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TargetLynx

The TargetLynx™ Application Manager automates sample data acquisition, processing and reporting for quantitative results.It incorporates a range of confirmatory checks that identify samples that fall outside user-specified or regulatory thresholds. Identify Non-compliant Samples TargetLynx rapidly identifies and flags samples where: Analytes are above a specified maximum reporting level (MRL) Analyte confirmatory ion rat…

Waters

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Description

The TargetLynx™ Application Manager automates sample data acquisition, processing and reporting for quantitative results.

It incorporates a range of confirmatory checks that identify samples that fall outside user-specified or regulatory thresholds.

Identify Non-compliant Samples

TargetLynx rapidly identifies and flags samples where:

  • Analytes are above a specified maximum reporting level (MRL)
  • Analyte confirmatory ion ratios are outside specified limits
  • One or more analyte signal-to-noise ratios are below a defined value
  • An analyte retention time or relative retention time is outside limits
  • An analyte concentration is below set LOD and LOQ thresholds
  • The standard deviation of response for QC standards exceeds a defined value
  • The blank response is too high
  • The coefficient of determination (r2) of the calibration curve exceeds a defined value

LC/MS & LC/MS/MS and GC/MS & GC/MS/MS

Use TargetLynx to quantify and confirm both LC/MS & LC/MS/MS and GC/MS & GC/MS/MS data. This data may be selected ion monitoring (SIM), multiple reaction monitoring (MRM), or full scan/full spectrum. In the case of full scan/spectrum data, extracted ion chromatograms are used for quantification.

Ensure Regulatory Compliance

The demand by regulatory authorities for assurance of confirmation in quantitative analysis continues to increase. To ensure cost-effective compliance, TargetLynx offers software that gives you confidence in your results and eliminates time-consuming, costly manual checks.


Application NoteSpectroscopy

Multiresidue Analysis of Pesticides in Fruits and Vegetables Using UPLC-MS/MS

In this application note, the development of a multiresidue method for the routine determination of 190 pesticide residues in various fruit and vegetable matrices using UPLC-MS/MS is described. White grapes and green beens were selected for this application due to their relatively increased complexity, since they contain chlorophylls which are known to affect the extraction efficiency of pesticides from food matrices. A generic QuEChERS sample extraction procedure was used to extract the pesticides from the samples, followed by a rapid and high resolution UPLC separation and trace level detection of pesticides using the Xevo TQ-S micro.



Application NoteFood and Beverage

Discrimmination of Different Unifloral Honeys Using an Untargeted High-Definition Mass Spectrometry Metabolomic Workflow

Food fraud can result in major food safety issues. Interestingly, honey is frequently subjected to fradulent mislabelling and adulteration due to it's high value as a food commodity. Traditional methods of characterization involves complex pollen analyses, which can produce erroneous and non-specific results. This application note describes the verification of honeys from different botanical origins using UPLC-MS/MS.





Application NoteSeparations

Analysis of Busulfan in Plasma for Clinical Research

The bioavailability of busulfan varies greatly between individuals due to factors such as age, underlying diseases and drug-drug interactions. In this application note, an analytically sensitive and selective clinical research method has been developed for the analysis of plasma busulfan.


Application NoteFood and Beverage

LC-MS/MS Analysis of Pesticide Residues in Rice and Unexpected Detection of Residues in an Organic Rice Sample

The use of pesticides in various stages of cultivation of basmati rice has increased in order to improve its production yield. A multi-residue pesticide method has been developed for the determination of pesticides in basmati rice. This application note shows the analysis of over 200 pesticides using a simple QuEChERS sample preparation procedure, followed by UltraPerformance LC® (UPLC®) couple to tandem quadrupole mass spectrometry.


Application NoteSeparations

A Clinical Research Method for the Analysis of Serum Testosterone and Androstenedione

This application note describes an analytically sensitive and selective clinical research method for the analysis of serum testosterone and androstenedione. Excellent method precision was achieved through the use of analytically sensitive and selective sample preparation, chromatography, and MRM mass spectrometry on the ACQUITY UPLC I-Class UPLC System and Xevo TQD. In addition, method accuracy for the analysis of testosterone has been demonstrated through evaluation of CDC HoSt samples.


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