Plug Library Generation

Plug library generation is a bioengineering method for producing many discrete, compositionally varied aqueous plugs for parallel biological experiments. In a microfluidic device, controlled streams of aqueous samples and an immiscible phase form uniform plugs at a junction, while changing the input solutions or flow conditions creates a library with defined combinations of cells, reagents, or biomaterials. Each plug acts as an isolated microreactor, limiting cross-contamination and reducing reagent use. Researchers can use these libraries to screen biochemical reactions, cell behavior, biomaterial formulations, or assay conditions at high throughput, supporting systematic optimization and the development of scalable microfluidic platforms.

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Research

JoVE Journal - Genetics
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Generation of Native Chromatin Immunoprecipitation Sequencing Libraries for Nucleosome Density Analysis

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Cited by 12 •

2017

We present a modified native chromatin immunoprecipitation sequencing (ChIP-seq) methodology for the generation of sequence datasets suitable for a nucleosome density ChIP-seq analytical framework integrating micrococcal nuclease (MNase) accessibility with histone modification measurements.

Education

JoVE Core - Anatomy and Physiology

Formation of the Platelet Plug

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2024

The platelet phase, the second stage of hemostasis, commences around 15-20 seconds after an injury. It follows and overlaps with the vascular phase, during which blood vessels constrict to minimize blood loss. As the injured blood vessel contracts, endothelial cells undergo contraction, revealing collagen fibers in the basement membrane and underlying connective tissue. Furthermore, the plasma membrane of endothelial cells becomes adhesive, preparing the site for platelet adhesion. Platelets...

Automated Gel Size Selection to Improve the Quality of Next-generation Sequencing Libraries Prepared from Environmental Water Samples

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Cited by 9 •

2015

This manuscript describes an automated gel size selection approach for purifying DNA fragments for next-generation sequencing. The Ranger Technology provides complete automation of the entire process of agarose gel loading, electrophoretic analysis, and recovery of targeted DNA fragments allowing for high-throughput and high quality next-generation sequencing libraries.

Large Insert Environmental Genomic Library Production

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Cited by 18 •

2009

Construction of a fosmid library with environmental genomic DNA isolated from the vertical depth continuum of a seasonally hypoxic fjord is described. The resulting clone library is picked into 384-well plates and archived for downstream sequencing and functional screening by the application of an automated colony picking system.

Large-scale Gene Knockdown in C. elegans Using dsRNA Feeding Libraries to Generate Robust Loss-of-function Phenotypes

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Cited by 5 •

2013

While dsRNA feeding in C. elegans is a powerful tool to assess gene function, current protocols for large scale feeding screens result in variable knockdown efficiencies. We describe an improved protocol for performing large scale RNAi feeding screens that results in highly efficacious and reproducible knockdown of gene expression.

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