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◆ Analytical Chemistry2025-11-19· Microfluidics

Deterministic Co-encapsulation of Microparticles in Droplets via Synchronized Merging for Single-Cell Genomics

Yanan Du, Chuhe Wen, Yuan Luo, Yifan Liu

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide Droplet encapsulation of microparticles, such as hydrogel beads and cells, is fundamental to high-throughput bioanalytical assays, including single-cell genomics. However, co-encapsulation of multiple particles at defined ratios remains a technical challenge. Here, we present a simple and robust strategy for deterministic co-encapsulation, combining particle-triggered droplet generation with synchronized droplet merging. Close-packed hydrogel particles initiate droplet formation, and the resulting droplets are synchronized and merged within a microfluidic channel, enabling the efficient encapsulation of microparticles at user-defined ratios. We systematically characterized the process and demonstrated reliable coloading of 55 and 80 μm hydrogel particles at 1:1 and 2:1 ratios. Using this platform, we developed a single-cell 16S rRNA gene sequencing workflow by co-encapsulating hydrogel capsules containing amplified microbial genomes with barcode beads. Applied to a 1:1 mixture of Escherichia coli and Bacillus subtilis, the method enabled accurate, high-throughput single-cell taxonomic profiling. This co-encapsulation approach offers broad applicability for single-cell genomics, digital assays, and interaction-based studies requiring precise particle pairing.
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