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Optics and Spectroscopy, 2024 Volume 132, Issue 3, Pages 303–309 (Mi os1170)

Proceedings of the International Conference The XXVII Annual International Conferences Saratov Fall Meeting 2023, September 25 - 29, 2023, Saratov, Russia
Biophotonics

New possibilities for analyzing the biological role of hydrogen, methane and other biomarkers of gut microbiota activity using tunable diode laser absorption spectrometry and selective hydrogen and oxygen sensors

Ya. Ya. Ponurovskiia, D. B. Stavrovskiĭa, I. V. Shirokovb, F. I. Romanikhinb, G. N. Bondarenkob, A. V. Litvinovc, M. O. Etrekovac, A. A. Karabinenkod, V. A. Kilimnike, O. S. Medvedevbf

a Prokhorov General Physics Institute of the Russian Academy of Sciences, 119991 Moscow, Russia
b Lomonosov Moscow State University, 119991 Moscow, Russia
c National Engineering Physics Institute "MEPhI", 115409 Moscow, Russia
d Russian National Research Medical University named after N. I. Pirogov, 117997 Moscow, Russia
e Saint-Petersburg State University of Aerospace Instrumentation, 190000 St. Petersburg, Russia
f Smirnov Institute of Experimental Cardiology, Chazov National Medical Research Center for Cardiology, 121552 Moscow, Russia

Abstract: The paper presents a hardware-software complex consisting of a multichannel tunable high-resolution diode laser spectrometer for measuring gases $^{12}$ян$_2$, $^{13}$ян$_2$, ям$_4$, NH$_3$, H$_2$S and H$_2$O, as well as hydrogen and oxygen sensors for on-line measurements of exhaled gases. It allows continuous (every second) non-invasive measurement of the composition of biomarkers of the intestinal microbiota both in experiments on laboratory animals and in clinical studies on humans. The first experiments showed the possibility of using the device to study both exhaled air and intestinal gas. An important advantage of the developed new method for recording gases is both the continuity of measuring the composition of gases and the multi-channel nature of the recorded components, which makes it possible to assess the characteristics of the enzymatic activity of the intestinal microbiota and indirectly judge its taxonomic composition.

Keywords: hydrogen-methane breath test, water saturated with hydrogen and methane, oxidative stress, hydrogen sensor, diode laser multichannel spectrometer, diagnostics.

Received: 28.12.2023
Revised: 17.01.2024
Accepted: 05.03.2024

DOI: 10.61011/OS.2024.03.58150.35-24



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