Kim Daekeun, Kim Minseok, Lee Jongwan, Jang Jinah
Department of Convergence IT Engineering, Pohang University of Science and Technology (POSTECH), Pohang, South Korea.
Department of Mechanical System Engineering, Kumoh National Institute of Technology, Gumi, South Korea.
Front Bioeng Biotechnol. 2022 Feb 14;10:764682. doi: 10.3389/fbioe.2022.764682. eCollection 2022.
Three-dimensional (3D)-printed tissue models have been used in various biomedical fields owing to numerous advantages such as enhancements in cell response and functionality. In liver tissue engineering, several studies have been reported using 3D-printed liver tissue models with improved cellular responses and functions in drug screening, liver disease, and liver regenerative medicine. However, the application of conventional single-component bioinks for the printing of 3D liver constructs remains problematic because of the complex structural and physiological characteristics of the liver. The use of multicomponent bioinks has become an attractive strategy for bioprinting 3D functional liver tissue models because of the various advantages of multicomponent bioinks, such as improved mechanical properties of the printed tissue construct and cell functionality. Therefore, it is essential to review various 3D bioprinting techniques and multicomponent hydrogel bioinks proposed for liver tissue engineering to suggest future directions for liver tissue engineering. Accordingly, we herein review multicomponent bioinks for 3D-bioprinted liver tissues. We first describe the fabrication methods capable of printing multicomponent bioinks and introduce considerations for bioprinting. We subsequently categorize and evaluate the materials typically utilized for multicomponent bioinks based on their characteristics. In addition, we also review recent studies for the application of multicomponent bioinks to fabricate liver tissue models. Finally, we discuss the limitations of current studies and emphasize aspects that must be resolved to enhance the future applicability of such bioinks.
三维(3D)打印组织模型因其在增强细胞反应和功能等诸多优势,已被应用于各种生物医学领域。在肝脏组织工程中,已有多项研究报道使用3D打印肝脏组织模型,其在药物筛选、肝脏疾病和肝脏再生医学方面具有改善的细胞反应和功能。然而,由于肝脏复杂的结构和生理特征,使用传统单组分生物墨水打印3D肝脏构建体仍然存在问题。多组分生物墨水的使用已成为生物打印3D功能性肝脏组织模型的一种有吸引力的策略,因为多组分生物墨水具有各种优势,例如改善打印组织构建体的机械性能和细胞功能。因此,有必要回顾为肝脏组织工程提出的各种3D生物打印技术和多组分水凝胶生物墨水,为肝脏组织工程指明未来方向。据此,我们在此回顾用于3D生物打印肝脏组织的多组分生物墨水。我们首先描述能够打印多组分生物墨水的制造方法,并介绍生物打印的注意事项。随后,我们根据其特性对多组分生物墨水通常使用的材料进行分类和评估。此外,我们还回顾了多组分生物墨水在制造肝脏组织模型方面的最新研究。最后,我们讨论当前研究的局限性,并强调为提高此类生物墨水未来适用性必须解决的方面。