Department of Plastic Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
Wuhan Clinical Research Center for Superficial Organ Reconstruction, Wuhan, 430022, China.
Adv Healthc Mater. 2022 Nov;11(22):e2201877. doi: 10.1002/adhm.202201877. Epub 2022 Sep 15.
Bioprinting specific tissues with robust viability is a great challenge, requiring a delicate balance between a densely cellular distribution and hydrogel network crosslinking density. Microtissues composed of tissue-specific mesenchymal stem cells and extra cellular matrix (ECM) particles provide an alternative scheme for realizing biomimetic cell density and microenvironment. Nevertheless, due to their instability during manufacturing, scarce efforts have been made to date to assemble them using rapid prototyping methods. Here, a novel microtissue bioink with good printability and cellular viability maintenance for digital light processing (DLP) bioprinting is introduced. Generally, the microtissue bioink is prepared by crosslinking acellular matrix microparticles and GelMA hydrogel with a specific proportion. The microtissue bioink exhibits the desired mechanical properties, swelling ratio, and has almost no influences on printability. For instance, a DLP bioprinted ear with a precise auricle structure using microtia chondrocytes microtissue boink is created. Additionally, the chondrocytes in the printed ears show obvious advantages in cell proliferation in vitro and auricular cartilage regeneration in vivo. The microtissue composite bioink for DLP printing not only enables accurate assembly of organ building blocks but also provides a 3D shelter to ensure printed cells' viability.
生物打印具有强大活力的特定组织是一个巨大的挑战,需要在密集的细胞分布和水凝胶网络交联密度之间达到精细的平衡。由组织特异性间充质干细胞和细胞外基质 (ECM) 颗粒组成的微组织为实现仿生细胞密度和微环境提供了另一种方案。然而,由于它们在制造过程中的不稳定性,迄今为止,很少有努力使用快速原型制造方法来组装它们。在这里,介绍了一种用于数字光处理 (DLP) 生物打印的具有良好打印性能和细胞活力维持的新型微组织生物墨水。通常,通过以特定比例交联无细胞基质微颗粒和 GelMA 水凝胶来制备微组织生物墨水。微组织生物墨水表现出所需的机械性能、溶胀比,并且几乎不影响打印性能。例如,使用小耳软骨细胞微组织生物墨水打印出具有精确耳轮结构的 DLP 生物打印耳朵。此外,打印耳朵中的软骨细胞在体外细胞增殖和体内耳廓软骨再生方面表现出明显的优势。用于 DLP 打印的微组织复合生物墨水不仅能够精确组装器官构建块,还为打印细胞的活力提供了 3D 庇护所。