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Research trends in glioma chemoradiotherapy resistance: a bibliometric analysis (2003-2023)
Shishi Yu1, Jinya Wu1, Yuan Jing1
1The Editorial Department of the Journal of Southern Medical University, Southern Medical University, Guangzhou, Guangdong, China.
Background:
Glioma is the most aggressive primary malignant tumor of the central nervous system, characterized by high recurrence rates and resistance to chemoradiotherapy, making therapeutic resistance a major challenge in neuro-oncology. Recent research emphasizes the role of the tumor microenvironment (TME) and immune modulation in glioma progression and resistance. Despite these advances, a comprehensive bibliometric analysis of research trends in glioma chemoradiotherapy resistance over the past two decades is lacking. This study aims to systematically evaluate the research landscape, identify emerging hotspots, and provide guidance for future investigations.
Methods:
Articles on glioma chemoradiotherapy resistance published between 2003 and 2023 were retrieved from the Web of Science Core Collection, resulting in 4,528 publications. Bibliometric tools, including VOSviewer, CiteSpace, and R packages such as bibliometrix and ggplot2, were used to analyze co-authorship networks, keyword evolution, and citation bursts to identify collaboration patterns, thematic developments, and influential contributions.
Results:
Publication output increased significantly between 2013 and 2022, peaking at 650 articles in 2022. Over 1,000 institutions from 88 countries contributed to this research. The United States, Switzerland, and Germany showed the highest citation impact, while China led in publication volume but demonstrated relatively lower citation influence. The research focus has shifted from traditional topics such as the "MGMT gene" to emerging areas including the "tumor microenvironment," "immune infiltration," and "nanoparticles." The androgen receptor was identified as a promising but underexplored therapeutic target.
Conclusions:
Research on glioma chemoradiotherapy resistance has seen substantial growth, with increasing emphasis on immune modulation, the tumor microenvironment, and novel therapeutic targets such as the androgen receptor. This study represents the first comprehensive bibliometric analysis of this field, providing a detailed overview of research trends and potential directions for future studies. The findings highlight the need for strengthened international collaboration and multidisciplinary approaches to address the challenges of therapeutic resistance in glioma.
Insights
This bibliometric analysis reveals a significant increase in glioma chemoradiotherapy resistance research, shifting focus to the tumor microenvironment and immune modulation. Emerging targets like the androgen receptor show promise for future therapeutic strategies.
Area of Science:
- Neuro-oncology
- Cancer Research
- Immunotherapy
Background:
- Glioma, a primary central nervous system malignancy, presents significant therapeutic resistance challenges.
- Tumor microenvironment (TME) and immune modulation are critical factors in glioma progression and treatment resistance.
- A comprehensive bibliometric analysis of glioma chemoradiotherapy resistance research over the past two decades was lacking.
Purpose of the Study:
- To systematically evaluate the research landscape of glioma chemoradiotherapy resistance.
- To identify emerging research hotspots and influential contributions.
- To provide guidance for future research directions in this field.
Main Methods:
- Bibliometric analysis of 4,528 publications from 2003-2023 in the Web of Science Core Collection.
- Utilized VOSviewer, CiteSpace, and R packages (bibliometrix, ggplot2) for network and trend analysis.
- Analyzed co-authorship, keyword evolution, and citation bursts to map research patterns.
Main Results:
- Significant publication growth observed from 2013-2022, peaking in 2022.
- Research focus shifted from "MGMT gene" to "tumor microenvironment," "immune infiltration," and "nanoparticles."
- Androgen receptor identified as a promising, yet underexplored, therapeutic target.
Conclusions:
- Research on glioma chemoradiotherapy resistance is rapidly expanding, emphasizing immune modulation and TME.
- This study provides the first comprehensive bibliometric overview, highlighting key trends and future directions.
- Strengthened international collaboration and multidisciplinary approaches are crucial for overcoming therapeutic resistance in glioma.
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