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用于个性化医疗的3D生物打印肿瘤模型的最新进展

Recent advances in 3D bioprinted tumor models for personalized medicine.

作者信息

Gnatowski Przemysław, Piłat Edyta, Kucińska-Lipka Justyna, Saeb Mohammad Reza, Hamblin Michael R, Mozafari Masoud

机构信息

Department of Polymer Technology, Faculty of Chemistry, Gdańsk University of Technology, Gabriela Narutowicza 11/12, 80-233 Gdańsk, Poland.

Department of Polymer Technology, Faculty of Chemistry, Gdańsk University of Technology, Gabriela Narutowicza 11/12, 80-233 Gdańsk, Poland.

出版信息

Transl Oncol. 2023 Nov;37:101750. doi: 10.1016/j.tranon.2023.101750. Epub 2023 Aug 10.

Abstract

Cancerous tumors are among the most fatal diseases worldwide, claiming nearly 10 million lives in 2020. Due to their complex and dynamic nature, modeling tumors accurately is a challenging task. Current models suffer from inadequate translation between in vitro and in vivo results, primarily due to the isotropic nature of tumors and their microenvironment's relationship. To address these limitations, hydrogel-based 3D bioprinting is emerging as a promising approach to mimic cancer development and behavior. It provides precise control over individual elements' size and distribution within the cancer microenvironment and enables the use of patient-derived tumor cells, rather than commercial lines. Consequently, hydrogel bioprinting is expected to become a state-of-the-art technique for cancer research. This manuscript presents an overview of cancer statistics, current modeling methods, and their limitations. Additionally, we highlight the significance of bioprinting, its applications in cancer modeling, and the importance of hydrogel selection. We further explore the current state of creating models for the five deadliest cancers using 3D bioprinting. Finally, we discuss current trends and future perspectives on the clinical use of cancer modeling using hydrogel bioprinting.

摘要

癌性肿瘤是全球最致命的疾病之一,2020年夺去了近1000万人的生命。由于其复杂和动态的性质,准确模拟肿瘤是一项具有挑战性的任务。当前的模型在体外和体内结果之间的转化存在不足,主要是由于肿瘤的各向同性性质及其与微环境的关系。为了解决这些局限性,基于水凝胶的3D生物打印正在成为一种模拟癌症发展和行为的有前途的方法。它可以精确控制癌症微环境中各个元素的大小和分布,并能够使用患者来源的肿瘤细胞,而不是商业细胞系。因此,水凝胶生物打印有望成为癌症研究的一项先进技术。本文概述了癌症统计数据、当前的建模方法及其局限性。此外,我们强调了生物打印的重要性、其在癌症建模中的应用以及水凝胶选择的重要性。我们进一步探讨了使用3D生物打印为五种最致命癌症创建模型的现状。最后,我们讨论了使用水凝胶生物打印进行癌症建模的临床应用的当前趋势和未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/021c/10440569/33c773af9ac4/ga1.jpg

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