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Updated: Oct 9, 2026

Lab-on-a-CD Platform for Generating Multicellular Three-dimensional Spheroids
Published on: November 7, 2019
Self-buoyant cell-spheroid culture programming multi-spheroid assembly
Yuanhang Xiang1,2, Binqi Wei1, Yueyang Sun3
1Guangxi Key Laboratory of Pharmaceutical Precision Detection and Screening, School of Pharmacy, State Key Laboratory of Targeting Oncology, Guangxi Medical University, Nanning 530021, China.
Abstract:
Tempo-spatially controlled culture and assembly of cellular spheroids are fundamental in engineering tissue-like assembloids for scalable application, yet remain a technical challenge. Here, we show self-buoyant culture of cell spheroids and programmable assembly of multi-spheroid by microbubbles in a high-throughput, external field-free and miniaturized format. This approach allows one-step engineering of biocompatible cell-adhesive buoyancy interface that lifts the self-adaptive levitation growth of reliable one-drop-one-spheroid in an array without requiring any external fields. Using this self-floating spheroidal microarray, we find that a facile droplet 'kiss' facilitates the buoyancy-driven ultrafast transfer (∼1 s) of spheroids between top-down adjacent droplets, thus achieving rapid spheroid relocation, media exchange, and drug administration in parallel. Such a self-buoyant approach allows programmable horizontal/vertical bioassembly and enhanced fusion of homo/heterogeneous multi-spheroids into different "buoyantoid" patterns via sequential flash transfer along droplet array. This self-powered design provides a promising tool to enable mass production and smart manipulation of encoded assembloids for precision medicine, tissue engineering and high-throughput drug screening.

