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多材料解剖形状组织构建体的生物制造。

Biofabrication of multi-material anatomically shaped tissue constructs.

机构信息

Department of Orthopaedics, Netherlands Institute of Regenerative Medicine, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

Biofabrication. 2013 Sep;5(3):035007. doi: 10.1088/1758-5082/5/3/035007. Epub 2013 Jul 2.

Abstract

Additive manufacturing in the field of regenerative medicine aims to fabricate organized tissue-equivalents. However, the control over shape and composition of biofabricated constructs is still a challenge and needs to be improved. The current research aims to improve shape, by converging a number of biocompatible, quality construction materials into a single three-dimensional fiber deposition process. To demonstrate this, several models of complex anatomically shaped constructs were fabricated by combined deposition of poly(vinyl alcohol), poly(ε-caprolactone), gelatin methacrylamide/gellan gum and alginate hydrogel. Sacrificial components were co-deposited as temporary support for overhang geometries and were removed after fabrication by immersion in aqueous solutions. Embedding of chondrocytes in the gelatin methacrylamide/gellan component demonstrated that the fabrication and the sacrificing procedure did not affect cell viability. Further, it was shown that anatomically shaped constructs can be successfully fabricated, yielding advanced porous thermoplastic polymer scaffolds, layered porous hydrogel constructs, as well as reinforced cell-laden hydrogel structures. In conclusion, anatomically shaped tissue constructs of clinically relevant sizes can be generated when employing multiple building and sacrificial materials in a single biofabrication session. The current techniques offer improved control over both internal and external construct architecture underscoring its potential to generate customized implants for human tissue regeneration.

摘要

再生医学领域的增材制造旨在制造有组织的组织等效物。然而,对生物制造结构的形状和组成的控制仍然是一个挑战,需要加以改进。目前的研究旨在通过将多种生物相容性、高质量的建筑材料集中到一个单一的三维纤维沉积过程中,来改善形状。为了证明这一点,通过聚(乙烯醇)、聚(己内酯)、明胶甲基丙烯酰胺/卡拉胶和藻酸盐水凝胶的组合沉积,制造了几种复杂的解剖形状构建体模型。牺牲性组件作为悬垂几何形状的临时支撑被共同沉积,并在制造后通过浸入水溶液中去除。将软骨细胞嵌入明胶甲基丙烯酰胺/卡拉胶成分中表明,制造和牺牲过程不会影响细胞活力。此外,还表明可以成功地制造出解剖形状的构建体,生成先进的多孔热塑性聚合物支架、分层多孔水凝胶构建体以及增强的细胞负载水凝胶结构。总之,当在单个生物制造过程中使用多种构建和牺牲材料时,可以生成具有临床相关尺寸的解剖形状组织构建体。当前的技术提供了对内部和外部构建结构的更好控制,突出了其为人体组织再生生成定制植入物的潜力。

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