Mapping global research landscape and trend of nano-drug delivery system for urological cancers: a bibliometric analysis.

Yibo Shi, Zean Fu, Xinyi Yu, Yuanfeng Zhang, Guangrui Fan, Zhiping Wang
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Abstract

Aim: We conducted a bibliometric analysis to quantitatively study the development pathway, research hotspots and evolutionary trends of nano-drug delivery systems (NDDS) in treating urological tumors.Materials & methods: We used the Web of Science Core Collection to retrieve the literature related to NDDS in the urological tumors up to November 1, 2023. Bibliometric analysis and visualization were conducted using CiteSpace, VOSviewer and R-Bibliometrix. The major aspects of analysis included contributions from different countries/regions, authors' contributions, keywords identification, citation frequencies and overall research trends.Results: We included 3,220 articles. The analysis of annual publication trends revealed significant growth in this field since 2010, which has continued to the present day. The United States and China have far exceeded other countries/regions in the publication volume of papers in this field. The progression of the shell structure of NDDS in the urinary system has gradually transitioned from non-biological materials to biocompatible materials and ultimately to completely biocompatible materials. Mucoadhesive NDDS for intravesical drug delivery is a hotspot and a potential research material for bladder cancer.Conclusion: The field of NDDS in urological tumors has emerged as a research hotspot. Future research should focus on synergistic effects of NDDS with other treatment modalities.

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绘制泌尿系统癌症纳米给药系统的全球研究格局和趋势图:文献计量分析。
目的:通过文献计量学分析,定量研究纳米给药系统(NDDS)治疗泌尿系统肿瘤的发展路径、研究热点和演变趋势:我们使用 Web of Science Core Collection 检索了截至 2023 年 11 月 1 日与 NDDS 治疗泌尿系统肿瘤相关的文献。我们使用 CiteSpace、VOSviewer 和 R-Bibliometrix 进行了文献计量分析和可视化。分析的主要方面包括来自不同国家/地区的投稿、作者投稿、关键词识别、引用频率和总体研究趋势:我们共收录了 3220 篇文章。对年度论文发表趋势的分析表明,自 2010 年以来,该领域的论文发表量大幅增长,并一直持续至今。美国和中国在该领域的论文发表量远远超过其他国家/地区。泌尿系统中 NDDS 的外壳结构从非生物材料逐渐过渡到生物相容性材料,并最终过渡到完全生物相容性材料。用于膀胱内给药的粘液黏附型 NDDS 是膀胱癌研究的热点和潜力材料:结论:NDDS 在泌尿系统肿瘤中的应用已成为研究热点。未来的研究应关注 NDDS 与其他治疗方式的协同效应。
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