4.7 Review

Mussel-Inspired Polydopamine-Based Multilayered Coatings for Enhanced Bone Formation

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fbioe.2022.952500

关键词

bone regeneration; polydopamine; multilayered coating; multifunction; osteogenesis; immunomodulation

资金

  1. National Natural Science Foundation of China [82071096, 82001006, 81871490]
  2. Science and Technology Commission of Shanghai Municipality [21490711700, 21DZ2294600]
  3. Interdisciplinary Program of Shanghai Jiao Tong University [YG2021ZD12, YG2022ZD014]
  4. Program of Shanghai Academic/Technology Research Leader [19XD1434500, 20XD1433100]
  5. CAMS Innovation Fund for Medical Sciences (CIFMS) [2019-I2M-5-037]
  6. Double Hundred Plan [20191819]

向作者/读者索取更多资源

This review discusses the role and mechanism of mussel-inspired PDA-based multilayered coatings in enhancing bone formation. These coatings have multifunctionality, which can synergistically enhance immunomodulation, angiogenesis, antibiosis, and antitumor properties, promoting bone defect repair and regeneration. The research inspires the design and fabrication of multifunctional PDA-based multilayered coatings to meet the demands of different application scenarios, but further clinical translation is needed.
Repairing bone defects remains a challenge in clinical practice and the application of artificial scaffolds can enhance local bone formation, but the function of unmodified scaffolds is limited. Considering different application scenarios, the scaffolds should be multifunctionalized to meet specific demands. Inspired by the superior adhesive property of mussels, polydopamine (PDA) has attracted extensive attention due to its universal capacity to assemble on all biomaterials and promote further adsorption of multiple external components to form PDA-based multilayered coatings with multifunctional property, which can induce synergistic enhancement of new bone formation, such as immunomodulation, angiogenesis, antibiosis and antitumor property. This review will summarize mussel-inspired PDA-based multilayered coatings for enhanced bone formation, including formation mechanism and biofunction of PDA coating, as well as different functional components. The synergistic enhancement of multiple functions for better bone formation will also be discussed. This review will inspire the design and fabrication of PDA-based multilayered coatings for different application scenarios and promote deeper understanding of their effect on bone formation, but more efforts should be made to achieve clinical translation. On this basis, we present a critical conclusion, and forecast the prospects of PDA-based multilayered coatings for bone regeneration.

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