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Polony gels enable amplifiable DNA stamping and spatial transcriptomics of chronic pain.


ABSTRACT: Methods for acquiring spatially resolved omics data from complex tissues use barcoded DNA arrays of low- to sub-micrometer features to achieve single-cell resolution. However, fabricating such arrays (randomly assembled beads, DNA nanoballs, or clusters) requires sequencing barcodes in each array, limiting cost-effectiveness and throughput. Here, we describe a vastly scalable stamping method to fabricate polony gels, arrays of ∼1-micrometer clonal DNA clusters bearing unique barcodes. By enabling repeatable enzymatic replication of barcode-patterned gels, this method, compared with the sequencing-dependent array fabrication, reduced cost by at least 35-fold and time to approximately 7 h. The gel stamping was implemented with a simple robotic arm and off-the-shelf reagents. We leveraged the resolution and RNA capture efficiency of polony gels to develop Pixel-seq, a single-cell spatial transcriptomic assay, and applied it to map the mouse parabrachial nucleus and analyze changes in neuropathic pain-regulated transcriptomes and cell-cell communication after nerve ligation.

SUBMITTER: Fu X 

PROVIDER: S-EPMC9691594 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Polony gels enable amplifiable DNA stamping and spatial transcriptomics of chronic pain.

Fu Xiaonan X   Sun Li L   Dong Runze R   Chen Jane Y JY   Silakit Runglawan R   Condon Logan F LF   Lin Yiing Y   Lin Shin S   Palmiter Richard D RD   Gu Liangcai L  

Cell 20221110 24


Methods for acquiring spatially resolved omics data from complex tissues use barcoded DNA arrays of low- to sub-micrometer features to achieve single-cell resolution. However, fabricating such arrays (randomly assembled beads, DNA nanoballs, or clusters) requires sequencing barcodes in each array, limiting cost-effectiveness and throughput. Here, we describe a vastly scalable stamping method to fabricate polony gels, arrays of ∼1-micrometer clonal DNA clusters bearing unique barcodes. By enablin  ...[more]

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