提高mRNA疫苗领域主路径提取效率:一种利用中间专利、屏蔽起始和末端专利边缘的新方法。

IF 4.1 4区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Human Vaccines & Immunotherapeutics Pub Date : 2025-12-01 Epub Date: 2025-01-22 DOI:10.1080/21645515.2025.2454078
Ting Zhang, Zhongquan Jian, Juan Chen, Dongzi Xu, Xiaoyi Yang, Yan Lu, Shu Yan, Lizi Pan, Qingqiang Wu, Zhaolian Ouyang
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引用次数: 0

摘要

mRNA疫苗具有突破性的技术优势和广泛的应用潜力。它们的迅速发展,特别是在2019冠状病毒病大流行期间,是数十年研究和众多技术突破的结果。这些发现相互依存,形成了密集的、相互联系的进步网络。因此,研究mRNA疫苗的技术发展路径至关重要。主路径分析对于在复杂和相互关联的网络中规划发展轨迹特别有效,是确定关键节点和创新的有力工具。本研究介绍了一种从mRNA疫苗领域专利引文网络中提取主要路径的新方法。最初,我们屏蔽了连接原点和终点专利的边缘。随后,我们从中间专利中提取主要路径,然后根据引文关系重新整合连接起始专利和终止专利的边缘,从而得到全面的主要路径提取。研究结果表明,mRNA疫苗领域的全局主路径、全局关键路径主路径、局部转发主路径和局部关键路径主路径具有一致性。主要途径的专利主要集中在核酸修饰和递送系统上。当地落后的主要路径确定了更多的专利,特别是那些与诉讼有关的专利,提供了更丰富、更多样化的技术见解。这项研究显著推进了MPA的方法学,创新的屏蔽技术为导航复杂网络提供了新的视角,并对mRNA疫苗领域的技术发展提供了更深入的了解。
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Efficiency enhancement in main path extraction in mRNA vaccine field: A novel approach leveraging intermediate patents, with shielding origin and terminus patent edges.

mRNA vaccines offer groundbreaking technological advantages and broad application potential. Their rapid advancement, particularly during the COVID-19 pandemic, is the result of decades of research and numerous technological breakthroughs. These discoveries build upon each other, forming dense, interconnected networks of progress. Studying the technological development paths of mRNA vaccines is therefore essential. Main path analysis (MPA) is particularly effective for mapping out development trajectories within complex and interconnected networks, which serves as a powerful tool for identifying key nodes and innovations. This study introduces a novel approach to extracting main paths from a patent citation network in the mRNA vaccine field. Initially, we shielded edges connecting the origin and terminus patents. Subsequently, we extracted the main paths from intermediate patents, and then, we reintegrated the edges connecting the origin and terminus patents based on the citation relationships, resulting in a comprehensive extraction of the main paths. The research findings indicate a consistency among the global main paths, global key-route main paths, local forward main paths, and local key-route main paths within the mRNA vaccine field. The patents on the main paths predominantly focus on nucleic acid modifications and delivery systems. The local backward main paths identify a greater number of patents, especially those related to litigation, offering a richer and more diverse set of technological insights. This study significantly advances the methodology of MPA, with the innovative shielding technique offering a fresh perspective for navigating complex networks and providing a deeper understanding of technological development in the mRNA vaccine domain.

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来源期刊
Human Vaccines & Immunotherapeutics
Human Vaccines & Immunotherapeutics BIOTECHNOLOGY & APPLIED MICROBIOLOGY-IMMUNOLOGY
CiteScore
7.90
自引率
8.30%
发文量
489
审稿时长
3-6 weeks
期刊介绍: (formerly Human Vaccines; issn 1554-8619) Vaccine research and development is extending its reach beyond the prevention of bacterial or viral diseases. There are experimental vaccines for immunotherapeutic purposes and for applications outside of infectious diseases, in diverse fields such as cancer, autoimmunity, allergy, Alzheimer’s and addiction. Many of these vaccines and immunotherapeutics should become available in the next two decades, with consequent benefit for human health. Continued advancement in this field will benefit from a forum that can (A) help to promote interest by keeping investigators updated, and (B) enable an exchange of ideas regarding the latest progress in the many topics pertaining to vaccines and immunotherapeutics. Human Vaccines & Immunotherapeutics provides such a forum. It is published monthly in a format that is accessible to a wide international audience in the academic, industrial and public sectors.
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