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三维(3D)培养模型在妇科和乳腺癌研究中的应用

Three-Dimensional 3D Culture Models in Gynecological and Breast Cancer Research.

作者信息

Salinas-Vera Yarely M, Valdés Jesús, Pérez-Navarro Yussel, Mandujano-Lazaro Gilberto, Marchat Laurence A, Ramos-Payán Rosalio, Nuñez-Olvera Stephanie I, Pérez-Plascencia Carlos, López-Camarillo César

机构信息

Departamento de Bioquímica, Centro de Investigación de Estudios Avanzados (CINVESTAV-IPN), Ciudad de Mexico, Mexico.

Posgrado en Ciencias Genómicas, Universidad Autónoma de la Ciudad de Mexico, Ciudad de Mexico, Mexico.

出版信息

Front Oncol. 2022 May 26;12:826113. doi: 10.3389/fonc.2022.826113. eCollection 2022.

Abstract

Traditional two-dimensional (2D) monolayer cell cultures have long been the gold standard for cancer biology research. However, their ability to accurately reflect the molecular mechanisms of tumors occurring is limited. Recent development of three-dimensional (3D) cell culture models facilitate the possibility to better recapitulate several of the biological and molecular characteristics of tumors , such as cancer cells heterogeneity, cell-extracellular matrix interactions, development of a hypoxic microenvironment, signaling pathway activities depending on contacts with extracellular matrix, differential growth kinetics, more accurate drugs response, and specific gene expression and epigenetic patterns. In this review, we discuss the utilization of different types of 3D culture models including spheroids, organotypic models and patient-derived organoids in gynecologic cancers research, as well as its potential applications in oncological research mainly for screening drugs with major physiological and clinical relevance. Moreover, microRNAs regulation of cancer hallmarks in 3D cell cultures from different types of cancers is discussed.

摘要

长期以来,传统的二维(2D)单层细胞培养一直是癌症生物学研究的金标准。然而,它们准确反映肿瘤发生分子机制的能力有限。三维(3D)细胞培养模型的最新发展使得更好地重现肿瘤的一些生物学和分子特征成为可能,如癌细胞异质性、细胞与细胞外基质的相互作用、缺氧微环境的形成、依赖与细胞外基质接触的信号通路活性、不同的生长动力学、更准确的药物反应以及特定的基因表达和表观遗传模式。在这篇综述中,我们讨论了不同类型的3D培养模型,包括球体、器官型模型和患者来源的类器官在妇科癌症研究中的应用,以及其在肿瘤学研究中的潜在应用,主要用于筛选具有主要生理和临床相关性的药物。此外,还讨论了不同类型癌症的3D细胞培养中微小RNA对癌症特征的调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43ac/9177953/a2234a2f693c/fonc-12-826113-g001.jpg

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