Tooth enamel is characterised by an intricate hierarchical organization of apatite nanocrystals that bestows high stiffness, hardness, and fracture toughness. However, enamel does not possess the ability to regenerate, and achieving the artificial restoration of its microstructure and mechanical properties in clinical settings has proven challenging. To tackle this issue, we engineer a tuneable and resilient supramolecular matrix based on elastin-like recombinamers (ELRs) that imitates the structure and function of the enamel-developing matrix. When applied as a coating on the surface of teeth exhibiting different levels of erosion, the matrix is stable and can trigger epitaxial growth of apatite nanocrystals, recreating the microarchitecture of the different anatomical regions of enamel and restoring the mechanical properties. The study demonstrates the translational potential of our mineralising technology for treating loss of enamel in clinical settings such as the treatment of enamel erosion and dental hypersensitivity.
Biomimetic supramolecular protein matrix restores structure and properties of human dental enamel.
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作者:Hasan Abshar, Chuvilin Andrey, Van Teijlingen Alexander, Rouco Helena, Parmenter Christopher, Venturi Federico, Fay Michael, Greco Gabriele, Pugno Nicola M, Ruben Jan, Edwards-Gayle Charlotte J C, Myers Benjamin, Dreveny Ingrid, Cowieson Nathan, Winter Adam, Gamea Sara, Walboomers X Frank, Hussain Tanvir, RodrÃguez-Cabello José Carlos, Rawson Frankie, Tuttle Tell, Elsharkawy Sherif, Banerjee Avijit, Habelitz Stefan, Mata Alvaro
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Nov 4; 16(1):9434 |
| doi: | 10.1038/s41467-025-64982-y | ||
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