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Deciphering the underlying mechanism of liver diseases through utilization of multicellular hepatic spheroid models

机译:利用多细胞肝球状体模型破译肝病的潜在机制

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摘要

Hepatocellular carcinoma (HCC) is a very common form of cancer worldwide and is often fatal. Although the histopathology of HCC is characterized by metabolic pathophysiology, fibrosis, and cirrhosis, the focus of treatment has been on eliminating HCC. Recently, three-dimensional (3D) multicellular hepatic spheroid (MCHS) models have provided a) new therapeutic strategies for progressive fibrotic liver diseases, such as antifibrotic and anti-inflammatory drugs, b) molecular targets, and c) treatments for metabolic dysregulation. MCHS models provide a potent anti-cancer tool because they can mimic a) tumor complexity and heterogeneity, b) the 3D context of tumor cells, and c) the gradients of physiological parameters that are characteristic of tumors in vivo. However, the information provided by an multicelluar tumor spheroid (MCTS) model must always be considered in the context of tumors in vivo. This mini-review summarizes what is known about tumor HCC heterogeneity and complexity and the advances provided by MCHS models for innovations in drug development to combat liver diseases.
机译:肝细胞癌 (HCC) 是世界范围内一种非常常见的癌症,通常是致命的。尽管 HCC 的组织病理学特征是代谢病理生理学、纤维化和肝硬化,但治疗的重点是消除 HCC。最近,三维 (3D) 多细胞肝球体 (MCHS) 模型提供了 a) 进行性纤维化肝病的新治疗策略,例如抗纤维化和抗炎药,b) 分子靶标,以及 c) 代谢失调的治疗。MCHS 模型提供了一种有效的抗癌工具,因为它们可以模拟 a) 肿瘤复杂性和异质性,b) 肿瘤细胞的 3D 环境,以及 c) 体内肿瘤特征的生理参数梯度。然而,必须始终在体内肿瘤的背景下考虑多细胞肿瘤球 (MCTS) 模型提供的信息。本小型综述总结了对肿瘤 HCC 异质性和复杂性的了解,以及 MCHS 模型为对抗肝病的药物开发创新提供的进展。

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