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负载β-环糊精-氯己定复合脱细胞外基质水凝胶的3D打印nHA/PLA骨组织工程支架的制备与性能

Preparation and properties of a 3D printed nHA/PLA bone tissue engineering scaffold loaded with a β-CD-CHX combined dECM hydrogel.

作者信息

Li Shangbo, Liu Zijian, Gao Xiaohan, Cheng Lidi, Xu Zexian, Li Li, Diao Yaru, Chen Liqiang, Liu Yanshan, Sun Jian

机构信息

The Affiliated Hospital of Qingdao University Qingdao 266000 China

School of Stomatology, Qingdao University Qingdao 266000 China.

出版信息

RSC Adv. 2024 Mar 25;14(14):9848-9859. doi: 10.1039/d4ra00261j. eCollection 2024 Mar 20.

Abstract

Jaw defects, which can result from a multitude of causes, significantly affect the physical well-being and psychological health of patients. The repair of these infected defects presents a formidable challenge in the clinical and research fields, owing to their intricate and diverse nature. This study aims to develop a personalized bone tissue engineering scaffold that synergistically offers antibacterial and osteogenic properties for treating infected maxillary defects. This study engineered a novel temperature-sensitive, sustained-release hydrogel by amalgamating β-cyclodextrin (β-CD) with chlorhexidine (CHX) and a decellularized extracellular matrix (dECM). This hydrogel was further integrated with a polylactic acid (PLA)-nano hydroxyapatite (nHA) scaffold, fabricated through 3D printing, to form a multifaceted composite scaffold (nHA/PLA/dECM/β-CD-CHX). Drug release assays revealed that this composite scaffold ensures prolonged and sustained release. Bacteriological studies confirmed that the β-CD-CHX loaded scaffold exhibits persistent antibacterial efficacy, thus effectively inhibiting bacterial growth. Moreover, the scaffold demonstrated robust mechanical strength. Cellular assays validated its superior biocompatibility, attributed to dECM and nHA components, significantly enhancing the proliferation, adhesion, and osteogenic differentiation of osteogenic precursor cells (MC3T3-E1). Consequently, the nHA/PLA/dECM/β-CD-CHX composite scaffold, synthesized 3D printing technology, shows promise in inducing bone regeneration, preventing infection, and facilitating the repair of jaw defects, positioning itself as a potential breakthrough in bone tissue engineering.

摘要

颌骨缺损可由多种原因引起,严重影响患者的身心健康。由于这些感染性缺损的复杂性和多样性,其修复在临床和研究领域都面临着巨大挑战。本研究旨在开发一种个性化的骨组织工程支架,该支架具有抗菌和成骨协同特性,用于治疗感染性上颌骨缺损。本研究通过将β-环糊精(β-CD)与氯己定(CHX)以及脱细胞细胞外基质(dECM)混合,设计了一种新型的温度敏感型缓释水凝胶。该水凝胶进一步与通过3D打印制造的聚乳酸(PLA)-纳米羟基磷灰石(nHA)支架整合,形成一种多面复合支架(nHA/PLA/dECM/β-CD-CHX)。药物释放试验表明,这种复合支架可确保药物长期持续释放。细菌学研究证实,负载β-CD-CHX的支架具有持久的抗菌效果,从而有效抑制细菌生长。此外,该支架还表现出强大的机械强度。细胞试验验证了其卓越的生物相容性,这归因于dECM和nHA成分,显著增强了成骨前体细胞(MC3T3-E1)的增殖、黏附和成骨分化。因此,采用3D打印技术合成的nHA/PLA/dECM/β-CD-CHX复合支架在诱导骨再生、预防感染和促进颌骨缺损修复方面显示出前景,有望成为骨组织工程领域的一项潜在突破。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99cf/10961964/de36051c3044/d4ra00261j-f1.jpg

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