三维培养模型在三阴性乳腺癌研究中的变革性作用

Cancers Pub Date : 2024-05-13 DOI:10.3390/cancers16101859
Xavier S. Bittman-Soto, Evelyn S. Thomas, Madeline E. Ganshert, Laura L. Mendez‐Santacruz, J. C. Harrell
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引用次数: 0

摘要

细胞培养技术的进步使得直接取自患者组织和肿瘤的三维(3D)细胞培养模型得以开发,从而忠实地复制了原生组织环境。与传统的二维(2D)模型相比,这些模型为研究疾病进展和治疗反应提供了更贴近临床的平台。患者来源器官组织(PDOs)和患者来源异种移植器官组织(PDXOs)作为创新的三维癌症模型应运而生,它们能够准确模拟肿瘤的独特特征,增强我们对肿瘤复杂性的了解,并预测临床结果。三阴性乳腺癌(TNBC)由于其侵袭性、早期转移倾向和有限的治疗方案,给临床带来了巨大挑战。TNBC PDOs 和 PDXOs 极大地促进了对 TNBC 的理解,提供了对其潜在机制的新见解,并确定了潜在的治疗靶点。本综述探讨了各种三维癌症模型在阐明 TNBC 发病机制和指导新型治疗策略方面的变革性作用。它还概述了源自细胞系和肿瘤的各种三维细胞培养模型,强调了它们的优势和培养挑战。最后,它深入探讨了活细胞成像技术、终点检测以及替代细胞培养基和方法,例如无支架和基于支架的系统,这些对于推进三维癌症模型的研究和开发至关重要。
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The Transformative Role of 3D Culture Models in Triple-Negative Breast Cancer Research
Advancements in cell culturing techniques have allowed the development of three-dimensional (3D) cell culture models sourced directly from patients’ tissues and tumors, faithfully replicating the native tissue environment. These models provide a more clinically relevant platform for studying disease progression and treatment responses compared to traditional two-dimensional (2D) models. Patient-derived organoids (PDOs) and patient-derived xenograft organoids (PDXOs) emerge as innovative 3D cancer models capable of accurately mimicking the tumor’s unique features, enhancing our understanding of tumor complexities, and predicting clinical outcomes. Triple-negative breast cancer (TNBC) poses significant clinical challenges due to its aggressive nature, propensity for early metastasis, and limited treatment options. TNBC PDOs and PDXOs have significantly contributed to the comprehension of TNBC, providing novel insights into its underlying mechanism and identifying potential therapeutic targets. This review explores the transformative role of various 3D cancer models in elucidating TNBC pathogenesis and guiding novel therapeutic strategies. It also provides an overview of diverse 3D cell culture models, derived from cell lines and tumors, highlighting their advantages and culturing challenges. Finally, it delves into live-cell imaging techniques, endpoint assays, and alternative cell culture media and methodologies, such as scaffold-free and scaffold-based systems, essential for advancing 3D cancer model research and development.
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