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用于改善钛植入物骨整合性能和抗生素局部递送的表面改性新策略。

Novel Strategy for Surface Modification of Titanium Implants towards the Improvement of Osseointegration Property and Antibiotic Local Delivery.

作者信息

Silva Isabela Rocha da, Barreto Aline Tavares da Silva, Seixas Renata Santos, Paes Paula Nunes Guimarães, Lunz Juliana do Nascimento, Thiré Rossana Mara da Silva Moreira, Jardim Paula Mendes

机构信息

COPPE/Program of Metallurgical and Materials Engineering (PEMM), Universidade Federal do Rio de Janeiro (UFRJ), Rio de Janeiro 21941-598, RJ, Brazil.

Graduation Program in Nanobiosystems, Universidade Federal do Rio de Janeiro (UFRJ), Duque de Caxias 25240-005, RJ, Brazil.

出版信息

Materials (Basel). 2023 Mar 29;16(7):2755. doi: 10.3390/ma16072755.

Abstract

The topography and chemical composition modification of titanium (Ti) implants play a decisive role in improving biocompatibility and bioactivity, accelerating osseointegration, and, thus, determining clinical success. In spite of the development of surface modification strategies, bacterial contamination is a common cause of failure. The use of systemic antibiotic therapy does not guarantee action at the contaminated site. In this work, we proposed a surface treatment for Ti implants that aim to improve their osseointegration and reduce bacterial colonization in surgery sites due to the local release of antibiotic. The Ti discs were hydrothermally treated with 3M NaOH solution to form a nanostructured layer of titanate on the Ti surface. Metronidazole was impregnated on these nanostructured surfaces to enable its local release. The samples were coated with poly(vinyl alcohol)-PVA films with different thickness to evaluate a possible control of drug release. Gamma irradiation was used to crosslink the polymer chains to achieve hydrogel layer formation and to sterilize the samples. The samples were characterized by XRD, SEM, FTIR, contact angle measurements, "in vitro" bioactivity, and drug release analysis. The alkaline hydrothermal treatment successfully produced intertwined, web-like nanostructures on the Ti surface, providing wettability and bioactivity to the Ti samples (Ti + TTNT samples). Metronidazole was successfully loaded and released from the Ti + TTNT samples coated or not with PVA. Although the polymeric film acted as a physical barrier to drug delivery, all groups reached the minimum inhibitory concentration for anaerobic bacteria. Thus, the surface modification method presented is a potential approach to improve the osseointegration of Ti implants and to associate local drug delivery with dental implants, preventing early infections and bone failure.

摘要

钛(Ti)植入物的形貌和化学成分改性在改善生物相容性和生物活性、加速骨整合以及决定临床成功率方面起着决定性作用。尽管表面改性策略有所发展,但细菌污染仍是失败的常见原因。全身使用抗生素治疗并不能保证在污染部位发挥作用。在这项工作中,我们提出了一种针对Ti植入物的表面处理方法,旨在通过抗生素的局部释放来改善其骨整合并减少手术部位的细菌定植。将Ti圆盘用3M NaOH溶液进行水热处理,以在Ti表面形成一层纳米结构的钛酸盐层。将甲硝唑浸渍在这些纳米结构表面以实现其局部释放。用不同厚度的聚(乙烯醇)-PVA膜对样品进行涂层,以评估对药物释放的可能控制。使用γ射线辐照交联聚合物链以形成水凝胶层并对样品进行灭菌。通过XRD、SEM、FTIR、接触角测量、“体外”生物活性和药物释放分析对样品进行表征。碱性水热处理成功地在Ti表面产生了交织的、网状的纳米结构,为Ti样品(Ti + TTNT样品)提供了润湿性和生物活性。甲硝唑成功地从涂覆或未涂覆PVA的Ti + TTNT样品中负载和释放。尽管聚合物膜对药物递送起到了物理屏障作用,但所有组都达到了对厌氧菌的最低抑菌浓度。因此,所提出的表面改性方法是一种潜在的方法,可改善Ti植入物的骨整合,并将局部药物递送与牙科植入物相结合,预防早期感染和骨失败。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c18b/10095684/fef4e639b803/materials-16-02755-g001.jpg

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