Dissolvable Polyacrylamide Beads for High‐Throughput Droplet DNA Barcoding
Abstract: Droplet‐based single cell sequencing technologies, such as inDrop, Drop‐seq, and 10X Genomics, are catalyzing a revolution in the understanding of biology. Barcoding beads are key components for these technologies. What is limiting today are barcoding beads that are easy to fabricate, can efficiently deliver primers into drops, and thus achieve high detection efficiency. Here, this work reports an approach to fabricate dissolvable polyacrylamide beads, by crosslinking acrylamide with disulfide bridges that can be cleaved with dithiothreitol. The beads can be rapidly dissolved in drops and release DNA barcode primers. The dissolvable beads are easy to synthesize, and the primer cost for the beads is significantly lower than that for the previous barcoding beads. Furthermore, the dissolvable beads can be loaded into drops with >95% loading efficiency of a single bead per drop and the dissolution of beads does not influence reverse transcription or the polymerase chain reaction (PCR) in drops. Based on this approach, the dissolvable beads are used for single cell RNA and protein analysis.
- Location
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Deutsche Nationalbibliothek Frankfurt am Main
- Extent
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Online-Ressource
- Language
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Englisch
- Bibliographic citation
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Dissolvable Polyacrylamide Beads for High‐Throughput Droplet DNA Barcoding ; volume:7 ; number:8 ; year:2020 ; extent:6
Advanced science ; 7, Heft 8 (2020) (gesamt 6)
- Creator
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Wang, Yongcheng
Cao, Ting
Ko, Jina
Shen, Yinan
Zong, Will
Sheng, Kuanwei
Cao, Wenjian
Sun, Sijie
Cai, Liheng
Zhou, Ying‐Lin
Zhang, Xin‐Xiang
Zong, Chenghang
Weissleder, Ralph
Weitz, David
- DOI
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10.1002/advs.201903463
- URN
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urn:nbn:de:101:1-2022062613321146020890
- Rights
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Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
- Last update
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15.08.2025, 7:31 AM CEST
Data provider
Deutsche Nationalbibliothek. If you have any questions about the object, please contact the data provider.
Associated
- Wang, Yongcheng
- Cao, Ting
- Ko, Jina
- Shen, Yinan
- Zong, Will
- Sheng, Kuanwei
- Cao, Wenjian
- Sun, Sijie
- Cai, Liheng
- Zhou, Ying‐Lin
- Zhang, Xin‐Xiang
- Zong, Chenghang
- Weissleder, Ralph
- Weitz, David