Next-generation small molecule medicines like PROTACs offer potential solutions for previously untreatable diseases, and accurately measuring their DMPK properties is crucial for drug discovery and development. Due to their long half-lives and low systemic concentrations, high-sensitivity bioanalysis is essential.
Waters UPLC-MS/MS and advanced chromatography solutions, sample preparation kits, standards, and high-sensitivity mass spectrometry systems simplify method development and ensure high-quality quantitative bioanalysis assays across modality types—supporting the evolution of safe and effective medicines.
Versatile LC-MS/MS Solutions for the Evolving Bioanalysis Landscape
MassLynx Software Solutions enables users to better leverage their MS systems and harness real-time intelligence, ensure MS system performance, and more quickly convert sample data into valuable knowledge for bioanalysis assays.
Develop the most sensitive reliable and high-performance bioanalysis methods and reduce risks associated with non-specific binding in new modality classes with ACQUITY Premier Columns with MaxPeak High Performance Surfaces (HPS) Technology.
Meet a wide variety of sample preparation needs, from simple and fast sample matrix clean-up to more complex sample preparation challenges with Oasis SPE products that deliver unmatched purity, consistency, and quality for sample analysis.
Eliminate time-consuming or complicated sample preparation with Ostro Pass-Through Sample Preparation Products, which provide a simple solution for phospholipid and protein removal from biological samples and require minimal to no method development.
Optimize your laboratory's productivity and success with Waters Global Services. Maintain peak system performance, minimize downtime, address application challenges, and support stringent compliance requirements.
Optimize chromatographic resolution and speed while eliminating concerns of non-specific binding for new analytes with the Waters ACQUITY Premier UPLC System and enhance overall quantitative performance in bioanalysis assays.