Response Surface Modeling and Optimization of the Extraction of Phenolic Antioxidants from Olive Mill Pomace
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[1] Lúcia Santos,et al. Extraction and encapsulation of bioactive compounds from olive mill pomace: influence of loading content on the physicochemical and structural properties of microparticles , 2022, Journal of Food Measurement and Characterization.
[2] Lúcia Santos,et al. Sustainability in Skin Care: Incorporation of Avocado Peel Extracts in Topical Formulations , 2022, Molecules.
[3] M. Farid,et al. Effect of Temperatures on Polyphenols during Extraction , 2022, Applied Sciences.
[4] Esakkiammal Sudha Esakkimuthu,et al. The Valorisation of Olive Mill Wastewater from Slovenian Istria by Fe3O4 Particles to Recover Polyphenolic Compounds for the Chemical Specialties Sector , 2021, Molecules.
[5] C. González-Barreiro,et al. Applicability of an In-Vitro Digestion Model to Assess the Bioaccessibility of Phenolic Compounds from Olive-Related Products , 2021, Molecules.
[6] R. Zambiazi,et al. Optimization of the extraction of phenolic compounds from olive pomace using response surface methodology , 2020, Revista Ceres.
[7] Lúcia Santos,et al. Deriving valorization of phenolic compounds from olive oil by-products for food applications through microencapsulation approaches: a comprehensive review , 2020, Critical reviews in food science and nutrition.
[8] Lúcia Santos,et al. Encapsulation of the Antioxidant Tyrosol and Characterization of Loaded Microparticles: an Integrative Approach on the Study of the Polymer-Carriers and Loading Contents , 2020, Food and Bioprocess Technology.
[9] Lúcia Santos,et al. Inclusion of hydroxytyrosol in ethyl cellulose microparticles: In vitro release studies under digestion conditions , 2018, Food Hydrocolloids.
[10] Constantina Tzia,et al. Extraction of phenolic compounds from olive pomace by using natural deep eutectic solvents and innovative extraction techniques , 2018, Innovative Food Science & Emerging Technologies.
[11] C. D. Goldsmith,et al. The Olive Biophenols Oleuropein and Hydroxytyrosol Selectively Reduce Proliferation, Influence the Cell Cycle, and Induce Apoptosis in Pancreatic Cancer Cells , 2018, International journal of molecular sciences.
[12] O. Dangles,et al. Direct and Rapid Profiling of Biophenols in Olive Pomace by UHPLC-DAD-MS , 2018, Food Analytical Methods.
[13] L. Schwingshackl,et al. Adherence to Mediterranean Diet and Risk of Cancer: An Updated Systematic Review and Meta-Analysis , 2017, Nutrients.
[14] Lúcia Santos,et al. Design of experiments for microencapsulation applications: A review. , 2017, Materials science & engineering. C, Materials for biological applications.
[15] Xingfeng Guo,et al. Extraction of pectin from the peels of pomelo by high-speed shearing homogenization and its characteristics , 2017 .
[16] S. Prasad,et al. Reactive oxygen species (ROS) and cancer: Role of antioxidative nutraceuticals. , 2017, Cancer letters.
[17] Adil Munir,et al. Evaluation of Phenolic Compounds and Antioxidant and Antimicrobial Activities of Some Common Herbs , 2017, International journal of analytical chemistry.
[18] M. Oliveira,et al. Phenolic compounds from olive mill wastes: Health effects, analytical approach and application as food antioxidants , 2015 .
[19] M. Tasioula-margari,et al. Extraction, Separation, and Identification of Phenolic Compounds in Virgin Olive Oil by HPLC-DAD and HPLC-MS , 2015, Antioxidants.
[20] A. Vega‐Gálvez,et al. Comparison of Chemical Composition, Bioactive Compounds and Antioxidant Activity of Three Olive‐Waste Cakes , 2015 .
[21] M. Nadour,et al. Olive mill wastes: Biochemical characterizations and valorization strategies , 2013 .
[22] A. Singhai,et al. Screening of Most Effective Variables for Development of Gastroretentive Mucoadhesive Nanoparticles by Taguchi Design , 2013 .
[23] K. Thirugnanasambandham,et al. Box-Behnken design based statistical modeling for ultrasound-assisted extraction of corn silk polysaccharide. , 2013, Carbohydrate polymers.
[24] B. Vodopivec,et al. The fate of olive fruit phenols during commercial olive oil processing: Traditional press versus continuous two- and three-phase centrifuge , 2012 .
[25] F. Priego-Capote,et al. Tentative identification of phenolic compounds in olive pomace extracts using liquid chromatography-tandem mass spectrometry with a quadrupole-quadrupole-time-of-flight mass detector. , 2012, Journal of agricultural and food chemistry.
[26] A. Hafidi,et al. Phenolic profile and antioxidant activities of olive mill wastewater. , 2012, Food chemistry.
[27] M. Mourabet,et al. Removal of fluoride from aqueous solution by adsorption on Apatitic tricalcium phosphate using Box–Behnken design and desirability function , 2012 .
[28] Juan Fernández-Bolaños,et al. New phenolic compounds hydrothermally extracted from the olive oil byproduct alperujo and their antioxidative activities. , 2012, Journal of agricultural and food chemistry.
[29] V. J. Sinanoglou,et al. Phenolic and antioxidant potential of olive oil mill wastes , 2011 .
[30] A. Al-Tawaha,et al. Optimisation, characterisation and quantification of phenolic compounds in olive cake , 2010 .
[31] A. Khataee,et al. Optimization of photocatalytic treatment of dye solution on supported TiO2 nanoparticles by central composite design: intermediates identification. , 2010, Journal of hazardous materials.
[32] A. Braca,et al. Phenolic compounds in olive oil and olive pomace from Cilento (Campania, Italy) and their antioxidant activity , 2010 .
[33] Kaan Yetilmezsoy,et al. Response surface modeling of Pb(II) removal from aqueous solution by Pistacia vera L.: Box-Behnken experimental design. , 2009, Journal of hazardous materials.
[34] D. Bedgood,et al. Chemical screening of olive biophenol extracts by hyphenated liquid chromatography. , 2007, Analytica chimica acta.
[35] D. Bedgood,et al. Bioscreening of Australian olive mill waste extracts: biophenol content, antioxidant, antimicrobial and molluscicidal activities. , 2007, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[36] M. D. Luque de Castro,et al. Static-dynamic superheated liquid extraction of hydroxytyrosol and other biophenols from alperujo (a semisolid residue of the olive oil industry). , 2007, Journal of agricultural and food chemistry.
[37] L. Iacoviello,et al. Liquid chromatography-tandem mass spectrometry analysis of oleuropein and its metabolite hydroxytyrosol in rat plasma and urine after oral administration. , 2003, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[38] J. Espín,et al. OLEUROPEIN AND RELATED COMPOUNDS , 2000 .
[39] G. Derringer,et al. Simultaneous Optimization of Several Response Variables , 1980 .
[40] R. Lamuela-Raventós,et al. Analysis of total phenols and other oxidation substrates and antioxidants by means of Folin-Ciocalteu reagent , 1999 .