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On-line Access: 2024-09-13

Received: 2024-02-03

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Crosschecked: 2024-09-13

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Bio-Design and Manufacturing  2025 Vol.8 No.1 P.68-84

http://doi.org/10.1631/bdm.2400058


3D Bioprinting of a GelMA/COS Dermal Scaffold for Full-Thickness Skin Tissue Regeneration


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Key Words:  3D printing, dermal scaffold, photo-cross-linking, skin tissue regeneration


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Abstract: 
Dermal substitutes have provided a template for the regeneration and reconstruction of the dermis. However, the healed skin tissue often exhibits abnormal morphology and functionality, including scarring and inflammation. In this research, a composite bioink composed of methacrylated gelatin (GelMA) and chitosan oligosaccharide (COS) was proposed for printing a dermal scaffold using Digital Light Processing (DLP) technology. The GelMA/COS bioink exhibited suitable porosity,swelling, degradation rate, and mechanical properties. The inclusion of COS demonstrated antibacterial effects against both gram-positive and gram-negative bacteria, while simultaneously fostering the proliferation of human dermal fibroblasts (HDFs). Additionally, the application of COS could effectively reduce the expression levels of fibrosis-related genes, such as collagen I, collagen III and fibronectin I. The 3D-printed cell-laden dermal scaffold exhibited excellent shape fidelity and high cellular viability, facilitating the extension of HDFs along the scaffold and simultaneous secretion of ECM protein. Furthermore, the HDFs-laden dermal scaffold was transplanted into the full-thickness skin defect site of nude mice can accelerate wound Preprint of Bio-Design and Manufacturing (unedited) 2 closure, reduce inflammation and improve wound healing quality. Overall, the DLP-printed dermal scaffold presents an appealing approach for effectively treating full-thickness skin defects in a clinical setting.

用于全层皮肤组织再生的真皮支架 3D 打印

作者:韩璐1,刘姿娴1,2,李梦1,3,申治中1,4,王建明5,桑胜波1,2
机构:1微纳传感与人工智能感知山西省重点实验室,中国太原市,030024;2太原理工大学新型传感器与智能控制教育部重点实验室,中国太原市,030024;3山西浙大新材料与化工研究院,中国太原市,030024;44 山西省六维人工智能生物医学研究院,中国太原市,030031;5太钢总医院,中国太原市,030809
摘要:真皮替代物为真皮的再生和重建提供了一个模板。然而,愈合后的皮 肤组织往往表现出异常的形态和功能,包括疤痕和炎症。本研究提出一种由 甲基丙烯酸明胶(GelMA)和壳寡糖(COS)组成的复合生物墨水,利用数字光 处理(DLP)技术打印真皮支架。GelMA/COS 生物墨水具有合适的孔隙率、溶 胀率、降解率和力学性能。COS 对革兰氏阳性和革兰氏阴性细菌均有抗菌 作用,同时可促进人真皮成纤维细胞(HDFs)的增殖。此外,COS 的应用可 以有效降低胶原 I、胶原 III 和纤维连接蛋白 I 等纤维化相关基因的表达水 平。通过 3D 打印制备的真皮支架具有优异的形状保真度和高细胞活力,促 进了 HDFs 沿支架的延伸,同时能够分泌细胞外基质相关的蛋白。将负载 HDFs 的真皮支架移植到裸鼠全层皮肤缺损部位,可加速创面愈合,减少炎 症,提高伤口愈合质量。总的来说,DLP 打印的真皮支架为临床环境中有效 治疗全层皮肤缺陷提供了一种吸引人的方法。

关键词:3D 打印;真皮支架;光交联;皮肤组织再生

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