MILFORD, Mass., June 1, 2026 /PRNewswire/ -- 74th ASMS Conference on Mass Spectrometry and Allied Topics—Waters Corporation (NYSE: WAT) today introduced the Waters Xevo™ MRT P10 Mass Spectrometer, a high-resolution Quadrupole Time-of-Flight (QToF) System for high-throughput multiomics, bioanalysis, and biopharmaceutical laboratories. The Xevo MRT P10 MS delivers up to 20x higher MS/MS sensitivity compared to its predecessor, along with industry-leading speed and expanded acquisition modes to comprehensively support both targeted and untargeted analysis in a single benchtop platform. The system is designed to accelerate biomarker discovery and validation while supporting the identification of disease pathways and therapeutic targets across large-cohort biomedical research and epidemiology studies.

"With the Xevo MRT P10 MS, we are raising the standard for benchtop high-resolution mass spectrometry," said James Hallam, Vice President & General Manager, Liquid Chromatography-Mass Spectrometry, Waters Analytical Sciences, Waters Corporation. "By combining enhanced MS/MS sensitivity, the industry's fastest benchtop acquisition speeds, and advanced intelligent acquisition modes in LC-MS/MS – and layering in a new benchmark for MS imaging speed and throughput with our DESI XS – this platform empowers researchers to see more biology, accelerate discovery, and make confident decisions. The Xevo MRT P10 MS represents a powerful step forward for our customers working to advance multiomics research and life‑changing therapies."
As researchers pursue deeper analytical insights, they face a bottleneck: generating high quality MS/MS information at the speed required by modern workflows. The Xevo MRT P10 MS is engineered to solve that problem. It offers up to 20× greater MS/MS sensitivity, helping scientists detect low-abundance compounds in complex samples.1 With acquisition speeds twice as fast as its predecessor, it is the fastest benchtop HRMS system currently available.2 The new system supports rapid throughput, alongside exceptional resolution and mass accuracy, delivering the highest data quality and confidence. When combined with the DESI XS ion source, rapid spatial analysis is unlocked down to the cellular level at up to 200 Hz, increasing throughput six-fold while preserving image quality.3
"As a core research facility, we must be prepared to respond to challenging and often unexpected client requests, many of which relate to research into complex diseases," said Corey Broeckling, Ph.D., Director, Bioanalysis and Omics Center, Colorado State University. "We leverage the exceptional MS/MS sensitivity and fast acquisition rates of the Xevo MRT P10 MS for multiomics research. Its excellent resolution enables us to separate signals of similar mass at very high acquisition speeds, delivering deep, high-quality coverage while maintaining sub‑ppm mass accuracy. Combined with new acquisition modes, this provides the versatility and data confidence we need across a wide range of omics applications."
The Xevo MRT P10 MS is perfectly positioned to support long-term growth across multiomics, including proteomics, lipidomics, and metabolomics, as well as biopharmaceutical analysis and drug discovery. The instrument unlocks new workflows in high-throughput, deep proteome discovery by combining greater sensitivity with ultra-fast acquisition rates and advanced acquisition modes, allowing confident detection of low-abundance peptides and comprehensive protein identification with rapid separations at scale. In comparative lipid profiling by LC-MS/MS, the Xevo MRT P10 MS enabled identification of up to 40% more lipids than the most competitive alternative system.4 These enhancements support more comprehensive biological interpretation in multiomics‑driven research and ultimately drive deeper levels of disease understanding.
The Xevo MRT P10 MS will be showcased at ASMS 2026 and is expected to be available globally beginning summer 2026. For more information or to request a demo, visit the product page.
Additional Resources:
Waters, Xevo, and SONAR are trademarks of Waters Corporation or its affiliates. All other marks are the property of their respective owners.
The P in Xevo MRT P10 denotes Premium, the highest performance tier from Waters and 10 marks the first generation of this platform under Waters' new product naming convention.
About Waters Corporation:
Waters Corporation (NYSE: WAT) is a global leader in life sciences and diagnostics, dedicated to accelerating the benefits of pioneering science through analytical technologies, informatics, and service. With a focus on regulated, high-volume testing environments, our innovative portfolio harnesses deep scientific expertise across chemistry, physics, and biology. We collaborate with customers around the world to advance the release of effective, high-quality medicines, ensure the safety of food and water, and drive better patient outcomes by detecting diseases earlier, managing routine infections, and combating antibiotic resistance. Through a shared culture of relentless innovation, our passionate team of ~16,000 colleagues turn scientific challenges into breakthroughs that improve lives worldwide. For more information, please visit www.waters.com/about.
References:
Contact:
Molly Gluck
Head of External Communications
Waters Corporation
508.498.9732
molly_gluck@waters.com

Photo - https://mma.prnewswire.com/media/2991645/Waters_Xevo_MRT_P10_MS.jpg
Logo - https://mma.prnewswire.com/media/2071755/Waters_Corporation_Logo.jpg
View original content:https://www.prnewswire.co.uk/news-releases/waters-introduces-unrivaled-sensitivity-and-speed-to-benchtop-hrms-with-xevo-mrt-p10-ms-accelerating-multiomics-research-302786901.html
Bayern stellt seine Heimatpolitik auf ein neues Fundament: Mit der weiterentwickelten „Heimatstrategie 2033“ will der Freistaat seine regionalen Strukturen stärken, gesellschaftlichen Zusammenhalt sichern und dabei vor allem den bayerisch-tschechischen Grenzraum stärker in den Blick nehmen. Finanz- und Heimatminister Albert Füracker (CSU) sieht darin eine Fortschreibung der 2014 gestarteten Heimatstrategie, die nun angesichts neuer Herausforderungen angepasst und ausgebaut werden soll. In Nürnberg präsentierte er dazu ein umfangreiches Maßnahmenpaket, das sowohl Kommunen als auch engagierte Bürgerinnen und Bürger gezielt einbinden soll.
Füracker verweist darauf, dass sich in der Grenzregion zu Tschechien bereits viel getan habe, aber weiterhin erhebliches Potenzial schlummere. Dieses wolle man „gemeinsam mit den Menschen“ besser nutzen. Bayerns Erfolgsmodell beruhe auf wirtschaftlicher Leistungsfähigkeit, Innovationskraft und starken Regionen, aber ebenso auf sozialem Zusammenhalt, gelebten Traditionen und einem starken Ehrenamt, so der Minister. Ziel sei es, das besondere Lebensgefühl im Freistaat – in Stadt und Land – langfristig zu sichern und zugleich die Widerstandskraft der Regionen zu erhöhen.
Einen Schwerpunkt der „Heimatstrategie 2033“ legt die Staatsregierung auf Personen, die sich vor Ort in besonderer Weise engagieren. Bereits im Juni ist das Forschungsvorhaben „Heimat-Kümmerer“ gemeinsam mit der Technischen Hochschule Nürnberg angelaufen. Es soll Schlüsselpersonen identifizieren, unterstützen und vernetzen, die ihre Heimat aktiv mitgestalten. Ergänzend ist für den Herbst 2026 eine Bürgerumfrage zum Thema „Werte“ vorgesehen sowie ein „Heimat-Newsletter“, über den Informationen gebündelt und der Austausch mit der Bevölkerung ausgebaut werden sollen.
Parallel dazu sollen die Kommunen finanziell und strukturell gestärkt werden, da sie nach Fürackers Worten der zentrale Ort des Lebens und Zusammenhalts sind. Die bisherige Bilanz der seit 2014 laufenden Strategie – darunter Behördenverlagerungen, Investitionen in den Breitbandausbau oder Initiativen wie ein Dialektpreis – wertet der Minister als Beleg dafür, dass Heimatpolitik konkrete Auswirkungen auf Infrastruktur und Identität haben kann. Mit der Fortschreibung bis 2033 will die Staatsregierung diese Linie fortsetzen, bewährte Maßnahmen weiterführen und neue Initiativen starten, um Bayern als attraktiven und zukunftsfähigen Lebensraum zu positionieren.