Yao Qilong, Hu Yujun, Liu Ziwei, Liu Jun-Zhong, Jiao Qing-Cai
State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, Nanjing, 210023, China.
Mol Biotechnol. 2025 Apr 2. doi: 10.1007/s12033-025-01421-9.
Nitrogen-containing compounds, particularly those with chiral amine structures, play a crucial role in the development of organic active pharmaceutical ingredients. Imine reductases (IREDs), NAD(P)H-dependent enzymes that catalyze the reduction of cyclic imines and the reductive amination of prochiral ketones, offer significant industrial potential for the synthesis of chiral amines. However, despite the growing body of research, a comprehensive and unbiased assessment of IRED research remains lacking. This study aims to explore the research landscape and evolution of IREDs using bibliometric and knowledge mapping methods. A total of 239 research articles and reviews on IREDs, published between 2010 and 2024, were retrieved from the Web of Science Core Collection and analyzed using tools such as CiteSpace, VOSviewer, Pajek, and Scimago Graphica. Results showed a consistent increase in both publications and citations, with a sharp rise since 2014. Collaboration network analysis revealed that the United Kingdom leads the field in terms of publications and influential institutions, while ChemCatChem was identified as the journal with the highest number of articles. Nicholas J. Turner emerged as a key researcher, having published the most papers and achieving the second-highest citation frequency. Research trends and keyword analysis highlighted areas of focus such as IRED crystal structure resolution, protein engineering modifications, and expanded industrial applications, including multi-enzyme cascade reactions. Ongoing advancements in synthetic biology, protein modifications, and enzyme engineering are expected to drive further studies on highly active IREDs for asymmetric synthesis of pharmaceutical compounds, positioning this research at the forefront of the field. By employing bibliometric analysis, this study provides the first visual representation of IRED research, offering valuable insights into current trends and emerging topics that will aid scholars in identifying key research areas and potential collaborators.
含氮化合物,特别是那些具有手性胺结构的化合物,在有机活性药物成分的开发中起着至关重要的作用。亚胺还原酶(IREDs)是一类依赖NAD(P)H的酶,可催化环状亚胺的还原以及前手性酮的还原胺化反应,在手性胺的合成中具有巨大的工业潜力。然而,尽管研究不断增加,但仍缺乏对IRED研究的全面且无偏倚的评估。本研究旨在运用文献计量学和知识图谱方法探索IREDs的研究概况和发展历程。从科学网核心合集检索了2010年至2024年间发表的239篇关于IREDs的研究文章和综述,并使用CiteSpace、VOSviewer、Pajek和Scimago Graphica等工具进行分析。结果显示,出版物数量和引用次数均持续增加,自2014年以来急剧上升。合作网络分析表明,英国在出版物数量和有影响力的机构方面领先该领域,而《化学催化》被确定为发表文章数量最多的期刊。尼古拉斯·J·特纳成为关键研究者,发表的论文最多,引用频率排名第二。研究趋势和关键词分析突出了IRED晶体结构解析、蛋白质工程修饰以及扩展的工业应用等重点领域,包括多酶级联反应。合成生物学、蛋白质修饰和酶工程方面的持续进展有望推动对用于药物化合物不对称合成的高活性IREDs的进一步研究,使该研究处于该领域的前沿。通过文献计量分析,本研究首次呈现了IRED研究的可视化图景,为当前趋势和新兴主题提供了有价值的见解,有助于学者识别关键研究领域和潜在合作者。