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The separation of three cell-penetrating peptides (CPPs) was performed using a YMC-Triart C18 UHPLC column, providing sharp peaks for a fast analysis in under 4 min.

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The separation of three cell-penetrating peptides (CPPs) was performed using a YMC-Triart C18 UHPLC column, providing sharp peaks for a fast analysis in under 4 min.

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Twenty-eight PFAS in human serum were analyzed using a YMC-Triart C18 column. An automated SPE system was coupled to an online SPE column-switching LC–MS/MS method.

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Four hydrophilic dipeptides were separated with excellent resolution using a YMC-Triart SIL column. Even structurally similar dipeptides were separated in under 4 min.

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The UHPLC analysis of four cyclic peptides is shown. Based on the hydrophobicity of the peptides, a YMC-Triart Bio C4 UHPLC column was chosen for this application.

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The analysis of FMOC-derivatized glyphosate and AMPA in water samples was performed using a YMC-Triart C18 UHPLC column at an elevated pH of 9.5.

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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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LC–MS workflow for accurate quantification/detection of individual host cell proteins, from sample preparation to the reporting of values of process-related impurities.

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Efficient and accurate HPLC analysis of lamotrigine in compliance with USP

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USP-compliant assay analysis of hydrocortisone using a PerkinElmer LC 300 HPLC System

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Determination of four complex carbohydrates utilizing a PerkinElmer LC 300 HPLC System, a hydrophilic interaction chromatography (HILIC) technique

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HPLC method for saccharide content determination via method CRA SACCH.03 through the analysis of nine commercially available high fructose corn syrups

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A review of considerations when optimizing high-throughput methods and achieving fast analyses on Avantor® ACE® HTP-MS columns with examples of key LC–MS separations.

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Determination of 16 common cannabinoids utilizing a PerkinElmer LC 300 HPLC System

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A robust and sensitive HPLC method with multi-wavelength UV–vis detector for the analysis of 2-phenoxyethanol and seven parabens in commercially available PCPs

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USP-compliant method for determination of six isoflavone compounds in dietary supplement capsules with the PerkinElmer LC 300 UHPLC System with PDA detector

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A rapid and simple LC method for the analysis of six common VOC metabolites in urine for monitoring occupational exposure to VOCs

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This application notes introduces an SPE LC–MS/MS methodology using the Microlute™ CP SCX SPE 96-well microplate for the determination of 12 opioids from human urine.

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LPGC–MS is a technique that uses the MS vacuum system, along with a specially designed column setup, to lower pressure inside the entire column, speeding up analysis.

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This application note describes how human milk oligosaccharides (HMO) can be analyzed by HPTLC during different production steps (fermentation and finished products).

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This application note outlines the fractionation of hydrocarbons into aliphatic and aromatic fractions using UCT’s new silver-phase EPH fractionation cartridges.

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In this application note we demonstrate the excellent performance of Sapiens-624MS columns for the analysis of e-liquids based on ISO 20714.

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A robust and sensitive HPLC method with multi-wavelength UV–vis detector for the analysis of 2-phenoxyethanol and seven parabens in commercially available PCPs .

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This application note demonstrates rapid peptide desalting prior to LC-MS analysis in Proteomics research using different micropipette SPE StageTips packed with CDS Analytical’s Empore SPE membranes.

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Critical quality attributes of lentivirus vector products can be assessed by centrifugal field-flow fractionation coupled to multi-angle light scattering (CF3-MALS).

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This application note demonstrates a sample preparation procedure for using the Empore C18 SPE cartridge for the extraction of the THC metabolite, THC-COOH, from urine samples.

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Accurate detection of HAAs is paramount for the prevention of over oxidation, while still managing enough water sanitation to eliminate water-borne pathogens.

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Chemically resistant resin bed allows for a wide base of mobile-phase choices with excellent anion separation.

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Contamination of drinking water and food sources is of great concern. Isolation and quantification of the various arsenic states are identified.