Affiliation:
1. Department of Life and Environmental Sciences, University of Cagliari, Cittadella Universitaria di Monserrato, S.P. Monserrato-Sestu km 0.700, 09042 Monserrato, Italy
2. Faculty of Food Technology Osijek, Josip Juraj Strossmayer University of Osijek, Franje Kuhača 18, 31000 Osijek, Croatia
Abstract
Saffron (Crocus sativus) floral by-products are a source of phenolic compounds that can be recovered and used in the nutraceutical, pharmaceutical, or cosmetic industries. This study aimed to evaluate the phenolic compounds’ extraction using green extraction techniques (GETs) in saffron floral by-products and to explore the influence of selected extraction techniques on the phytochemical composition of the extracts. Specifically, ultrasound-assisted extraction (UAE), subcritical water extraction (SWE), and deep eutectic solvents extraction (DESE) were used. Phenolic compounds were identified with (HR) LC-ESI-QTOF MS/MS analysis, and the quantitative analysis was performed with HPLC-PDA. Concerning the extraction techniques, UAE showed the highest amount for both anthocyanins and flavonoids with 50:50% v/v ethanol/water as solvent (93.43 ± 4.67 mg/g of dry plant, dp). Among SWE, extraction with 96% ethanol and t = 125 °C gave the best quantitative results. The 16 different solvent mixtures used for the DESE showed the highest amount of flavonoids (110.95 ± 5.55–73.25 ± 3.66 mg/g dp), while anthocyanins were better extracted with choline chloride:butane-1,4-diol (16.0 ± 0.80 mg/g dp). Consequently, GETs can be employed to extract the bioactive compounds from saffron floral by-products, implementing recycling and reduction of waste and fitting into the broader circular economy discussion.
Funder
National Recovery and Resilience Plan
European Un-ion—NextGenerationEU
Reference57 articles.
1. Shahnoushi, N., Abolhassani, L., Kavakebi, V., Reed, M., and Saghaian, S. (2020). Saffron: Science, Technology and Health, Woodhead Publishing. Woodhead Publishing Series in Food Science, Technology and Nutrition.
2. Cerdá-Bernad, D., Clemente-Villalba, J., Valero-Cases, E., Pastor, J.-J., and Frutos, M.-J. (2022). Novel insight into the volatile profile and antioxidant properties of Crocus sativus L. flowers. Antioxidants, 11.
3. The use of food by-products as a novel for functional foods: Their use as ingredients and for the encapsulation process;Comunian;Food Sci. Technol.,2021
4. Underutilized Crocus Sativus L. flowers: A hidden source of sustainable high value-added ingredients;Pastor;Plant Foods Hum. Nutr.,2023
5. Identification and quantification of flavonols, anthocyanins and lutein diesters in tepals of Crocus sativus by ultra-performance liquid chromatography coupled to diode array and ion trap mass spectrometry detections;Goupy;Ind. Crops Prod.,2013