Enhanced protein quality and antioxidant activity of fermented Brown rice with Gryllus bimaculatus
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[1] Misook Kim,et al. Antidiabetic, Anticholesterol, and Antioxidant Activity of Gryllusbimaculatus Fermented by Bacillus and Lactobacillus Strains , 2021, Applied Sciences.
[2] S. Heo,et al. Nutritional and Functional Properties of Fermented Mixed Grains by Solid-State Fermentation with Bacillus amyloliquefaciens 245 , 2020, Foods.
[3] P. Kilmartin,et al. Storage stability and in vitro digestion of microencapsulated powder containing fermented noni juice and probiotics , 2020 .
[4] M. Venturi,et al. Technological Feature Assessment of Lactic Acid Bacteria Isolated from Cricket Powder’s Spontaneous Fermentation as Potential Starters for Cricket-Wheat Bread Production , 2020, Foods.
[5] L. Nissen,et al. Gluten free sourdough bread enriched with cricket flour for protein fortification: Antioxidant improvement and Volatilome characterization. , 2020, Food chemistry.
[6] Yusuf Olamide Kewuyemi,et al. Fermented Edible Insects for Promoting Food Security in Africa , 2020, Insects.
[7] H. Lee,et al. A Variant of SLC1A5 Is a Mitochondrial Glutamine Transporter for Metabolic Reprogramming in Cancer Cells. , 2019, Cell metabolism.
[8] H. Chang,et al. Characterization of Fermented Rice-Bran Using the Lactic Acid Bacteria Weissella koreensis DB1 Derived from Kimchi , 2019 .
[9] K. Poutanen,et al. Lactic Acid Fermentation as a Pre-Treatment Process for Faba Bean Flour and Its Effect on Textural, Structural and Nutritional Properties of Protein-Enriched Gluten-Free Faba Bean Breads , 2019, Foods.
[10] M. Serafini,et al. Antioxidant Activities in vitro of Water and Liposoluble Extracts Obtained by Different Species of Edible Insects and Invertebrates , 2019, Front. Nutr..
[11] Li Xu,et al. Protein content and amino acids profile in 10 cultivars of ginkgo (Ginkgo biloba L.) nut from China , 2019, Royal Society Open Science.
[12] Y. Jo,et al. Anti-Oxidative and Anti-Aging Activities of Porcine By-Product Collagen Hydrolysates Produced by Commercial Proteases: Effect of Hydrolysis and Ultrafiltration , 2019, Molecules.
[13] M. F. Trombetta,et al. Protein fortification with mealworm (Tenebrio molitor L.) powder: Effect on textural, microbiological, nutritional and sensory features of bread , 2019, PloS one.
[14] Y. Ogawa,et al. Evaluation of protein digestibility of fermented soybeans and changes in biochemical characteristics of digested fractions , 2019, Journal of Functional Foods.
[15] E. Peñas,et al. Development of a multifunctional yogurt-like product from germinated brown rice , 2019, LWT.
[16] Young-S. Kim,et al. Investigation on the formations of volatile compounds, fatty acids, and γ-lactones in white and brown rice during fermentation. , 2018, Food chemistry.
[17] L. Aquilanti,et al. Bread enriched with cricket powder (Acheta domesticus): A technological, microbiological and nutritional evaluation , 2018, Innovative Food Science & Emerging Technologies.
[18] Xi Ma,et al. Branched Chain Amino Acids: Beyond Nutrition Metabolism , 2018, International journal of molecular sciences.
[19] Z. Zhou,et al. Accumulation of Citrulline by Microbial Arginine Metabolism during Alcoholic Fermentation of Soy Sauce. , 2018, Journal of agricultural and food chemistry.
[20] Charles M. Perou,et al. Asparagine bioavailability governs metastasis in a model of breast cancer , 2018, Nature.
[21] V. Meyer-Rochow,et al. Nutritional composition of five commercial edible insects in South Korea , 2017 .
[22] Misook Kim,et al. Probiotic characteristics of Bacillus strains isolated from Korean traditional soy sauce , 2017 .
[23] Umang Agarwal,et al. Supplemental Citrulline Is More Efficient Than Arginine in Increasing Systemic Arginine Availability in Mice. , 2017, The Journal of nutrition.
[24] M. Betti,et al. Non-enzymatic browning reaction of glucosamine at mild conditions: Relationship between colour formation, radical scavenging activity and α-dicarbonyl compounds production. , 2016, Food chemistry.
[25] Hongjiang Yang,et al. Microbial Diversity and Biochemical Analysis of Suanzhou: A Traditional Chinese Fermented Cereal Gruel , 2016, Front. Microbiol..
[26] Stuart M Phillips,et al. Protein "requirements" beyond the RDA: implications for optimizing health. , 2016, Applied physiology, nutrition, and metabolism = Physiologie appliquee, nutrition et metabolisme.
[27] H. Yoon,et al. Fasting conditions and dietary phenamena of edible cricket (Gryllus bimaculatus) , 2015 .
[28] Yonghua Zheng,et al. Effect of high pressure processing and thermal treatment on physicochemical parameters, antioxidant activity and volatile compounds of green asparagus juice , 2015 .
[29] E. Volpi,et al. Protein intake and muscle function in older adults , 2015, Current opinion in clinical nutrition and metabolic care.
[30] Lei Yang,et al. The Galloyl Catechins Contributing to Main Antioxidant Capacity of Tea Made from Camellia sinensis in China , 2014, TheScientificWorldJournal.
[31] C. Moinard,et al. Citrulline: from metabolism to therapeutic use. , 2013, Nutrition.
[32] P. O’Toole,et al. γ‐Aminobutyric acid production by culturable bacteria from the human intestine , 2012, Journal of applied microbiology.
[33] Y. Madrid,et al. Selenium and mercury bioaccessibility in fish samples: an in vitro digestion method , 2004 .
[34] Frédéric Leroy,et al. Lactic acid bacteria as functional starter cultures for the food fermentation industry , 2004 .
[35] V. Crow,et al. The potential of dairy lactic acid bacteria to metabolise amino acids via non-transaminating reactions and endogenous transamination. , 2003, International journal of food microbiology.
[36] W. Horwitz. Official Methods of Analysis , 1980 .
[37] S. Marklund,et al. Involvement of the superoxide anion radical in the autoxidation of pyrogallol and a convenient assay for superoxide dismutase. , 1974, European journal of biochemistry.
[38] Shuhong Li,et al. Preparation, characterization and the in vitro bile salts binding capacity of celery seed protein hydrolysates via the fermentation using B. subtilis , 2020 .
[39] 이재화,et al. 커피 에탄올 추출물의 항균 및 미백활성 , 2018 .
[40] A. Huis,et al. Edible insects: future prospects for food and feed security , 2013 .
[41] Su-gon Kim,et al. Isolation, Identification, and Characterization of Weissella Strains with High Ornithine Producing Capacity from Kimchi , 2009 .
[42] Young-S. Kim,et al. Study of volatile organic acids in freeze-dried Cheonggukjang formed during fermentation using SPME and stable-isotope dilution assay (SIDA) , 2007 .
[43] S. Kulkarni,et al. Evaluation of bioaccessibility of some essential elements from wheatgrass (Triticum aestivum L.) by in vitro digestion method , 2007 .
[44] Colin Webb,et al. Cereal-based fermented foods and beverages , 2003 .
[45] M. Oyaizu. Studies on products of browning reaction--antioxidative activities of products of browning reaction prepared from glucosamine , 1986 .
[46] H. Ripps,et al. Review: Taurine: A “very essential” amino acid , 2012, Molecular vision.