College of Animal Science and Technology, Guangxi University, Nanning, China.
Changchun Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Changchun, China.
J Transl Med. 2024 Sep 3;22(1):818. doi: 10.1186/s12967-024-05561-5.
Dengue virus (DENV) is the most widespread arbovirus. The World Health Organization (WHO) declared dengue one of the top 10 global health threats in 2019. However, it has been underrepresented in bibliometric analyses. This study employs bibliometric analysis to identify research hotspots and trends, offering a comprehensive overview of the current research dynamics in this field.
We present a report spanning from 1995 to 2023 that provides a unique longitudinal analysis of Dengue virus (DENV) research, revealing significant trends and shifts not extensively covered in previous literature. A total of 10,767 DENV-related documents were considered, with a notable increase in publications, peaking at 747 articles in 2021. Plos Neglected Tropical Diseases has become the leading journal in Dengue virus research, publishing 791 articles in this field-the highest number recorded. Our bibliometric analysis provides a comprehensive mapping of DENV research across multiple dimensions, including vector ecology, virology, and emerging therapies. The study delineates a complex network of immune response genes, including IFNA1, DDX58, IFNB1, STAT1, IRF3, and NFKB1, highlighting significant trends and emerging themes, particularly the impacts of climate change and new outbreaks on disease transmission. Our findings detail the progress and current status of key vaccine candidates, including the licensed Dengvaxia, newer vaccines such as Qdenga and TV003, and updated clinical trials. The study underscores significant advancements in antiviral therapies and vector control strategies for dengue, highlighting innovative drug candidates such as AT-752 and JNJ-1802, and the potential of drug repurposing with agents like Ribavirin, Remdesivir, and Lopinavir. Additionally, it discusses biological control methods, including the introduction of Wolbachia-infected mosquitoes and gene-editing technologies.
This bibliometric study underscores the critical role of interdisciplinary collaboration in advancing DENV research, identifying key trends and areas needing further exploration, including host-virus dynamics, the development and application of antiviral drugs and vaccines, and the use of artificial intelligence. It advocates for strengthened partnerships across various disciplines to effectively tackle the challenges posed by DENV.
登革热病毒(DENV)是分布最广泛的虫媒病毒。世界卫生组织(WHO)在 2019 年将登革热列为全球 10 大健康威胁之一。然而,在文献计量分析中,它的代表性不足。本研究采用文献计量分析来确定研究热点和趋势,为该领域的当前研究动态提供全面概述。
我们提供了一份从 1995 年到 2023 年的报告,对登革热病毒(DENV)研究进行了独特的纵向分析,揭示了以前文献中未广泛涵盖的重要趋势和转变。共考虑了 10767 篇与 DENV 相关的文献,出版物数量显著增加,2021 年达到 747 篇。《公共科学图书馆·被忽视的热带病》已成为登革热病毒研究的领先期刊,在该领域发表了 791 篇文章——这是记录的最高数量。我们的文献计量分析提供了 DENV 研究在多个维度上的全面映射,包括媒介生态学、病毒学和新兴疗法。该研究描绘了一个复杂的免疫反应基因网络,包括 IFNA1、DDX58、IFNB1、STAT1、IRF3 和 NFKB1,突出了重要的趋势和新兴主题,特别是气候变化和新疫情对疾病传播的影响。我们的研究结果详细介绍了关键疫苗候选物的进展和现状,包括已获得许可的 Dengvaxia、新疫苗如 Qdenga 和 TV003 以及更新的临床试验。该研究强调了登革热抗病毒疗法和媒介控制策略的重大进展,突出了 AT-752 和 JNJ-1802 等创新药物候选物以及利巴韦林、瑞德西韦和洛匹那韦等药物再利用的潜力。此外,它还讨论了生物控制方法,包括引入感染沃尔巴克氏体的蚊子和基因编辑技术。
本文献计量研究强调了跨学科合作在推进 DENV 研究中的关键作用,确定了关键趋势和需要进一步探索的领域,包括宿主-病毒动态、抗病毒药物和疫苗的开发和应用以及人工智能的应用。它提倡加强各个学科之间的合作,以有效应对 DENV 带来的挑战。