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载有掺锶银纳米粒子明胶水凝胶的 3D 打印钛支架促进成骨细胞分化和抗菌活性,用于骨组织工程。

3D-printed titanium scaffolds loaded with gelatin hydrogel containing strontium-doped silver nanoparticles promote osteoblast differentiation and antibacterial activity for bone tissue engineering.

机构信息

Department of Biotechnology, School of Bioengineering, College of Engineering and Technology, SRM Institute of Science and Technology, Kattankulathur, Tamil Nadu, India.

出版信息

Biotechnol J. 2024 Aug;19(8):e2400288. doi: 10.1002/biot.202400288.

Abstract

Bone tissue engineering offers a promising alternative to stimulate the regeneration of damaged tissue, overcoming the limitations of conventional autografts and allografts. Recently, titanium alloy (Ti) implants have garnered significant attention for treating critical-sized bone defects, especially with the advancement of 3D printing technology. Although Ti alloys have impressive versatility, their lack of cellular adhesion, osteogenic and antibacterial properties are significant factors that contribute to their failure. Hence, to overcome these obstacles, this study aimed to incorporate osteoinductive and antibacterial cue-loaded hydrogels into 3D-printed Ti (3D-Ti) scaffolds. 3D-Ti scaffolds were synthesized using the direct metal laser sintering method and loaded with a gelatin (Gel) hydrogel containing strontium-doped silver nanoparticles (Sr-Ag NPs). Compared with Ag NPs, Sr-doped Ag NPs increased the expression of Runx2 mRNA, which is a key bone transcription factor. We subjected the bioactive 3D-hybrid scaffolds (3D-Ti/Gel/Sr-Ag NPs) to physicochemical and material characterization, followed by cytocompatibility and osteogenic evaluation. The microporous and macroporous topographies of the scaffolds with Sr-Ag NPs showed increased Runx2 expression and matrix mineralization, with potent antibacterial properties. Therefore, the 3D-Ti scaffolds incorporated with Sr-Ag NP-loaded Gel hydrogels favored osteoblast differentiation and antibacterial activity, indicating their potential for orthopedic applications.

摘要

骨组织工程为刺激受损组织的再生提供了一种很有前途的替代方法,克服了传统自体移植物和同种异体移植物的局限性。最近,钛合金(Ti)植入物在治疗临界尺寸骨缺损方面引起了广泛关注,尤其是随着 3D 打印技术的进步。尽管 Ti 合金具有令人印象深刻的多功能性,但它们缺乏细胞黏附性、成骨和抗菌性能,这是导致其失效的重要因素。因此,为了克服这些障碍,本研究旨在将具有成骨诱导和抗菌功能的水凝胶负载到 3D 打印的 Ti(3D-Ti)支架中。3D-Ti 支架采用直接金属激光烧结法合成,并负载含有锶掺杂银纳米颗粒(Sr-Ag NPs)的明胶(Gel)水凝胶。与 Ag NPs 相比,Sr 掺杂的 Ag NPs 增加了关键的骨转录因子 Runx2 mRNA 的表达。我们对具有生物活性的 3D 杂化支架(3D-Ti/Gel/Sr-Ag NPs)进行了理化和材料特性分析,随后进行了细胞相容性和成骨评价。具有 Sr-Ag NPs 的支架的微孔和大孔形貌显示出 Runx2 表达和基质矿化增加,具有很强的抗菌性能。因此,负载 Sr-Ag NP 的 Gel 水凝胶的 3D-Ti 支架有利于成骨细胞分化和抗菌活性,表明其在骨科应用中的潜力。

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