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Published on: September 9, 2021
A bibliometric and visual analysis of Jak1 to explore trends and frontiers
Cong Yu1, Jiamin Cao2, Xiaodong Xie1
1Graduate School, Jiangxi University of Traditional Chinese Medicine Nanchang, Jiangxi, China.
Background:
JAK1, a member of the JAK kinase family, is involved in the signal transduction of multiple cytokine pathways and is crucial in the onset and progression of inflammation and tumours. Consequently, JAK1 has garnered significant attention in recent years.
Methods:
We use bibliometric and visual analysis to evaluate the thematic trends and knowledge structure of TRPV1's research papers on JAK1, sourced from the Web of Science core collection from 2003 to 2024. CiteSpace is used to analyze references and keywords of authors, institutions, countries, and commonly cited, and applies co-current and clustering functions to generate visual knowledge maps.
Results:
A total of 3,686 articles were incorporated. The primary research domain of JAK1 is oncology; the United States leads in publication volume, with the University of Texas holding the most prominent central position. The keyword distribution indicates that the literature on JAK1 from 2003 to 2009 primarily concentrated on mechanistic studies, encompassing gene expression, activation, pathways, and cell apoptosis. From 2008 to 2018, research hotspots predominantly examined the association between JAK1 and various disease atlases. Beginning in 2012 and extending to 2024, the focus shifted towards the research and development of clinical pharmaceuticals, along with their safety and efficacy. Gene expression, signal transduction, atopic dermatitis, and JAK1-selective inhibitors have emerged as prominent research areas in recent years, exhibiting significant potential for development.
Conclusion:
This study presents the contemporary status and prospective trends of JAK1 research over the last two decades. Current research focuses on skin inflammation, rheumatoid arthritis, and tumor-related diseases, while new signaling pathways are constantly being discovered. JAK1 inhibitors are gradually being used in clinical practice and have good development prospects, which will become the main trend of future research.
Insights
This bibliometric analysis reveals evolving research trends in Janus Kinase 1 (JAK1) over two decades. Recent focus is on JAK1 inhibitors for treating inflammatory and tumor-related diseases, showing promising clinical development.
Area of Science:
- Biomedical research
- Molecular biology
- Immunology
Background:
- Janus Kinase 1 (JAK1) is a key mediator in cytokine signaling pathways.
- JAK1 plays a critical role in the pathogenesis of inflammatory conditions and cancers.
- Understanding JAK1's role is vital for developing targeted therapies.
Purpose of the Study:
- To analyze the thematic trends and knowledge structure of JAK1 research from 2003 to 2024.
- To identify key research domains, institutions, and emerging hotspots in JAK1 studies.
- To map the evolution of JAK1 research, from basic mechanisms to clinical applications.
Main Methods:
- Bibliometric and visual analysis of 3,686 articles from the Web of Science core collection (2003-2024).
- Utilized CiteSpace software for analyzing author, institution, country, and citation data.
- Applied co-occurrence and clustering functions to generate knowledge maps and identify research trends.
Main Results:
- Oncology is the primary research domain for JAK1, with the United States leading publications.
- Research evolved from mechanistic studies (2003-2009) to disease associations (2008-2018), and clinical pharmaceutical development (2012-2024).
- Recent prominent areas include gene expression, signal transduction, atopic dermatitis, and JAK1-selective inhibitors.
Conclusions:
- JAK1 research has evolved significantly over the past two decades.
- Current research targets skin inflammation, rheumatoid arthritis, and cancer, with ongoing discovery of new signaling pathways.
- JAK1 inhibitors show strong clinical potential and are a major trend in future research.
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