Cargando…

An Overview of Analytical Methods for Quantitative Determination of Coenzyme Q10 in Foods

Food analysts have developed three primary techniques for coenzyme Q10 (CoQ10) production: isolation from animal or plant matrices, chemical synthesis, and microbial fermentation; this literature review is focused on the first method. Choosing the appropriate analytical method for determining CoQ10...

Descripción completa

Detalles Bibliográficos
Autores principales: Podar, Andersina Simina, Semeniuc, Cristina Anamaria, Ionescu, Simona Raluca, Socaciu, Maria-Ioana, Fogarasi, Melinda, Fărcaș, Anca Corina, Vodnar, Dan Cristian, Socaci, Sonia Ancuța
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964353/
https://www.ncbi.nlm.nih.gov/pubmed/36837891
http://dx.doi.org/10.3390/metabo13020272
_version_ 1784896483389079552
author Podar, Andersina Simina
Semeniuc, Cristina Anamaria
Ionescu, Simona Raluca
Socaciu, Maria-Ioana
Fogarasi, Melinda
Fărcaș, Anca Corina
Vodnar, Dan Cristian
Socaci, Sonia Ancuța
author_facet Podar, Andersina Simina
Semeniuc, Cristina Anamaria
Ionescu, Simona Raluca
Socaciu, Maria-Ioana
Fogarasi, Melinda
Fărcaș, Anca Corina
Vodnar, Dan Cristian
Socaci, Sonia Ancuța
author_sort Podar, Andersina Simina
collection PubMed
description Food analysts have developed three primary techniques for coenzyme Q10 (CoQ10) production: isolation from animal or plant matrices, chemical synthesis, and microbial fermentation; this literature review is focused on the first method. Choosing the appropriate analytical method for determining CoQ10 in a particular food product is essential, as this analyte is a quality index for healthy foods; various associations of extraction and quantification techniques are available in the literature, each having advantages and disadvantages. Several factors must be considered when selecting an analytical method, such as specificity, linear range, detection limit, quantification limit, recovery rate, operation size, analysis time, equipment availability, and costs. In another train of thought, the food sector produces a significant amount of solid and liquid waste; therefore, waste-considered materials can be a valuable source of CoQ10 that can be recovered and used as a fortifying ingredient or dietary supplement. This review also pursues identifying the richest food sources of CoQ10, and has revealed them to be vegetable oils, fish oil, organs, and meat.
format Online
Article
Text
id pubmed-9964353
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99643532023-02-26 An Overview of Analytical Methods for Quantitative Determination of Coenzyme Q10 in Foods Podar, Andersina Simina Semeniuc, Cristina Anamaria Ionescu, Simona Raluca Socaciu, Maria-Ioana Fogarasi, Melinda Fărcaș, Anca Corina Vodnar, Dan Cristian Socaci, Sonia Ancuța Metabolites Review Food analysts have developed three primary techniques for coenzyme Q10 (CoQ10) production: isolation from animal or plant matrices, chemical synthesis, and microbial fermentation; this literature review is focused on the first method. Choosing the appropriate analytical method for determining CoQ10 in a particular food product is essential, as this analyte is a quality index for healthy foods; various associations of extraction and quantification techniques are available in the literature, each having advantages and disadvantages. Several factors must be considered when selecting an analytical method, such as specificity, linear range, detection limit, quantification limit, recovery rate, operation size, analysis time, equipment availability, and costs. In another train of thought, the food sector produces a significant amount of solid and liquid waste; therefore, waste-considered materials can be a valuable source of CoQ10 that can be recovered and used as a fortifying ingredient or dietary supplement. This review also pursues identifying the richest food sources of CoQ10, and has revealed them to be vegetable oils, fish oil, organs, and meat. MDPI 2023-02-14 /pmc/articles/PMC9964353/ /pubmed/36837891 http://dx.doi.org/10.3390/metabo13020272 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Podar, Andersina Simina
Semeniuc, Cristina Anamaria
Ionescu, Simona Raluca
Socaciu, Maria-Ioana
Fogarasi, Melinda
Fărcaș, Anca Corina
Vodnar, Dan Cristian
Socaci, Sonia Ancuța
An Overview of Analytical Methods for Quantitative Determination of Coenzyme Q10 in Foods
title An Overview of Analytical Methods for Quantitative Determination of Coenzyme Q10 in Foods
title_full An Overview of Analytical Methods for Quantitative Determination of Coenzyme Q10 in Foods
title_fullStr An Overview of Analytical Methods for Quantitative Determination of Coenzyme Q10 in Foods
title_full_unstemmed An Overview of Analytical Methods for Quantitative Determination of Coenzyme Q10 in Foods
title_short An Overview of Analytical Methods for Quantitative Determination of Coenzyme Q10 in Foods
title_sort overview of analytical methods for quantitative determination of coenzyme q10 in foods
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964353/
https://www.ncbi.nlm.nih.gov/pubmed/36837891
http://dx.doi.org/10.3390/metabo13020272
work_keys_str_mv AT podarandersinasimina anoverviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT semeniuccristinaanamaria anoverviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT ionescusimonaraluca anoverviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT socaciumariaioana anoverviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT fogarasimelinda anoverviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT farcasancacorina anoverviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT vodnardancristian anoverviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT socacisoniaancuta anoverviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT podarandersinasimina overviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT semeniuccristinaanamaria overviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT ionescusimonaraluca overviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT socaciumariaioana overviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT fogarasimelinda overviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT farcasancacorina overviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT vodnardancristian overviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods
AT socacisoniaancuta overviewofanalyticalmethodsforquantitativedeterminationofcoenzymeq10infoods