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SPARK-seq: A high-throughput platform for aptamer discovery and kinetic profiling

Science (New York, N.Y.). 2026-01; 
Guoyan Luo, Jia Song, Yongbo Fu, Yuanjie Jiang, Yuan Gao, Zhixing Zhong, Ling Li, Yong Wei, Hao-Ran Jia, Lu Guo, Ting Fu, Qin Wu, Weihong Tan
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Abstract

Cell surface proteins are key disease biomarkers and therapeutic targets, yet high-throughput methods for aptamer discovery targeting these proteins in situ remain limited. We introduce single-cell perturbation-driven aptamer recognition and kinetics sequencing (SPARK-seq), a high-throughput platform integrating single-cell messenger RNA and aptamer sequencing with CRISPR-based surface protein perturbation. In a single experiment, SPARK-seq simultaneously mapped 5535 distinct aptamers to eight surface proteins, capturing interactions across more than two orders of magnitude in protein abundance and spanning diverse biophysical classes. The method discriminated closely related paralogous proteins with no detecta... More

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