Dha Derivatives of Fish Oil as Dietary Supplements: a Nutrition-Based Drug Discovery Approach for Therapies to Prevent Metabolic Cardiotoxicity

Introduction: During the early 1970s, Danish physicians Jorn Dyerberg and colleagues observed that Greenland Eskimos consuming fatty fishes exhibited low incidences of heart disease. Fish oil is now one of the most commonly consumed dietary supplements. In 2004, concentrated fish oil was approved as...

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Main Authors: Ma, Yonggang, Lindsey, Merry L., Halade, Ganesh V.
Format: Review
Language:unknown
Published: Digital Commons @ University of South Florida 2012
Subjects:
Online Access:https://digitalcommons.usf.edu/intmed_facpub/64
https://digitalcommons.usf.edu/cgi/viewcontent.cgi?article=1063&context=intmed_facpub
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spelling ftunisfloridatam:oai:digitalcommons.usf.edu:intmed_facpub-1063 2023-05-15T16:07:27+02:00 Dha Derivatives of Fish Oil as Dietary Supplements: a Nutrition-Based Drug Discovery Approach for Therapies to Prevent Metabolic Cardiotoxicity Ma, Yonggang Lindsey, Merry L. Halade, Ganesh V. 2012-08-01T07:00:00Z application/pdf https://digitalcommons.usf.edu/intmed_facpub/64 https://digitalcommons.usf.edu/cgi/viewcontent.cgi?article=1063&context=intmed_facpub unknown Digital Commons @ University of South Florida https://digitalcommons.usf.edu/intmed_facpub/64 https://digitalcommons.usf.edu/cgi/viewcontent.cgi?article=1063&context=intmed_facpub default Internal Medicine Faculty Publications Cardiovascular disease Dietary supplement Docosahexaenoic acid Eicosapentaenoic acid Fish oil Metabolic syndrome Obesity review 2012 ftunisfloridatam 2021-10-09T07:57:14Z Introduction: During the early 1970s, Danish physicians Jorn Dyerberg and colleagues observed that Greenland Eskimos consuming fatty fishes exhibited low incidences of heart disease. Fish oil is now one of the most commonly consumed dietary supplements. In 2004, concentrated fish oil was approved as a drug by the FDA for the treatment of hyperlipidemia. Fish oil contains two major omega-3 fatty acids: eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA). With advancements in lipid concentration and purification techniques, EPA- or DHA-enriched products are now commercially available, and the availability of these components in isolation allows their individual effects to be examined. Newly synthesized derivatives and endogenously discovered metabolites of DHA exhibit therapeutic utility for obesity, metabolic syndrome and cardiovascular disease. Areas covered: This review summarizes our current knowledge on the distinct effects of EPA and DHA to prevent metabolic syndrome and reduce cardiotoxicity risk. Since EPA is an integral component of fish oil, we will briefly review EPA effects, but our main theme will be to summarize effects of the DHA derivatives that are available today. We focus on using nutrition-based drug discovery to explore the potential of DHA derivatives for the treatment of obesity, metabolic syndrome and cardiovascular diseases. Expert opinion: The safety and efficacy evaluation of DHA derivatives will provide novel biomolecules for the drug discovery arsenal. Novel nutritional-based drug discoveries of DHA derivatives or metabolites may provide realistic and alternative strategies for the treatment of metabolic and cardiovascular disease. Review eskimo* Greenland Digital Commons University of South Florida (USF) Greenland
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collection Digital Commons University of South Florida (USF)
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topic Cardiovascular disease
Dietary supplement
Docosahexaenoic acid
Eicosapentaenoic acid
Fish oil
Metabolic syndrome
Obesity
spellingShingle Cardiovascular disease
Dietary supplement
Docosahexaenoic acid
Eicosapentaenoic acid
Fish oil
Metabolic syndrome
Obesity
Ma, Yonggang
Lindsey, Merry L.
Halade, Ganesh V.
Dha Derivatives of Fish Oil as Dietary Supplements: a Nutrition-Based Drug Discovery Approach for Therapies to Prevent Metabolic Cardiotoxicity
topic_facet Cardiovascular disease
Dietary supplement
Docosahexaenoic acid
Eicosapentaenoic acid
Fish oil
Metabolic syndrome
Obesity
description Introduction: During the early 1970s, Danish physicians Jorn Dyerberg and colleagues observed that Greenland Eskimos consuming fatty fishes exhibited low incidences of heart disease. Fish oil is now one of the most commonly consumed dietary supplements. In 2004, concentrated fish oil was approved as a drug by the FDA for the treatment of hyperlipidemia. Fish oil contains two major omega-3 fatty acids: eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA). With advancements in lipid concentration and purification techniques, EPA- or DHA-enriched products are now commercially available, and the availability of these components in isolation allows their individual effects to be examined. Newly synthesized derivatives and endogenously discovered metabolites of DHA exhibit therapeutic utility for obesity, metabolic syndrome and cardiovascular disease. Areas covered: This review summarizes our current knowledge on the distinct effects of EPA and DHA to prevent metabolic syndrome and reduce cardiotoxicity risk. Since EPA is an integral component of fish oil, we will briefly review EPA effects, but our main theme will be to summarize effects of the DHA derivatives that are available today. We focus on using nutrition-based drug discovery to explore the potential of DHA derivatives for the treatment of obesity, metabolic syndrome and cardiovascular diseases. Expert opinion: The safety and efficacy evaluation of DHA derivatives will provide novel biomolecules for the drug discovery arsenal. Novel nutritional-based drug discoveries of DHA derivatives or metabolites may provide realistic and alternative strategies for the treatment of metabolic and cardiovascular disease.
format Review
author Ma, Yonggang
Lindsey, Merry L.
Halade, Ganesh V.
author_facet Ma, Yonggang
Lindsey, Merry L.
Halade, Ganesh V.
author_sort Ma, Yonggang
title Dha Derivatives of Fish Oil as Dietary Supplements: a Nutrition-Based Drug Discovery Approach for Therapies to Prevent Metabolic Cardiotoxicity
title_short Dha Derivatives of Fish Oil as Dietary Supplements: a Nutrition-Based Drug Discovery Approach for Therapies to Prevent Metabolic Cardiotoxicity
title_full Dha Derivatives of Fish Oil as Dietary Supplements: a Nutrition-Based Drug Discovery Approach for Therapies to Prevent Metabolic Cardiotoxicity
title_fullStr Dha Derivatives of Fish Oil as Dietary Supplements: a Nutrition-Based Drug Discovery Approach for Therapies to Prevent Metabolic Cardiotoxicity
title_full_unstemmed Dha Derivatives of Fish Oil as Dietary Supplements: a Nutrition-Based Drug Discovery Approach for Therapies to Prevent Metabolic Cardiotoxicity
title_sort dha derivatives of fish oil as dietary supplements: a nutrition-based drug discovery approach for therapies to prevent metabolic cardiotoxicity
publisher Digital Commons @ University of South Florida
publishDate 2012
url https://digitalcommons.usf.edu/intmed_facpub/64
https://digitalcommons.usf.edu/cgi/viewcontent.cgi?article=1063&context=intmed_facpub
geographic Greenland
geographic_facet Greenland
genre eskimo*
Greenland
genre_facet eskimo*
Greenland
op_source Internal Medicine Faculty Publications
op_relation https://digitalcommons.usf.edu/intmed_facpub/64
https://digitalcommons.usf.edu/cgi/viewcontent.cgi?article=1063&context=intmed_facpub
op_rights default
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