TMAO, a seafood-derived molecule, produces diuresis and reduces mortality in heart failure rats
Trimethylamine-oxide (TMAO) is present in seafood which is considered to be beneficial for health. Deep-water animals accumulate TMAO to protect proteins, such as lactate dehydrogenase (LDH), against hydrostatic pressure stress (HPS). We hypothesized that TMAO exerts beneficial effects on the circul...
| Published in: | eLife |
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| Main Authors: | , , , , , , , , , , , , |
| Format: | Article |
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eLife Sciences Publications Ltd
2020-06-01
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| Online Access: | https://elifesciences.org/articles/57028 |
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| author | Marta Gawrys-Kopczynska Marek Konop Klaudia Maksymiuk Katarzyna Kraszewska Ladislav Derzsi Krzysztof Sozanski Robert Holyst Marta Pilz Emilia Samborowska Leszek Dobrowolski Kinga Jaworska Izabella Mogilnicka Marcin Ufnal |
| author_facet | Marta Gawrys-Kopczynska Marek Konop Klaudia Maksymiuk Katarzyna Kraszewska Ladislav Derzsi Krzysztof Sozanski Robert Holyst Marta Pilz Emilia Samborowska Leszek Dobrowolski Kinga Jaworska Izabella Mogilnicka Marcin Ufnal |
| author_sort | Marta Gawrys-Kopczynska |
| collection | DOAJ |
| container_title | eLife |
| description | Trimethylamine-oxide (TMAO) is present in seafood which is considered to be beneficial for health. Deep-water animals accumulate TMAO to protect proteins, such as lactate dehydrogenase (LDH), against hydrostatic pressure stress (HPS). We hypothesized that TMAO exerts beneficial effects on the circulatory system and protects cardiac LDH exposed to HPS produced by the contracting heart. Male, Sprague-Dawley and Spontaneously-Hypertensive-Heart-Failure (SHHF) rats were treated orally with either water (control) or TMAO. In vitro, LDH with or without TMAO was exposed to HPS and was evaluated using fluorescence correlation spectroscopy. TMAO-treated rats showed higher diuresis and natriuresis, lower arterial pressure and plasma NT-proBNP. Survival in SHHF-control was 66% vs 100% in SHHF-TMAO. In vitro, exposure of LDH to HPS with or without TMAO did not affect protein structure. In conclusion, TMAO reduced mortality in SHHF, which was associated with diuretic, natriuretic and hypotensive effects. HPS and TMAO did not affect LDH protein structure. |
| format | Article |
| id | doaj-art-8750bceafca7477e94180cd38d3dfd21 |
| institution | Directory of Open Access Journals |
| issn | 2050-084X |
| language | English |
| publishDate | 2020-06-01 |
| publisher | eLife Sciences Publications Ltd |
| record_format | Article |
| spelling | doaj-art-8750bceafca7477e94180cd38d3dfd212025-08-19T21:23:00ZengeLife Sciences Publications LtdeLife2050-084X2020-06-01910.7554/eLife.57028TMAO, a seafood-derived molecule, produces diuresis and reduces mortality in heart failure ratsMarta Gawrys-Kopczynska0Marek Konop1Klaudia Maksymiuk2Katarzyna Kraszewska3Ladislav Derzsi4Krzysztof Sozanski5Robert Holyst6Marta Pilz7Emilia Samborowska8Leszek Dobrowolski9Kinga Jaworska10Izabella Mogilnicka11Marcin Ufnal12https://orcid.org/0000-0003-0088-8284Department of Experimental Physiology and Pathophysiology, Laboratory of the Centre for Preclinical Research, Medical University of Warsaw, Warsaw, PolandDepartment of Experimental Physiology and Pathophysiology, Laboratory of the Centre for Preclinical Research, Medical University of Warsaw, Warsaw, PolandDepartment of Experimental Physiology and Pathophysiology, Laboratory of the Centre for Preclinical Research, Medical University of Warsaw, Warsaw, PolandDepartment of Experimental Physiology and Pathophysiology, Laboratory of the Centre for Preclinical Research, Medical University of Warsaw, Warsaw, PolandDepartment of Soft Condensed Matter, Institute of Physical Chemistry, Polish Academy of Sciences, Warsaw, PolandDepartment of Soft Condensed Matter, Institute of Physical Chemistry, Polish Academy of Sciences, Warsaw, PolandDepartment of Soft Condensed Matter, Institute of Physical Chemistry, Polish Academy of Sciences, Warsaw, PolandDepartment of Soft Condensed Matter, Institute of Physical Chemistry, Polish Academy of Sciences, Warsaw, PolandMass Spectrometry Laboratory, Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warsaw, PolandDepartment of Renal and Body Fluid Physiology, M. Mossakowski Medical Research Centre, Polish Academy of Sciences, Warsaw, PolandDepartment of Experimental Physiology and Pathophysiology, Laboratory of the Centre for Preclinical Research, Medical University of Warsaw, Warsaw, PolandDepartment of Experimental Physiology and Pathophysiology, Laboratory of the Centre for Preclinical Research, Medical University of Warsaw, Warsaw, PolandDepartment of Experimental Physiology and Pathophysiology, Laboratory of the Centre for Preclinical Research, Medical University of Warsaw, Warsaw, PolandTrimethylamine-oxide (TMAO) is present in seafood which is considered to be beneficial for health. Deep-water animals accumulate TMAO to protect proteins, such as lactate dehydrogenase (LDH), against hydrostatic pressure stress (HPS). We hypothesized that TMAO exerts beneficial effects on the circulatory system and protects cardiac LDH exposed to HPS produced by the contracting heart. Male, Sprague-Dawley and Spontaneously-Hypertensive-Heart-Failure (SHHF) rats were treated orally with either water (control) or TMAO. In vitro, LDH with or without TMAO was exposed to HPS and was evaluated using fluorescence correlation spectroscopy. TMAO-treated rats showed higher diuresis and natriuresis, lower arterial pressure and plasma NT-proBNP. Survival in SHHF-control was 66% vs 100% in SHHF-TMAO. In vitro, exposure of LDH to HPS with or without TMAO did not affect protein structure. In conclusion, TMAO reduced mortality in SHHF, which was associated with diuretic, natriuretic and hypotensive effects. HPS and TMAO did not affect LDH protein structure.https://elifesciences.org/articles/57028heart failuretrimethylamine N-oxideseafoodgut bacteriacardiovascular system |
| spellingShingle | Marta Gawrys-Kopczynska Marek Konop Klaudia Maksymiuk Katarzyna Kraszewska Ladislav Derzsi Krzysztof Sozanski Robert Holyst Marta Pilz Emilia Samborowska Leszek Dobrowolski Kinga Jaworska Izabella Mogilnicka Marcin Ufnal TMAO, a seafood-derived molecule, produces diuresis and reduces mortality in heart failure rats heart failure trimethylamine N-oxide seafood gut bacteria cardiovascular system |
| title | TMAO, a seafood-derived molecule, produces diuresis and reduces mortality in heart failure rats |
| title_full | TMAO, a seafood-derived molecule, produces diuresis and reduces mortality in heart failure rats |
| title_fullStr | TMAO, a seafood-derived molecule, produces diuresis and reduces mortality in heart failure rats |
| title_full_unstemmed | TMAO, a seafood-derived molecule, produces diuresis and reduces mortality in heart failure rats |
| title_short | TMAO, a seafood-derived molecule, produces diuresis and reduces mortality in heart failure rats |
| title_sort | tmao a seafood derived molecule produces diuresis and reduces mortality in heart failure rats |
| topic | heart failure trimethylamine N-oxide seafood gut bacteria cardiovascular system |
| url | https://elifesciences.org/articles/57028 |
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