Wan Yantong, Ding Jianan, Jia Zixuan, Hong Yinghao, Tian Guijie, Zheng Shuqian, Pan Pinfei, Wang Jieyan, Liang Hui
Department of Urology, People's Hospital of Longhua, Shenzhen, Guangdong, 518109, China.
Guangdong Provincial Key Laboratory of Proteomics, Department of Pathophysiology, School of Basic Medical Sciences, Southern Medical University, Guangzhou, China.
Heliyon. 2024 Jun 15;10(12):e32965. doi: 10.1016/j.heliyon.2024.e32965. eCollection 2024 Jun 30.
The use of animal models for biological experiments is no longer sufficient for research related to human life and disease. The development of organ tissues has replaced animal models by mimicking the structure, function, development and homeostasis of natural organs. This provides more opportunities to study human diseases such as cancer, infectious diseases and genetic disorders. In this study, bibliometric methods were used to analyze organoid-related articles published over the last 20+ years to identify emerging trends and frontiers in organoid research. A total of 13,143 articles from 4125 institutions in 86 countries or regions were included in the analysis. The number of papers increased steadily over the 20-year period. The United States was the leading country in terms of number of papers and citations. Harvard Medical School had the highest number of papers published. Keyword analysis revealed research trends and focus areas such as organ tissues, stem cells, 3D culture and tissue engineering. In conclusion, this study used bibliometric and visualization methods to explore the field of organoid research and found that organ tissues are receiving increasing attention in areas such as cancer, drug discovery, personalized medicine, genetic disease modelling and gene repair, making them a current research hotspot and a future research trend.
将动物模型用于生物学实验已不足以开展与人类生命和疾病相关的研究。器官组织的发展通过模拟天然器官的结构、功能、发育和内稳态,取代了动物模型。这为研究诸如癌症、传染病和遗传疾病等人类疾病提供了更多机会。在本研究中,采用文献计量学方法分析了过去20多年来发表的与类器官相关的文章,以确定类器官研究的新兴趋势和前沿领域。分析共纳入了来自86个国家或地区4125个机构的13143篇文章。在这20年期间,论文数量稳步增加。美国在论文数量和被引次数方面领先。哈佛医学院发表的论文数量最多。关键词分析揭示了诸如器官组织、干细胞、3D培养和组织工程等研究趋势和重点领域。总之,本研究采用文献计量学和可视化方法探索类器官研究领域,发现器官组织在癌症、药物发现、个性化医疗、遗传疾病建模和基因修复等领域受到越来越多的关注,使其成为当前的研究热点和未来的研究趋势。