Institute of Polymer Science and Engineering, National Taiwan University, No. 1, Sec. 4 Roosevelt Road, Taipei, 10617, Taiwan.
Division of Plastic and Reconstructive Surgery, Department of Surgery, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan.
Adv Healthc Mater. 2022 Aug;11(16):e2201021. doi: 10.1002/adhm.202201021. Epub 2022 Jul 6.
Chronic cutaneous wounds from tissue trauma or extensive burns can impair skin barrier function and cause severe infection. Fabrication of a customizable tissue-engineered skin is a promising strategy for regeneration of uneven wounds. Herein, a planar-/curvilinear-bioprintable hydrogel is developed to produce tissue-engineered skin and evaluated in rat models of chronic and irregular wounds. The hydrogel is composed of biodegradable polyurethane (PU) and gelatin. The hydrogel laden with cells displays good 3D printability and structure stability. The circular wounds of normal and diabetes mellitus (DM) rats treated with planar-printed tri-cell-laden (fibroblasts, keratinocytes, and endothelial progenitor cells (EPCs)) hydrogel demonstrate full reepithelization and dermal repair as well as large amounts of neovascularization and collagen production after 28 days. Furthermore, the curvilinear module is fabricated based on the corresponding wound topography for curvilinear-bioprinting of the irregular tissue-engineered skin. The large and irregular rat skin wounds treated with curvilinear-printed tri-cell-laden hydrogel demonstrate full repair after 28 days. This planar-/curvilinear-bioprintable tri-cell-laden hydrogel shows great potential for customized biofabrication in skin tissue engineering.
慢性皮肤创伤或大面积烧伤会损害皮肤屏障功能并导致严重感染。可定制组织工程皮肤的制造是不均匀伤口再生的一种很有前途的策略。在此,开发了一种平面/曲线可生物打印水凝胶以生产组织工程皮肤,并在慢性和不规则伤口的大鼠模型中进行了评估。该水凝胶由可生物降解的聚氨酯(PU)和明胶组成。负载细胞的水凝胶显示出良好的 3D 可打印性和结构稳定性。正常和糖尿病(DM)大鼠的圆形伤口经平面印刷的三细胞(成纤维细胞、角质形成细胞和内皮祖细胞(EPC))水凝胶处理后,在 28 天后可实现完全再上皮化和真皮修复以及大量新生血管形成和胶原产生。此外,基于相应的伤口形貌,制造了曲线模块,用于不规则组织工程皮肤的曲线生物打印。经曲线印刷的三细胞负载水凝胶处理的大而不规则的大鼠皮肤伤口在 28 天后可完全修复。这种平面/曲线可生物打印的三细胞负载水凝胶在皮肤组织工程中的定制生物制造方面具有很大的潜力。