Renal Division, Peking University First Hospital, Peking University Institute of Nephrology, Key Laboratory of Renal Disease, Ministry of Health of China, Key Laboratory of Chronic Kidney Disease Prevention and Treatment (Peking University), Ministry of Education, Beijing, 100034, China.
Beijing National Laboratory for Molecular Sciences, CAS Laboratory of Colloid and Interface and Thermodynamics CAS Research/Education Center for Excellence in Molecular Sciences, Center for Carbon Neutral Chemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
Adv Mater. 2024 Apr;36(15):e2308915. doi: 10.1002/adma.202308915. Epub 2024 Jan 17.
Nanotechnology profoundly affects the advancement of medicine. Limitations in diagnosing and treating cancer and chronic diseases promote the growth of nanomedicine. However, there are very few analytical and descriptive studies regarding the trajectory of nanomedicine, key research powers, present research landscape, focal investigative points, and future outlooks. Herein, articles and reviews published in the Science Citation Index Expanded of Web of Science Core Collection from first January 2000 to 18th July 2023 are analyzed. Herein, a bibliometric visualization of publication trends, countries/regions, institutions, journals, research categories, themes, references, and keywords is produced and elaborated. Nanomedicine-related academic output is increasing since the COVID-19 pandemic, solidifying the uneven global distribution of research performance. While China leads in terms of publication quantity and has numerous highly productive institutions, the USA has advantages in academic impact, commercialization, and industrial value. Nanomedicine integrates with other disciplines, establishing interdisciplinary platforms, in which drug delivery and nanoparticles remain focal points. Current research focuses on integrating nanomedicine and cell ferroptosis induction in cancer immunotherapy. The keyword "burst testing" identifies promising research directions, including immunogenic cell death, chemodynamic therapy, tumor microenvironment, immunotherapy, and extracellular vesicles. The prospects, major challenges, and barriers to addressing these directions are discussed.
纳米技术深刻影响着医学的进步。癌症和慢性病的诊断和治疗方面的局限性推动了纳米医学的发展。然而,关于纳米医学的发展轨迹、主要研究力量、当前研究格局、重点研究领域以及未来展望的分析和描述性研究非常少。本研究分析了 2000 年 1 月 1 日至 2023 年 7 月 18 日期间发表在 Web of Science 核心合集科学引文索引扩展版中的文章和评论。在此基础上,对出版物趋势、国家/地区、机构、期刊、研究类别、主题、参考文献和关键词进行了文献计量可视化,并进行了阐述。自 COVID-19 大流行以来,与纳米医学相关的学术产出不断增加,巩固了研究绩效在全球分布不均的局面。中国在出版物数量方面处于领先地位,拥有众多高产机构,而美国在学术影响力、商业化和工业价值方面具有优势。纳米医学与其他学科融合,建立了跨学科平台,其中药物输送和纳米颗粒仍然是重点。当前的研究重点是将纳米医学与细胞铁死亡诱导相结合,应用于癌症免疫治疗。关键词“爆发式检测”确定了有前途的研究方向,包括免疫原性细胞死亡、化学动力学治疗、肿瘤微环境、免疫治疗和细胞外囊泡。讨论了这些方向的前景、主要挑战和障碍。