Waters Launches Charge Detection Mass Spectrometry Technology to Accelerate the Development of Next-Generation Biotherapeutics
Headlines:
- Xevo™ CDMS facilitates direct, accurate mass detection for the largest, most heterogeneous biomolecules.1
- Enables accurate analysis of protein complexes, nucleic acids, and gene delivery vehicles, including distinguishing between empty, partial, full, and overfull viral vector capsids in less than 10 minutes per sample.2
- Decreases sample volumes by 100 times vs. current methods for assessing cells and nucleic acids.3
"Waters continues to make strategic investments in large molecules, recognizing that advanced tools for bioanalytical characterization play a critical role in driving therapeutic breakthroughs. Today, we are proud to introduce the first-of-its-kind Xevo Charge Detection Mass Spectrometer, enabling the precise analysis of previously unmeasurable molecules," said
The Waters Xevo CDMS provides confident analysis of new modalities, like empty, partial, and full viral vector capsids, using up to 100-fold less sample volume than that required by current techniques, and delivering results in less than ten minutes, even at concentrations as low as 1010 vp/mL. This new capability paves the way for real-time characterization of gene therapies during process development – ultimately improving the safety and efficacy of advanced therapies. Additionally, CDMS absolves the need for deconvolution or digestion approaches to achieve simple and accurate analysis of complex molecules. This transformational mass spectrometry advancement supports a wide range of applications – from discovery and research, through process development, to regulatory approval and manufacturing.
"Our mission is to accelerate the development of gene therapies for genetically mediated cardiovascular diseases and Alzheimer's, where there is a significant unmet need in treatment options," said
At the heart of the Xevo CDMS is the Electrostatic
The Waters Xevo CDMS System is powered by the GxP-ready waters_connect™ Software and is available to order now.
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References:
1 Demonstrated mass analysis on-instrument of various molecular species from <100 kDa to Chikungunya Virus complexes of >150 MDa.
2 Time taken to acquire a statistically representative number of ions to enable characterization of AAV features.
3 Indicative of amount of sample required for sample preparation. Actual sample consumed during analysis is <5 µL.
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