Rasouli Mohammad, Safari Fatemeh, Kanani Mohammad Hossein, Ahvati Hiva
Department of Biology, Faculty of Science, University of Guilan, Rasht, Iran.
School of Biology, College of Science, University of Tehran, Tehran, Iran.
Methods Mol Biol. 2025;2879:289-300. doi: 10.1007/7651_2024_527.
A type of three-dimensional (3D) cell culture models which is simple and easy is hanging drop method. The hanging drop method emerges as a pivotal technique with diverse applications in cancer research and cell biology. This method facilitates the formation of multicellular spheroids, providing a unique environment for studying cell behavior dynamics. The hanging drop method's theoretical underpinning relies on gravity-enforced self-assembly, allowing for cost-effective, reproducible 3D cell cultures with controlled spheroid sizes. The advantages of this approach include its efficiency in producing cellular heterogeneity, particularly in non-adherent 3D cultures, and its ability to create hypoxic spheroids, making it a suitable model for studying cancer. Moreover, the hanging drop method has proven valuable in investigating various aspects such as tissue structure, signaling pathways, immune activation of cancer cells, and notably, cell proliferation. Researchers have utilized the hanging drop method to explore the dynamics of cell proliferation, studying the effects of mesenchymal stem cells (MSC) secretome on cancer cells. The method's application involves co-culturing different cell lines, assessing spheroid formations, and quantifying their sizes over time. These studies have unveiled intricate cell behavior dynamics, demonstrating how the MSC secretome influences cancer cell growth and viability within a three-dimensional co-culture paradigm.
一种简单易行的三维(3D)细胞培养模型是悬滴法。悬滴法作为一种关键技术,在癌症研究和细胞生物学中有着广泛的应用。这种方法有助于形成多细胞球体,为研究细胞行为动态提供了独特的环境。悬滴法的理论基础依赖于重力驱动的自组装,能够实现具有成本效益、可重复的3D细胞培养,且球体大小可控。这种方法的优点包括在产生细胞异质性方面的效率,特别是在非贴壁3D培养中,以及创造缺氧球体的能力,使其成为研究癌症的合适模型。此外,悬滴法在研究组织结构、信号通路、癌细胞的免疫激活等各个方面,尤其是细胞增殖方面,都已证明具有重要价值。研究人员利用悬滴法探索细胞增殖的动态过程,研究间充质干细胞(MSC)分泌组对癌细胞的影响。该方法的应用包括共培养不同的细胞系、评估球体形成,并随着时间推移对其大小进行量化。这些研究揭示了复杂的细胞行为动态,展示了MSC分泌组在三维共培养模式下如何影响癌细胞的生长和活力。