Samara Bisan, Deliorman Muhammedin, Sukumar Pavithra, Qasaimeh Mohammad A
Division of Engineering, New York University Abu Dhabi (NYUAD), Abu Dhabi, 129188 United Arab Emirates.
Lab Chip. 2021 Mar 9;21(5):844-854. doi: 10.1039/d0lc01300e.
Three-dimensional (3D) tumor models have gained increased attention in life-science applications as they better represent physiological conditions of in vivo tumor microenvironments, and thus, possess big potential for guiding drug screening studies. Although various techniques proved effective in growing cancer cells in 3D, their procedures are typically complex, time consuming, and expensive. Here, we present a versatile, robust, and cost-effective method that utilizes a paper platform to create cryopreservable high throughput arrays of 3D tumor models. In the approach, we use custom 3D printed masks along with simple chemistry modifications to engineer highly localized hydrophilic 'virtual microwells', or microspots, on paper for 3D cell aggregation, surrounded by hydrophobic barriers that prevent inter-microspot mixing. The method supports the formation and cryopreservation of 3D tumor arrays for extended periods of storage time. Using MCF-7 and MDA-MB-231 breast cancer cell lines, we show that the cryopreservable arrays of paper-based 3D models are effective in studying tumor response to cisplatin drug treatment, while replicating key characteristics of the in vivo tumors that are absent in conventional 2D cultures. This technology offers a low cost, easy, and fast experimental procedure, and allows for 3D tumor arrays to be cryopreserved and thawed for on-demand use. This could potentially provide unparalleled advantages to the fields of tissue engineering and personalized medicine.
三维(3D)肿瘤模型在生命科学应用中受到了越来越多的关注,因为它们能更好地模拟体内肿瘤微环境的生理状况,因此在指导药物筛选研究方面具有巨大潜力。尽管各种技术已被证明在三维培养癌细胞方面有效,但其操作过程通常复杂、耗时且昂贵。在此,我们提出一种通用、稳健且经济高效的方法,该方法利用纸质平台创建可冷冻保存的三维肿瘤模型高通量阵列。在该方法中,我们使用定制的3D打印掩膜以及简单的化学修饰,在纸上构建高度局部化的亲水性“虚拟微孔”或微点,用于三维细胞聚集,周围环绕着疏水性屏障以防止微点间的混合。该方法支持三维肿瘤阵列的形成和冷冻保存,以便长时间储存。使用MCF - 7和MDA - MB - 231乳腺癌细胞系,我们表明基于纸的三维模型的可冷冻保存阵列在研究肿瘤对顺铂药物治疗的反应方面是有效的,同时复制了传统二维培养中不存在的体内肿瘤的关键特征。这项技术提供了一种低成本、简便且快速的实验程序,并允许三维肿瘤阵列被冷冻保存和解冻以供按需使用。这可能为组织工程和个性化医学领域带来无与伦比的优势。