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Global trends in PANoptosis research: bibliometrics and knowledge graph analysis
Yi Zheng1,2, Jiachen Li1,2, Bo Liu1,2
1Department of General Surgery, The First Affiliated Hospital of Harbin Medical University, Harbin, China.
Abstract:
PANoptosis has recently been discovered as a new type of cell death. PANoptosis mainly refers to the significant interaction among the three programmed cell death pathways of apoptosis, necroptosis, and pyroptosis. Despite this, only a few studies have examined the systematic literature in this area. By analyzing the bibliometric data for PANoptosis, we can visualize the current hotspots and predicted trends in research. This study analyzed bibliometric indicators using the Histcite Pro 2.0 tool, which searches the Web of Science for PANoptosis literature published between 2016 and 2022. A bibliometric analysis was performed using Histcite Pro 2.0, while research trends and hotspots were visualized using VOSviewer, CiteSpace and BioBERT. The output of related literature was low in the four years from the first presentation of PANoptosis in 2016 to 2020. The volume of relevant literature grew exponentially between 2020 and 2022. The United States and China play a leading role in this field. Although China started late, its research in this field is developing rapidly. As research progressed, more focus was placed on the relationship between PANoptosis and pyroptosis, as well as apoptosis and necrosis. Now is a rapid development stage of PANoptosis research. Most of the research focuses on the cellular level, and the focus is more on the treatment of tumor-related diseases. The current focus of this area is PANoptosis mechanisms in cancer and inflammation. It can be seen from the burst analysis of keywords that caspase1 and host defense have consistently been research hotspots in the field of PANoptosis, while the frequency of NLRC4, causes of autoinflammation, recognition, NLRP3, and Gasdermin D has gradually increased, all of which have become research hotspots in recent years. Finally, we used the BioBERT biomedical language model to mine the most documented genes and diseases in the PANoptosis field articles, pointing out the direction for subsequent research steps. According to a bibliometric analysis, researchers have shown an increased interest in PANoptosis over the past few years. Researchers initially focused on the molecular mechanism of PANoptosis and pyroptosis, apoptosis, and necroptosis. The role of PANoptosis in diseases and conditions such as inflammation and tumors is one of the current research hotspots in this area. The focus is more on treating inflammation-related diseases, which will become the key development direction of future research.
Insights
PANoptosis, a novel cell death pathway, involves apoptosis, necroptosis, and pyroptosis. Research is rapidly advancing, with a growing focus on its role in cancer and inflammation, particularly in tumor treatment.
Area of Science:
- Cellular Biology
- Immunology
- Biomedical Research
Background:
- PANoptosis is a newly identified programmed cell death pathway.
- It integrates apoptosis, necroptosis, and pyroptosis.
- Systematic literature analysis on PANoptosis is limited.
Purpose of the Study:
- To perform a bibliometric analysis of PANoptosis research.
- To identify research hotspots and predict future trends.
- To visualize the evolution of PANoptosis research from 2016 to 2022.
Main Methods:
- Bibliometric analysis using Histcite Pro 2.0.
- Visualization of trends and hotspots using VOSviewer and CiteSpace.
- BioBERT language model for gene and disease mining.
Main Results:
- Low publication volume from 2016-2020, followed by exponential growth (2020-2022).
- The United States and China are leading research nations, with China showing rapid development.
- Research focus shifted towards PANoptosis mechanisms in cancer and inflammation, particularly in tumor treatment.
Conclusions:
- PANoptosis research is in a rapid development stage.
- Current hotspots include PANoptosis mechanisms in cancer and inflammation, with increasing focus on NLRC4, NLRP3, and Gasdermin D.
- Future research directions include exploring PANoptosis in treating inflammation-related diseases and tumors.
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