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利用明胶/透明质酸水凝胶三维打印具有毛囊结构和表皮-乳头-真皮层的皮肤等效物。

3D Printing of Skin Equivalents with Hair Follicle Structures and Epidermal-Papillary-Dermal Layers Using Gelatin/Hyaluronic Acid Hydrogels.

机构信息

Department of Cogno-Mechatronics Engineering, College of Nanoscience and Nanotechnology, Pusan National University, Busan, 46241, South Korea.

School of Chemical Engineering, College of Engineering, Pusan National University, Busan, 46241, South Korea.

出版信息

Chem Asian J. 2022 Sep 14;17(18):e202200620. doi: 10.1002/asia.202200620. Epub 2022 Aug 10.

Abstract

Recent advances in three-dimensional (3D) bioprinting technologies have enabled the fabrication of sophisticated live 3D tissue analogs. Despite the existing hydrogel-based bioinks, the development of advanced bioink materials that can accurately reproduce the composition of a native extracellular matrix and mimic the intrinsic properties of laden cells remains challenging. In this study, 3D printed skin equivalents incorporating hair follicle structures and epidermal/papillary dermal layers were fabricated using gelatin methacryloyl/hyaluronic acid methacryloyl (GelMA/HAMA) bioink. The composition of collagen and glycosaminoglycan in native skin was recapitulated by adjusting the combination of GelMA and HAMA. The GelMA/HAMA bioink exhibited excellent viscoelastic and physicochemical properties, 3D printability, cytocompatibility, and functionality to maintain hair-inductive potency while facilitating spontaneous hair pore development. The results indicate that GelMA/HAMA hydrogels are promising candidates as bioinks for the 3D printing of skin equivalents. Furthermore, they may serve as useful models for skin tissue engineering and regeneration.

摘要

近年来,三维(3D)生物打印技术的进步使得制造复杂的活体 3D 组织模拟物成为可能。尽管已经存在基于水凝胶的生物墨水,但开发能够准确复制天然细胞外基质组成并模拟负载细胞固有特性的先进生物墨水材料仍然具有挑战性。在这项研究中,使用明胶甲基丙烯酰/透明质酸甲基丙烯酰(GelMA/HAMA)生物墨水制造了包含毛囊结构和表皮/乳头真皮层的 3D 打印皮肤等效物。通过调整 GelMA 和 HAMA 的组合,再现了天然皮肤中胶原蛋白和糖胺聚糖的组成。GelMA/HAMA 生物墨水表现出优异的黏弹性和物理化学性质、3D 可打印性、细胞相容性和功能,可保持诱导毛发的效力,同时促进自发的毛发孔发育。结果表明,GelMA/HAMA 水凝胶是 3D 打印皮肤等效物的有前途的生物墨水候选材料。此外,它们可能成为皮肤组织工程和再生的有用模型。

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