Javascript must be enabled to continue!
A plug and play microfluidic platform for standardized sensitive low-input Chromatin Immunoprecipitation
View through CrossRef
Abstract
Epigenetic profiling by ChIP-Seq has become a powerful tool for genome-wide identification of regulatory elements, for defining transcriptional regulatory networks and for screening for biomarkers. However, the ChIP-Seq protocol for low-input samples is laborious, time-consuming and suffers from experimental variation, resulting in poor reproducibility and low throughput. Although prototypic microfluidic ChIP-Seq platforms have been developed, these are poorly transferable as they require sophisticated custom-made equipment and in-depth microfluidic and ChIP expertise, while lacking parallelisation. To enable standardized, automated ChIP-Seq profiling of low-input samples, we constructed PDMS-based plates containing microfluidic Integrated Fluidic Circuits capable of performing 24 sensitive ChIP reactions within 30 minutes hands-on time. These disposable plates can conveniently be loaded into a widely available controller for pneumatics and thermocycling, making the ChIP-Seq procedure Plug and Play (PnP). We demonstrate high-quality ChIP-seq on hundreds to few thousands of cells for multiple widely-profiled post-translational histone modifications, together allowing genome-wide identification of regulatory elements. As proof of principle, we managed to generate high-quality epigenetic profiles of rare totipotent subpopulations of mESCs using our platform. In light of the ready-to-go ChIP plates and the automated workflow, we named our procedure PnP-ChIP-Seq. PnP-ChIP-Seq allows non-expert labs worldwide to conveniently run robust, standardized ChIP-Seq, while its high-throughput, consistency and sensitivity paves the way towards large-scale profiling of precious sample types such as rare subpopulations of cells or biopsies.
Reviewer link to data
All sequencing data has been submitted to the NCBI GEO database. Reviewer link:
http://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?token=klwnocicrpaxrkv&acc=GSE120673
Title: A plug and play microfluidic platform for standardized sensitive low-input Chromatin Immunoprecipitation
Description:
Abstract
Epigenetic profiling by ChIP-Seq has become a powerful tool for genome-wide identification of regulatory elements, for defining transcriptional regulatory networks and for screening for biomarkers.
However, the ChIP-Seq protocol for low-input samples is laborious, time-consuming and suffers from experimental variation, resulting in poor reproducibility and low throughput.
Although prototypic microfluidic ChIP-Seq platforms have been developed, these are poorly transferable as they require sophisticated custom-made equipment and in-depth microfluidic and ChIP expertise, while lacking parallelisation.
To enable standardized, automated ChIP-Seq profiling of low-input samples, we constructed PDMS-based plates containing microfluidic Integrated Fluidic Circuits capable of performing 24 sensitive ChIP reactions within 30 minutes hands-on time.
These disposable plates can conveniently be loaded into a widely available controller for pneumatics and thermocycling, making the ChIP-Seq procedure Plug and Play (PnP).
We demonstrate high-quality ChIP-seq on hundreds to few thousands of cells for multiple widely-profiled post-translational histone modifications, together allowing genome-wide identification of regulatory elements.
As proof of principle, we managed to generate high-quality epigenetic profiles of rare totipotent subpopulations of mESCs using our platform.
In light of the ready-to-go ChIP plates and the automated workflow, we named our procedure PnP-ChIP-Seq.
PnP-ChIP-Seq allows non-expert labs worldwide to conveniently run robust, standardized ChIP-Seq, while its high-throughput, consistency and sensitivity paves the way towards large-scale profiling of precious sample types such as rare subpopulations of cells or biopsies.
Reviewer link to data
All sequencing data has been submitted to the NCBI GEO database.
Reviewer link:
http://www.
ncbi.
nlm.
nih.
gov/geo/query/acc.
cgi?token=klwnocicrpaxrkv&acc=GSE120673.
Related Results
Improved Method of Setting Successful Cement Plugs
Improved Method of Setting Successful Cement Plugs
Summary
Setting openhole cement plugs has historically been a difficult task. Often, several attempts are required to set a cement plug before one is obtained tha...
Mesoscale Modeling of a Nucleosome-Binding Antibody (PL2-6): Mono- vs. Bivalent Chromatin Complexes
Mesoscale Modeling of a Nucleosome-Binding Antibody (PL2-6): Mono- vs. Bivalent Chromatin Complexes
ABSTRACTVisualizing chromatin adjacent to the nuclear envelope (denoted “epichromatin”) by in vitro immunostaining with a bivalent nucleosome-binding antibody (termed monoclonal an...
Clinical efficacy of OASIS Preloaded Punctal Plug in Comparison to Smart Plug Punctal Plug in Aqueous-Deficient Dry Eye Disease
Clinical efficacy of OASIS Preloaded Punctal Plug in Comparison to Smart Plug Punctal Plug in Aqueous-Deficient Dry Eye Disease
Abstract
BackgroundAt present, there are few clinical studies comparing OASIS preloaded punctal plug and Smart Plug punctal plug for dry eye. This study intends to evaluate...
The Effect of Sand Plug at the Gas Well Bottom-hole on its Productive Characteristics
The Effect of Sand Plug at the Gas Well Bottom-hole on its Productive Characteristics
The reasons that lead to the destruction of the bottomhole zone during the operation of wells with unstable reservoirs are considered. The negative effects of the sand carry-over f...
A plug and play microfluidic platform for standardized sensitive low-input chromatin immunoprecipitation
A plug and play microfluidic platform for standardized sensitive low-input chromatin immunoprecipitation
Epigenetic profiling by chromatin immunoprecipitation followed by sequencing (ChIP-seq) has become a powerful tool for genome-wide identification of regulatory elements, for defini...
Chromatin is a long-range force generator that regulates plasma membrane tension and cell integrity independently of gene expression
Chromatin is a long-range force generator that regulates plasma membrane tension and cell integrity independently of gene expression
Abstract
Primarily studied for its role in gene expression, chromatin organization is emerging as an important regulator of nuclear mechanics. Although the nucleus ...
Electrostatics and Solvation: Essential Determinants of Chromatin Compaction
Electrostatics and Solvation: Essential Determinants of Chromatin Compaction
ABSTRACT
Chromatin compaction is a process of fundamental importance in Biology, as it greatly influences cellular function and gene expression. The dynamics of com...
New Experimental Equipment for Hydrate Dissociation Studies
New Experimental Equipment for Hydrate Dissociation Studies
Abstract
A new experimental set up dedicated to the hydrate dissociation studies is presented. In this new equipment, hydrate dissociation can be achieved by depr...

