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研究酸碱转运体在乳腺癌中的调控和作用的 3D 多细胞模型。

3D multicellular models to study the regulation and roles of acid-base transporters in breast cancer.

机构信息

Section for Cell Biology and Physiology, Department of Biology, University of Copenhagen, Universitetsparken 13, 2100 Copenhagen, Denmark.

出版信息

Biochem Soc Trans. 2019 Dec 20;47(6):1689-1700. doi: 10.1042/BST20190131.

Abstract

As a result of elevated metabolic rates and net acid extrusion in the rapidly proliferating cancer cells, solid tumours are characterized by a highly acidic microenvironment, while cancer cell intracellular pH is normal or even alkaline. Two-dimensional (2D) cell monocultures, which have been used extensively in breast cancer research for decades, cannot precisely recapitulate the rich environment and complex processes occurring in tumours in vivo. The use of such models can consequently be misleading or non-predictive for clinical applications. Models mimicking the tumour microenvironment are particularly pivotal for studying tumour pH homeostasis, which is profoundly affected by the diffusion-limited conditions in the tumour. To advance the understanding of the mechanisms and consequences of dysregulated acid-base homeostasis in breast cancer, clinically relevant models that incorporate the unique microenvironment of these tumours are required. The development of three-dimensional (3D) cell cultures has provided new tools for basic research and pre-clinical approaches, allowing the culture of breast cancer cells under conditions that closely resemble tumour growth in a living organism. Here we provide an overview of the main 3D techniques relevant for breast cancer cell culture. We discuss the advantages and limitations of the classical 3D models as well as recent advances in 3D culture techniques, focusing on how these culture methods have been used to study acid-base transport in breast cancer. Finally, we outline future directions of 3D culture technology and their relevance for studies of acid-base transport.

摘要

由于快速增殖的癌细胞代谢率升高和净酸排出,实体瘤的特征是高度酸性的微环境,而癌细胞内 pH 值正常甚至呈碱性。二维(2D)细胞单层培养已在乳腺癌研究中广泛应用数十年,但无法精确重现体内肿瘤中丰富的环境和复杂过程。因此,此类模型的使用可能会对临床应用产生误导或不可预测。模拟肿瘤微环境的模型对于研究肿瘤 pH 动态平衡特别重要,肿瘤 pH 动态平衡受到肿瘤中扩散限制条件的深刻影响。为了深入了解乳腺癌酸碱稳态失调的机制和后果,需要使用包含这些肿瘤独特微环境的临床相关模型。三维(3D)细胞培养的发展为基础研究和临床前方法提供了新工具,使乳腺癌细胞在更接近活生物体中肿瘤生长的条件下进行培养成为可能。本文概述了与乳腺癌细胞培养相关的主要 3D 技术。我们讨论了经典 3D 模型的优缺点以及 3D 培养技术的最新进展,重点介绍了这些培养方法如何用于研究乳腺癌中的酸碱转运。最后,我们概述了 3D 培养技术的未来发展方向及其对酸碱转运研究的相关性。

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