0000000000618755

AUTHOR

Hiba N. Rajha

0000-0002-1107-9645

showing 3 related works from this author

Citrus aurantium L. Active Constituents, Biological Effects and Extraction Methods. An Updated Review

2021

Citrus genus is a prominent staple crop globally. Long-term breeding and much hybridization engendered a myriad of species, each characterized by a specific metabolism generating different secondary metabolites. Citrus aurantium L., commonly recognized as sour or bitter orange, can exceptionally be distinguished from other Citrus species by unique characteristics. It is a fruit with distinctive flavor, rich in nutrients and phytochemicals which possess different health benefits. This paper presents an overview of the most recent studies done on the matter. It intends to provide an in-depth understanding of the biological activities and medicinal uses of active constituents existing in C. au…

Pharmaceutical ScienceOrganic chemistryReviewHealth benefitsBiologyAnalytical Chemistry03 medical and health sciences0404 agricultural biotechnologyQD241-441C. aurantiumextraction methodsDrug DiscoveryBotany[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]Physical and Theoretical Chemistryactive constituentsNutrició030304 developmental biologymedicinal uses0303 health sciencesbiological effectsPlant Partfood and beverages04 agricultural and veterinary sciences040401 food science<i>C. aurantium</i>Chemistry (miscellaneous)medecinal usesMolecular MedicineExtraction methodsMolecules
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Extraction, Characterization and Incorporation of Hypericum scruglii Extract in Ad Hoc Formulated Phospholipid Vesicles Designed for the Treatment of…

2020

An extract of Hypericum scruglii, an endangered endemic plant of Sardinia (Italy), was prepared and characterized. It was loaded in special phospholipid vesicles, glycerosomes, which were modified by adding maltodextrin (glucidex) and a polymer (gelatin or hyaluronan). The corresponding liposomes were also prepared and used as reference. The vesicles disclosed suitable physicochemical features for skin delivery. Indeed, their mean diameter ranged from 120 to 160 nm, they were homogeneously dispersed (polydispersity index &le

food.ingredientlcsh:RS1-441Pharmaceutical Science02 engineering and technologyhypericaceaemedicine.disease_cause01 natural sciencesGelatinArticlelcsh:Pharmacy and materia medicagelatinhyaluronanchemistry.chemical_compoundglycerosomesfoodphospholipid vesiclesscratch assayZeta potentialmedicineoxidative stressHydrogen peroxideLiposome010405 organic chemistryVesiclekeratinocyte uptake021001 nanoscience & nanotechnologyMaltodextrinIn vitro0104 chemical scienceschemistryBiophysics0210 nano-technologyOxidative stress
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Optimization of Polyphenols' Recovery from Purple Corn Cobs Assisted by Infrared Technology and Use of Extracted Anthocyanins as a Natural Colorant i…

2022

An ecofriendly extraction technology using infrared (IR) irradiation Ired-Irrad® was applied to purple corn cobs to enhance polyphenol recovery for the first time. The IR extraction efficiency was compared to that of the water bath (WB) method. Response surface methodology (RSM) using a central composite design was conducted to determine the effect of the experimental conditions (extraction time and treatment temperature) and their interactions on the total polyphenol and anthocyanin yields. Optimal extraction of total phenolic compounds (37 mg GAE/g DM) and total monomeric anthocyanins (14 mg C3G/g DM) were obtained at 63 °C for 77 min using IR as an extraction technique and water as a sol…

TechnologyPlant ExtractsOrganic ChemistryBrassica napusPharmaceutical SciencePolyphenolsWaterZea maysAnalytical ChemistryAnthocyaninsBlat de moroChemistry (miscellaneous)Drug DiscoveryMolecular MedicineColorants en els alimentsTecnologia dels alimentsPhysical and Theoretical Chemistrypurple corn cobs; infrared-assisted extraction; response surface methodology; anthocyanins; natural colorant
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