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STRT-seq-2i: dual-index 5' single cell and nucleus RNA-seq on an addressable microwell array.

Authors:
Hannah Hochgerner Peter Lönnerberg Rebecca Hodge Jaromir Mikes Abeer Heskol Hermann Hubschle Philip Lin Simone Picelli Gioele La Manno Michael Ratz Jude Dunne Syed Husain Ed Lein Maithreyan Srinivasan Amit Zeisel Sten Linnarsson

Sci Rep 2017 11 27;7(1):16327. Epub 2017 Nov 27.

Division of Molecular Neurobiology, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.

Single-cell RNA-seq has become routine for discovering cell types and revealing cellular diversity, but archived human brain samples still pose a challenge to current high-throughput platforms. We present STRT-seq-2i, an addressable 9600-microwell array platform, combining sampling by limiting dilution or FACS, with imaging and high throughput at competitive cost. We applied the platform to fresh single mouse cortical cells and to frozen post-mortem human cortical nuclei, matching the performance of a previous lower-throughput platform while retaining a high degree of flexibility, potentially also for other high-throughput applications.

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http://dx.doi.org/10.1038/s41598-017-16546-4DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5703850PMC
November 2017

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STRT-seq-2i: dual-index 5' single cell and nucleus RNA-seq on an addressable microwell array.

Authors:
Hannah Hochgerner Peter Lönnerberg Rebecca Hodge Jaromir Mikes Abeer Heskol Hermann Hubschle Philip Lin Simone Picelli Gioele La Manno Michael Ratz Jude Dunne Syed Husain Ed Lein Maithreyan Srinivasan Amit Zeisel Sten Linnarsson

Sci Rep 2017 11 27;7(1):16327. Epub 2017 Nov 27.

Division of Molecular Neurobiology, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.

Single-cell RNA-seq has become routine for discovering cell types and revealing cellular diversity, but archived human brain samples still pose a challenge to current high-throughput platforms. We present STRT-seq-2i, an addressable 9600-microwell array platform, combining sampling by limiting dilution or FACS, with imaging and high throughput at competitive cost. We applied the platform to fresh single mouse cortical cells and to frozen post-mortem human cortical nuclei, matching the performance of a previous lower-throughput platform while retaining a high degree of flexibility, potentially also for other high-throughput applications. Read More

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November 2017
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