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通过整合图案化纳米纤维膜,实现具有改善的机械性能和调控细胞行为的人工皮肤替代物的 3D 生物打印。

3D Bioprinting of Artificial Skin Substitute with Improved Mechanical Property and Regulated Cell Behavior through Integrating Patterned Nanofibrous Films.

机构信息

Research Center for Human Tissues and Organs Degeneration, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, P. R. China.

University of Chinese Academy of Sciences, Beijing 100049, P. R. China.

出版信息

ACS Nano. 2024 Jul 16;18(28):18503-18521. doi: 10.1021/acsnano.4c04088. Epub 2024 Jun 28.

Abstract

Three-dimensional (3D) bioprinting has advantages for constructing artificial skin tissues in replicating the structures and functions of native skin. Although many studies have presented improved effect of printing skin substitutes in wound healing, using hydrogel inks to fabricate 3D bioprinting architectures with complicated structures, mimicking mechanical properties, and appropriate cellular environments is still challenging. Inspired by collagen nanofibers withstanding stress and regulating cell behavior, a patterned nanofibrous film was introduced to the printed hydrogel scaffold to fabricate a composite artificial skin substitute (CASS). The artificial dermis was printed using gelatin-hyaluronan hybrid hydrogels containing human dermal fibroblasts with gradient porosity and integrated with patterned nanofibrous films simultaneously, while the artificial epidermis was formed by seeding human keratinocytes upon the dermis. The collagen-mimicking nanofibrous film effectively improved the tensile strength and fracture resistance of the CASS, making it sewable for firm implantation into skin defects. Meanwhile, the patterned nanofibrous film also provided the biological cues to guide cell behavior. Consequently, CASS could effectively accelerate the regeneration of large-area skin defects in mouse and pig models by promoting re-epithelialization and collagen deposition. This research developed an effective strategy to prepare composite bioprinting architectures for enhancing mechanical property and regulating cell behavior, and CASS could be a promising skin substitute for treating large-area skin defects.

摘要

三维(3D)生物打印在构建人工皮肤组织方面具有优势,可复制天然皮肤的结构和功能。尽管许多研究已经提出了在伤口愈合中打印皮肤替代品的效果得到改善,但使用水凝胶墨水来制造具有复杂结构、模拟机械性能和适当细胞环境的 3D 生物打印结构仍然具有挑战性。受能够承受压力和调节细胞行为的胶原纳米纤维的启发,本文将图案化纳米纤维膜引入到打印的水凝胶支架中,以制造复合人工皮肤替代物(CASS)。使用含有人真皮成纤维细胞的明胶-透明质酸杂化水凝胶打印人工真皮,同时具有梯度孔隙率,并与图案化纳米纤维膜集成,而人工表皮则是通过在真皮上接种人角质形成细胞形成的。胶原模拟纳米纤维膜有效地提高了 CASS 的拉伸强度和抗断裂性,使其可以缝合到皮肤缺陷部位以进行牢固的植入。同时,图案化纳米纤维膜还提供了指导细胞行为的生物学线索。因此,CASS 可以通过促进再上皮化和胶原沉积,有效地加速小鼠和猪模型中大面积皮肤缺陷的再生。本研究开发了一种有效的策略来制备用于增强机械性能和调节细胞行为的复合生物打印结构,CASS 可能是治疗大面积皮肤缺陷的有前途的皮肤替代物。

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