description
automation compatible: no
sterility
non-sterile
technique(s)
ChIP: suitable
size
96 wells
color
clear
suitability
suitable for immunoprecipitation
Quality Level
General description
The Thermal plate is a clear, skirted polycarbonate plate with 96 extra-thin polypropylene wells, designed for thermal cycling in PCR applications. It is provided with 12 strip caps and is fully compatible with automated platforms.
The ChIP plate is a clear, sterile polystyrene 96-well plate with conical bottoms. Individual wells will accommodate up to 250 µL. It is provided with three plates seals and is fully compatible with automated platforms.
The ChIP plate is a clear, sterile polystyrene 96-well plate with conical bottoms. Individual wells will accommodate up to 250 µL. It is provided with three plates seals and is fully compatible with automated platforms.
Application
TM=["MAGNA CHIP"] HT96 ChIP and Thermal Plates are intended for use with the TM=["MAGNA CHIP"] HT96 kit. These plates allow running of partial plates to minimize the risk of cross contamination of samples in sensitive endpoint analyses, such as qPCR. See the HT96 kit protocol (Cat. No. 17-10077) for specific use instructions.
Other Notes
1 x 96-well Thermal Plate 12 x Strip Caps 2 x 96-well ChIP Plates 3 x Plate Seals
Legal Information
MAGNA CHIP is a registered trademark of Merck KGaA, Darmstadt, Germany
Disclaimer
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
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Superior enrichment, low background. With performance proven for both qPCR and ChIP-seq analysis, the Magna ChIP™ HiSens kit may be the only ChIP kit you’ll ever need. Outperforming any competing kit, this revolutionary approach to ChIP enables enrichment from both low and high amounts of input chromatin while also delivering low backgrounds and high signal-to-noise ratios for ultra-sensitive detection.
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