Suppr超能文献

3D打印生物墨水的最新趋势。

Recent trends in bioinks for 3D printing.

作者信息

Gopinathan Janarthanan, Noh Insup

机构信息

1Department of Chemical & Biomolecular Engineering, Seoul National University of Science and Technology (Seoul Tech), Gongneung-ro 232, Nowon-Gu, Seoul, 01811 Republic of Korea.

2Convergence Institute of Biomedical Engineering & Biomaterials, Seoul National University of Science and Technology (Seoul Tech), Gongneung-ro 232, Nowon-Gu Seoul, 01811 Republic of Korea.

出版信息

Biomater Res. 2018 Apr 6;22:11. doi: 10.1186/s40824-018-0122-1. eCollection 2018.

Abstract

BACKGROUND

The worldwide demand for the organ replacement or tissue regeneration is increasing steadily. The advancements in tissue engineering and regenerative medicine have made it possible to regenerate such damaged organs or tissues into functional organ or tissue with the help of 3D bioprinting. The main component of the 3D bioprinting is the bioink, which is crucial for the development of functional organs or tissue structures. The bioinks used in 3D printing technology require so many properties which are vital and need to be considered during the selection. Combination of different methods and enhancements in properties are required to develop more successful bioinks for the 3D printing of organs or tissue structures.

MAIN BODY

This review consists of the recent state-of-art of polymer-based bioinks used in 3D printing for applications in tissue engineering and regenerative medicine. The subsection projects the basic requirements for the selection of successful bioinks for 3D printing and developing 3D tissues or organ structures using combinations of bioinks such as cells, biomedical polymers and biosignals. Different bioink materials and their properties related to the biocompatibility, printability, mechanical properties, which are recently reported for 3D printing are discussed in detail.

CONCLUSION

Many bioinks formulations have been reported from cell-biomaterials based bioinks to cell-based bioinks such as cell aggregates and tissue spheroids for tissue engineering and regenerative medicine applications. Interestingly, more tunable bioinks, which are biocompatible for live cells, printable and mechanically stable after printing are emerging with the help of functional polymeric biomaterials, their modifications and blending of cells and hydrogels. These approaches show the immense potential of these bioinks to produce more complex tissue/organ structures using 3D bioprinting in the future.

摘要

背景

全球对器官置换或组织再生的需求在稳步增长。组织工程和再生医学的进步使得借助3D生物打印将受损器官或组织再生为功能性器官或组织成为可能。3D生物打印的主要成分是生物墨水,它对于功能性器官或组织结构的发育至关重要。3D打印技术中使用的生物墨水需要具备许多重要特性,在选择时需要加以考虑。为了开发更成功的用于器官或组织结构3D打印的生物墨水,需要结合不同方法并改进其性能。

主体

本综述介绍了用于3D打印的基于聚合物的生物墨水在组织工程和再生医学应用中的最新技术水平。该部分阐述了为3D打印选择成功生物墨水以及使用细胞、生物医学聚合物和生物信号等生物墨水组合来开发3D组织或器官结构的基本要求。详细讨论了最近报道的用于3D打印的不同生物墨水材料及其与生物相容性、可打印性、机械性能相关的特性。

结论

从基于细胞 - 生物材料的生物墨水到基于细胞的生物墨水,如细胞聚集体和组织球体,已经报道了许多用于组织工程和再生医学应用的生物墨水配方。有趣的是,借助功能性高分子生物材料、它们的改性以及细胞与水凝胶的混合,正在出现更多对活细胞具有生物相容性、可打印且打印后机械稳定的可调谐生物墨水。这些方法显示了这些生物墨水在未来使用3D生物打印生产更复杂组织/器官结构方面的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53ad/5889544/59fa0f50e2da/40824_2018_122_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验