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Assessment of rosehips based on the content of their biologically active compounds
A. Bhave, V. Schulzova, H. Chmelarova, L. Mrnka, J. Hajslova,
Jazyk angličtina Země Tchaj-wan
Typ dokumentu časopisecké články
NLK
Free Medical Journals
od 2013
PubMed Central
od 2014
ProQuest Central
od 1996-07-01 do 2020-01-31
Open Access Digital Library
od 2013-06-01
Open Access Digital Library
od 2013-01-01
Health & Medicine (ProQuest)
od 1996-07-01 do 2020-01-31
ROAD: Directory of Open Access Scholarly Resources
- MeSH
- antioxidancia MeSH
- bifenylové sloučeniny MeSH
- flavonoidy MeSH
- pikráty MeSH
- Rosa * MeSH
- Publikační typ
- časopisecké články MeSH
In this study, an in-depth analysis of the unique set of rosehip samples from 71 Rosa genotypes was conducted with the aim to identify the most suitable ones for applications in the food and pharmaceutical industries based on the content of biologically active compounds. In the first part of our experiments, the antioxidant activity was determined by 2,2-diphenyl-1-picrylhydrazyl assay and the genotypes with the highest values were selected for the follow-up analysis. In the second part of experiments, the major classes of biologically active compounds in rosehips such as carotenoids, tocopherols, flavonoids, and triterpenoic acids were further quantified using liquid chromatography-based techniques. Large variation was observed among all the analyzed compounds with intraspecific variation often hiding interspecific or intersectional differences. The compounds studied herein thus do not provide a sharp tool for chemotaxonomic resolution of the genus Rosa. High intraspecific variation indicates the necessity to screen and utilize individual rose genotypes rather than representatives of the species when searching for sources of biologically active compounds. In the final stage of the study, 10 genotypes were selected for further cultivation and use, based on the highest concentrations of the analyzed biologically active compounds.
Citace poskytuje Crossref.org
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- $a In this study, an in-depth analysis of the unique set of rosehip samples from 71 Rosa genotypes was conducted with the aim to identify the most suitable ones for applications in the food and pharmaceutical industries based on the content of biologically active compounds. In the first part of our experiments, the antioxidant activity was determined by 2,2-diphenyl-1-picrylhydrazyl assay and the genotypes with the highest values were selected for the follow-up analysis. In the second part of experiments, the major classes of biologically active compounds in rosehips such as carotenoids, tocopherols, flavonoids, and triterpenoic acids were further quantified using liquid chromatography-based techniques. Large variation was observed among all the analyzed compounds with intraspecific variation often hiding interspecific or intersectional differences. The compounds studied herein thus do not provide a sharp tool for chemotaxonomic resolution of the genus Rosa. High intraspecific variation indicates the necessity to screen and utilize individual rose genotypes rather than representatives of the species when searching for sources of biologically active compounds. In the final stage of the study, 10 genotypes were selected for further cultivation and use, based on the highest concentrations of the analyzed biologically active compounds.
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