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近红外光免疫疗法在癌症治疗中的应用:文献计量学与可视化分析

Near-infrared photoimmunotherapy in cancer treatment: a bibliometric and visual analysis.

作者信息

Tian Jinglin, Chen Chunbao, Du Xue, Wang Miao

机构信息

Department of Pharmacy, Suzhou Kowloon Hospital, Shanghai Jiaotong University School of Medcine, Suzhou, Jiangsu, China.

Department of Neurosurgery, The 3RD Affiliated Hospital of Chengdu Medical College, Pidu District People's Hospital, Chengdu, Sichuan, China.

出版信息

Front Pharmacol. 2024 Oct 21;15:1485242. doi: 10.3389/fphar.2024.1485242. eCollection 2024.

Abstract

BACKGROUND

Near-infrared photoimmunotherapy (NIR-PIT) is an emerging cancer treatment technology that combines the advantages of optical technology and immunotherapy to provide a highly effective, precise, and low side-effect treatment approach. The aim of this study is to visualize the scientific results and research trends of NIR-PIT based on bibliometric analysis methods.

METHODS

The Web of Science Core Collection (WoSCC) database was searched in August 2024 for relevant publications in the field of NIR-PIT. Data were analyzed using mainly CiteSpace and R software for bibliometric and visual analysis of the country/region, authors, journals, references and keywords of the publications in the field.

RESULTS

A total of 245 publications were retrieved, including articles (n = 173, 70.61%) and reviews (n = 72, 29.39%). The annual and cumulative number of publications increased every year. The highest number of publications was from the United States (149, 60.82%), followed by Japan (70, 28.57%) and China (33, 13.47%). The research institution with the highest number of publications was National Institutes of Health (NIH)-USA (114, 46.53%). Kobayashi H (109) was involved in the highest number of publications, Mitsunaga M (211) was the most frequently cited in total. CANCERS (17) was the most frequently published journal, and NAT MED (220) was the most frequently co-cited journal. The top 10 keywords include near-infrared photoimmunotherapy (166), photodynamic therapy (61), monoclonal antibody (58), (50), cancer (46), expression (31), breast cancer (27), enhanced permeability (24), antibody (23), growth factor receptor (16). Cluster analysis based on the co-occurrence of keywords resulted in 13 clusters, which identified the current research hotspots and future trends of NIR-PIT in cancer treatment.

CONCLUSION

This study systematically investigated the research hotspots and development trends of NIR-PIT in cancer treatment through bibliometric and visual analysis. As an emerging strategy, the research on the application of NIR-PIT in cancer treatment has significantly increased in recent years, mainly focusing on the targeting, immune activation mechanism, and treatment efficacy in solid tumors has received extensive attention. Future studies may focus on improving the efficacy and safety of NIR-PIT in cancer treatment, as well as developing novel photosensitizers and combination therapeutic regimens, and exploring the efficacy of its application in a wide range of solid tumors, which will provide an important reference and guidance for the application of NIR-PIT in clinical translation.

摘要

背景

近红外光免疫疗法(NIR-PIT)是一种新兴的癌症治疗技术,它结合了光学技术和免疫疗法的优势,提供了一种高效、精确且副作用小的治疗方法。本研究的目的是基于文献计量分析方法可视化NIR-PIT的科学成果和研究趋势。

方法

于2024年8月在科学网核心合集(WoSCC)数据库中检索NIR-PIT领域的相关出版物。主要使用CiteSpace和R软件对该领域出版物的国家/地区、作者、期刊、参考文献和关键词进行文献计量和可视化分析。

结果

共检索到245篇出版物,包括文章(n = 173,70.61%)和综述(n = 72,29.39%)。出版物的年度和累积数量逐年增加。出版物数量最多的是美国(149篇,60.82%),其次是日本(70篇,28.57%)和中国(33篇,13.47%)。出版物数量最多的研究机构是美国国立卫生研究院(NIH)(114篇,46.53%)。小林宏(109)参与的出版物数量最多,光永正(211)的总被引次数最多。《Cancers》(17篇)是发表频率最高的期刊,《自然医学》(220次)是被共同引用频率最高的期刊。前10个关键词包括近红外光免疫疗法(166)、光动力疗法(61)、单克隆抗体(58)、(此处原文缺失内容)(50)、癌症(46)、表达(31)、乳腺癌(27)、高通透性(24)、抗体(23)、生长因子受体(16)。基于关键词共现的聚类分析产生了13个聚类,确定了NIR-PIT在癌症治疗中的当前研究热点和未来趋势。

结论

本研究通过文献计量和可视化分析系统地研究了NIR-PIT在癌症治疗中的研究热点和发展趋势。作为一种新兴策略,近年来NIR-PIT在癌症治疗中的应用研究显著增加,主要集中在实体瘤的靶向性、免疫激活机制和治疗效果等方面受到了广泛关注。未来的研究可能集中在提高NIR-PIT在癌症治疗中的疗效和安全性,以及开发新型光敏剂和联合治疗方案,并探索其在广泛实体瘤中的应用效果,这将为NIR-PIT在临床转化中的应用提供重要参考和指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0774/11533137/efe80f77e057/fphar-15-1485242-g001.jpg

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