27 papers · ranked by Valyu relevance
Dragomirka Jovic, Xue Liang, Hua Zeng, Lin Lin + 2 more
'Yonglun Luo'] Title: Abstract Single-cell RNA sequencing (scRNA-seq) technology has become the state-of-the-art approach for unravelling the heterogeneity and complexity of RNA transcripts within individual cells, as well as revealing the composition of different cell types and functions within highly organized…
Antoine-Emmanuel Saliba, Alexander J. Westermann, Stanislaw A. Gorski, Jörg Vogel
'Jörg Vogel'] Phenotypically identical cells can dramatically vary with respect to behavior during their lifespan and this variation is reflected in their molecular composition such as the transcriptomic landscape. Single-cell transcriptomics using next-generation transcript sequencing (RNA-seq) is now emerging as a…
Grace X.Y. Zheng, Jessica M. Terry, Phillip Belgrader, Paul Ryvkin + 28 more
Characterizing the transcriptome of individual cells is fundamental to understanding complex biological systems. We describe a droplet-based system that enables 3′ mRNA counting of up to tens of thousands of single cells per sample. Cell encapsulation in droplets takes place in ∼6 minutes, with ∼50% cell capture…
Sibo Zhu, Tao Qing, Yuanting Zheng, Li Jin + 1 more
Unlike population-level approaches, single-cell RNA sequencing enables transcriptomic analysis of an individual cell. Through the combination of high-throughput sequencing and bioinformatic tools, single-cell RNA-seq can detect more than 10,000 transcripts in one cell to distinguish cell subsets and dynamic cellular…
Wen-min Zhou, Yan-yan Yan, Qiao-ru Guo, Hong Ji + 7 more
'Tian-tian Xu' 'Bolat Makabel' 'Christian Pilarsky' 'Gen He' 'Xi-yong Yu' 'Jian-ye Zhang'] The inherent heterogeneity of individual cells in cell populations plays significant roles in disease development and progression, which is critical for disease diagnosis and treatment. Substantial evidences show that the…
Itamar Kanter, Tomer Kalisky
Traditionally, gene expression measurements were performed on “bulk” samples containing populations of thousands of cells. Recent advances in genomic technology have made it possible to measure gene expression in hundreds of individual cells at a time. As a result, cellular properties that were previously masked in…
Sathiya N. Manivannan, Vidu Garg
Single-cell transcriptomic analyses permit a high-resolution investigation of biological processes at the individual cell level. Single-cell transcriptomics technologies such as Drop-seq, Smart-seq, MARS-seq, sci-RNA-seq, and CELL-seq produce large volumes of data in the form of sequence reads. In general, the…
Jian Wang, Yuanlin Song
Single cell sequencing (SCS) has become a new approach to study biological heterogeneity. The advancement in technologies for single cell isolation, amplification of genome/transcriptome and next-generation sequencing enables SCS to reveal the inherent properties of a single cell from the large scale of the genome…
Siyuan Chen, Weibo Jiang, Yanhui Du, Manshi Yang + 3 more
'Huan Li' 'Mengying Cui'] Single-cell sequencing (SCS) technology is changing our understanding of cellular components, functions, and interactions across organisms, because of its inherent advantage of avoiding noise resulting from genotypic and phenotypic heterogeneity across numerous samples. By directly and…
Victoria Probst, Felix Pacheco, Finn Cilius Nielsen, Frederik Otzen Bagger
Single cell mRNA sequencing technologies have transformed our understanding of cellular heterogeneity and identity. For sensitive discovery or clinical marker estimation where high transcript capture per cell is needed only plate-based techniques currently offer sufficient resolution. Here, we present a performance…
Valentine Svensson, Roser Vento‐Tormo, Sarah A. Teichmann
The ability to measure the transcriptomes of single cells has only been feasible for a few years, and is becoming an extremely popular assay. While many types of analysis and questions can be answered using single cell RNA-sequencing, a central focus is the ability to survey the diversity of cell types within a sample.…
Ionut Sebastian Mihai, Sarang Chafle, Johan Henriksson
Single-cell analysis is currently one of the most high-resolution techniques to study biology. The large complex datasets that have been generated have spurred numerous developments in computational biology, in particular the use of advanced statistics and machine learning. This review attempts to explain the deeper…
Luwen Ning, Geng Liu, Guibo Li, Yong Hou + 2 more
Single cell genomics is a rapidly growing field with many new techniques emerging in the past few years. However, few bioinformatics tools specific for single cell genomics analysis are available. Single cell DNA/RNA sequencing data usually have low genome coverage and high amplification bias, which makes…
Junyue Cao, Jonathan S. Packer, Vijay Ramani, Darren A. Cusanovich + 10 more
Conventional methods for profiling the molecular content of biological samples fail to resolve heterogeneity that is present at the level of single cells. In the past few years, single cell RNA sequencing has emerged as a powerful strategy for overcoming this challenge. However, its adoption has been limited by a…
Jinzhou Yuan, Peter A. Sims
Recent developments have enabled rapid, inexpensive RNA sequencing of thousands of individual cells from a single specimen, raising the possibility of unbiased and comprehensive expression profiling from complex tissues. Microwell arrays are a particularly attractive microfluidic platform for single cell analysis due…
P. Marafini, DG. Smith, AR. Lamstaes, RE. Contreras + 22 more
Existing tools for single cell genomics require complex physical frameworks for the indexing of cellular nucleic acids, including proprietary instrumentation, droplet emulsions, and laborious combinatorial indexing schemes. The complexity and cost of these tools significantly constrains the use of single cell…
Dylan Molho, Jiayuan Ding, Zhaoheng Li, Hongzhi Wen + 11 more
'Yixin Wang' 'Julian Venegas' 'Wei Jin' 'Renming Liu' 'Runze Su' 'Patrick Danaher' 'Robert Yang' 'Yu L. Lei' 'Yuying Xie' 'Jiliang Tang'] Single-cell technologies are revolutionizing the entire field of biology. The large volumes of data generated by single-cell technologies are high-dimensional, sparse, heterogeneous…
Jafar Isbarov, Elmir Mahammadov
analysis Authors: ['Jafar Isbarov' 'Elmir Mahammadov'] Single-cell analysis is an increasingly relevant approach in "omics" studies. In the last decade, it has been applied to various fields, including cancer biology, neuroscience, and, especially, developmental biology. This rise in popularity has been accompanied…
Maria Rossello, Sophie Tandonnet, Isabel Almudi
SPLiT-seq is a cost-effective single-cell RNA-sequencing method, easy to implement in most laboratories. However, the data preprocessing is not straightforward, and no solution currently exists to perform a basic quality control of the data. Here, we present BarQC, a quality control tool, which identifies and corrects…
Katherine E. Prater, Kevin Lin
Acknowledgements: KEP would like to sincerely thank Drs. Ali Shojaie (UW Biostatistics) and Wei Sun (Fred Hutch Department of Biostatistics) for their helpful input and support on bioinformatics and single-cell analysis pipeline development. The authors would also like to thank Drs. Suman Jayadev, Jonathan R.…
Juerg Straubhaar, Alexandria D’Souza, Zachary Niziolek, Bogdan Budnik
Single-cell analysis has clearly established itself in biology and biomedical fields as an invaluable tool that allows one to comprehensively understand the relationship between cells, including their types, states, transitions, trajectories, and spatial position. Scientific methods such as fluorescence labeling…
Amal Homer, Andrea Knoll, Uschi Gruber, Oliver Seitz
Fluorogenic hybridization probes allow the detection and localization of specific mRNA molecules in living cells without the need for genetic engineering. However, with the fluorescence properties of currently available oligonucleotide probes, detection in live cells is difficult when the mRNA target is expressed at…
Authors not listed
The Single-probe is a multifunctional device that can be coupled to mass spectrometry (MS) for molecular analysis of microscale samples, such as single cells, tissue slices, and multicellular spheroids, under ambient conditions. In Single-probe single cell MS (SCMS) studies, this technique leverages direct sampling and…
Michael Lanzillotti, Jennifer Brodbelt
Recent progress in top-down mass spectrometry analysis of progressively larger nucleic acids has enabled in-depth characterization of intact, modified RNA molecules. Development of methods for desalting and MS/MS fragmentation allows rapid acquisition of high-quality top-down MS/MS spectra of nucleic acids up to 100…
Michael Lanzillotti, Jennifer Brodbelt
Broad interest in nucleic acids – both their therapeutic capabilities and understanding the nuances of their structure and resulting function – has increased in recent years. Post-transcriptional modifications in particular have become an important analysis target, as these covalent modifications to the sugars…
Janet Sasso, Barbara Ambrose, Rumiana Tenchov, Ruchira Datta + 3 more
In the last decade, there has been a shift in research, clinical development, and commercial activity to exploit the many roles of RNA in physiology for use in medicine. With the rapid success in the development of lipid-RNA nanoparticles for mRNA vaccines against COVID-19 and with several approved RNA-based drugs, RNA…
Authors not listed
Oligonucleotides offer a powerful class of new therapeutic modalities, which requires the support of robust and sensitive analytical methods. The primary structure of RNA-based therapeutic drugs is considered a critical quality attribute by regulatory agencies, and must be empirically confirmed to ensure quality…