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This book creates a multidisciplinary forum of discussion on Ficus carica with particular emphasis on its horticulture, post-harvest, marketability, phytochemistry, extraction protocols, biochemistry, nutritional value, functionality, health-promoting properties, ethnomedicinal applications, technology and processing. The impact of traditional and innovative processing on the recovery of high-added value compounds from Ficus carica byproducts is extensively reported. Also, the text discusses the potential applications of Ficus carica in food, cosmetics, and pharmaceutical products. Fig (Ficus carica): Production, Processing, and Properties illustrates a diversity of developments in food science and horticultural research including: Production, processing, chemistry, and functional properties of Ficus carica.Ficus carica phytochemicals and its health-promoting effects.Food, non-food and technological applications of Ficus carica.Recent research focuses on studying the bioactive compounds and therapeutic traits and investigating the mode of action and toxicological impacts of medical plant extracts and bioactive phytochemicals. Ficus carica is of significant importance due to its widespread food, industrial and medicinal applications. Although Ficus carica products are already commercially available in the international market, it is hard to find a reference work covering the production, processing, chemistry and properties of Ficus carica. This book will be the first publication focusing specifically on this important topic.
Cardamom [Elettaria cardamomum (L.) Maton is recognized for its unique taste and aroma. As the third most expensive spice after saffron and vanilla, Cardamom has been used as a spice and flavoring ingredient in food and is rich in bioactive constituents including minerals, carbohydrates, proteins, lipids, essential oils, terpenoids, flavonoids and carotenoids. Cardamom essential oil (CEO) and other bioactive compounds accumulated in cardamom capsules contribute to their characteristic aroma and utility as a novel food and nutraceutical. CEO from capsules possesses monoterpene constituents such as ¿-terpineol, 1,8-cineole, ¿-pinene, linalyl acetate, linalool, and nerolidol as well as the ester of ¿-terpinyl acetate. Flavonoids, anthocyanins, terpenoids, alkaloids, and other cardamom phenolics have shown high MIC values against Campylobacter species and reduced Bacillus subtilis spore. CEO loses its flavor rapidly upon storing under a normal environment. The change in the aroma or flavor could also cause changes in the constituents of its phytochemicals.Cardamom (Elettaria cardamomum): Production, Processing & Properties aims to create a multidisciplinary forum of discussion on E. cardamomum, emphasizing its botany, ethnobotanical, cultivation, horticultural practices, post-harvest, marketability, phytochemistry, extraction protocols, biochemistry, nutritional value, functionality, ethnomedicinal applications and and processing specifics. The book discusses the botanical distribution, phytochemical constituents, food applications and biological activities of cardamom capsule extracts and essential oil. Also, the text discusses the potential applications of E. cardamomum in food, cosmetics and pharmaceutical products. This book is the first of its kind, a full research work dedicated specifically to cardamom applications and benefits that will be of value for researchers from multiple fields.
Handbook of Goldenberry (Physalis peruviana): Cultivation, Processing, Chemistry, and Functionality presents multidisciplinary coverage of P. peruviana and its role as in food, cosmetic, and pharmaceutical products. Broken into three sections, the book addresses the cultivation, species, and cultivars of Physalis peruviana, along with its chemistry, functionality, health-promoting properties, technologies, processing, and applications. Written for nutrition researchers, food scientists, food chemists, food technologists, nutritionists, and those studying related field, this book is a timely reference for those who wish to learn more about this functional food.
This book creates a multidisciplinary forum of discussion on Ficus carica with particular emphasis on its horticulture, post-harvest, marketability, phytochemistry, extraction protocols, biochemistry, nutritional value, functionality, health-promoting properties, ethnomedicinal applications, technology and processing. The impact of traditional and innovative processing on the recovery of high-added value compounds from Ficus carica byproducts is extensively reported. Also, the text discusses the potential applications of Ficus carica in food, cosmetics, and pharmaceutical products. Fig (Ficus carica): Production, Processing, and Properties illustrates a diversity of developments in food science and horticultural research including:Production, processing, chemistry, and functional properties of Ficus carica.Ficus carica phytochemicals and its health-promoting effects.Food, non-food and technological applications of Ficus carica.Recent research focuses on studying the bioactive compounds and therapeutic traits and investigating the mode of action and toxicological impacts of medical plant extracts and bioactive phytochemicals. Ficus carica is of significant importance due to its widespread food, industrial and medicinal applications. Although Ficus carica products are already commercially available in the international market, it is hard to find a reference work covering the production, processing, chemistry and properties of Ficus carica. This book will be the first publication focusing specifically on this important topic.
This book is a valuable resource for pharmaceutical and nutraceutical developers, as well as novel food developers and R&D researchers in a variety of fields that use herbs, spices, and medicinal plants.
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