The comprehensive on-demand 3D bio-printing for composite reconstruction of mandibular defects.

IF 2 Q2 DENTISTRY, ORAL SURGERY & MEDICINE
Han Ick Park, Jee-Ho Lee, Sang Jin Lee
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引用次数: 7

Abstract

Background: The mandible is a functional bio-organ that supports facial structures and helps mastication and speaking. Large mandible defects, generally greater than 6-cm segment loss, may require composite tissue reconstruction such as osteocutaneous-vascularized free flap which has a limitation of additional surgery and a functional morbidity at the donor site. A 3D bio-printing technology is recently developed to overcome the limitation in the composite reconstruction of the mandible using osteocutaneous-vascularized free flap.

Review: Scaffold, cells, and bioactive molecules are essential for a 3D bio-printing. For mandibular reconstruction, materials in a 3D bio-printing require mechanical strength, resilience, and biocompatibility. Recently, an integrated tissue and organ printing system with multiple cartridges are designed and it is capable of printing polymers to reinforce the printed structure, such as hydrogel.

Conclusion: For successful composite tissue reconstruction of the mandible, biologic considerations and components should be presented with a comprehensive on-demand online platform model of customized approaches.

Abstract Image

Abstract Image

Abstract Image

综合按需生物3D打印下颌骨缺损复合重建。
背景:下颌骨是支撑面部结构和帮助咀嚼和说话的功能性生物器官。大型下颌骨缺损,通常大于6厘米的节段缺损,可能需要复合组织重建,如骨皮带血管的自由皮瓣,这限制了额外的手术和供体部位的功能并发症。为了克服骨皮血管游离皮瓣复合重建下颌骨的局限性,近年来发展了一种三维生物打印技术。回顾:支架,细胞和生物活性分子是必不可少的3D生物打印。对于下颌骨重建,3D生物打印材料需要机械强度、弹性和生物相容性。最近,设计了一种具有多个墨盒的组织和器官集成打印系统,该系统能够打印聚合物来增强打印结构,如水凝胶。结论:为了成功的下颌骨复合组织重建,生物学方面的考虑和组成部分应该通过一个综合的按需在线平台模型提供定制的方法。
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来源期刊
Maxillofacial Plastic and Reconstructive Surgery
Maxillofacial Plastic and Reconstructive Surgery DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
4.30
自引率
13.00%
发文量
37
审稿时长
13 weeks
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