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Open AccessJournal ArticleDOI

High-throughput microfluidic single-cell RT-qPCR

TLDR
This work presents a fully integrated microfluidic device capable of performing high-precision RT-qPCR measurements of gene expression from hundreds of single cells per run, and shows that nanoliter volume processing reduced measurement noise, increased sensitivity, and provided single nucleotide specificity.
Abstract
A long-sought milestone in microfluidics research has been the development of integrated technology for scalable analysis of transcription in single cells Here we present a fully integrated microfluidic device capable of performing high-precision RT-qPCR measurements of gene expression from hundreds of single cells per run Our device executes all steps of single-cell processing, including cell capture, cell lysis, reverse transcription, and quantitative PCR In addition to higher throughput and reduced cost, we show that nanoliter volume processing reduced measurement noise, increased sensitivity, and provided single nucleotide specificity We apply this technology to 3,300 single-cell measurements of (i) miRNA expression in K562 cells, (ii) coregulation of a miRNA and one of its target transcripts during differentiation in embryonic stem cells, and (iii) single nucleotide variant detection in primary lobular breast cancer cells The core functionality established here provides the foundation from which a variety of on-chip single-cell transcription analyses will be developed

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Book ChapterDOI

Microfluidic devices for stem cell analysis

TL;DR: This chapter will briefly introduce several microfluidic technologies for stem cell analysis and its future trends, and believe that this chapter will stimulate new directions for future development and use of micro-fabricated devices for stem Cell analysis and stem cell-based regenerative medicine.
Journal ArticleDOI

Capacitive Sensing for Monitoring of Microfluidic Protocols Using Nanoliter Dispensing and Acoustic Mixing.

TL;DR: The approach of using a microfluidic valve to regulate the flow into an initially empty cavity allows for on-chip protocol development and refinement, and shows that capacitive sensing can be used to measure fluid levels, even if multiple fluid types are used, such that nanolitre dispensing accuracy is achieved.
Book ChapterDOI

Microfluidic Systems for Whole‐Animal Screening with C. elegans

TL;DR: This chapter focuses on the applications using C. elegans to enhance the understanding and treatment of neurodegenerative disease.
Patent

Normalization of nucleic acid libraries

TL;DR: In this paper, the authors provide methods and compositions for removing one or more high abundance species from a plurality of nucleic acid molecules. In some embodiments, molecular labels are used in conjunction with the methods and composition disclosed herein to improve sequencing efficiency.
Journal ArticleDOI

Enhanced sample filling and discretization in thermoplastic 2D microwell arrays using asymmetric contact angles

TL;DR: The performance of various array designs is characterized numerically and experimentally to assess the impact of contact angle asymmetry and device geometry on sample filling and discretization, resulting in guidelines to ensure robust microwell filling and sample isolation over a wide range of well dimensions.
References
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Journal ArticleDOI

MicroRNAs: Genomics, Biogenesis, Mechanism, and Function

TL;DR: Although they escaped notice until relatively recently, miRNAs comprise one of the more abundant classes of gene regulatory molecules in multicellular organisms and likely influence the output of many protein-coding genes.
Journal ArticleDOI

MicroRNA expression profiles classify human cancers

TL;DR: A new, bead-based flow cytometric miRNA expression profiling method is used to present a systematic expression analysis of 217 mammalian miRNAs from 334 samples, including multiple human cancers, and finds the miRNA profiles are surprisingly informative, reflecting the developmental lineage and differentiation state of the tumours.
Journal ArticleDOI

Real-time quantification of microRNAs by stem–loop RT–PCR

TL;DR: A novel microRNA quantification method has been developed using stem–loop RT followed by TaqMan PCR analysis, which enables fast, accurate and sensitive miRNA expression profiling and can identify and monitor potential biomarkers specific to tissues or diseases.
Journal ArticleDOI

Monolithic microfabricated valves and pumps by multilayer soft lithography

TL;DR: An extension to the soft lithography paradigm, multilayersoft lithography, with which devices consisting of multiple layers may be fabricated from soft materials is described, to build active microfluidic systems containing on-off valves, switching valves, and pumps entirely out of elastomer.
Journal ArticleDOI

A mammalian microRNA expression atlas based on small RNA library sequencing.

TL;DR: A relatively small set of miRNAs, many of which are ubiquitously expressed, account for most of the differences in miRNA profiles between cell lineages and tissues.
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