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2013 年至 2023 年癌症纳米医学的文献计量学和可视化分析。

Bibliometric and visualized analysis of cancer nanomedicine from 2013 to 2023.

机构信息

Department of Pharmacy, The First Affiliated Hospital of Soochow University, Suzhou, 215006, China.

Soochow University Library, Soochow University, Suzhou, 215006, China.

出版信息

Drug Deliv Transl Res. 2024 Jun;14(6):1708-1724. doi: 10.1007/s13346-023-01485-7. Epub 2023 Dec 31.


DOI:10.1007/s13346-023-01485-7
PMID:38161193
Abstract

Cancer nanomedicine has been an emerging field for drug development against malignant tumors during the past three decades. A bibliometric analysis was performed to characterize the current international trends and present visual representations of the evolution and emerging trends in the research and development of nanocarriers for cancer treatment. This study employed bibliometric analysis and visualization techniques to analyze the literature on antitumor nanocarriers published between 2013 and 2023. A total of 98,980 articles on antitumor nanocarriers were retrieved from the Web of Science Core Collection (WoSCC) database and analyzed using the Citespace software for specific characteristics such as publication year, countries/regions, organizations, keywords, and references. Network visualization was constructed by VOSviewer and Citespace. From 2013 to 2023, the annual global publications increased 7.39 times, from 1851 to 13,683. People's Republic of China (2588 publications) was the most productive country. Chinese Academy of Sciences (298 publications) was the most productive organization. The top 5 high-frequency keywords were "nanoparticles," "drug delivery," "nanomedicine," "cancer," and "nanocarriers." The keywords with the strongest citation bursts recently were "cancer immunotherapy," "microenvironment," "antitumor immunity," etc., which indicated the emerging frontiers of antitumor nanomedicine. The co-occurrence cluster analysis of the keywords formed 6 clusters, and most of the top 10 publications by citation counts focused on cluster #1 (nanocarriers) and cluster #2 (cancer immunotherapy). We further provided insightful discussions into the identified subtopics to help researchers gain more details of current trends and hotspots in this field. The present study processes a macro-level literature analysis of antitumor nanocarriers and provides new perspectives and research directions for future development in cancer nanomedicine.

摘要

在过去的三十年中,癌症纳米医学一直是药物开发针对恶性肿瘤的新兴领域。进行了文献计量分析,以描述当前国际趋势,并展示癌症治疗用纳米载体的研究和开发的演变和新兴趋势的直观表示。本研究采用文献计量分析和可视化技术,分析了 2013 年至 2023 年期间发表的关于抗肿瘤纳米载体的文献。从 Web of Science Core Collection (WoSCC) 数据库中检索到 98980 篇关于抗肿瘤纳米载体的文章,并使用 Citespace 软件分析了这些文章,具体特征包括出版年份、国家/地区、组织、关键词和参考文献。通过 VOSviewer 和 Citespace 构建网络可视化。从 2013 年到 2023 年,全球出版物的年增长率增长了 7.39 倍,从 1851 篇增加到 13683 篇。中华人民共和国(2588 篇)是最具生产力的国家。中国科学院(298 篇)是最具生产力的组织。前 5 个高频关键词是“纳米粒子”、“药物输送”、“纳米医学”、“癌症”和“纳米载体”。最近具有最强引文爆发的关键词是“癌症免疫疗法”、“微环境”、“抗肿瘤免疫”等,这表明了抗肿瘤纳米医学的新兴前沿。关键词的共现聚类分析形成了 6 个聚类,并且引用计数排名前 10 的出版物中,大多数都集中在聚类 #1(纳米载体)和聚类 #2(癌症免疫疗法)。我们进一步深入探讨了所确定的子主题,以帮助研究人员更详细地了解该领域当前的趋势和热点。本研究对抗肿瘤纳米载体进行了宏观文献分析,为癌症纳米医学的未来发展提供了新的视角和研究方向。

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引用本文的文献

[1]
Current perspectives and global trends of nanotechnology in advanced breast cancer: a bibliometric and visualized analysis.

Discov Oncol. 2025-8-29

[2]
Radiolabeled Nanogels: From Multimodality Imaging to Combination Therapy of Cancer.

Small Sci. 2025-6-19

[3]
Current status and hotspots in breast cancer patient self-management research: A bibliometric and visual analysis via CiteSpace.

Medicine (Baltimore). 2024-11-15

[4]
Nano-Drug Carriers for Targeted Therapeutic Approaches in Oral Cancer: A Systematic Review.

J Maxillofac Oral Surg. 2024-8

[5]
Comparison of clinical research trends and hotspots in allergic rhinitis and asthma from 2013 to 2023 based on bibliometric analysis.

Heliyon. 2024-6-11

本文引用的文献

[1]
Nanomedicine in cancer therapy.

Signal Transduct Target Ther. 2023-8-7

[2]
Development of CRISPR/Cas Delivery Systems for In Vivo Precision Genome Editing.

Acc Chem Res. 2023-8-15

[3]
Genome editing in the treatment of ocular diseases.

Exp Mol Med. 2023-8

[4]
Targeting endothelial permeability in the EPR effect.

J Control Release. 2023-9

[5]
Tumor microenvironment-mediated NIR-I-to-NIR-II transformation of Au self-assembly for theranostics.

Acta Biomater. 2023-9-15

[6]
Oxygen-Generating Organic/Inorganic Self-Assembled Nanocolloids for Tumor-Activated Dual-Model Imaging-Guided Photodynamic Therapy.

ACS Appl Mater Interfaces. 2023-8-2

[7]
Multiple therapeutic mechanisms of pyrrolic N-rich g-CN nanosheets with enzyme-like function in the tumor microenvironment.

J Colloid Interface Sci. 2023-11-15

[8]
Development of ionic liquid-coated PLGA nanoparticles for applications in intravenous drug delivery.

Nat Protoc. 2023-8

[9]
A localized hydrogel-mediated chemotherapy causes immunogenic cell death via activation of ceramide-mediated unfolded protein response.

Sci Adv. 2023-6-30

[10]
A Near-Infrared-II Fluorescent Nanocatalyst for Enhanced CAR T Cell Therapy against Solid Tumor by Immune Reprogramming.

ACS Nano. 2023-6-27

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