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May 6, 2026Journal of the American Society for Mass Spectrometry1 citationsOpen Access

Venturi Easy Ambient Ionization Mass Spectrometry Coupled to Gas Chromatography for High-Throughput Quantitation of Acetic Acid Residues in Pharmaceuticals

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DTDavid Ulisses TegaUniversidade Estadual de Campinas (UNICAMP)LOL H OliveiraUniversidade Estadual de Campinas (UNICAMP)TPThales Fernando Dias PereiraUniversidade Estadual de Campinas (UNICAMP)

Key Points

  • This work explores an innovative method to quantify acetic acid in pharmaceuticals using a new mass spectrometry technique.
  • Coupled gas chromatography and mass spectrometry via Venturi easy ambient sonic spray ionization
  • Automation of the system for high-throughput analysis
  • Optimization for a runtime of approximately 70 seconds per sample
  • Developed method complies with International Council for Harmonization validation guidelines
  • Achieved rapid quantification of acetic acid residues
  • Highlighted the potential for real-time VOC analysis in quality control processes

Abstract

Gas chromatography coupled to mass spectrometry (GC-MS) is a robust and well-established technique for the analysis of volatile organic compounds (VOCs). Typically, electron ionization is used to combine these techniques; however, it requires high-vacuum conditions and produces extensive fragmentation. Venturi easy ambient sonic spray ionization (V-EASI) mass spectrometry is an ambient ionization approach suitable for samples in both solution and gas phases, employing high pressure as a soft ionization mechanism. In this work, we present a proof-of-principle for coupling GC to MS via V-EASI, applied to the quantification of acetic acid as a residual solvent in pharmaceutical products for quality control purposes. The system was automated and optimized, achieving a runtime of approximately 70 s per sample. The developed method meets the validation guidelines established by the International Council for Harmonization (ICH). Owing to its speed, simplicity, and broad applicability, GC-V-EASI-MS represents a powerful alternative for real-time, high-throughput VOC analysis.

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Cite This Study

Tega et al. (2026) studied this question.

synapsesocial.com/papers/69fa98bd04f884e66b5326edhttps://doi.org/10.1021/jasms.6c00025
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