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The new SOLiD Small RNA Expression Kit (SREK) generates a library of all small RNAs from a total RNA sample for discovery via SOLiD System sequencing. It is a robust method for whole genome discovery and analysis of small non-coding RNA in general and miRNA in particular, using a simple single day procedure.
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The AmpFℓSTR® SEfiler Plus™ PCR Amplification Kit utilizes a high performance PCR buffer system and re-optimized PCR conditions for improved “first pass” success rate with challenging samples. SEfiler Plus™ amplifies 12 total markers, including the eight STR loci required by the German DNA database, and has been designed to be a single solution for laboratories that process casework or high volume DNA database samples.
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A complete system for generating biotinylated, amplified RNA for hybridization with Illumina Sentrix™arrays--now in 96 well format. This kit offers magnetic bead-based purification of both the cDNA and the aRNA, reducing elution volumes for easier protocol integration.
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The mTRAQ™ Reagents are duplex amine-specific, stable isotope labeled reagents designed for high confidence protein and peptide biomarker verification using MRM analysis on QTRAP® systems and the Triple Quadrupole Mass Spectrometers.
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As the world’s most commonly used LC/MS/MS instrument control software platform with more than 15,000 users worldwide, Analyst® software, which is based on industry leading architecture, provides state of the art functionality for instrument control, data analysis and reporting. The latest version, Analyst Software version 1.5 builds on this legacy by providing new features that both enhance performance as well as ease of use.
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MRMPilot™ Software allows you to create robust quantitative MRM assays to quantitate peptides/proteins/PTMs in complex biological matrices. The selection of MRM transitions are based on either previously acquired MS/MS identifications, or predicted based on protein sequence. MRMPilot Software then helps to iteratively optimize MRM transitions by allowing the evaluation of quantitative and qualitative results by calculated metrics as well as intelligent and user friendly graphs and tables. The final result is a set of high quality MRM transitions that can be used in a true biological assay. |
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The iTRAQ® Reagents – 8plex are next generation of multiplexed, amine-specific, stable isotope reagents that can label all peptides in up to eight different biological samples enabling simultaneous identification and quantitation while retaining important PTM information. The reagent offers 8x throughput over label free approaches, higher statistical confidence in results, significant reduction in overall project cost and enables new workflows that were not possible earlier. The reagents are available in various pack sizes including bulk packs.
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LightSight™ Software is the ultimate tool for finding metabolites. Its automated method development makes metabolite identification even easier and more efficient, while customized glutathione screening makes identifying potential reactive metabolites seamless. The software’s intuitive design and powerful set of features let you efficiently identify and confirm metabolites from data acquired on Applied Biosystems/MDS Sciex triple quadrupole and linear ion trap mass spectrometers.
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Easy-to-use MIDAS™ Workflow Designer Software facilitates the creation of MIDAS™ Workflow Methods for targeted discovery applications. It takes advantage of the power of the QTRAP® systems to combine highly sensitive and selective MRM (Multiple Reaction Monitoring) with highly sensitive ion trap MS/MS. This unique workflow allows targeted discovery of specific proteins, validation of weak protein identifications, and targeted detection of low-level phosphorylation and other modification sites on proteins.
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MultiQuant™ Software is a powerful and easy-to-use quantitation package that processes multiple reaction monitoring (MRM) data for quantitative information. The software enables you to process many analytes and samples at the same time, with an emphasis on the requirements for processing protein/peptide quantitative workflows.
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DiscoveryQuant™ Software - compatible with our triple Quadrupole and QTRAP® Hybrid Linear ion trap instruments - improves the speed and efficiency of drug candidate analysis for high-throughput early ADME (absorption, distribution, metabolism, and excretion). The software’s automated tools, information-sharing capabilities, and assay setup features enable you to gain more information on a higher number of potential compounds, significantly improving your lab’s ability to broaden its pharmaceutical pipeline.
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The High Capacity RNA-to-cDNA Kit is a streamlined reverse transcription kit designed for optimum performance with the TaqMan® Gene Expression Master Mix, Power SYBR® Green PCR Master Mix and others. The components of the two-tube kit work together to provide sensitive and specific reverse transcription across a broad range of template quantities. The new High Capacity RNA-to-cDNA formulation reduces reverse transcription time by at least half, and requires fewer pipetting steps, compared with the classic High Capacity cDNA Reverse Transcription Kit, while maintaining similar high performance.
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Low-abundance RNA samples are no longer a problem. Regardless of how small your starting sample, the concentrated formula of the High Capacity RNA-to-cDNA Master Mix allows you to use dilute RNA samples in cDNA synthesis reactions.
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This easy-to-install software provides secure, remote management for Veriti™ Thermal Cyclers from anywhere on the network.
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This easy-to-use kit is for the accurate and reliable quantitation of CHO host cell DNA. The assay’s high sensitivity, specificity, and robust performance with fragmented DNA enables you to test diverse sample types, such as in-process purification samples, bulk drug substance, and final products.
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Whether your profiling experiment requires ultimate sensitivity, broad coverage or both, Megaplex™ Primer Pools provide the flexibility to reach your research goals. Megaplex Primer Pools provide comprehensive coverage of Sanger miRBase v10, and when used with TaqMan MicroRNA Arrays, offer an ideal microRNA profiling solution.
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New TaqMan® Express Plates are a cost-effective and convenient 96-well format complimenting our line of individual TaqMan® Gene Expression Assays, and pre-spotted 384-well TaqMan® Arrays. Customize any of the six available plate formats with dried-down TaqMan® Assays by positioning each in specific well locations. This flexibility enables an efficient means to screen biological samples for the presence and amount of specified gene targets expressed in human, mouse, rat, canine, and rhesus species.
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TaqMan® MicroRNA Arrays provide all the advantages of TaqMan® MicroRNA Assays in a convenient, pre-configured micro fluidic card minimizing experimental variability and effort required to run 384 TaqMan MicroRNA Assays in parallel.
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Use Fast-cycling real-time PCR chemistry and instrumentation to perform gene expression analysis directly from cultured cells without RNA purification. Quickly and easily lyse cultured cells while removing genomic DNA (gDNA) and preserving RNA integrity. The kit includes reverse transcription (RT) reagents and TaqMan® Fast Universal PCR Master Mix for subsequent real-time PCR analysis.
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The TaqMan® RNA-to-CT™ 1-Step Kit delivers consistent RNA target quantification on a wide variety of assays and is validated with Applied Biosystems’ comprehensive library of TaqMan® Gene Expression assays. The easy-to-use, one-tube protocol helps minimize cross-contamination as compared to a two-step protocol, while the formula and enzymes provide high levels of sensitivity and target concentration discrimination. The TaqMan® RNA-to-CT™ 1-Step Kit can be applied to a variety of applications including general gene expression studies, pathogen detection and biomarker discovery and validation.
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For the first time, you can obtain the benefits of Silencer Select siRNAs in a convenient 96 or 384 well plate format plated to your specifications. These siRNA collections enable medium and high throughput analysis of phenotypes resulting from inhibition of sets of targets from specific functional classes or your favorite list of targets
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