Publications
29 found
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Fricke, K., Baur, D. M., Singh, K. D., Schmidt, F., Müsch, K., Sievi, N. A., Di Donato, M., Schmick, A., Herth, J., Ulrich, S., Sinues, P., Galovic, M., & Kohler, M. (2026). Non‐Invasive Estimation of Systemic Drug Exposure Using Exhaled Breath Metabolomics in Humans: A Translational Proof‐of‐Concept Study [Journal-article]. Clinical Pharmacology &Amp; Therapeutics. https://doi.org/10.1002/cpt.70437
Fricke, K., Baur, D. M., Singh, K. D., Schmidt, F., Müsch, K., Sievi, N. A., Di Donato, M., Schmick, A., Herth, J., Ulrich, S., Sinues, P., Galovic, M., & Kohler, M. (2026). Non‐Invasive Estimation of Systemic Drug Exposure Using Exhaled Breath Metabolomics in Humans: A Translational Proof‐of‐Concept Study [Journal-article]. Clinical Pharmacology &Amp; Therapeutics. https://doi.org/10.1002/cpt.70437
Yin, Zhihong, , Tang, Zhifeng, Richard, Mélina, Zeng, Jiafa, Frey, Urs, Sinues, Pablo, & Li, Xue. (2026). In Vivo Real-Time Metabolic Isotopic Tracing via Breath Analysis upon Deuterated Water Ingestion: A Proof-of-Concept Study [Journal-article]. ACS Central Science. https://doi.org/10.1021/acscentsci.6c00078
Yin, Zhihong, , Tang, Zhifeng, Richard, Mélina, Zeng, Jiafa, Frey, Urs, Sinues, Pablo, & Li, Xue. (2026). In Vivo Real-Time Metabolic Isotopic Tracing via Breath Analysis upon Deuterated Water Ingestion: A Proof-of-Concept Study [Journal-article]. ACS Central Science. https://doi.org/10.1021/acscentsci.6c00078
Richard, Mélina, , Sezer, Dilan, Buergler, Sarah, Palermo, Luana, Schulz, Yannick, Tang, Zhifeng, Luo, Xin, Frey, Urs, Cattin, Philippe C., Li, Xue, Gaab, Jens, & Sinues, Pablo. (2026). Cold induced pain elicits reproducible breath metabolomic responses across geographically distinct populations. iScience, 29(6). https://doi.org/10.1016/j.isci.2026.115857
Richard, Mélina, , Sezer, Dilan, Buergler, Sarah, Palermo, Luana, Schulz, Yannick, Tang, Zhifeng, Luo, Xin, Frey, Urs, Cattin, Philippe C., Li, Xue, Gaab, Jens, & Sinues, Pablo. (2026). Cold induced pain elicits reproducible breath metabolomic responses across geographically distinct populations. iScience, 29(6). https://doi.org/10.1016/j.isci.2026.115857
Schmidt, Felix, Baur, Diego M., Baumgartner, Patrick, Herth, Jonas, Fricke, Kai, Sievi, Noriane A., , Gaisl, Thomas, Huang, Alice, Franzen, Daniel, Ulrich, Silvia, Sinues, Pablo, & Kohler, Malcolm. (2026). Real-time breath metabolomics as catalyst for personalized lung cancer diagnostics: prospective matched case-control trial (LUCAbreath). Translational Lung Cancer Research, 15(3), 57. https://doi.org/10.21037/tlcr-2025-aw-1187
Schmidt, Felix, Baur, Diego M., Baumgartner, Patrick, Herth, Jonas, Fricke, Kai, Sievi, Noriane A., , Gaisl, Thomas, Huang, Alice, Franzen, Daniel, Ulrich, Silvia, Sinues, Pablo, & Kohler, Malcolm. (2026). Real-time breath metabolomics as catalyst for personalized lung cancer diagnostics: prospective matched case-control trial (LUCAbreath). Translational Lung Cancer Research, 15(3), 57. https://doi.org/10.21037/tlcr-2025-aw-1187
Yin, Zhihong, Xiong, Wei, Zhang, Keda, Luo, Xin, Wei, Ming, , Frey, Urs, Li, Xue, Feng, Xia, & Sinues, Pablo. (2025). Real-time breath drug metabolic monitoring under stellate ganglion block with lidocaine: a proof-of-concept study. Discover Medicine, 2(1). https://doi.org/10.1007/s44337-025-00498-0
Yin, Zhihong, Xiong, Wei, Zhang, Keda, Luo, Xin, Wei, Ming, , Frey, Urs, Li, Xue, Feng, Xia, & Sinues, Pablo. (2025). Real-time breath drug metabolic monitoring under stellate ganglion block with lidocaine: a proof-of-concept study. Discover Medicine, 2(1). https://doi.org/10.1007/s44337-025-00498-0
Zeng, Jiafa, Stankovic, Nikola, , Steiner, Regula, Frey, Urs, Erb, Thomas, & Sinues, Pablo. (2025). Breath Analysis of Propofol and Associated Metabolic Signatures: A Pilot Study Using Secondary Electrospray Ionization-High-resolution Mass Spectrometry [Journal-article]. Anesthesiology, 143(2), 345–356. https://doi.org/10.1097/aln.0000000000005531
Zeng, Jiafa, Stankovic, Nikola, , Steiner, Regula, Frey, Urs, Erb, Thomas, & Sinues, Pablo. (2025). Breath Analysis of Propofol and Associated Metabolic Signatures: A Pilot Study Using Secondary Electrospray Ionization-High-resolution Mass Spectrometry [Journal-article]. Anesthesiology, 143(2), 345–356. https://doi.org/10.1097/aln.0000000000005531
Richard, Mélina, , Sezer, Dilan, Buergler, Sarah, Palermo, Luana, Schulz, Yannick, Tang, Zhifeng, Luo, Xin, Frey, Urs, Cattin, Philippe, Li, Xue, Gaab, Jens, & Sinues, Pablo. (2025). Pain induces a rapid characteristic metabolic signature detectable in breath. In Research Square (Research Square). Research Square (United States). https://doi.org/10.21203/rs.3.rs-6048423/v1
Richard, Mélina, , Sezer, Dilan, Buergler, Sarah, Palermo, Luana, Schulz, Yannick, Tang, Zhifeng, Luo, Xin, Frey, Urs, Cattin, Philippe, Li, Xue, Gaab, Jens, & Sinues, Pablo. (2025). Pain induces a rapid characteristic metabolic signature detectable in breath. In Research Square (Research Square). Research Square (United States). https://doi.org/10.21203/rs.3.rs-6048423/v1
Gisler, Amanda, , Marten, Andrea, Decrue, Fabienne, Frey, Urs, Sinues, Pablo, & Usemann, Jakob. (2025). Urinary marker of oxidative stress in children correlates with molecules in exhaled breath. Frontiers in Molecular Biosciences, 12. https://doi.org/10.3389/fmolb.2025.1511119
Gisler, Amanda, , Marten, Andrea, Decrue, Fabienne, Frey, Urs, Sinues, Pablo, & Usemann, Jakob. (2025). Urinary marker of oxidative stress in children correlates with molecules in exhaled breath. Frontiers in Molecular Biosciences, 12. https://doi.org/10.3389/fmolb.2025.1511119
Zeng, Jiafa, Usemann, Jakob, , Jochmann, Anja, Trachsel, Daniel, Frey, Urs, & Sinues, Pablo. (2024). Pharmacometabolomics via real-time breath analysis captures metabotypes of asthmatic children associated with salbutamol responsiveness. iScience, 27(12). https://doi.org/10.1016/j.isci.2024.111446
Zeng, Jiafa, Usemann, Jakob, , Jochmann, Anja, Trachsel, Daniel, Frey, Urs, & Sinues, Pablo. (2024). Pharmacometabolomics via real-time breath analysis captures metabotypes of asthmatic children associated with salbutamol responsiveness. iScience, 27(12). https://doi.org/10.1016/j.isci.2024.111446
Arnold, Kim, Gómez-Mejia, Alejandro, de Figueiredo, Miguel, Boccard, Julien, , Rudaz, Serge, Sinues, Pablo, & Zinkernagel, Annelies S. (2024). Early detection of bacterial pneumonia by characteristic induced odor signatures. BMC Infectious Diseases, 24. https://doi.org/10.1186/s12879-024-10371-7
Arnold, Kim, Gómez-Mejia, Alejandro, de Figueiredo, Miguel, Boccard, Julien, , Rudaz, Serge, Sinues, Pablo, & Zinkernagel, Annelies S. (2024). Early detection of bacterial pneumonia by characteristic induced odor signatures. BMC Infectious Diseases, 24. https://doi.org/10.1186/s12879-024-10371-7
Awchi, Mo, , Brenner, Sara Bachmann, Burckhardt, Marie-Anne, Hess, Melanie, Zeng, Jiafa, Datta, Alexandre N., Frey, Urs, Zumsteg, Urs, Szinnai, Gabor, & Sinues, Pablo. (2024). Metabolic trajectories of diabetic ketoacidosis onset described by breath analysis. Frontiers in Endocrinology, 15. https://doi.org/10.3389/fendo.2024.1360989
Awchi, Mo, , Brenner, Sara Bachmann, Burckhardt, Marie-Anne, Hess, Melanie, Zeng, Jiafa, Datta, Alexandre N., Frey, Urs, Zumsteg, Urs, Szinnai, Gabor, & Sinues, Pablo. (2024). Metabolic trajectories of diabetic ketoacidosis onset described by breath analysis. Frontiers in Endocrinology, 15. https://doi.org/10.3389/fendo.2024.1360989
Sola-Martínez, R. A., Zeng, J., Awchi, M., Gisler, A., Arnold, K., Singh, K. D., Frey, U., Díaz, M. C., de Diego Puente, T., & Sinues, P. (2024). Preservation of exhaled breath samples for analysis by off-line SESI-HRMS: proof-of-concept study [Journal-article]. Journal of Breath Research, 18(1). https://doi.org/10.1088/1752-7163/ad10e1
Sola-Martínez, R. A., Zeng, J., Awchi, M., Gisler, A., Arnold, K., Singh, K. D., Frey, U., Díaz, M. C., de Diego Puente, T., & Sinues, P. (2024). Preservation of exhaled breath samples for analysis by off-line SESI-HRMS: proof-of-concept study [Journal-article]. Journal of Breath Research, 18(1). https://doi.org/10.1088/1752-7163/ad10e1
Awchi, M., Singh, K. D., Dill, P. E., Frey, U., Datta, A. N., & Sinues, P. (2023). Prediction of systemic free and total valproic acid by off-line analysis of exhaled breath in epileptic children and adolescents. Journal of Breath Research, 17(4). https://doi.org/10.1088/1752-7163/acf782
Awchi, M., Singh, K. D., Dill, P. E., Frey, U., Datta, A. N., & Sinues, P. (2023). Prediction of systemic free and total valproic acid by off-line analysis of exhaled breath in epileptic children and adolescents. Journal of Breath Research, 17(4). https://doi.org/10.1088/1752-7163/acf782
Arnold, Kim, Dehio, Philippe, Lötscher, Jonas, , García-Gómez, Diego, Hess, Christoph, Sinues, Pablo, & Balmer, Maria L. (2023). Real-Time Volatile Metabolomics Analysis of Dendritic Cells. Analytical Chemistry, 95(25), 9415–9421. https://doi.org/10.1021/acs.analchem.3c00516
Arnold, Kim, Dehio, Philippe, Lötscher, Jonas, , García-Gómez, Diego, Hess, Christoph, Sinues, Pablo, & Balmer, Maria L. (2023). Real-Time Volatile Metabolomics Analysis of Dendritic Cells. Analytical Chemistry, 95(25), 9415–9421. https://doi.org/10.1021/acs.analchem.3c00516
Awchi M, Sinues P, Datta AN, García-Gómez D, & . (2023). UHPLC-MS/MS-Based Identity Confirmation of Amino Acids Involved in Response to and Side Effects from Antiseizure Medications. Journal of Proteome Research, 22(3), 990–995. https://doi.org/10.1021/acs.jproteome.2c00835
Awchi M, Sinues P, Datta AN, García-Gómez D, & . (2023). UHPLC-MS/MS-Based Identity Confirmation of Amino Acids Involved in Response to and Side Effects from Antiseizure Medications. Journal of Proteome Research, 22(3), 990–995. https://doi.org/10.1021/acs.jproteome.2c00835
Gisler, Amanda, , Zeng, Jiafa, Osswald, Martin, Awchi, Mo, Decrue, Fabienne, Schmidt, Felix, Sievi, Noriane A., Chen, Xing, Usemann, Jakob, Frey, Urs, Kohler, Malcolm, Li, Xue, & Sinues, Pablo. (2022). An interoperability framework for multicentric breath metabolomic studies. iScience, 25(12). https://doi.org/10.1016/j.isci.2022.105557
Gisler, Amanda, , Zeng, Jiafa, Osswald, Martin, Awchi, Mo, Decrue, Fabienne, Schmidt, Felix, Sievi, Noriane A., Chen, Xing, Usemann, Jakob, Frey, Urs, Kohler, Malcolm, Li, Xue, & Sinues, Pablo. (2022). An interoperability framework for multicentric breath metabolomic studies. iScience, 25(12). https://doi.org/10.1016/j.isci.2022.105557
Gomez-Mejia A., Arnold K., Bar J., , Scheier T.C., Brugger S.D., Zinkernagel A.S., & Sinues P. (2022). Rapid detection of Staphylococcus aureus and Streptococcus pneumoniae by real-time analysis of volatile metabolites. iScience, 25(10). https://doi.org/10.1016/j.isci.2022.105080
Gomez-Mejia A., Arnold K., Bar J., , Scheier T.C., Brugger S.D., Zinkernagel A.S., & Sinues P. (2022). Rapid detection of Staphylococcus aureus and Streptococcus pneumoniae by real-time analysis of volatile metabolites. iScience, 25(10). https://doi.org/10.1016/j.isci.2022.105080
Arnold K., Chen X., Zhang H., , Yin Z., Yao Y., Luan T., Sinues P., & Li X. (2022). In vivo detection of metabolic 2H-incorporation upon ingestion of 2H2O. Journal of Bio-X Research, 5(2), 81–89. https://doi.org/10.1097/jbr.0000000000000121
Arnold K., Chen X., Zhang H., , Yin Z., Yao Y., Luan T., Sinues P., & Li X. (2022). In vivo detection of metabolic 2H-incorporation upon ingestion of 2H2O. Journal of Bio-X Research, 5(2), 81–89. https://doi.org/10.1097/jbr.0000000000000121
Zeng, Jiafa, Christen, Alexandra, , Frey, Urs, & Sinues, Pablo. (2022). Comparison of Plasma Ionization- and Secondary Electrospray IonizationHigh-resolution Mass Spectrometry for Real-time Breath Analysis. Chimia, 76(1-2), 127–132. https://doi.org/10.2533/chimia.2022.127
Zeng, Jiafa, Christen, Alexandra, , Frey, Urs, & Sinues, Pablo. (2022). Comparison of Plasma Ionization- and Secondary Electrospray IonizationHigh-resolution Mass Spectrometry for Real-time Breath Analysis. Chimia, 76(1-2), 127–132. https://doi.org/10.2533/chimia.2022.127
, Osswald M, Ziesenitz VC, Awchi M, Usemann J, Imbach LL, Kohler M, García-Gómez D, van den Anker J, Frey U, Datta AN, & Sinues P. (2021). Personalised therapeutic management of epileptic patients guided by pathway-driven breath metabolomics. Communications Medicine, 1(1), 21. https://doi.org/10.1038/s43856-021-00021-3
, Osswald M, Ziesenitz VC, Awchi M, Usemann J, Imbach LL, Kohler M, García-Gómez D, van den Anker J, Frey U, Datta AN, & Sinues P. (2021). Personalised therapeutic management of epileptic patients guided by pathway-driven breath metabolomics. Communications Medicine, 1(1), 21. https://doi.org/10.1038/s43856-021-00021-3
Decrue, Fabienne, , Gisler, Amanda, Awchi, Mo, Zeng, Jiafa, Usemann, Jakob, Frey, Urs, & Sinues. Pablo. (2021). Combination of Exhaled Breath Analysis with Parallel Lung Function and FeNO Measurements in Infants. Analytical Chemistry, 93(47), 15579–15583. https://doi.org/10.1021/acs.analchem.1c02036
Decrue, Fabienne, , Gisler, Amanda, Awchi, Mo, Zeng, Jiafa, Usemann, Jakob, Frey, Urs, & Sinues. Pablo. (2021). Combination of Exhaled Breath Analysis with Parallel Lung Function and FeNO Measurements in Infants. Analytical Chemistry, 93(47), 15579–15583. https://doi.org/10.1021/acs.analchem.1c02036
Yin Z , Huang W , , Chen Z , Chen X , Zhou Z , Yang Z , Sinues P , & Li X . (2021). In vivomonitoring of volatile metabolic trajectories enables rapid diagnosis of influenza A infection. Chemical Communications, 57(39), 4791–4794. https://doi.org/10.1039/d1cc01061a
Yin Z , Huang W , , Chen Z , Chen X , Zhou Z , Yang Z , Sinues P , & Li X . (2021). In vivomonitoring of volatile metabolic trajectories enables rapid diagnosis of influenza A infection. Chemical Communications, 57(39), 4791–4794. https://doi.org/10.1039/d1cc01061a
Gisler, Amanda, Lan, Jiayi, , Usemann, Jakob, Frey, Urs, Zenobi, Renato, & Sinues, Pablo. (2020). Real-time breath analysis of exhaled compounds upon peppermint oil ingestion by secondary electrospray ionization-high resolution mass spectrometry: technical aspects. Journal of Breath Research, 14(4). https://doi.org/10.1088/1752-7163/ab9f8b
Gisler, Amanda, Lan, Jiayi, , Usemann, Jakob, Frey, Urs, Zenobi, Renato, & Sinues, Pablo. (2020). Real-time breath analysis of exhaled compounds upon peppermint oil ingestion by secondary electrospray ionization-high resolution mass spectrometry: technical aspects. Journal of Breath Research, 14(4). https://doi.org/10.1088/1752-7163/ab9f8b
Sendoel, Ataman, Subasic, Deni, Ducoli, Luca, Keller, Martin, Michel, Erich, Kohler, Ines, , Zheng, Xue, Brümmer, Anneke, Imig, Jochen, Kishore, Shivendra, Wu, Yibo, Kanitz, Alexander, Kaech, Andres, Mittal, Nitish, Matia-González, Ana M., Gerber, André P., Zavolan, Mihaela, Aebersold, Ruedi, et al. (2019). MINA-1 and WAGO-4 are part of regulatory network coordinating germ cell death and RNAi in C. elegans. Cell Death & Differentiation Subscription, 26(10), 2157–2178. https://doi.org/10.1038/s41418-019-0291-z
Sendoel, Ataman, Subasic, Deni, Ducoli, Luca, Keller, Martin, Michel, Erich, Kohler, Ines, , Zheng, Xue, Brümmer, Anneke, Imig, Jochen, Kishore, Shivendra, Wu, Yibo, Kanitz, Alexander, Kaech, Andres, Mittal, Nitish, Matia-González, Ana M., Gerber, André P., Zavolan, Mihaela, Aebersold, Ruedi, et al. (2019). MINA-1 and WAGO-4 are part of regulatory network coordinating germ cell death and RNAi in C. elegans. Cell Death & Differentiation Subscription, 26(10), 2157–2178. https://doi.org/10.1038/s41418-019-0291-z
, Tancev, Georgi, Decrue, Fabienne, Usemann, Jakob, Appenzeller, Rhea, Barreiro, Pedro, Jaumà, Gabriel, Macia Santiago, Miriam, Vidal de Miguel, Guillermo, Frey, Urs, & Sinues, Pablo. (2019). Standardization procedures for real-time breath analysis by secondary electrospray ionization high-resolution mass spectrometry. Analytical and Bioanalytical Chemistry, 411(19), 4883–4898. https://doi.org/10.1007/s00216-019-01764-8
, Tancev, Georgi, Decrue, Fabienne, Usemann, Jakob, Appenzeller, Rhea, Barreiro, Pedro, Jaumà, Gabriel, Macia Santiago, Miriam, Vidal de Miguel, Guillermo, Frey, Urs, & Sinues, Pablo. (2019). Standardization procedures for real-time breath analysis by secondary electrospray ionization high-resolution mass spectrometry. Analytical and Bioanalytical Chemistry, 411(19), 4883–4898. https://doi.org/10.1007/s00216-019-01764-8
, Del Miguel, Guillermo Vidal, Gaugg, Martin Thomas, Ibañez, Alfredo J., Zenobi, Renato, Kohler, Malcolm, Frey, Urs, & Sinues, Pablo M.-L. (2018). Translating secondary electrospray ionization-high-resolution mass spectrometry to the clinical environment. Journal of Breath Research, 12(2), 27113. https://doi.org/10.1088/1752-7163/aa9ee3
, Del Miguel, Guillermo Vidal, Gaugg, Martin Thomas, Ibañez, Alfredo J., Zenobi, Renato, Kohler, Malcolm, Frey, Urs, & Sinues, Pablo M.-L. (2018). Translating secondary electrospray ionization-high-resolution mass spectrometry to the clinical environment. Journal of Breath Research, 12(2), 27113. https://doi.org/10.1088/1752-7163/aa9ee3
Tejero Rioseras, Alberto, , Nowak, Nora, Gaugg, Martin T., Bruderer, Tobias, Zenobi, Renato, & Sinues, Pablo M.-L. (2018). Real-Time Monitoring of Tricarboxylic Acid Metabolites in Exhaled Breath. Analytical Chemistry, 90(11), 6453–6460. https://doi.org/10.1021/acs.analchem.7b04600
Tejero Rioseras, Alberto, , Nowak, Nora, Gaugg, Martin T., Bruderer, Tobias, Zenobi, Renato, & Sinues, Pablo M.-L. (2018). Real-Time Monitoring of Tricarboxylic Acid Metabolites in Exhaled Breath. Analytical Chemistry, 90(11), 6453–6460. https://doi.org/10.1021/acs.analchem.7b04600
, Zheng X, Milstein S, Keller M, Roschitzki B, Grossmann J, & Hengartner MO. (2017). Differential regulation of germ line apoptosis and germ cell differentiation by CPEB family members in C. elegans. PLoS ONE, 12(7), e0182270. https://doi.org/10.1371/journal.pone.0182270
, Zheng X, Milstein S, Keller M, Roschitzki B, Grossmann J, & Hengartner MO. (2017). Differential regulation of germ line apoptosis and germ cell differentiation by CPEB family members in C. elegans. PLoS ONE, 12(7), e0182270. https://doi.org/10.1371/journal.pone.0182270
, Roschitzki B, Snoek LB, Grossmann J, Zheng X, Elvin M, Kamkina P, Schrimpf SP, Poulin GB, Kammenga JE, & Hengartner MO. (2016). Natural genetic variation influences protein abundances in C. elegans developmental signalling pathways. PLoS ONE, 11(3), e0149418. https://doi.org/10.1371/journal.pone.0149418
, Roschitzki B, Snoek LB, Grossmann J, Zheng X, Elvin M, Kamkina P, Schrimpf SP, Poulin GB, Kammenga JE, & Hengartner MO. (2016). Natural genetic variation influences protein abundances in C. elegans developmental signalling pathways. PLoS ONE, 11(3), e0149418. https://doi.org/10.1371/journal.pone.0149418