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癌细胞直接生物打印:聚焦综述。

Cancer Cell Direct Bioprinting: A Focused Review.

作者信息

Lobo David Angelats, Ginestra Paola, Ceretti Elisabetta, Miquel Teresa Puig, Ciurana Joaquim

机构信息

Department of Mechanical and Industrial Engineering, University of Brescia, V. Branze 38, 25123 Brescia, Italy.

New Therapeutic Targets Laboratory (TargetsLab), Oncology Unit, Department of Medical Sciences, Girona Institute for Biomedical Research, University of Girona, Emili Grahit 77, 17003 Girona, Spain.

出版信息

Micromachines (Basel). 2021 Jun 28;12(7):764. doi: 10.3390/mi12070764.

Abstract

Three-dimensional printing technologies allow for the fabrication of complex parts with accurate geometry and less production time. When applied to biomedical applications, two different approaches, known as direct or indirect bioprinting, may be performed. The classical way is to print a support structure, the scaffold, and then culture the cells. Due to the low efficiency of this method, direct bioprinting has been proposed, with or without the use of scaffolds. Scaffolds are the most common technology to culture cells, but bioassembly of cells may be an interesting methodology to mimic the native microenvironment, the extracellular matrix, where the cells interact between themselves. The purpose of this review is to give an updated report about the materials, the bioprinting technologies, and the cells used in cancer research for breast, brain, lung, liver, reproductive, gastric, skin, and bladder associated cancers, to help the development of possible treatments to lower the mortality rates, increasing the effectiveness of guided therapies. This work introduces direct bioprinting to be considered as a key factor above the main tissue engineering technologies.

摘要

三维打印技术能够制造出具有精确几何形状且生产时间更短的复杂部件。当应用于生物医学领域时,可以采用两种不同的方法,即直接生物打印或间接生物打印。传统方法是先打印一个支撑结构,即支架,然后培养细胞。由于这种方法效率较低,因此有人提出了直接生物打印,无论是否使用支架。支架是培养细胞最常用的技术,但细胞生物组装可能是一种有趣的方法,可用于模拟细胞相互作用的天然微环境,即细胞外基质。本综述的目的是提供一份关于材料、生物打印技术以及用于乳腺癌、脑癌、肺癌、肝癌、生殖系统癌、胃癌、皮肤癌和膀胱癌相关癌症研究的细胞的最新报告,以帮助开发可能的治疗方法,降低死亡率,提高导向治疗的有效性。这项工作引入直接生物打印,将其视为主要组织工程技术之上的一个关键因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c88/8305105/a989ace98f10/micromachines-12-00764-g001.jpg

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