Chowdhury Raisa, Al-Musaileem Nisreen, Raman Karanvir S, Al-Majid Dana, Solomon Philip, Rival Richard
Faculty of Medicine and Health Sciences, McGill University, Montreal, QC H3A 0G4, Canada.
Kuwait Ministry of Health, Kuwait City 9XCR+8MR, Kuwait.
Biomedicines. 2025 Jun 11;13(6):1434. doi: 10.3390/biomedicines13061434.
Nasal reconstruction requires a balance between aesthetic and functional restoration. Recent advances in three-dimensional (3D) printing have introduced new approaches to this field, enabling precise, patient-specific interventions. This review explores the applications, benefits, and challenges of integrating 3D printing in nasal reconstruction. : A literature search was conducted using PubMed, Scopus, and Web of Science to identify studies on 3D printing in nasal reconstruction. Peer-reviewed articles and clinical trials were analyzed to assess the impact of 3D-printed models, implants, and bioengineered scaffolds. : 3D printing facilitates the creation of anatomical models, surgical guides, and implants, enhancing surgical precision and patient outcomes. Techniques such as stereolithography (SLA) and selective laser sintering (SLS) enable high-resolution, biocompatible constructs using materials like polylactic acid, titanium, and hydroxyapatite. Computational fluid dynamics (CFD) tools improve surgical planning by optimizing nasal airflow. Studies show that 3D-printed guides reduce operative time and improve symmetry. Emerging bioprinting techniques integrating autologous cells offer promise for tissue regeneration. : Challenges include high costs, imaging limitations, regulatory hurdles, and limited vascularization in bioprinted constructs. Future research should focus on integrating bioactive materials, artificial intelligence-assisted design, and regulatory standardization. : 3D printing offers specific advantages in nasal reconstruction, improving precision and outcomes in selected cases. Addressing current limitations through technological and regulatory advancements will further its clinical integration, potentially enhancing reconstructive surgery techniques.
鼻再造需要在美学修复和功能恢复之间取得平衡。三维(3D)打印技术的最新进展为该领域带来了新方法,能够实现精确的、针对患者的干预。本文综述探讨了3D打印技术在鼻再造中的应用、益处及挑战。:通过使用PubMed、Scopus和Web of Science进行文献检索,以识别关于3D打印技术在鼻再造方面的研究。对同行评审文章和临床试验进行分析,以评估3D打印模型、植入物和生物工程支架的影响。:3D打印技术有助于制作解剖模型、手术导板和植入物,提高手术精度和患者治疗效果。诸如立体光刻(SLA)和选择性激光烧结(SLS)等技术能够使用聚乳酸、钛和羟基磷灰石等材料制造高分辨率、生物相容性良好的构建体。计算流体动力学(CFD)工具通过优化鼻腔气流来改进手术规划。研究表明,3D打印导板可减少手术时间并提高对称性。整合自体细胞的新兴生物打印技术为组织再生带来了希望。:挑战包括成本高昂、成像限制、监管障碍以及生物打印构建体中血管化有限。未来的研究应聚焦于整合生物活性材料、人工智能辅助设计以及监管标准化。:3D打印技术在鼻再造中具有特定优势,可在特定病例中提高精度和治疗效果。通过技术和监管进步解决当前的局限性将进一步推动其临床应用,有可能提升重建手术技术。