首页> 外国专利> Nanocellulose-containing bioinks for 3D bioprinting, methods of making and using the same, and 3D biostructures obtained therefrom

Nanocellulose-containing bioinks for 3D bioprinting, methods of making and using the same, and 3D biostructures obtained therefrom

机译:用于3D生物打印的含纳米纤维素的生物墨水,其制备和使用方法以及由此获得的3D生物结构

摘要

Some variations of the invention provide a bioink composition for 3D bioprinting, comprising: nanocellulose in the form of nanocellulose crystals, nanocellulose fibrils, or preferably a combination thereof; alginate that is ionically crosslinkable in the presence of an ionic crosslinking agent; and water. The nanocellulose-alginate bioinks have favorable rheological, swelling, and biocompatibility properties for extrusion-based bioprinting. It is experimentally demonstrated that nanocellulose-alginate bioinks with human nasoseptal chondrocytes enable cartilage bioprinting at high resolution. The disclosed nanocellulose has been proven to be compatible with cell survival and proliferation; to possess nanoscale and microscale architectures mimicking the native extracellular environment, encouraging differentiation and tissue formation; and to have ideal rheological properties to allow extrusion 3D bioprinting. Bioink with a unique blend of crystal and fibril nanocellulose produces a very stable construct volume in culture.
机译:本发明的一些变体提供了用于3D生物打印的生物墨水组合物,其包含:纳米纤维素晶体,纳米纤维素原纤维或优选其组合形式的纳米纤维素;和在离子交联剂存在下可离子交联的藻酸盐;和水。纳米纤维素-海藻酸盐生物油墨具有良好的流变性,溶胀性和生物相容性,适用于基于挤出的生物印刷。实验证明,具有人鼻中隔软骨细胞的纳米纤维素-藻酸盐生物墨水能够实现高分辨率的软骨生物打印。已证明所公开的纳米纤维素与细胞存活和增殖相容;例如,具有模仿天然细胞外环境的纳米级和微米级结构,促进分化和组织形成;并具有理想的流变性,可进行挤出3D生物打印。具有晶体和原纤维纳米纤维素独特混合物的Bioink在培养中产生非常稳定的构建体体积。

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