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添加剂生物制造:牙周组织再生的先进方法。

Additive Biomanufacturing: An Advanced Approach for Periodontal Tissue Regeneration.

作者信息

Carter Sarah-Sophia D, Costa Pedro F, Vaquette Cedryck, Ivanovski Saso, Hutmacher Dietmar W, Malda Jos

机构信息

Department of Orthopedics, University Medical Center Utrecht, Utrecht, The Netherlands.

Biofabrication Facility, Regenerative Medicine Center Utrecht, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

Ann Biomed Eng. 2017 Jan;45(1):12-22. doi: 10.1007/s10439-016-1687-2. Epub 2016 Jul 29.

Abstract

Periodontitis is defined as a chronic inflammatory condition, characterized by destruction of the periodontium, composed of hard (i.e. alveolar bone and cementum) and soft tissues (i.e. gingiva and periodontal ligament) surrounding and supporting the teeth. In severe cases, reduced periodontal support can lead to tooth loss, which requires tissue augmentation or procedures that initiate a repair, yet ideally a regenerative response. However, mimicking the three-dimensional complexity and functional integration of the different tissue components via scaffold- and/or matrix-based guided tissue engineering represents a great challenge. Additive biomanufacturing, a manufacturing method in which objects are designed and fabricated in a layer-by-layer manner, has allowed a paradigm shift in the current manufacturing of medical devices and implants. This shift from design-to-manufacture to manufacture-to-design, seen from a translational research point of view, provides the biomedical engineering and periodontology communities a technology with the potential to achieve tissue regeneration instead of repair. In this review, the focus is put on additively biomanufactured scaffolds for periodontal applications. Besides a general overview of the concept of additive biomanufacturing within this field, different developed scaffold designs are described. To conclude, future directions regarding advanced biomaterials and additive biomanufacturing technologies for applications in regenerative periodontology are highlighted.

摘要

牙周炎被定义为一种慢性炎症性疾病,其特征是牙周组织遭到破坏,牙周组织由围绕并支撑牙齿的硬组织(即牙槽骨和牙骨质)和软组织(即牙龈和牙周韧带)组成。在严重的情况下,牙周支持组织减少会导致牙齿脱落,这就需要进行组织增量或启动修复的程序,理想情况下是再生反应。然而,通过基于支架和/或基质的引导组织工程来模拟不同组织成分的三维复杂性和功能整合是一项巨大的挑战。增材生物制造是一种以逐层方式设计和制造物体的制造方法,它使当前医疗设备和植入物的制造发生了范式转变。从转化研究的角度来看,这种从设计到制造再到从制造到设计的转变,为生物医学工程和牙周病学领域提供了一种有潜力实现组织再生而非修复的技术。在这篇综述中,重点是用于牙周应用的增材生物制造支架。除了对该领域内增材生物制造概念的总体概述外,还描述了不同的已开发支架设计。最后,强调了用于再生牙周病学应用的先进生物材料和增材生物制造技术的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4bc/5215138/c6bfa337b022/10439_2016_1687_Fig1_HTML.jpg

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