Department of Electronic Engineering and Information Science, University of Science and Technology of China, Hefei, Anhui 230027, China.
Department of Oncology, the First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, Anhui 230001, China.
Nano Lett. 2023 Dec 13;23(23):10710-10718. doi: 10.1021/acs.nanolett.3c02570. Epub 2023 Nov 27.
Three-dimensional (3D) hanging drop cell culture is widely used in organoid culture because of its lack of selection pressure and rapid cell aggregation. However, current hanging drop technology has limitations, such as a dependence on complex microfluidic transport channels or specific capillary force templates for drop formation, which leads to unchangeable drop features. These methods also hinder live imaging because of space and complexity constraints. Here, we have developed a hanging drop construction method and created a flexible 3D hanging drop construction platform composed of a manipulation module and an adhesion module. Their harmonious operation allows for the easy construction of hanging drops of varying sizes, types, and patterns. Our platform produces a cell hanging drop chip with small sizes and clear fields of view, thereby making it compatible with live imaging. This platform has great potential for personalized medicine, cancer and drug discovery, tissue engineering, and stem cell research.
三维(3D)悬滴细胞培养因其缺乏选择压力和快速细胞聚集而被广泛应用于类器官培养。然而,目前的悬滴技术存在局限性,例如对复杂的微流控输送通道或用于形成液滴的特定毛细作用力模板的依赖性,这导致液滴特征不可改变。这些方法还由于空间和复杂性的限制而阻碍了实时成像。在这里,我们开发了一种悬滴构建方法,并创建了一个由操作模块和粘附模块组成的灵活的 3D 悬滴构建平台。它们的和谐运作允许轻松构建不同大小、类型和图案的悬滴。我们的平台产生的细胞悬滴芯片尺寸小,视野清晰,因此与实时成像兼容。该平台在个性化医疗、癌症和药物发现、组织工程和干细胞研究方面具有巨大的潜力。