Promotional price valid on web orders only. Your contract pricing may differ. Interested in signing up for a dedicated account number?
Learn More

Applied Biosystems™ resDNASEQ™ Quantitative Plasmid DNA - Kanamycin Resistance Gene Kits

The resDNASEQ Quantitative Plasmid DNA - Kanamycin Resistance Gene Kit is a quantitative PCR (qPCR)-based system for the detection of residual kanamycin-resistant plasmids.

$3755.00 - $4125.00

Specifications

Detection Method Primer-probe
Format Kit
PCR Method qPCR
Label or Dye FAM
Product Line resDNASEQ™
View More Specs

Products 2
Catalog Number Mfr. No. Includes Price Quantity & Availability  
Catalog Number Mfr. No. Includes Price Quantity & Availability  
A50337
View Documents
Applied Biosystems™
A50337
Assay Kit only
Each for $3,755.00
Add to Cart
 
A50460
View Documents
Applied Biosystems™
A50460
Assay Kit and Sample Preparation
Each for $4,125.00
Add to Cart
 
Description

Description

The resDNASEQ Quantitative Plasmid DNA - Kanamycin Resistance Gene Kit is a quantitative PCR (qPCR)-based system for the detection of residual kanamycin-resistant plasmids used in the development of gene therapies, cell-based vaccines, and similar biotherapeutics. Reliable and rapid, the resDNASEQ system enables sensitive and specific quantitation of kanamycin-resistant plasmid DNA. This performance helps ensure a high degree of confidence in quantitation data obtained from a broad range of sample types, from in-process samples with different sample matrices to bulk drug substance.

Features of the resDNASEQ Quantitative Plasmid DNA - Kanamycin Resistance Gene Kit include:
• Designed to quantitate residual plasmid DNA with any common alleles of kanamycin resistance gene
• Highly sensitive quantitation through innovative DNA-free master mix
• Highly sensitive quantitation using proven TaqMan real-time PCR technology
• Includes master mix, TaqMan primer/probe mix, kanamycin-resistant plasmid DNA standard, and sample preparation reagents

This kit is available with or without sample preparation reagents in the form of a PrepSEQ Residual DNA Sample Preparation Kit, which is optimized for highly efficient residual DNA recovery from complex mixtures of proteins, buffers, and salts.

Integrated workflow solution
The resDNASEQ Quantitative Plasmid DNA - Kanamycin Resistance Gene Kit with PrepSEQ Residual DNA Sample Preparation Kit is part of an integrated workflow for impurity and contaminant testing during biopharmaceutical manufacturing. The included PrepSEQ Residual DNA Sample Preparation Kit offers both a manual and automated sample preparation workflow. The resDNASEQ kit has been validated on the Applied Biosystems 7500 Fast Real-Time PCR System and the QuantStudio 5 Real-Time PCR System. Data analysis is streamlined using AccuSEQ Real-Time PCR Detection Software that provides accurate quantitation and security, audit, and e-signature capabilities to help enable 21 CFR Pt 11 compliance.

Easy to use
With the resDNASEQ Quantitative Plasmid DNA - Kanamycin Resistance Gene Kit, you perform qPCR analysis to compare the amount of kanamycin-resistant plasmid DNA in your test samples to standard curves generated with known amounts of kanamycin-resistant plasmid DNA standard. The resDNASEQ kit includes the components you need to carry out these steps, from master mix to TaqMan primer/probe mix to DNA standard, as well as step-by-step instructions.

Specifications

Specifications

Primer-probe
qPCR
resDNASEQ™
100 Reactions
Kit
FAM
Kanamycin Resistant Plasmids
SDS
Documents

Documents

Product Certifications
Provide Content Correction

We continue to work to improve your shopping experience and your feedback regarding this content is very important to us. Please use the form below to provide feedback related to the content on this product.

Product Title

By clicking Submit, you acknowledge that you may be contacted by Fisher Scientific in regards to the feedback you have provided in this form. We will not share your information for any other purposes. All contact information provided shall also be maintained in accordance with our Privacy Policy.

Cancel Submit