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Molecules


Title:"Chemical Composition Assessment of Structural Parts (Seeds, Peel, Pulp) of Physalis alkekengi L. Fruits"
Author(s):Popova V; Petkova Z; Mazova N; Ivanova T; Petkova N; Stoyanova M; Stoyanova A; Ercisli S; Okcu Z; Skrovankova S; Mlcek J;
Address:"Department of Tobacco, Sugar, Vegetable and Essential Oils, University of Food Technologies, 4002 Plovdiv, Bulgaria. Department of Chemical Technology, Faculty of Chemistry, University of Plovdiv 'Paisii Hilendarski', 4000 Plovdiv, Bulgaria. Department of Engineering Ecology, University of Food Technologies, 4002 Plovdiv, Bulgaria. Department of Organic Chemistry and Inorganic Chemistry, University of Food Technologies, 4002 Plovdiv, Bulgaria. Department of Analytical Chemistry and Physical Chemistry, University of Food Technologies, 4002 Plovdiv, Bulgaria. Department of Horticulture, Ataturk University, 25240 Erzurum, Turkey. Department of Gastronomy, Faculty of Tourism, Ataturk University, 25240 Erzurum, Turkey. Department of Food Analysis and Chemistry, Tomas Bata University in Zlin, 76001 Zlin, Czech Republic"
Journal Title:Molecules
Year:2022
Volume:20220907
Issue:18
Page Number: -
DOI: 10.3390/molecules27185787
ISSN/ISBN:1420-3049 (Electronic) 1420-3049 (Linking)
Abstract:"In recent years there has been an extensive search for nature-based products with functional potential. All structural parts of Physalis alkekengi (bladder cherry), including fruits, pulp, and less-explored parts, such as seeds and peel, can be considered sources of functional macro- and micronutrients, bioactive compounds, such as vitamins, minerals, polyphenols, and polyunsaturated fatty acids, and dietetic fiber. The chemical composition of all fruit structural parts (seeds, peel, and pulp) of two phenotypes of P. alkekengi were studied. The seeds were found to be a rich source of oil, yielding 14-17%, with abundant amounts of unsaturated fatty acids (over 88%) and tocopherols, or vitamin E (up to 5378 mg/kg dw; dry weight). The predominant fatty acid in the seed oils was linoleic acid, followed by oleic acid. The seeds contained most of the fruit's protein (16-19% dw) and fiber (6-8% dw). The peel oil differed significantly from the seed oil in fatty acid and tocopherol composition. Seed cakes, the waste after oil extraction, contained arginine and aspartic acid as the main amino acids; valine, phenylalanine, threonine, and isoleucine were present in slightly higher amounts than the other essential amino acids. They were also rich in key minerals, such as K, Mg, Fe, and Zn. From the peel and pulp fractions were extracted fruit concretes, aromatic products with specific fragrance profiles, of which volatile compositions (GC-MS) were identified. The major volatiles in peel and pulp concretes were beta-linalool, alpha-pinene, and gamma-terpinene. The results from the investigation substantiated the potential of all the studied fruit structures as new sources of bioactive compounds that could be used as prospective sources in human and animal nutrition, while the aroma-active compounds in the concretes supported the plant's potential in perfumery and cosmetics"
Keywords:"Arginine/analysis Aspartic Acid/analysis Fatty Acids/analysis Fatty Acids, Unsaturated/analysis *Fruit/chemistry Humans Isoleucine Linoleic Acid/analysis Oleic Acid/analysis Phenylalanine/analysis *Physalis/chemistry Plant Oils/chemistry Prospective Studi;"
Notes:"MedlinePopova, Venelina Petkova, Zhana Mazova, Nadezhda Ivanova, Tanya Petkova, Nadezhda Stoyanova, Magdalena Stoyanova, Albena Ercisli, Sezai Okcu, Zuhal Skrovankova, Sona Mlcek, Jiri eng IGA FT 2022/004/Tomas Bata University in Zlin/ Switzerland 2022/09/24 Molecules. 2022 Sep 7; 27(18):5787. doi: 10.3390/molecules27185787"

 
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