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骨再生水凝胶的文献计量分析:研究趋势与未来展望

Bibliometric analysis of hydrogels in bone regeneration: Research trends and future perspectives.

作者信息

Abudourousuli Alimujiang, Aisaiti Aikebaierjiang, Jiang Kan, Aierxiding Shalayiding, Shoukeer Kutiluke, Han Ran, Muheremu Aikeremujiang

机构信息

Orthopedic Research Center, Department of Orthopedics, Sixth Affiliated Hospital of Xinjiang Medical University, Urumqi, Xinjiang, 86830001, China.

Key Laboratory of Orthopedic Regenerative Medicine of Xinjiang Medical University, Sixth Affiliated Hospital of Xinjiang Medical University, Urumqi, Xinjiang, 86830001, China.

出版信息

Regen Ther. 2025 May 6;29:587-599. doi: 10.1016/j.reth.2025.04.006. eCollection 2025 Jun.

Abstract

OBJECTIVE

To analyze the research status and development prospects of hydrogels in the field of bone regeneration based on bibliometric methods.

METHODS

In the Web of Science Core Collection database, a total of 1382 representative articles related to the application of hydrogels in bone regeneration were selected as of the end of 2023. Utilizing the tools VOSviewer and CiteSpace, an in-depth bibliometric visualization analysis was conducted to reveal the countries, authors, core literature, and journals that are highly productive in this field. Additionally, the research trends and development prospects within this area were analyzed.

RESULTS

This study uses VOSviewer and CiteSpace to analyze 1382 highly cited articles on bone regeneration and materials science, revealing key trends and the evolution of the field. The United States, China, South Korea, Germany, the UK, and Japan are the leading countries in scientific output, with strong collaboration networks. Major research institutions, particularly in China and Japan, focus on hydrogels for bone regeneration. Top journals include and . Key authors include Timothy E. L. Douglas, known for developing mineralization-enhanced hydrogels, and Robert E. Guldberg, focused on growth factor delivery systems. The field has shifted from simple filling materials to multifunctional composites, with advancements in gene editing, signaling molecules, and bone regeneration drugs. Future trends include smart hydrogels, 3D printing, bioactive factor integration, cell engineering, and optimizing biodegradability and biocompatibility. Multifunctional composite hydrogels are expected to become the go-to materials for clinical bone repair.

CONCLUSION

Advancements in technology have transformed hydrogels from simple fillers to multifunctional composites, playing a crucial role in bone regeneration. Future trends include smart hydrogels, 3D printing, bioactive factor integration, cell engineering, and optimized biodegradability and biocompatibility. These developments indicate hydrogels will become the preferred material for clinical bone defect repair, significantly enhancing bone tissue repair and regeneration.

摘要

目的

基于文献计量学方法分析水凝胶在骨再生领域的研究现状与发展前景。

方法

在科学网核心合集数据库中,截至2023年底共筛选出1382篇与水凝胶在骨再生中的应用相关的代表性文章。利用VOSviewer和CiteSpace工具,进行深入的文献计量可视化分析,以揭示该领域高产的国家、作者、核心文献和期刊。此外,还分析了该领域的研究趋势和发展前景。

结果

本研究使用VOSviewer和CiteSpace分析了1382篇关于骨再生和材料科学的高被引文章,揭示了该领域的关键趋势和演变。美国、中国、韩国、德国、英国和日本是科学产出的主要国家,拥有强大的合作网络。主要研究机构,特别是中国和日本的机构,专注于用于骨再生的水凝胶。顶级期刊包括《 》和《 》。关键作者包括以开发矿化增强水凝胶而闻名的蒂莫西·E·L·道格拉斯,以及专注于生长因子递送系统的罗伯特·E·古尔德伯格。该领域已从简单的填充材料转向多功能复合材料,在基因编辑、信号分子和骨再生药物方面取得了进展。未来趋势包括智能水凝胶、3D打印、生物活性因子整合、细胞工程以及优化生物降解性和生物相容性。多功能复合水凝胶有望成为临床骨修复的首选材料。

结论

技术进步已将水凝胶从简单的填充物转变为多功能复合材料,在骨再生中发挥着关键作用。未来趋势包括智能水凝胶、3D打印、生物活性因子整合、细胞工程以及优化的生物降解性和生物相容性。这些发展表明水凝胶将成为临床骨缺损修复的首选材料,显著增强骨组织修复和再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/241b/12144916/16430845e669/gr1.jpg

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