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Proximate composition, polyphenols, and antioxidant activity of solid state fermented peanut press cake

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References

  • Sadh, P. K.; Duhan, S.; Duhan, J. S. Agro-Industrial Wastes and Their Utilization Using Solid State Fermentation: A Review. Biores. Bioproces. 2018, 5, 1–15.
  • Zhao, X.; Chen, J.; Du, F. Potential Use of Peanut by-Products in Food Processing: A Review. J. Food Sci. Technol. 2012, 49, 521–529. DOI: 10.1007/s13197-011-0449-2.
  • Arya, S. S.; Salve, A. R.; Chauhan, S. Peanuts as Functional Food: A Review. J. Food Sci. Technol. 2016, 53, 31–41. DOI: 10.1007/s13197-015-2007-9.
  • Sadh, P. K.; Chawla, P.; Duhan, J. S. Fermentation Approach on Phenolic, Antioxidants and Functional Properties of Peanut Press Cake. Food Biosci. 2018, 22, 113–120. DOI: 10.1016/j.fbio.2018.01.011.
  • Chawla, P.; Bhandari, L.; Sadh, P. K.; Kaushik, R. Impact of Solid-State Fermentation (Aspergillus oryzae) on Functional Properties and Mineral Bioavailability of Black-Eyed Pea (Vigna unguiculata) Seed Flour. Cereal Chem. 2017, 94, 437–442. DOI: 10.1094/CCHEM-05-16-0128-R.
  • Sadh, P. K.; Saharan, P.; Duhan, S.; Duhan, J. S. Bioaugmentation of Phenolics and Antioxidant Activity of Oryza sativa by Solid State Fermentation Using Aspergillus Spp. Int. Food Res. J. 2017, 24, 1160–1166.
  • Saharan, P.; Sadh, P. K.; Duhan, J. S. Assessment of Fermentation Based Enrichment of Bioactive Compounds and Antioxidant Activity of Commonly Used Cereals. Int. J. Food Fermentation Technol. 2018, 8, 175–184.
  • Sadh, P. K.; Saharan, P.; Duhan, S.; Duhan, J. S. Bio-Augmentation of Antioxidants and Phenolic Content of Lablab Purpureus by Solid State Fermentation with GRAS Filamentous Fungi. Res. Eff. Technol. 2017, 3, 285–292. DOI: 10.1016/j.reffit.2016.12.007.
  • Duhan, J. S.; Saharan, P.; Sadh, P. K. Effect of Production Parameters on Release of Phenolic Content of Peanut Press Cake Fermented with A. oryzae and A. awamori. Int. J Pharm. Biol. Sci. 2019, 9, 434–444.
  • Apak, R.; Güçlü, K.; Demirata, B.; Özyürek, M.; Çelik, S. E.; Bektaşoğlu, B.; Berker, K. I.; Özyurt, D. Comparative Evaluation of Various Total Antioxidant Capacity Assays Applied to Phenolic Compounds with the CUPRAC Assay. Molecules 2007, 12, 1496–1547. DOI: 10.3390/12071496.
  • Elsorady, M. E. I.; Ali, S. E. Antioxidant Activity of Roasted and Unroasted Peanut Skin Extracts. Int. Food Res. J. 2018, 2, 43– 50.
  • Pandey, A.; Selvakumar, P.; Soccol, C. R.; Nigam, P. Solid State Fermentation for the Production of Industrial Enzymes. Current Sci. 1999, 77, 149–162.
  • Sadh, P.; Kumar, S.; Chawla, P.; Duhan, J. Fermentation: A Boon for Production of Bioactive Compounds by Processing of Food Industries Wastes (by-Products). Molecules 2018, 23, 2560. DOI: 10.3390/molecules23102560.
  • Pandey, A.; Selvakumar, P.; Ashakumary, L. Performance of a Column Bioreactor for Glucoamylase Synthesis by Aspergillus niger in SSF. Process Biochem. 1996, 31, 43–46. DOI: 10.1016/0032-9592(94)00050-6.
  • Saharan, P.; Sadh, P. K.; Duhan, S.; Duhan, J. S. Bio-Enrichment of Phenolic, Flavonoids Content and Antioxidant Activity of Commonly Used Pulses by Solid-State Fermentation. Food Measure. 2020, 14, 1497–1510. DOI: 10.1007/s11694-020-00399-z.
  • Association of Official Analytical Chemists (AOAC). Official Methods of Analysis. 17th ed. Gaithersburg, MD: AOAC International, 2000.
  • Liyana-Pathirana, C.; Shahidi, F. Optimization of Extraction of Phenolic Compounds from Wheat Using Response Surface Methodology. Food Chem. 2005, 93, 47–56. DOI: 10.1016/j.foodchem.2004.08.050.
  • Singh, R.; Singh, S.; Kumar, S.; Arora, S. Studies on Antioxidant Potential of Methanol Extract/Fractions of Acacia Auriculiformis A. Cunn. Food Chem. 2007, 103, 505–511. DOI: 10.1016/j.foodchem.2006.08.019.
  • Liu, H.; Qiu, N.; Ding, H.; Yao, R. Polyphenols Contents and Antioxidant Capacity of 68 Chinese Herbals Suitable for Medical or Food Uses. Food Res. Int. 2008, 41, 363–370. DOI: 10.1016/j.foodres.2007.12.012.
  • Rangana , Manual of Analysis of Fruit and Vegetable Products New Delhi. Tata McGraw-Hill Publishing Company, Ltd. 1977.
  • Brand-Williams, W.; Cuvelier, M. E.; Berset, C. Use of a Free Radical Method to Evaluate Antioxidant Activity. LWT-Food Sci. Tech. 1995, 28, 25–30. DOI: 10.1016/S0023-6438(95)80008-5.
  • Arnao, M. B.; Cano, A.; Acosta, M. The Hydrophilic and Lipophilic Contribution to Total Antioxidant Activity. Food Chem. 2001, 73, 239–244. DOI: 10.1016/S0308-8146(00)00324-1.
  • Chu, Y. H.; Chang, C. L.; Hsu, H. F. Flavonoid Content of Several Vegetables and Their Antioxidant Activity. J. Sci. Food Agric. 2000, 80, 561–566. [Database] DOI: 10.1002/(SICI)1097-0010(200004)80:5<561::AID-JSFA574>3.0.CO;2-#.
  • Dinis, T. C.; Madeira, V. M.; Almeida, L. M. Action of Phenolic Derivatives (Acetaminophen, Salicylate, and 5-Aminosalicylate) as Inhibitors of Membrane Lipid Peroxidation and as Peroxyl Radical Scavengers. Arch. Biochem. Biophys. 1994, 315, 161–169. DOI: 10.1006/abbi.1994.1485.
  • Kumar, M.; Kumar, S.; Kaur, S. Identification of Polyphenols in Leaf Extracts of Lawsonia Inermis L. with Antioxidant, Antigenotoxic and Antiproliferative Potential. Int. J. Green Pharm. 2014, 8, 23–36. DOI: 10.4103/0973-8258.126816.
  • Igbabul, B. D.; Amove, J.; Twadue, I. Effect of Fermentation on the Proximate Composition, Antinutritional Factors and Functional Properties of Cocoyam (Colocasia esculenta) Flour. Afr. J. Food Sci. Tech. 2014, 5, 67–74.
  • SefaDedeh, S.; Kluvitse, Y. M. Development of Cowpea – Fortified Weaning Foods: Functional and Chemical Properties. Int. Food Res. J. 1995, 19, 1679–1685.
  • Ojokoh, A. O.; Daramola, M. K.; Oluoti, O. J. Effect of Fermentation on Nutrient and anti-Nutrient Composition of Breadfruit (Treculia Africana) and Cowpea (Vigna unguiculata) Blend Flours. Afr. J. Agri. Res. 2013, 8, 3566–3570.
  • Ajani, A. O.; Oshundahunsi, O. F.; Akinoso, R.; Arowora, K. A.; Abiodun, A. A.; Pessu, P. O. Proximate Composition and Sensory Qualities of Snacks Produced from Breadfruit Flour. Global J. Sci. Front. Res. 2012, 12, 1–8.
  • Ojokoh, A. O.; Fayemi, O. E.; Ocloo, F. C. K.; Alakija, O. Proximate Composition, Antinutritional Contents and Physicochemical Properties of Breadfruit (Treculia Africana) and Cowpea (Vigna unguiculata) Flour Blends Fermented with Lactobacillus plantarum. Afr. J. Microbiol. Res. 2014, 8, 1352–1359.
  • Sadh, P. K.; Saharan, P.; Duhan, S.; Duhan, J. S. Bio-Enrichment of Phenolics and Antioxidant Activity of Combination of Oryza sativa and Lablab Purpureus Fermented with GRAS Filamentous Fungi. Res. Eff. Technol. 2017, 3, 347–352.
  • Duhan, J. S.; Mehta, K.; Sadh, P. K.; Saharan, P. Surekha  , Bio-Enrichment of Phenolics and Free Radicals Scavenging Activity of Wheat (WH-711) Fractions by Solid State Fermentation with Aspergillus oryzae. Afr. J. Biochem. Res. 2016, 10, 12–19.
  • Dey, B. T.; Kuhad, R. C. Upgrading the Antioxidant Potential of Cereals by Their Fungal Fermentation Under Solid-State Cultivation Conditions. Letters Appl. Microbiol. 2014, 59, 493–499.
  • Sadh, P. K.; Chawla, P.; Bhandari, L.; Duhan, J. S. Bio-Enrichment of Functional Properties of Peanut Oil Cakes by Solid State Fermentation Using Aspergillus oryzae. Food Measure. 2018, 12, 622–633. DOI: 10.1007/s11694-017-9675-2.
  • Duhan, J. S.; Rana, A.; Sadh, P. K.; Saharan, P. Surekha  , Antimicrobial and Free Radical Scavenging Activity of Selective Medicinal Plants Combination. World J. Pharmacy Pharma. Sci. 2015, 4, 1202–1216.
  • Sadh, P. K.; Chawla, P.; Bhandari, L.; Kaushik, R.; Duhan, J. S. In-Vitro Assessment of Bio-Augmented Minerals from Peanut Oil Cakes Fermented by Aspergillus oryzae Through Caco-2 Cells. J. Food Sci. Technol. 2017, 54, 3640–3649. DOI: 10.1007/s13197-017-2825-z.
  • Saharan, P.; Sadh, P. K.; Duhan, J. S. Comparative Assessment of Effect of Fermentation on Phenolics, Flavonoids and Free Radical Scavenging Activity of Commonly Used Cereals. Biocat. Agri. Biotech. 2017, 12, 236–240. DOI: 10.1016/j.bcab.2017.10.013.
  • Reische, D. W.; Lillard, D. A.; Eitenmiller, R. R. Antioxidants. Food Lipids. Chem. Nutri. Biotech. 2008, 409.
  • Kang, Z. C.; Yen, M. T.; Chiu, C. K.; Wu, H. C.; Huang, S. L.; Tai, S. P.; Wang, B. S. The Inhibitory Effects of Aqueous Extract from Guava Twigs, Psidium Guajava L., on Mutation and Oxidative Damage. J. Chem. 2013, 2013, 1–7. DOI: 10.1155/2013/561905.

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