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Unveiling the Power of the Stellar Mass Spectrometer in Metabolomics

Tu, 15.7.2025
| Original article from: Thermo Fisher Scientific / Dane Walker
The Stellar mass spectrometer empowers metabolomics by enabling comprehensive metabolite analysis and delivering key insights into metabolic pathways and organism health.
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  • Photo: Thermo Fisher Scientific: Unveiling the Power of the Stellar Mass Spectrometer in Metabolomics
  • Video: Sci Spec Co., Ltd.: Stellar Mass Spectrometer Thermo Fisher Scientific TH 

In the intricate world of metabolomics, understanding the complete set of metabolites within a biological sample is key to unlocking insights into metabolic pathways and the physiological state of an organism. The Thermo Scientific Stellar mass spectrometer from Thermo Fisher Scientific is revolutionizing this field with its advanced capabilities, making it an indispensable tool for researchers. Let’s delve into how the Stellar MS is transforming metabolomics research.

Thermo Fisher Scientific: Unveiling the Power of the Stellar Mass Spectrometer in MetabolomicsThermo Fisher Scientific: Unveiling the Power of the Stellar Mass Spectrometer in Metabolomics

The importance of metabolomics

Metabolomics is the comprehensive study of small molecules, or metabolites, within cells, tissues, or organisms. These metabolites are the end products of cellular processes and provide a snapshot of the physiological state of an organism. By analyzing these metabolites, researchers can gain valuable insights into metabolic pathways, disease mechanisms, and potential therapeutic targets.

Why the Stellar mass spectrometer?

The Thermo Scientific Stellar MS stands out as an ideal instrument for metabolomics due to its high sensitivity, specificity, and throughput. Here are some key features that make it a game-changer in this field:

  1. High sensitivity and specificity:
    • The dual-pressure linear ion trap technology of the Stellar MS enhances both sensitivity and specificity. This is crucial for detecting and quantifying low-abundance metabolites in complex biological matrices, where accurate measurement is often challenging.
  2. Wide dynamic range:
    • The Stellar MS can reproducibly quantify metabolites across a broad dynamic range. This ensures accurate measurement of both high and low-abundance compounds, providing a comprehensive metabolic profile.
  3. Rapid data acquisition:
    • With hyper-fast acquisition rates, the Stellar MS can quickly acquire detailed data, making it ideal for high-throughput metabolomics studies. This capability allows researchers to process large numbers of samples in a short amount of time.
  4. Reduced matrix effects:
    • Complex biological samples often contain various interfering substances. The Stellar MS minimizes these matrix effects, ensuring reliable quantification of metabolites even in complex samples, which is essential for accurate metabolomics analysis.
  5. Streamlined method development:
    • The Stellar MS simplifies method development, allowing researchers to quickly set up and optimize experiments for metabolite analysis. This is particularly beneficial when transitioning from method development to large-scale studies.

Application example: metabolic profiling in disease research

Let’s consider a practical example of how the Stellar MS can be used in metabolomics, specifically in disease research.

A research team is investigating metabolic changes associated with a specific disease. Using the Stellar MS, they can:

  • Method development: Quickly develop and optimize methods for detecting and quantifying a wide range of metabolites, including both primary and secondary metabolites. The system’s PRM Conductor software aids in automating method creation, enhancing productivity.
  • Data acquisition: Leverage the system’s rapid full-scan MSn acquisition to gather comprehensive data on metabolites, providing a detailed metabolic profile of the samples. This detailed data helps identify key metabolic changes associated with the disease.
  • Quantification: Accurately quantify metabolites across a wide dynamic range, ensuring that both high and low-abundance metabolites are measured reliably. This is crucial for identifying subtle metabolic changes that may be indicative of disease.
  • High throughput: Process large numbers of samples efficiently, enabling the team to conduct extensive metabolic profiling studies in a short amount of time. The ability to process 96-well plates in just nine hours accelerates the research process.

The Stellar MS’s capabilities allow the research team to generate detailed metabolic profiles, providing insights into metabolic pathways and identifying potential biomarkers for the disease. This information can be used to understand disease mechanisms, identify therapeutic targets, and develop diagnostic tools.

Conclusion

The Stellar mass spectrometer is a powerful tool for metabolomics, offering high sensitivity, wide dynamic range, rapid data acquisition, reduced matrix effects, and streamlined method development. These features make it an ideal instrument for comprehensive metabolic profiling, enabling researchers to gain deeper insights into metabolic pathways and the physiological state of organisms. Invest in the Stellar MS to enhance your metabolomics research and accelerate discoveries in disease mechanisms, biomarkers, and therapeutic targets. With the Stellar MS, the future of metabolomics is brighter than ever.

Explore the capabilities of the Stellar mass spectrometer and see how it can transform your metabolomics research. Contact us for more information or to schedule a demo. Let’s revolutionize metabolomics together.

Visit us on LinkedIn: #MassSpectrometry #Metabolomics #BiomarkerDiscovery #StellarMS

Dane Walker

Dane Walker is Regional Marketing Manager at Thermo Fisher Scientific, focused on LC-MS systems across EMEA. With a PhD in Surface Science and a background in scientific instrumentation, he blends technical expertise with strategic marketing to drive data-led campaigns. Passionate about communicating science and enabling innovation, Dane enjoys powerboating, cycling, stargazing, and talking endlessly about mass spectrometry.

Thermo Fisher Scientific
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