真皮
脂肪组织
伤口愈合
再生(生物学)
人体皮肤
生物医学工程
体内
皮肤修复
皮肤当量
组织工程
病理
医学
化学
体外
细胞生物学
外科
生物
角质形成细胞
遗传学
生物技术
内分泌学
生物化学
作者
Zhiqiang Zhang,Chi Xu,Lei Xu,Jiaming Wan,Gaobiao Cao,Zhe Liu,Pengxiang Ji,Qianheng Jin,Yi Fu,Yingying Le,Jihui Ju,Ruixing Hou,Guangliang Zhang
摘要
Abstract Tissue‐engineered skin is an effective material for treating large skin defects in a clinical setting. However, its use is limited owing to vascular complications. Human adipose tissue‐derived microvascular fragments (HaMVFs) are vascularized units that form vascular networks by rapid reassembly. In this study, we designed a vascularized bionic skin tissue using a three‐dimensional (3D) bioprinter of HaMVFs and human fibroblasts encapsulated in a hybrid hydrogel composed of GelMA, HAMA, and fibrinogen. Tissues incorporating HaMVFs showed good in vitro vascularization and mechanical properties after UV crosslinking and thrombin exposure. Thus, the tissue could be sutured appropriately to the wound. In vivo, the vascularized 3D bioprinted skin promoted epidermal regeneration, collagen maturation in the dermal tissue, and vascularization of the skin tissue to accelerate wound healing. Overall, vascularized 3D bioprinted skin with HaMVFs is an effective material for treating skin defects and may be clinically applicable to reduce the necrosis rate of skin grafts.
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