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HIPSD R-seq enables scalable genomic copy number and transcriptome profiling
by
Milena Simovic-Lorenz
, Umut Yildiz
, Pooja Sant
, George Philippos
, Oliver Stegle
, Urja Parekh
, Aurélie Ernst
, Jan-Philipp Mallm
, Mikael Marttinen
, Linda Hammann
, Olga Lazareva
, Jan Otoničar
, Albert Li
, Judith Zaugg
, Kyung Min Noh
in
Single Cell copy Number profiling
/ Single Cell DNA sequencing
/ Single Cell multiome
2024
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HIPSD R-seq enables scalable genomic copy number and transcriptome profiling
by
Milena Simovic-Lorenz
, Umut Yildiz
, Pooja Sant
, George Philippos
, Oliver Stegle
, Urja Parekh
, Aurélie Ernst
, Jan-Philipp Mallm
, Mikael Marttinen
, Linda Hammann
, Olga Lazareva
, Jan Otoničar
, Albert Li
, Judith Zaugg
, Kyung Min Noh
in
Single Cell copy Number profiling
/ Single Cell DNA sequencing
/ Single Cell multiome
2024
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Do you wish to request the book?
HIPSD R-seq enables scalable genomic copy number and transcriptome profiling
by
Milena Simovic-Lorenz
, Umut Yildiz
, Pooja Sant
, George Philippos
, Oliver Stegle
, Urja Parekh
, Aurélie Ernst
, Jan-Philipp Mallm
, Mikael Marttinen
, Linda Hammann
, Olga Lazareva
, Jan Otoničar
, Albert Li
, Judith Zaugg
, Kyung Min Noh
in
Single Cell copy Number profiling
/ Single Cell DNA sequencing
/ Single Cell multiome
2024
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HIPSD R-seq enables scalable genomic copy number and transcriptome profiling
Journal Article
HIPSD R-seq enables scalable genomic copy number and transcriptome profiling
2024
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Overview
Abstract Single-cell DNA sequencing (scDNA-seq) enables decoding somatic cancer variation. Existing methods are hampered by low throughput or cannot be combined with transcriptome sequencing in the same cell. We propose HIPSD&R-seq (HIgh-throughPut Single-cell Dna and Rna-seq), a scalable yet simple and accessible assay to profile low-coverage DNA and RNA in thousands of cells in parallel. Our approach builds on a modification of the 10X Genomics platform for scATAC and multiome profiling. In applications to human cell models and primary tissue, we demonstrate the feasibility to detect rare clones and we combine the assay with combinatorial indexing to profile over 17,000 cells.
Publisher
BMC
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