducted. Here, we analyzed the development trends of tissue-engineered trachea research by bibliometric means and outlined the future perspectives in this field. The Web of Science portal was selected as the data source. CiteSpace, VOSviewer, and the Bibliometric Online Analysis Platform were used to analyze the number of publications, journals, countries, institutions, authors, and keywords from 475 screened studies. Between 2000 and 2023, the number of published studies on tissue-engineered trachea has been increasing. Biomaterials published the largest number of papers. The United States and China have made the largest contributions to this field. University College London published the highest number of studies, and the most productive researcher was an Italian scholar, Paolo Macchiarini. However, close collaborations between various researchers and institutions from different countries were generally lacking. Despite this, keyword analysis showed that manufacturing methods for tracheal stents, hydrogel materials, and 3D bioprinting technology are current popular research topics. Our bibliometric study will help scientists in this field gain an in-depth understanding of the current research progress and development trends to guide their future work, and researchers in related fields will benefit from the introduction to transplantation methods of tissue-engineered trachea.

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来源期刊
Bioengineered
Bioengineered BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
8.20
自引率
28.60%
发文量
1114
审稿时长
17 weeks
期刊介绍: Bioengineered provides a platform for publishing high quality research on any aspect of genetic engineering which involves the generation of recombinant strains (both prokaryote and eukaryote) for beneficial applications in food, medicine, industry, environment and bio-defense.
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