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Acute metabolic decompensation due to influenza in a mouse model of ornithine transcarbamylase deficiency

The urea cycle functions to incorporate ammonia, generated by normal metabolism, into urea. Urea cycle disorders (UCDs) are caused by loss of function in any of the enzymes responsible for ureagenesis, and are characterized by life-threatening episodes of acute metabolic decompensation with hyperamm...

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Autores principales: McGuire, Peter J., Tarasenko, Tatiana N., Wang, Tony, Levy, Ezra, Zerfas, Patricia M., Moran, Thomas, Lee, Hye Seung, Bequette, Brian J., Diaz, George A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Limited 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3917241/
https://www.ncbi.nlm.nih.gov/pubmed/24271778
http://dx.doi.org/10.1242/dmm.013003
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author McGuire, Peter J.
Tarasenko, Tatiana N.
Wang, Tony
Levy, Ezra
Zerfas, Patricia M.
Moran, Thomas
Lee, Hye Seung
Bequette, Brian J.
Diaz, George A.
author_facet McGuire, Peter J.
Tarasenko, Tatiana N.
Wang, Tony
Levy, Ezra
Zerfas, Patricia M.
Moran, Thomas
Lee, Hye Seung
Bequette, Brian J.
Diaz, George A.
author_sort McGuire, Peter J.
collection PubMed
description The urea cycle functions to incorporate ammonia, generated by normal metabolism, into urea. Urea cycle disorders (UCDs) are caused by loss of function in any of the enzymes responsible for ureagenesis, and are characterized by life-threatening episodes of acute metabolic decompensation with hyperammonemia (HA). A prospective analysis of interim HA events in a cohort of individuals with ornithine transcarbamylase (OTC) deficiency, the most common UCD, revealed that intercurrent infection was the most common precipitant of acute HA and was associated with markers of increased morbidity when compared with other precipitants. To further understand these clinical observations, we developed a model system of metabolic decompensation with HA triggered by viral infection (PR8 influenza) using spf-ash mice, a model of OTC deficiency. Both wild-type (WT) and spf-ash mice displayed similar cytokine profiles and lung viral titers in response to PR8 influenza infection. During infection, spf-ash mice displayed an increase in liver transaminases, suggesting a hepatic sensitivity to the inflammatory response and an altered hepatic immune response. Despite having no visible pathological changes by histology, WT and spf-ash mice had reduced CPS1 and OTC enzyme activities, and, unlike WT, spf-ash mice failed to increase ureagenesis. Depression of urea cycle function was seen in liver amino acid analysis, with reductions seen in aspartate, ornithine and arginine during infection. In conclusion, we developed a model system of acute metabolic decompensation due to infection in a mouse model of a UCD. In addition, we have identified metabolic perturbations during infection in the spf-ash mice, including a reduction of urea cycle intermediates. This model of acute metabolic decompensation with HA due to infection in UCD serves as a platform for exploring biochemical perturbations and the efficacy of treatments, and could be adapted to explore acute decompensation in other types of inborn errors of metabolism.
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spelling pubmed-39172412014-02-13 Acute metabolic decompensation due to influenza in a mouse model of ornithine transcarbamylase deficiency McGuire, Peter J. Tarasenko, Tatiana N. Wang, Tony Levy, Ezra Zerfas, Patricia M. Moran, Thomas Lee, Hye Seung Bequette, Brian J. Diaz, George A. Dis Model Mech Research Article The urea cycle functions to incorporate ammonia, generated by normal metabolism, into urea. Urea cycle disorders (UCDs) are caused by loss of function in any of the enzymes responsible for ureagenesis, and are characterized by life-threatening episodes of acute metabolic decompensation with hyperammonemia (HA). A prospective analysis of interim HA events in a cohort of individuals with ornithine transcarbamylase (OTC) deficiency, the most common UCD, revealed that intercurrent infection was the most common precipitant of acute HA and was associated with markers of increased morbidity when compared with other precipitants. To further understand these clinical observations, we developed a model system of metabolic decompensation with HA triggered by viral infection (PR8 influenza) using spf-ash mice, a model of OTC deficiency. Both wild-type (WT) and spf-ash mice displayed similar cytokine profiles and lung viral titers in response to PR8 influenza infection. During infection, spf-ash mice displayed an increase in liver transaminases, suggesting a hepatic sensitivity to the inflammatory response and an altered hepatic immune response. Despite having no visible pathological changes by histology, WT and spf-ash mice had reduced CPS1 and OTC enzyme activities, and, unlike WT, spf-ash mice failed to increase ureagenesis. Depression of urea cycle function was seen in liver amino acid analysis, with reductions seen in aspartate, ornithine and arginine during infection. In conclusion, we developed a model system of acute metabolic decompensation due to infection in a mouse model of a UCD. In addition, we have identified metabolic perturbations during infection in the spf-ash mice, including a reduction of urea cycle intermediates. This model of acute metabolic decompensation with HA due to infection in UCD serves as a platform for exploring biochemical perturbations and the efficacy of treatments, and could be adapted to explore acute decompensation in other types of inborn errors of metabolism. The Company of Biologists Limited 2014-02 2013-11-21 /pmc/articles/PMC3917241/ /pubmed/24271778 http://dx.doi.org/10.1242/dmm.013003 Text en © 2014. Published by The Company of Biologists Ltd This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
McGuire, Peter J.
Tarasenko, Tatiana N.
Wang, Tony
Levy, Ezra
Zerfas, Patricia M.
Moran, Thomas
Lee, Hye Seung
Bequette, Brian J.
Diaz, George A.
Acute metabolic decompensation due to influenza in a mouse model of ornithine transcarbamylase deficiency
title Acute metabolic decompensation due to influenza in a mouse model of ornithine transcarbamylase deficiency
title_full Acute metabolic decompensation due to influenza in a mouse model of ornithine transcarbamylase deficiency
title_fullStr Acute metabolic decompensation due to influenza in a mouse model of ornithine transcarbamylase deficiency
title_full_unstemmed Acute metabolic decompensation due to influenza in a mouse model of ornithine transcarbamylase deficiency
title_short Acute metabolic decompensation due to influenza in a mouse model of ornithine transcarbamylase deficiency
title_sort acute metabolic decompensation due to influenza in a mouse model of ornithine transcarbamylase deficiency
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3917241/
https://www.ncbi.nlm.nih.gov/pubmed/24271778
http://dx.doi.org/10.1242/dmm.013003
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