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Title

Luteolin: A Comprehensive and Visualized Analysis of Research Hotspots and Its Antitumor Mechanisms.

Authors

Wang, Jiaxuan; Li, Hao; Wang, Zhenru; Ruan, Shanming

Abstract

The aim of this study was to analyze the research hotspots and mechanisms of luteolin in tumor-related fields using bibliometric and bioinformatic approaches to guide future research. We conducted a comprehensive screening of all articles on luteolin and tumors in Web of Science from 2008 to 2023. The extracted words from these publications were visualized using VOSviewer, Scimago Graphica, and CiteSpace. Public databases were used to collect luteolin and tumor-related targets. GO and KEGG analyses of luteolin antitumor-related genes were performed using Metascape. Protein interaction networks were built with Cytoscape and STRING, identifying hub targets of luteolin in antitumor activity. Subsequently, the binding capacity of luteolin to these hub targets was assessed using molecular docking technology. We found that China dominated this field, the Egyptian Knowledge Bank published the most articles, and Molecules had the highest number of related publications. Recently, network pharmacology, target, traditional Chinese medicine, and nanoparticles have become research hotspots in luteolin's antitumor research. A total of 483 overlapping genes between luteolin and tumors were identified, and they were closely associated with the cancer-associated pathways, PI3K-Akt, and MAPK signaling pathways. Luteolin forms a complex network of antitumor-related genes, with TP53, TNF, STAT3, AKT1, JUN, IL6, and SRC playing key roles and showing strong binding affinity to luteolin. Computer technology is becoming increasingly integral to the discipline, and future research will focus on more precise antitumor mechanisms and effective clinical applications.

Subjects

DATABASES; COMPUTER-assisted molecular modeling; CHINESE medicine; SERIAL publications; COMPUTER software; INTERPROFESSIONAL relations; PERIODICAL articles; CLUSTER analysis (Statistics); PHARMACEUTICAL chemistry; PROFESSIONAL associations; CELLULAR signal transduction; CITATION analysis; AUTHORSHIP; FLAVONES; BIOINFORMATICS; GENES; INTERNATIONAL relations; MEDICAL research; BIBLIOMETRICS; IMPACT factor (Citation analysis); TUMORS; AUTHORS; DATA analysis software; NANOPARTICLES

Publication

American Journal of Chinese Medicine, 2024, Vol 52, Issue 8, p2377

ISSN

0192-415X

Publication type

Academic Journal

DOI

10.1142/S0192415X24500903

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