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This compendium features proven techniques to help tackle common instrument challenges faced during method transfers to obtain consistent results and sustain regulatory compliance.

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This compendium features proven techniques to help tackle common instrument challenges faced during method transfers to obtain consistent results and sustain regulatory compliance.

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This application note demonstrates the suitability of automated QuEChERS extract clean-up for pesticide analysis in cereals through micro-SPE and online injection.

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The determination of trace organic acids and inorganic anions in boric acid-treated power plant waters using an automated reagent-free IC system is demonstrated.

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This application note demonstrates the seamless method transfer from research and development to QC enabled by the end-to-end MAM 2.0 workflow.

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Learn how machine learning and artificial intelligence enable new capabilities in proteomics data processing to increase throughput and depth of coverage.

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This technical note demonstrates the screening capabilities of Thermo Scientific™ Orbitrap Exploris™ 120 mass spectrometer’s accurate analysis of 212 fentanyl compounds

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Mass spectrometry (MS) based proteomics is a promising technique for single-cell analysis by enabling the identification and quantification of thousands of proteins in an unbiased manner.

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New infographic to discover optimized workflows utilizing leading Thermo ScientificTM instruments, consumables, and software for AAV product and process characterization.

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A well-thought-out and detailed grant proposal is essential to the success of the application. Here are 7 steps in the grant-writing process to help you reach new heights.

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In-Depth Label-free analysis of single mammalian cells with nanodroplet single processing

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This document reveals integration of LC-MS with an on-line advanced mass spectral database to enable faster development of acquisition methods.

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This App Note discusses ultra-sensitive quantification of antibody biotherapeutics and biomarkers with a novel trapping-microLC-FAIMS/SRM-MS strategy.

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In this new infographic, discover optimized workflows utilizing leading Thermo ScientificTM instruments, consumables, and software for AAV product and process characterization.

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App Note discusses improving the limit of quantification of sulfonamides in complex meat muscle extract by incorporating FAIMS technology into the LC/MS workflow.

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This technical note provides discovery to quantitation workflows for COVID-19-infected individuals by monitoring two biological matrices – plasma and nasopharyngeal swab

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Developing an analytical method that merges 3 conventional LC-UV methods into 1 LC-MS/MS method, improving laboratory productivity while maintaining high data confidence.

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This illustration provides a brief chronology of single-cell proteomics.

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This Tech Note evaluates data-independent acquisition performance on the Thermo Scientific™ Orbitrap Exploris™ 240 MS for quantitative discovery proteomics analysis.

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This application note demonstrates a streamlined HPLC method scouting workflow for the analysis of esomeprazole and related degradation products.

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Methods migration from updating analytical equipment can be a time consuming task. This paper shows many examples of method compatibility and analytical equivalency.

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Easily implement a robust, reliable, and reproducible workflow solution for the analysis and quantitation of nine HAAs, bromate, and dalapon in water using IC–MS/MS.

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This application note reveals the Vanquish Neo offers maximal MS utilization for direct injection workflows and versatility to separate peptides at low flow rates.

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This application note shows a micro-flow LC–MS method developed on the Vanquish Neo UHPLC is suitable for high-throughput proteomic analyses of large sample cohorts.

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The development of comprehensive liquid chromatography–high resolution accurate mass workflows for confident identification and mapping of oligonucleotides.

In the final episode of this six-part podcast, Robert Moritz, a professor at the Institute for Systems Biology, discusses major challenges that still exist with liquid chromatography and mass spectrometry, liquid chromatography’s role in LC-MS proteomics, and where this field is headed in the next few years and beyond.



In the fifth episode of this six-part series, Bogdan Budnik, principal scientist at Harvard Center for Mass Spectrometry, discusses common challenges related to nano LCMS proteomics analysis of very diverse sample types, improvements in proteomics analysis, and how single-cell proteomics will impact the medical field.