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Title: | Intensification of extraction process through IVDV pretreatment from Eryngium creticum leaves and stems: Maximizing yields and assessing biological activities | Authors: | Hammoud, Mariam Debs, Esperance Lambertus A.M. van den Broek Rajha, Hiba Safi, Carl van Erven, Gijs Maroun, Richard G Chokr, Ali Rammal, Hassan Louka, Nicolas |
Affiliations: | Centre d'Analyses et de Recherche, Unité de Recherche Technologies et Valorisation Agro-alimentaire, Faculté des Sciences, Université Saint-Joseph, B.P. 17-5208 Riad El Solh, Beirut, Lebanon Department of Biology |
Keywords: | Antibacterial and antibiofilm activities E. creticum IVDV Optimization Phenolic compounds Response surface methodology Stereomicroscopy |
Issue Date: | 2024-03-30 | Publisher: | Cell Press | Part of: | Heliyon | Volume: | 10 | Issue: | 6 | Start page: | 1 | End page: | 17 | Abstract: | "Intensification of Vaporization by Decompression to the Vacuum" (IVDV) has initially emerged as a technology primarily employed for expanding and enhancing the texture of biological products. However, its recent applications have showcased significant promise in the realm of extracting bioactive molecules from various plant materials. In this context, optimization using response surface methodology was conducted to investigate the impact of IVDV pretreatment on the extractability of phenolic compounds from Eryngium creticum leaves and stems, as well as their biological activities. Using IVDV preceding the extraction led to higher total phenolic content (TPC) and enhanced antiradical activities in treated materials compared to untreated ones. The optimal processing conditions in terms of water content, steam pressure and treatment time were determined in order to maximize TPC (89.07 and 20.06 mg GAE/g DM in leaves and stems, respectively) and antiradical (DPPH) inhibition percentage (93.51% and 27.54% in leaves and stems, respectively). IVDV-treated extracts showed superior antioxidant, antibacterial and antibiofilm capacities compared to raw extracts. Using RP-UHPLC-PDA-MS, caffeic acid and rosmarinic acid were identified in IVDV-treated leaves. IVDV can be implemented as an innovative treatment applied prior to extraction to boost the recovery of biomolecules from plant matrices. |
URI: | https://scholarhub.balamand.edu.lb/handle/uob/7284 | ISSN: | 2405-8440 | DOI: | 10.1016/j.heliyon.2024.e27431 | Open URL: | Link to full text | Type: | Journal Article |
Appears in Collections: | Department of Biology |
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