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Published on: January 31, 2025
A Bibliometric Analysis of Exosomes in Cardiovascular Diseases From 2001 to 2021
Dan Ma1, Baoyi Guan1, Luxia Song2
1Xiyuan Hospital, China Academy of Chinese Medical Sciences, Beijing, China.
Insights
Research on exosomes in cardiovascular diseases (CVDs) is rapidly growing. This bibliometric analysis maps current hotspots and future trends, highlighting regenerative medicine and biomarkers for CVDs.
Area of Science:
- Cardiovascular Medicine
- Biotechnology
- Bibliometrics
Background:
- Exosomes are increasingly recognized for their role in cardiovascular diseases (CVDs).
- Limited bibliometric studies exist, hindering a comprehensive overview of research trends.
- This study addresses the need for visualizing research hotspots and trends in exosome-related CVD research.
Purpose of the Study:
- To conduct a bibliometric analysis of exosomes in cardiovascular diseases.
- To visualize research hotspots, trends, and collaborations.
- To guide future basic and clinical research directions.
Main Methods:
- Bibliometric analysis of articles and reviews on exosomes in CVDs.
- Data sourced from the Web of Science Core Collection.
- Knowledge maps generated using CiteSpace and VOSviewer software.
Main Results:
- 1,039 publications were analyzed, showing a yearly increase in research output.
- The US and China lead in publications, with Shanghai Jiao Tong University and Nanjing Medical University as top institutions.
- Key research areas include myocardial infarction, microRNA, mesenchymal stem cells, ischemic heart disease, regeneration, and targeted therapy.
Conclusions:
- Bibliometric analysis identified key research hotspots and trends in exosomes for CVDs.
- Exosome research in cardiovascular medicine is flourishing.
- Future research will likely focus on regenerative medicine, exosome engineering, delivery vehicles, and biomarkers.
Abstract:
Background: Exosomes in cardiovascular diseases (CVDs) have become an active research field with substantial value and potential. Nevertheless, there are few bibliometric studies in this field. We aimed to visualize the research hotspots and trends of exosomes in CVDs using a bibliometric analysis to help understand the future development of basic and clinical research. Methods: The articles and reviews regarding exosomes in the CVDs were culled from the Web of Science Core Collection, and knowledge maps were generated using CiteSpace and VOSviewer software. Results: A total of 1,039 articles were included. The number of exosome articles in the CVDs increased yearly. These publications came from 60 countries/regions, led by the US and China. The primary research institutions were Shanghai Jiao Tong University and Nanjing Medical University. Circulation Research was the journal and co-cited journal with the most studies. We identified 473 authors among which Lucio Barile had the most significant number of articles and Thery C was co-cited most often. After analysis, the most common keywords are myocardium infarction, microRNA and mesenchymal stem cells. Ischemic heart disease, pathogenesis, regeneration, stem cells, targeted therapy, biomarkers, cardiac protection, and others are current and developing areas of study. Conclusion: We identified the research hotspots and trends of exosomes in CVDs using bibliometric and visual methods. Research on exosomes is flourishing in the cardiovascular medicine. Regenerative medicine, exosome engineering, delivery vehicles, and biomarkers will likely become the focus of future research.
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