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用于生物打印具有营养网络的大规模个性化面部模型的琼脂糖复合水凝胶和聚乙烯醇牺牲材料。

Agarose composite hydrogel and PVA sacrificial materials for bioprinting large-scale, personalized face-like with nutrient networks.

作者信息

Zou Qiang, Tian Xiaobin, Luo Siwei, Yuan Daizhu, Xu Shunen, Yang Long, Ma Minxian, Ye Chuan

机构信息

Department of Orthopaedics, The Affiliated Hospital of Guizhou Medical University, Guiyang 550004, China; Key Laboratory of Adult Stem Cell Transformation Research, Chinese Academy of Medical Sciences, Guiyang 550004, China; National-Local Joint Engineering Laboratory of Cell Engineering and Biomedicine, Guiyang 550004, China.

Department of Orthopaedics, The Affiliated Hospital of Guizhou Medical University, Guiyang 550004, China.

出版信息

Carbohydr Polym. 2021 Oct 1;269:118222. doi: 10.1016/j.carbpol.2021.118222. Epub 2021 May 19.

Abstract

Large, deep, complex, and severe tissue defects and deformities of the face are the problems encountered in clinical practice. Autologous tissue reconstruction or allograft face transplantation has been adopted but has problems such as blood supply difficulties, collateral damage, immune rejection, and ethical disputes. 3D bioprinting enables personalized tissue regeneration. However, simple hydrogels are prone to collapse during printing, are limited in size, and have poor shape and structure. The present study used three polysaccharide hydrogel composites of nanocellulose, agarose, and sodium alginate with seeded cells as bioinks and polyvinyl alcohol (PVA) as sacrificial material to construct the structures that did not collapse (characteristic parts, such as lips and nose). The nutrient network gradually formed a blood vessel-like structure. The hydrogels prepared using these three polysaccharides have great potential in the construction of personalized, complex, and vascularized tissue-engineered anatomical faces and provide a new strategy for autologous full face reconstruction.

摘要

大面积、深度、复杂且严重的面部组织缺损和畸形是临床实践中遇到的问题。已采用自体组织重建或同种异体面部移植,但存在血供困难、附带损伤、免疫排斥和伦理争议等问题。3D生物打印能够实现个性化组织再生。然而,简单的水凝胶在打印过程中容易塌陷,尺寸有限,形状和结构不佳。本研究使用纳米纤维素、琼脂糖和海藻酸钠三种多糖水凝胶复合材料,将接种细胞作为生物墨水,聚乙烯醇(PVA)作为牺牲材料,构建了不会塌陷的结构(如嘴唇和鼻子等特征部位)。营养网络逐渐形成血管样结构。使用这三种多糖制备的水凝胶在构建个性化、复杂且血管化的组织工程解剖面部方面具有巨大潜力,并为自体全脸重建提供了新策略。

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