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用于基于挤出的生物打印和生物医学应用的生物材料。

Biomaterials for extrusion-based bioprinting and biomedical applications.

作者信息

Rossi Arianna, Pescara Teresa, Gambelli Alberto Maria, Gaggia Francesco, Asthana Amish, Perrier Quentin, Basta Giuseppe, Moretti Michele, Senin Nicola, Rossi Federico, Orlando Giuseppe, Calafiore Riccardo

机构信息

Smart Manufacturing Laboratory, Engineering Department, University of Perugia, Perugia, Italy.

Laboratory for Endocrine Cell Transplant and Biohybrid Organs, Department of Medicine and Surgery, University of Perugia, Perugia, Italy.

出版信息

Front Bioeng Biotechnol. 2024 Jun 21;12:1393641. doi: 10.3389/fbioe.2024.1393641. eCollection 2024.

Abstract

Amongst the range of bioprinting technologies currently available, bioprinting by material extrusion is gaining increasing popularity due to accessibility, low cost, and the absence of energy sources, such as lasers, which may significantly damage the cells. New applications of extrusion-based bioprinting are systematically emerging in the biomedical field in relation to tissue and organ fabrication. Extrusion-based bioprinting presents a series of specific challenges in relation to achievable resolutions, accuracy and speed. Resolution and accuracy in particular are of paramount importance for the realization of microstructures (for example, vascularization) within tissues and organs. Another major theme of research is cell survival and functional preservation, as extruded bioinks have cells subjected to considerable shear stresses as they travel through the extrusion apparatus. Here, an overview of the main available extrusion-based printing technologies and related families of bioprinting materials (bioinks) is provided. The main challenges related to achieving resolution and accuracy whilst assuring cell viability and function are discussed in relation to specific application contexts in the field of tissue and organ fabrication.

摘要

在目前可用的一系列生物打印技术中,基于材料挤出的生物打印因其易获得性、低成本以及不存在可能严重损伤细胞的能源(如激光)而越来越受欢迎。基于挤出的生物打印在生物医学领域与组织和器官制造相关的新应用正在系统地涌现。基于挤出的生物打印在可实现的分辨率、精度和速度方面存在一系列特定挑战。特别是分辨率和精度对于在组织和器官内实现微观结构(例如血管化)至关重要。另一个主要研究主题是细胞存活和功能保存,因为挤出的生物墨水在通过挤出设备时,细胞会受到相当大的剪切应力。在此,提供了主要可用的基于挤出的打印技术以及相关生物打印材料(生物墨水)家族的概述。结合组织和器官制造领域的特定应用背景,讨论了在确保细胞活力和功能的同时实现分辨率和精度所面临的主要挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/faa9/11225062/d73600808e2c/fbioe-12-1393641-g001.jpg

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