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异质肿瘤球体:一种用于评估纳米医学的平台。

Heterotypic tumor spheroids: a platform for nanomedicine evaluation.

机构信息

Oncopathology Research Center, Iran University of Medical Sciences (IUMS), Tehran, Iran.

Department of Cell and Molecular Biology, Faculty of Life Sciences and Biotechnology, Shahid Beheshti University, Tehran, 1983969411, Iran.

出版信息

J Nanobiotechnology. 2023 Aug 2;21(1):249. doi: 10.1186/s12951-023-02021-y.

Abstract

Nanomedicine has emerged as a promising therapeutic approach, but its translation to the clinic has been hindered by the lack of cellular models to anticipate how tumor cells will respond to therapy. Three-dimensional (3D) cell culture models are thought to more accurately recapitulate key features of primary tumors than two-dimensional (2D) cultures. Heterotypic 3D tumor spheroids, composed of multiple cell types, have become more popular than homotypic spheroids, which consist of a single cell type, as a superior model for mimicking in vivo tumor heterogeneity and physiology. The stromal interactions demonstrated in heterotypic 3D tumor spheroids can affect various aspects, including response to therapy, cancer progression, nanomedicine penetration, and drug resistance. Accordingly, to design more effective anticancer nanomedicinal therapeutics, not only tumor cells but also stromal cells (e.g., fibroblasts and immune cells) should be considered to create a more physiologically relevant in vivo microenvironment. This review aims to demonstrate current knowledge of heterotypic 3D tumor spheroids in cancer research, to illustrate current advances in utilizing these tumor models as a novel and versatile platform for in vitro evaluation of nanomedicine-based therapeutics in cancer research, and to discuss challenges, guidelines, and future directions in this field.

摘要

纳米医学已成为一种很有前途的治疗方法,但由于缺乏细胞模型来预测肿瘤细胞对治疗的反应,其向临床的转化受到了阻碍。三维(3D)细胞培养模型被认为比二维(2D)培养更能准确地再现原代肿瘤的关键特征。由多种细胞类型组成的异质 3D 肿瘤球体比由单一细胞类型组成的同质球体更受欢迎,因为它是模拟体内肿瘤异质性和生理学的更好模型。异质 3D 肿瘤球体中显示的基质相互作用可以影响多个方面,包括对治疗的反应、癌症进展、纳米医学渗透和耐药性。因此,为了设计更有效的抗癌纳米药物治疗方法,不仅要考虑肿瘤细胞,还要考虑基质细胞(如成纤维细胞和免疫细胞),以创建更具生理相关性的体内微环境。本综述旨在展示癌症研究中异质 3D 肿瘤球体的现有知识,说明利用这些肿瘤模型作为评估癌症研究中基于纳米医学的治疗方法的新型多功能体外平台的最新进展,并讨论该领域的挑战、指南和未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48f5/10398970/b000967d57bd/12951_2023_2021_Fig1_HTML.jpg

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