A Mouse Model Suggests That Heart Failure and Its Common Comorbidity Sleep Fragmentation Have No Synergistic Impacts on the Gut Microbiome
Heart failure (HF) is a common condition associated with a high rate of hospitalizations and adverse outcomes. HF is characterized by impairments of either the cardiac ventricular filling, ejection of blood capacity or both. Sleep fragmentation (SF) involves a series of short sleep interruptions tha...
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doaj-078c1e22674b40e98527ce93d1e90e0e2021-03-20T00:05:06ZengMDPI AGMicroorganisms2076-26072021-03-01964164110.3390/microorganisms9030641A Mouse Model Suggests That Heart Failure and Its Common Comorbidity Sleep Fragmentation Have No Synergistic Impacts on the Gut MicrobiomeOlfat Khannous-Lleiffe0Jesse R. Willis1Ester Saus2Ignacio Cabrera-Aguilera3Isaac Almendros4Ramon Farré5David Gozal6Nuria Farré7Toni Gabaldón8Barcelona Supercomputing Centre (BSC-CNS), 08034 Barcelona, SpainBarcelona Supercomputing Centre (BSC-CNS), 08034 Barcelona, SpainBarcelona Supercomputing Centre (BSC-CNS), 08034 Barcelona, SpainUnitat de Biofísica i Bioenginyeria, Facultat de Medicina i Ciències de la Salut, Universitat de Barcelona, 08036 Barcelona, SpainUnitat de Biofísica i Bioenginyeria, Facultat de Medicina i Ciències de la Salut, Universitat de Barcelona, 08036 Barcelona, SpainUnitat de Biofísica i Bioenginyeria, Facultat de Medicina i Ciències de la Salut, Universitat de Barcelona, 08036 Barcelona, SpainDepartment of Child Health and Child Health Research Institute, The University of Missouri School of Medicine, Columbia, MO 65212, USAHeart Failure Unit, Department of Cardiology, Hospital del Mar (Parc de Salut Mar), 08003 Barcelona, SpainBarcelona Supercomputing Centre (BSC-CNS), 08034 Barcelona, SpainHeart failure (HF) is a common condition associated with a high rate of hospitalizations and adverse outcomes. HF is characterized by impairments of either the cardiac ventricular filling, ejection of blood capacity or both. Sleep fragmentation (SF) involves a series of short sleep interruptions that lead to fatigue and contribute to cognitive impairments and dementia. Both conditions are known to be associated with increased inflammation and dysbiosis of the gut microbiota. In the present study, mice were distributed into four groups, and subjected for four weeks to either HF, SF, both HF and SF, or left unperturbed as controls. We used 16S metabarcoding to assess fecal microbiome composition before and after the experiments. Evidence for distinct alterations in several bacterial groups and an overall decrease in alpha diversity emerged in HF and SF treatment groups. Combined HF and SF conditions, however, showed no synergism, and observed changes were not always additive, suggesting preliminarily that some of the individual effects of either HF or SF cancel each other out when applied concomitantly.https://www.mdpi.com/2076-2607/9/3/641metagenomicsmicrobiomesleep fragmentationheart failuresleep apnea |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Olfat Khannous-Lleiffe Jesse R. Willis Ester Saus Ignacio Cabrera-Aguilera Isaac Almendros Ramon Farré David Gozal Nuria Farré Toni Gabaldón |
spellingShingle |
Olfat Khannous-Lleiffe Jesse R. Willis Ester Saus Ignacio Cabrera-Aguilera Isaac Almendros Ramon Farré David Gozal Nuria Farré Toni Gabaldón A Mouse Model Suggests That Heart Failure and Its Common Comorbidity Sleep Fragmentation Have No Synergistic Impacts on the Gut Microbiome Microorganisms metagenomics microbiome sleep fragmentation heart failure sleep apnea |
author_facet |
Olfat Khannous-Lleiffe Jesse R. Willis Ester Saus Ignacio Cabrera-Aguilera Isaac Almendros Ramon Farré David Gozal Nuria Farré Toni Gabaldón |
author_sort |
Olfat Khannous-Lleiffe |
title |
A Mouse Model Suggests That Heart Failure and Its Common Comorbidity Sleep Fragmentation Have No Synergistic Impacts on the Gut Microbiome |
title_short |
A Mouse Model Suggests That Heart Failure and Its Common Comorbidity Sleep Fragmentation Have No Synergistic Impacts on the Gut Microbiome |
title_full |
A Mouse Model Suggests That Heart Failure and Its Common Comorbidity Sleep Fragmentation Have No Synergistic Impacts on the Gut Microbiome |
title_fullStr |
A Mouse Model Suggests That Heart Failure and Its Common Comorbidity Sleep Fragmentation Have No Synergistic Impacts on the Gut Microbiome |
title_full_unstemmed |
A Mouse Model Suggests That Heart Failure and Its Common Comorbidity Sleep Fragmentation Have No Synergistic Impacts on the Gut Microbiome |
title_sort |
mouse model suggests that heart failure and its common comorbidity sleep fragmentation have no synergistic impacts on the gut microbiome |
publisher |
MDPI AG |
series |
Microorganisms |
issn |
2076-2607 |
publishDate |
2021-03-01 |
description |
Heart failure (HF) is a common condition associated with a high rate of hospitalizations and adverse outcomes. HF is characterized by impairments of either the cardiac ventricular filling, ejection of blood capacity or both. Sleep fragmentation (SF) involves a series of short sleep interruptions that lead to fatigue and contribute to cognitive impairments and dementia. Both conditions are known to be associated with increased inflammation and dysbiosis of the gut microbiota. In the present study, mice were distributed into four groups, and subjected for four weeks to either HF, SF, both HF and SF, or left unperturbed as controls. We used 16S metabarcoding to assess fecal microbiome composition before and after the experiments. Evidence for distinct alterations in several bacterial groups and an overall decrease in alpha diversity emerged in HF and SF treatment groups. Combined HF and SF conditions, however, showed no synergism, and observed changes were not always additive, suggesting preliminarily that some of the individual effects of either HF or SF cancel each other out when applied concomitantly. |
topic |
metagenomics microbiome sleep fragmentation heart failure sleep apnea |
url |
https://www.mdpi.com/2076-2607/9/3/641 |
work_keys_str_mv |
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