Why SCIEX partners with experts around the world

Aug 25, 2026 | Blogs, Environmental / Industrial | 0 comments

Innovation in mass spectrometry does not happen in isolation. Some of the most impactful scientific advances emerge from highly specialized research communities – proteomics experts developing new peptide identification workflows, metabolomics researchers curating spectral databases, toxicologists building compound libraries, and biopharma scientists creating novel characterization methods.

At SCIEX, our strategy is simple: partner with the experts who are advancing their fields, and ensure their innovations work seamlessly with SCIEX mass spectrometry systems. This approach allows scientists to combine best-in-class instrumentation with best-in-class scientific knowledge, creating greater value for customers and accelerating scientific discovery.

Our software and partnership strategy emphasizes reducing barriers between scientists and their SCIEX data, enabling compatibility across a growing ecosystem of analytical tools, libraries, and workflow extensions.

 

Science advances through communities

Every scientific discipline develops unique expertise. Researchers working in discovery proteomics have different requirements than scientists studying environmental contaminants, natural products, drug metabolites, or biotherapeutics.

Many of these communities invest years creating curated spectral libraries, validated workflows, and specialized software tools. Rather than expecting scientists to abandon those resources, SCIEX works to ensure our data can be used effectively within them.

This philosophy allows customers to leverage the domain knowledge embedded within community-developed resources while benefiting from the performance and reliability of SCIEX instrumentation.

 

A partnership model built on compatibility

Our strategy focuses on enabling compatibility rather than forcing standardization.

Through data integration initiatives, software collaborations, APIs, and open data formats, SCIEX aims to make it easier for scientific communities to incorporate SCIEX-generated data into their established workflows.

These collaborations help scientists continue using the tools and knowledge bases they trust while expanding access to SCIEX mass spectrometry technologies.

 

From libraries to ecosystems

Scientific libraries are among the most valuable assets in modern analytical science.

A well-curated library represents thousands of hours of experimental effort and expert review. Whether it contains peptide spectra, metabolite reference data, PFAS compounds, phytochemicals, or drug metabolites, the scientific value extends far beyond the raw data itself.

SCIEX has increasingly supported efforts to bring these libraries into workflows that are compatible with SCIEX platforms. Examples include support for community and open-access libraries as well as collaborations with organizations developing specialized databases and identification resources.

By focusing on compatibility, we help researchers avoid duplicating work while making it easier to apply trusted reference knowledge to SCIEX-generated data.

SCIEX curated libraries build on this same philosophy of compatibility and reuse. Available in encrypted SDF or. lbp formats, they can be imported directly into SCIEX OS and searched using integrated library workflows. Depending on the library selected, users gain access to comprehensive qualitative identification tools, including spectral matching, traffic-light data quality indicators, and the ability to perform simultaneous quantitation, helping transform reference libraries into powerful, workflow-ready scientific resources.

 

Empowering specialized innovation

No single organization can be the world’s leading expert in every scientific field. The pace of innovation is simply too fast, and scientific applications are too diverse.

Our role is to provide an analytical foundation that enables specialists to innovate.

When experts in proteomics develop breakthrough approaches to peptide identification, when metabolomics researchers create new reference libraries, or when environmental scientists curate novel contaminant databases, we see opportunities for collaboration rather than competition.

These partnerships allow customers to benefit from innovations developed by leading experts while maintaining confidence that their SCIEX instruments will integrate into those evolving workflows.

 

Creating an open, connected future

The future of mass spectrometry will be increasingly collaborative.

Scientists expect instruments, software, libraries, and cloud-based resources to work together seamlessly. The greatest breakthroughs will come from connected ecosystems rather than isolated technologies.

That is why SCIEX continues to invest in collaborations, interoperability, and compatibility initiatives. By partnering with expert teams around the world, we help ensure that the most important scientific libraries and workflows remain accessible to SCIEX users.

Our goal is not simply to generate data. It is to help scientists turn that data into knowledge—using the tools, libraries, and expertise that best support their research.

When instrumentation expertise and domain expertise come together, the result is a stronger scientific community and faster progress toward discovery.

 

About SCIEX partnerships

SCIEX collaborates with software providers, research institutions, scientific consortia, and domain experts across proteomics, metabolomics, biopharma, environmental testing, and other analytical disciplines to expand compatibility, improve workflow efficiency, and help customers extract maximum value from their mass spectrometry data.

 

If you work with mass spec libraries and like to partner with us, please contact us Bryce.Young@sciex.com

 

Resources:

Discover high resolution libraries and enhance the quality of your analysis

SCIEX Spectral Libraries Webpage featuring the NEW DIMSpec Library for PFAS

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Bryce Young has more than 18 years of experience in the LC-MS industry. As Senior Manager of Product Management for data processing software at SCIEX, he leads the strategy and development of software solutions that help scientists transform complex analytical data into actionable insights across proteomics, metabolomics, biopharma, environmental, and applied markets.

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