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. 2023 Jan;53(1):e13868.
doi: 10.1111/eci.13868. Epub 2022 Sep 15.

Patterns of volatile organic compounds in excrements of preterm neonates

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Patterns of volatile organic compounds in excrements of preterm neonates

Michelle Bous et al. Eur J Clin Invest. 2023 Jan.

Abstract

Background: As neonates are susceptible for many diseases, establishing noninvasive diagnostic methods is desirable. We hypothesized that volatile organic compounds (VOCs) could be successfully measured in diaper samples.

Methods: We performed a feasibility study to investigate whether ambient air-independent headspace measurements of the VOC profiles of diapers from premature infants can be conducted using ion mobility spectrometer coupled with multi-capillary columns (B & S Analytik GmbH).

Results: We analysed 39 diapers filled with stool (n = 10) or urine (n = 20) respectively, using empty diapers as a control (n = 9). A total of 158 different VOCs were identified, and we classified the content of the diapers (urine or stool) according to their VOC profiles with a significance level of p < 0.05.

Conclusions: We have developed a novel method to study headspace VOC profiles of biosamples using ion mobility spectrometry coupled with multi-capillary columns. Using this method, we have characterized the VOC profiles of stool and urine of preterm neonates. Future studies are warranted to characterize specific VOC profiles in infections and other diseases of the preterm neonate, thus establishing quick and noninvasive diagnostics in the routine care of the highly vulnerable preterm and term neonates.

Keywords: IMS; VOC; ion mobility spectrometry; neonatology; noninvasive diagnostics; volatile organic compounds.

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References

REFERENCES

    1. Raju TN, Higgins RD, Stark AR, Leveno KJ. Optimizing care and outcome for late-preterm (near-term) infants: a summary of the workshop sponsored by the National Institute of Child Health and Human Development. Pediatrics. 2006;118(3):1207-1214.
    1. de Meij TG, de Boer NK, Benninga MA, et al. Faecal gas analysis by electronic nose as novel, non-invasive method for assessment of active and quiescent paediatric inflammatory bowel disease: Proof of principle study. J Crohns Colitis. 2014. doi:10.1016/j.crohns.2014.09.004. Epub ahead of print.
    1. de Meij TG, van der Schee MP, Berkhout DJ, et al. Early detection of necrotizing enterocolitis by fecal volatile organic compounds analysis. J Pediatr. 2015;167(3):562-7.e1.
    1. Baumbach JI. Ion mobility spectrometry coupled with multi-capillary columns for metabolic profiling of human breath. J Breath Res. 2009;3(3):034001.
    1. Steppert C, Steppert I, Bollinger T, Sterlacci W. Rapid non-invasive detection of influenza-A-infection by multicapillary column coupled ion mobility spectrometry. J Breath Res. 2020;15(1):011001.

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