Namgung Bumseok, Dai Hongqing, Prathyushaa Vikraman Pooja, Saha Tanmoy, Sengupta Shiladitya, Lin Jang Hae
Center for Engineered Therapeutics, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA.
Harvard-MIT Division of Health Sciences and Technology, Cambridge, MA, USA.
Device. 2024 Mar 15;2(3). doi: 10.1016/j.device.2024.100255. Epub 2024 Jan 29.
Three-dimensional (3D) cancer cell culture models such as tumor spheroids better recapitulate tumors than conventional two-dimensional (2D) models. However, two major challenges limit the routine use of 3D tumor spheroids. Firstly, most existing methods of generating tumor spheroids are not high-throughput. Secondly, tumor spheroids generated using current methods are highly variable in dimension. Here, we describe a simple 'Do-It-Yourself (DIY)' device that can be assembled for less than $7 of parts and generate uniform tumor spheroids in a high-throughput manner. We used a simple phone coin vibrating motor to superimpose the vibration for breaking a laminar jet of cell-loaded alginate solution into equally sized spherical beads. We generated 3,970 tumor spheroids/min, which exhibited a hypoxic core recapitulating tumors and could be used to test the diffusion efficacy of anticancer drugs. Such low-cost, easy-to-fabricate, simple-to-operate systems with high-throughput outcomes are essential to democratize and standardize cancer research.
诸如肿瘤球体之类的三维(3D)癌细胞培养模型比传统的二维(2D)模型能更好地模拟肿瘤。然而,两个主要挑战限制了3D肿瘤球体的常规使用。首先,大多数现有的生成肿瘤球体的方法不是高通量的。其次,使用当前方法生成的肿瘤球体在尺寸上高度可变。在此,我们描述了一种简单的“自己动手做(DIY)”装置,其零件成本不到7美元即可组装,并能以高通量方式生成均匀的肿瘤球体。我们使用一个简单的手机硬币振动电机叠加振动,将加载细胞的藻酸盐溶液的层流射流破碎成大小相等的球形珠粒。我们每分钟能生成3970个肿瘤球体,这些球体呈现出模拟肿瘤的缺氧核心,可用于测试抗癌药物的扩散效果。这种低成本、易于制造、操作简单且具有高通量结果的系统对于使癌症研究民主化和标准化至关重要。