Both authors are affiliated with the Department of Dermatology, Weill Cornell Medicine, New York, New York.
Dermatol Surg. 2020 Dec;46(12):1500-1505. doi: 10.1097/DSS.0000000000002378.
Tissue engineering is used to fabricate 3-dimensional (3D) artificial scaffolds to create a microenvironment that mimics human tissue. Bioprinting uses biomaterials, cells, and/or bioink to fabricate prospective scaffolds to mirror the structural, compositional, and functional aspects of the skin. Various bioprinting methods (inkjet-based bioprinting, pressure-assisted bioprinting, and laser-assisted bioprinting) have been used for regenerative wound repair and have been characterized based on biocompatibility, cellular microenvironment, cell proliferation, vitality, and morphology.
This article reviews the basic principles of 3D printing, current 3D skin bioprinting applications and approaches, and future directions for regenerative medical skin constructs.
A comprehensive literature review was conducted using PubMed with keywords "three-dimensional printing," "dermatologic surgery," "bioprinting," "reconstructive surgical procedures," "wound healing," "skin grafts," "skin scaffolds," "tissue reconstruction," and "tissue engineering."
A summary of the different applications and 3-dimensional skin bioprinting techniques is presented. In addition, synthetic, natural, and combination polymers are reviewed. Advantages, disadvantages, indications, and approaches are discussed in depth.
Skin grafting is a dynamic technique of dermal reconstruction that can be successful with comprehensive knowledge of skin bioprinting methods.
组织工程用于制造三维(3D)人工支架,以创建模仿人体组织的微环境。生物打印使用生物材料、细胞和/或生物墨水来制造预期的支架,以反映皮肤的结构、组成和功能方面。各种生物打印方法(喷墨式生物打印、压力辅助生物打印和激光辅助生物打印)已被用于再生性伤口修复,并根据生物相容性、细胞微环境、细胞增殖、活力和形态进行了特征描述。
本文综述了 3D 打印的基本原理、当前 3D 皮肤生物打印的应用和方法,以及再生医学皮肤构建物的未来方向。
使用 PubMed 进行了全面的文献综述,关键词为“三维打印”、“皮肤科手术”、“生物打印”、“重建性外科手术”、“伤口愈合”、“皮肤移植物”、“皮肤支架”、“组织重建”和“组织工程”。
介绍了不同的应用和 3D 皮肤生物打印技术的概述。此外,还回顾了合成、天然和组合聚合物。深入讨论了各自的优缺点、适应证和方法。
皮肤移植是一种真皮重建的动态技术,通过全面了解皮肤生物打印方法,可以取得成功。