The Influence of Diet on MicroRNAs that Impact Cardiovascular Disease

Food quality and nutritional habits strongly influence human health status. Extensive research has been conducted to confirm that foods rich in biologically active nutrients have a positive impact on the onset and development of different pathological processes, including cardiovascular diseases. Ho...

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Published in:Molecules (Basel, Switzerland) Vol. 24; no. 8; p. 1509
Main Authors: Kura, Branislav, Parikh, Mihir, Slezak, Jan, Pierce, Grant N
Format: Journal Article
Language:English
Published: Switzerland MDPI AG 17-04-2019
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Abstract Food quality and nutritional habits strongly influence human health status. Extensive research has been conducted to confirm that foods rich in biologically active nutrients have a positive impact on the onset and development of different pathological processes, including cardiovascular diseases. However, the underlying mechanisms by which dietary compounds regulate cardiovascular function have not yet been fully clarified. A growing number of studies confirm that bioactive food components modulate various signaling pathways which are involved in heart physiology and pathology. Recent evidence indicates that microRNAs (miRNAs), small single-stranded RNA chains with a powerful ability to influence protein expression in the whole organism, have a significant role in the regulation of cardiovascular-related pathways. This review summarizes recent studies dealing with the impact of some biologically active nutrients like polyunsaturated fatty acids (PUFAs), vitamins E and D, dietary fiber, or selenium on the expression of many miRNAs, which are connected with cardiovascular diseases. Current research indicates that the expression levels of many cardiovascular-related miRNAs like miRNA-21, -30 family, -34, -155, or -199 can be altered by foods and dietary supplements in various animal and human disease models. Understanding the dietary modulation of miRNAs represents, therefore, an important field for further research. The acquired knowledge may be used in personalized nutritional prevention of cardiovascular disease or the treatment of cardiovascular disorders.
AbstractList Food quality and nutritional habits strongly influence human health status. Extensive research has been conducted to confirm that foods rich in biologically active nutrients have a positive impact on the onset and development of different pathological processes, including cardiovascular diseases. However, the underlying mechanisms by which dietary compounds regulate cardiovascular function have not yet been fully clarified. A growing number of studies confirm that bioactive food components modulate various signaling pathways which are involved in heart physiology and pathology. Recent evidence indicates that microRNAs (miRNAs), small single-stranded RNA chains with a powerful ability to influence protein expression in the whole organism, have a significant role in the regulation of cardiovascular-related pathways. This review summarizes recent studies dealing with the impact of some biologically active nutrients like polyunsaturated fatty acids (PUFAs), vitamins E and D, dietary fiber, or selenium on the expression of many miRNAs, which are connected with cardiovascular diseases. Current research indicates that the expression levels of many cardiovascular-related miRNAs like miRNA-21, -30 family, -34, -155, or -199 can be altered by foods and dietary supplements in various animal and human disease models. Understanding the dietary modulation of miRNAs represents, therefore, an important field for further research. The acquired knowledge may be used in personalized nutritional prevention of cardiovascular disease or the treatment of cardiovascular disorders.
Author Kura, Branislav
Pierce, Grant N
Parikh, Mihir
Slezak, Jan
AuthorAffiliation 3 Department of Physiology and Pathophysiology, Faculty of Health Sciences, University of Manitoba, Winnipeg, MB R3E0W3, Canada
1 Institute for Heart Research, Centre of Experimental Medicine, Slovak Academy of Sciences, 84104 Bratislava, Slovak Republic; branislav.kura@savba.sk (B.K.); jan.slezak@savba.sk (J.S.)
2 Institute of Cardiovascular Sciences and the Canadian Centre for Agri-food Research in Health and Medicine (CCARM), Albrechtsen Research Centre, St. Boniface Hospital, Winnipeg, MB R2H2A6, Canada; mparikh@sbrc.ca
AuthorAffiliation_xml – name: 3 Department of Physiology and Pathophysiology, Faculty of Health Sciences, University of Manitoba, Winnipeg, MB R3E0W3, Canada
– name: 1 Institute for Heart Research, Centre of Experimental Medicine, Slovak Academy of Sciences, 84104 Bratislava, Slovak Republic; branislav.kura@savba.sk (B.K.); jan.slezak@savba.sk (J.S.)
– name: 2 Institute of Cardiovascular Sciences and the Canadian Centre for Agri-food Research in Health and Medicine (CCARM), Albrechtsen Research Centre, St. Boniface Hospital, Winnipeg, MB R2H2A6, Canada; mparikh@sbrc.ca
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  givenname: Branislav
  surname: Kura
  fullname: Kura, Branislav
  email: branislav.kura@savba.sk
  organization: Institute for Heart Research, Centre of Experimental Medicine, Slovak Academy of Sciences, 84104 Bratislava, Slovak Republic. branislav.kura@savba.sk
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  givenname: Mihir
  surname: Parikh
  fullname: Parikh, Mihir
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  givenname: Jan
  surname: Slezak
  fullname: Slezak, Jan
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  organization: Institute for Heart Research, Centre of Experimental Medicine, Slovak Academy of Sciences, 84104 Bratislava, Slovak Republic. jan.slezak@savba.sk
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  givenname: Grant N
  surname: Pierce
  fullname: Pierce, Grant N
  email: gpierce@sbrc.ca, gpierce@sbrc.ca
  organization: Department of Physiology and Pathophysiology, Faculty of Health Sciences, University of Manitoba, Winnipeg, MB R3E0W3, Canada. gpierce@sbrc.ca
BackLink https://www.ncbi.nlm.nih.gov/pubmed/30999630$$D View this record in MEDLINE/PubMed
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2019 by the authors. 2019
Copyright_xml – notice: 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
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Keywords cardiovascular disease
miRNA
nutrition
bioactive food components
heart
Language English
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SubjectTerms Animal diseases
Animal models
Binding sites
Bioactive compounds
bioactive food components
Biological activity
Biomarkers
Cardiac arrhythmia
cardiovascular disease
Cardiovascular diseases
Cardiovascular system
Cell cycle
Cell division
Diet
Disease prevention
Enzymes
Food quality
Gene expression
Heart
Kinases
Knowledge acquisition
MicroRNAs
miRNA
Nutrients
Nutrition
Proteins
Review
RNA polymerase
Selenium
Signal transduction
Vitamin D
Vitamins
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Title The Influence of Diet on MicroRNAs that Impact Cardiovascular Disease
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