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贻贝启发的双功能涂层,用于口腔植入物的长期稳定性。

Mussel-inspired bifunctional coating for long-term stability of oral implants.

机构信息

School/Hospital of Stomatology, Lanzhou University, China; Key Laboratory of Dental Maxillofacial Reconstruction and Biological Intelligence Manufacturing of Gansu Province, Lanzhou, 730000, Gansu Province, China.

The Dental College of Georgia, Augusta University, Augusta, GA, USA.

出版信息

Acta Biomater. 2024 Oct 15;188:138-156. doi: 10.1016/j.actbio.2024.09.010. Epub 2024 Sep 17.

Abstract

Peri-implantitis and osseointegration failure present considerable challenges to the prolonged stability of oral implants. To address these issues, there is an escalating demand for a resilient implant surface coating that seamlessly integrates antimicrobial features to combat bacteria-induced peri‑implantitis, and osteogenic properties to promote bone formation. In the present study, a bio-inspired poly(amidoamine) dendrimer (DA-PAMAM-NH) is synthesized by utilizing a mussel protein (DA) known for its strong adherence to various materials. Conjugating DA with PAMAM-NH, inherently endowed with antibacterial and osteogenic properties, results in a robust and multifunctional coating. Robust adhesion between DA-PAMAM-NH and the titanium alloy surface is identified using confocal laser scanning microscopy (CLSM) and attenuated total reflectance-infrared (ATR-IR) spectroscopy. Following a four-week immersion of the coated titanium alloy surface in simulated body fluid (SBF), the antimicrobial activity and superior osteogenesis of the DA-PAMAM-NH-coated surface remain stable. In contrast, the bifunctional effects of the PAMAM-NH-coated surface diminish after the same immersion period. In vivo animal experiments validate the enduring antimicrobial and osteogenic properties of DA-PAMAM-NH-coated titanium alloy implants, significantly enhancing the long-term stability of the implants. This innovative coating holds promise for addressing the multifaceted challenges associated with peri‑implantitis and osseointegration failure in titanium-based implants. STATEMENT OF SIGNIFICANCE: Prolonged stability of oral implants remains a clinically-significant challenge. Peri-implantitis and osseointegration failure are two important contributors to the poor stability of oral implants. The present study developed a mussel-bioinspired poly(amidoamine) dendrimer (DA-PAMAM-NH) for a resilient implant surface coating that seamlessly integrates antimicrobial features to combat bacteria-induced peri‑implantitis, and osteogenic properties to promote bone formation to extend the longevity of oral implants.

摘要

种植体周围炎和骨整合失败对口腔种植体的长期稳定性构成了重大挑战。为了解决这些问题,人们对具有弹性的种植体表面涂层的需求不断增加,这种涂层需要无缝集成抗菌功能以对抗细菌引起的种植体周围炎,并具有成骨特性以促进骨形成。在本研究中,利用一种具有强粘附性的贻贝类蛋白(DA)合成了一种仿生聚(酰胺胺)树状大分子(DA-PAMAM-NH)。将 DA 与具有内在抗菌和促成骨特性的 PAMAM-NH 结合,可得到一种坚固且多功能的涂层。使用共聚焦激光扫描显微镜(CLSM)和衰减全反射-红外(ATR-IR)光谱学确定了 DA-PAMAM-NH 与钛合金表面之间的牢固粘附性。将涂覆有钛合金表面在模拟体液(SBF)中浸泡四周后,发现 DA-PAMAM-NH 涂覆表面的抗菌活性和卓越的成骨作用仍然稳定。相比之下,在相同的浸泡期后,PAMAM-NH 涂覆表面的双功能效果会减弱。体内动物实验验证了 DA-PAMAM-NH 涂覆的钛合金植入物具有持久的抗菌和促成骨特性,显著提高了植入物的长期稳定性。这种创新的涂层有望解决与钛基植入物相关的多方面种植体周围炎和骨整合失败的挑战。

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