Corn Distillers Solubles as a Plant-Based Bioresource for Proteins and Bioactive Peptides: Current Status and Bioprospects- a Critical Review
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Animesh Dutta | A. Manickavasagan | M. Thimmanagari | Sonu Sharma | Ranjan Pradhan | Adyashakti Dash | Aneela Hayder | Singam Suranjoy Singh
[1] M. Wilken,et al. Replacement of dietary corn with corn bran plus condensed distillers solubles effects on feedlot growth performance and carcass trait responses of beef steers , 2022, Translational animal science.
[2] Animesh Dutta,et al. Corn distillers solubles by two-step proteolytic hydrolysis as a new source of plant-based protein hydrolysates with ACE and DPP4 inhibition activities. , 2022, Food chemistry.
[3] Animesh Dutta,et al. Exploration of corn distillers solubles from selective milling technology as a novel source of plant-based ACE inhibitory protein hydrolysates. , 2022, Food chemistry.
[4] Dalveer Kaur,et al. Combinatorial approach to prepare antioxidative protein hydrolysate from corn gluten meal with dairy whey: Preparation, kinetics, nutritional study and cost analysis , 2022, LWT.
[5] Animesh Dutta,et al. Production of antioxidative protein hydrolysates from corn distillers solubles: Process optimization, antioxidant activity evaluation, and peptide analysis , 2022, Industrial Crops and Products.
[6] M. Pintado,et al. Bioactive peptides derived from marine sources: Biological and functional properties , 2021, Trends in Food Science & Technology.
[7] Rañia Marie Buenavista,et al. Utilization of Distiller's dried grains with solubles: A review , 2021 .
[8] Animesh Dutta,et al. Valorization and potential of condensed corn distillers solubles fractions from selective milling technology , 2021, Biomass Conversion and Biorefinery.
[9] E. Acosta-Cruz,et al. Maize bioactive peptides: From structure to human health , 2021, Journal of Cereal Science.
[10] S. Chi,et al. A Review on the Use of Distillers Dried Grains with Solubles (DDGS) in Aquaculture Feeds , 2021, Annals of Animal Science.
[11] C. Bald,et al. Valorisation of Brewer’s Spent Yeasts’ Hydrolysates as High-Value Bioactive Molecules , 2021, Sustainability.
[12] Animesh Dutta,et al. Evaluation of nitrogenous pyrolysates by Py–GC/MS for impacts of different proteolytic enzymes on corn distillers solubles , 2021 .
[13] D. Mcclements,et al. Production, bioactive properties, and potential applications of fish protein hydrolysates: Developments and challenges , 2021 .
[14] F. Jia,et al. Novel ACE Inhibitory Peptides Derived from Yeast Hydrolysates: Screening, Inhibition Mechanisms and Effects on HUVECs. , 2021, Journal of agricultural and food chemistry.
[15] L. Chase,et al. IN VITRO PROTEIN SOLUBILITY AND SOLUBILIZATION OF SELECTED FEEDSTUFFS FOR RUMINANT FEEDING , 2021 .
[16] J. Hallett,et al. Protein from renewable resources: mycoprotein production from agricultural residues , 2021, Green Chemistry.
[17] G. Aldrich,et al. Antioxidant performances of corn gluten meal and DDGS protein hydrolysates in food, pet food, and feed systems , 2020 .
[18] S. Serna-Saldívar,et al. In Silico Analysis and In Vitro Characterization of the Bioactive Profile of Three Novel Peptides Identified from 19 kDa α-Zein Sequences of Maize , 2020, Molecules.
[19] Animesh Dutta,et al. Application of analytical pyrolysis to gain insights into proteins of condensed corn distillers solubles from selective milling technology , 2020 .
[20] U. Schweiggert-Weisz,et al. Effect of enzymatic hydrolysis on molecular weight distribution, techno-functional properties and sensory perception of pea protein isolates , 2020 .
[21] Gengjun Chen,et al. Production and Characterization of Antioxidative Hydrolysates and Peptides from Corn Gluten Meal Using Papain, Ficin, and Bromelain , 2020, Molecules.
[22] P. Gabrielli,et al. Towards a Valorization of Corn Bioethanol Side Streams: Chemical Characterization of Post Fermentation Corn Oil and Thin Stillage , 2020, Molecules.
[23] Wen-Ying Liu,et al. In vitro antioxidant and angiotensin I-converting enzyme inhibitory properties of peptides derived from corn gluten meal , 2020, European Food Research and Technology.
[24] Song-Qing Hu,et al. Production of yeast hydrolysates by Bacillus subtilis derived enzymes and antihypertensive activity in spontaneously hypertensive rats , 2020 .
[25] Animesh Dutta,et al. Characterization of ultrasonic-treated corn crop biomass using imaging, spectral and thermal techniques: a review , 2020, Biomass Conversion and Biorefinery.
[26] A. Demirci,et al. Distillers’ dried grains with solubles (DDGS) and its potential as fermentation feedstock , 2020, Applied Microbiology and Biotechnology.
[27] M. Azizi,et al. Frationation of hydrolysate from corn germ protein by ultrafiltration: In vitro antidiabetic and antioxidant activity , 2020, Food science & nutrition.
[28] Jianping Wu,et al. Identification of immunomodulatory peptides from zein hydrolysates , 2020, European Food Research and Technology.
[29] M. Khalesi,et al. Application of in silico approaches for the generation of milk protein-derived bioactive peptides , 2020 .
[30] Y. Duan,et al. Production of ACE inhibitory peptides from corn germ meal by an enzymatic membrane reactor with a novel gradient diafiltration feeding working-mode and in vivo evaluation of antihypertensive effect , 2020, Journal of Functional Foods.
[31] Vijay Singh,et al. Effects of nitrogenous substances on heat transfer fouling using model thin stillage fluids , 2020 .
[32] Yanting Shen,et al. Antioxidant and Emulsifying Activities of Corn Gluten Meal Hydrolysates in Oil‐in‐Water Emulsions , 2020, Journal of the American Oil Chemists' Society.
[33] Q. Cui,et al. Changes in peptidomes and Fischer ratios of corn-derived oligopeptides depending on enzyme hydrolysis approaches. , 2019, Food chemistry.
[34] Jun Lu,et al. Presence of Exopeptidase Resistant and Susceptible Peptides in a Bacterial Protease Digest of Corn Gluten. , 2019, Journal of agricultural and food chemistry.
[35] Songyi Lin,et al. Preparation, identification, and activity evaluation of antioxidant peptides from protein hydrolysate of corn germ meal , 2019, Journal of Food Processing and Preservation.
[36] Y. Duan,et al. Effect of a multi-frequency counter-current S-type ultrasound pretreatment on the defatted corn germ protein: enzymatic hydrolysis, ACE inhibitory activity and structural characterization. , 2019, Food & function.
[37] M. Jekle,et al. Opportunities for upcycling cereal byproducts with special focus on Distiller's grains , 2019, Trends in Food Science & Technology.
[38] X. Yang,et al. Ileal digestibility of amino acids in corn condensed distiller’s solubles and whole stillage for pigs , 2019, Animal Feed Science and Technology.
[39] Hui He,et al. A Comprehensive Review of Corn Protein-derived Bioactive Peptides: Production, Characterization, Bioactivities, and Transport Pathways. , 2018, Comprehensive reviews in food science and food safety.
[40] Hanqi Gu,et al. Ultrasound-assisted fractionation of dried distillers' grains with solubles (DDGS) at mild temperature for co-production of xylan and protein feed , 2018, Journal of Chemical Technology & Biotechnology.
[41] P. Wierenga,et al. Influence of substrate concentration on the extent of protein enzymatic hydrolysis , 2018, International Dairy Journal.
[42] K. Majumder,et al. Food-Derived Bioactive Peptides in Human Health: Challenges and Opportunities , 2018, Nutrients.
[43] K. Südekum,et al. Review: protein value of distillers dried grains with solubles (DDGS) in animal nutrition as affected by the ethanol production process , 2018, Animal Feed Science and Technology.
[44] K. Thakur,et al. Enzymatic hydrolysis of flaxseed (Linum usitatissimum L.) protein and sensory characterization of Maillard reaction products. , 2018, Food chemistry.
[45] B. Šantek,et al. Bioethanol Production from Renewable Raw Materials and Its Separation and Purification: A Review , 2018, Food technology and biotechnology.
[46] Haile Ma,et al. Stability and antioxidant activities of corn protein hydrolysates under simulated gastrointestinal digestion , 2018, Cereal Chemistry.
[47] G. Shurson,et al. Antioxidant capacity and phytochemical content of 16 sources of corn distillers dried grains with solubles (DDGS) , 2018, Animal nutrition.
[48] S. Myers,et al. Impact of anthropogenic CO2 emissions on global human nutrition , 2018, Nature Climate Change.
[49] K. Muthukumarappan,et al. Physicochemical and nutritional properties of extrudates from food grade distiller's dried grains, garbanzo flour, and corn grits , 2018, Food science & nutrition.
[50] Songyi Lin,et al. Contribution of specific amino acid and secondary structure to the antioxidant property of corn gluten proteins. , 2018, Food research international.
[51] K. Rosentrater,et al. Production of Barbari Bread (Traditional Iranian Bread) Using Different Levels of Distillers Dried Grains with Solubles (DDGS) and Sodium Stearoyl Lactate (SSL) , 2018, Foods.
[52] Oscar Aguilar,et al. Antioxidant Activity of Zein Hydrolysates from Zea Species and Their Cytotoxic Effects in a Hepatic Cell Culture , 2018, Molecules.
[53] F. Toldrá,et al. Generation of bioactive peptides during food processing. , 2017, Food chemistry.
[54] G. Shurson. Yeast and yeast derivatives in feed additives and ingredients: Sources, characteristics, animal responses, and quantification methods , 2018 .
[55] Tong Wang,et al. Use of surfactant and enzymes in dry-grind corn ethanol fermentation improves yield of ethanol and distillers corn oil , 2018 .
[56] Jixin Zhong,et al. Role of Incretin Axis in Inflammatory Bowel Disease , 2017, Front. Immunol..
[57] S. Serna-Saldívar,et al. Antioxidant activity and characterization of protein fractions and hydrolysates from normal and quality protein maize kernels , 2017 .
[58] Haile Ma,et al. Effect of Low-Frequency Ultrasonic-Assisted Enzymolysis on the Physicochemical and Antioxidant Properties of Corn Protein Hydrolysates , 2017 .
[59] Xiaojing Lv,et al. Purification and identification of a novel ACE inhibitory peptide from marine alga Gracilariopsis lemaneiformis protein hydrolysate , 2017, European Food Research and Technology.
[60] Bo Hu,et al. New technologies in value addition to the thin stillage from corn-to-ethanol process , 2017, Reviews in Environmental Science and Bio/Technology.
[61] Yuanyuan Liu,et al. Antioxidant Activity and Stability Study of Peptides from Enzymatically Hydrolyzed Male Silkmoth , 2017 .
[62] Keshun Liu. Fractionation of Condensed Distillers Solubles and Compositional Characterization of Its Co-Products , 2017 .
[63] S. Baidoo,et al. Effects of liquid feeding of corn condensed distiller’s solubles and whole stillage on growth performance, carcass characteristics, and sensory traits of pigs , 2017, Journal of Animal Science and Biotechnology.
[64] S. Emami,et al. Protein Concentrate Production from Thin Stillage. , 2016, Journal of agricultural and food chemistry.
[65] Y. Sultanbawa,et al. Physicochemical assessment and bioactive properties of condensed distillers solubles, a by-product from the sorghum bio-fuel industry , 2016 .
[66] Xi-qun Zheng,et al. Preparation of antioxidative corn protein hydrolysates, purification and evaluation of three novel corn antioxidant peptides. , 2016, Food chemistry.
[67] Pete Smith,et al. Greenhouse gas mitigation potentials in the livestock sector , 2016 .
[68] Jhinuk Gupta,et al. Evaluation of green solvents for a sustainable zein extraction from ethanol industry DDGS , 2016 .
[69] Tang-Bin Zou,et al. The Structure-Activity Relationship of the Antioxidant Peptides from Natural Proteins , 2016, Molecules.
[70] F. Toldrá,et al. ACE-Inhibitory and Antioxidant Activities of Peptide Fragments Obtained from Tomato Processing By-Products Fermented Using Bacillus subtilis: Effect of Amino Acid Composition and Peptides Molecular Mass Distribution , 2016, Applied Biochemistry and Biotechnology.
[71] M. F. Villegas-Torres,et al. The protein fraction from wheat-based dried distiller's grain with solubles (DDGS): extraction and valorization , 2015, New biotechnology.
[72] Tong Wang,et al. Synergistic effect of surfactants and silica nanoparticles on oil recovery from condensed corn distillers solubles (CCDS) , 2015 .
[73] W. Liu,et al. Isolation and identification of a novel peptide from zein with antioxidant and antihypertensive activities. , 2015, Food & function.
[74] S. Millet,et al. Nutrient composition, digestibility and energy value of distillers dried grains with solubles and condensed distillers solubles fed to growing pigs and evaluation of prediction methods , 2015 .
[75] E. Hosseini,et al. Purification and identification of antioxidant and ACE-inhibitory peptide from Saccharomyces cerevisiae protein hydrolysate , 2015 .
[76] Haile Ma,et al. Antioxidant peptides from corn gluten meal: Orthogonal design evaluation. , 2015, Food chemistry.
[77] Wang Xiaojie,et al. Preparation of enzymatic pretreated corn gluten meal hydrolysate and in vivo evaluation of its antioxidant activity. , 2015 .
[78] R. Aluko. Antihypertensive peptides from food proteins. , 2015, Annual review of food science and technology.
[79] R. Milczarek,et al. Drum drying performance of condensed distillers solubles and comparison to that of physically modified condensed distillers solubles , 2015 .
[80] K. Han,et al. Effect of condensed corn distillers solubles concentration on lactation performance of Holstein cows. , 2015, Journal of dairy science.
[81] Jingbo Liu,et al. Isolation and Characterisation of in Vitro and Cellular Free Radical Scavenging Peptides from Corn Peptide Fractions , 2015, Molecules.
[82] K. Rosentrater,et al. Changes in chemical and physical properties of Latin American wheat flour based tortillas substituted with different levels of distillers dried grains with solubles (DDGS) , 2015, Journal of Food Science and Technology.
[83] H. Zhuang,et al. Evaluation of antioxidant activities of zein protein fractions. , 2014, Journal of food science.
[84] Wang Xiaojie,et al. Purification and evaluation of a novel antioxidant peptide from corn protein hydrolysate , 2014 .
[85] Felix K. Adom,et al. Compositional Analysis of Defatted Syrup from a Corn Ethanol Dry-Grind Process as a Feedstock for Biobased Products , 2014 .
[86] P. Harris,et al. New enzyme insights drive advances in commercial ethanol production. , 2014, Current opinion in chemical biology.
[87] Song-Qing Hu,et al. Preparation and Properties of Bioactive Peptides from Yeast Protein , 2014 .
[88] T. Rocha-Santos,et al. Antioxidative peptides: trends and perspectives for future research. , 2013, Current medicinal chemistry.
[89] H. Zhuang,et al. Purification and identification of antioxidant peptides from corn gluten meal , 2013 .
[90] H. Zhuang,et al. Optimisation of antioxidant peptide preparation from corn gluten meal. , 2013, Journal of the science of food and agriculture.
[91] K. Rosentrater,et al. Digital Repository @ Iowa State University Removal of Color Pigments From Corn Distillers Dried Grains With Solubles (DDGS) to Produce an Upgraded Food Ingredient , 2013 .
[92] Keshun Liu,et al. Methods to recover value-added coproducts from dry grind processing of grains into fuel ethanol. , 2013, Journal of agricultural and food chemistry.
[93] K. Ileleji,et al. The effect of condensed distillers solubles on the physical and chemical properties of maize distillers dried grains with solubles (DDGS) using bench scale experiments , 2013 .
[94] Leiting Xu,et al. Corn Peptide Ingestion with Exercise Attenuate Body Fat Mass and Enhance Lean Body Mass in obese rats , 2013 .
[95] C. Moresoli,et al. Production of antioxidant soy protein hydrolysates by sequential ultrafiltration and nanofiltration , 2013 .
[96] Y. Jeon,et al. Purification and identification of novel angiotensin-I converting enzyme (ACE) inhibitory peptides from cultured marine microalgae (Nannochloropsis oculata) protein hydrolysate , 2013, Journal of Applied Phycology.
[97] L. Tabil,et al. Effect of Drying Conditions and Level of Condensed Distillers Solubles on Protein Quality of Wheat Distillers Dried Grain with Solubles , 2013 .
[98] K. Zhou,et al. Production and functional characterisation of antioxidative hydrolysates from corn protein via enzymatic hydrolysis and ultrafiltration. , 2012, Food chemistry.
[99] V. Singh,et al. Amino acid digestibility of corn distillers dried grains with solubles, liquid condensed solubles, pulse dried thin stillage, and syrup balls fed to growing pigs. , 2012, Journal of animal science.
[100] Devanand L. Luthria,et al. Phenolic Acids and Antioxidant Capacity of Distillers Dried Grains with Solubles (DDGS) as Compared with Corn , 2012 .
[101] R. Tyler,et al. Biorefinery process for protein extraction from oriental mustard (Brassica juncea (L.) Czern.) using ethanol stillage , 2012, AMB Express.
[102] Yongkang Luo,et al. Purification and characterisation of a novel antioxidant peptide from porcine haemoglobin hydrolysate , 2012 .
[103] L. Johnson,et al. Enzyme Treatments to Enhance Oil Recovery from Condensed Corn Distillers Solubles , 2011 .
[104] G. Inglett,et al. Effect of incorporation of distillers’ dried grain with solubles (DDGS) on quality of cornbread , 2011 .
[105] L. Johnson,et al. Physical and Chemical Processes to Enhance Oil Recovery from Condensed Corn Distillers Solubles , 2011 .
[106] Ba-fang Li,et al. Optimization of enzymatic hydrolysis of Alaska pollock frame for preparing protein hydrolysates with low-bitterness , 2011 .
[107] Keshun Liu,et al. Chemical composition of distillers grains, a review. , 2011, Journal of agricultural and food chemistry.
[108] Yong Li,et al. Pilot-scale production of low molecular weight peptides from corn wet milling byproducts and the antihypertensive effects in vivo and in vitro. , 2011 .
[109] H. Hara,et al. The corn protein, zein hydrolysate, administered into the ileum attenuates hyperglycemia via its dual action on glucagon-like peptide-1 secretion and dipeptidyl peptidase-IV activity in rats. , 2010, Endocrinology.
[110] V. Lobo,et al. Free radicals, antioxidants and functional foods: Impact on human health , 2010, Pharmacognosy reviews.
[111] B. Dien,et al. Nutrient recovery from the dry grind process using sequential micro and ultrafiltration of thin stillage. , 2010, Bioresource technology.
[112] Xin Hu,et al. ANTIOXIDANT PROPERTIES AND POSSIBLE MODE OF ACTION OF CORN PROTEIN PEPTIDES AND ZEIN PEPTIDES , 2010 .
[113] Xiaoming Liu,et al. Alpha‐Lactalbumin: Its Production Technologies and Bioactive Peptides , 2010 .
[114] Keshun Liu,et al. Changes in composition and amino acid profile during dry grind ethanol processing from corn and estimation of yeast contribution toward DDGS proteins. , 2010, Journal of agricultural and food chemistry.
[115] Tong Wang,et al. Characterization of Oil Precipitate and Oil Extracted from Condensed Corn Distillers Solubles , 2010 .
[116] Jie Chen,et al. Peptide fractionation and free radical scavenging activity of zein hydrolysate. , 2010, Journal of agricultural and food chemistry.
[117] R. Stroshine,et al. The effect of process variables during drying on the physical and chemical characteristics of corn dried distillers grains with solubles (DDGS)--plant scale experiments. , 2010, Bioresource technology.
[118] Keshun Liu. Fractionation of distillers dried grains with solubles (DDGS) by sieving and winnowing. , 2009, Bioresource technology.
[119] Jianping Wu,et al. Production of angiotensin I-converting enzyme inhibitory peptides from defatted canola meal. , 2009, Bioresource technology.
[120] Se-kwon Kim,et al. Purification and characterization of angiotensin I converting enzyme inhibitory peptides from the rotifer, Brachionus rotundiformis. , 2009, Bioresource technology.
[121] A. Motamedzadegan,et al. The effect of enzymatic hydrolysis time and temperature on the properties of protein hydrolysates from Persian sturgeon (Acipenser persicus) viscera. , 2009 .
[122] C. Glatz,et al. Extraction of protein from distiller's grain. , 2009, Bioresource technology.
[123] B. Shanks,et al. Hydrolysis of oligosaccharides from distillers grains using organic-inorganic hybrid mesoporous silica catalysts. , 2008, Bioresource technology.
[124] D. Schingoethe,et al. Conjugated linoleic acid increases in milk from cows fed condensed corn distillers solubles and fish oil. , 2008, Journal of dairy science.
[125] Fereidoon Shahidi,et al. Antioxidant activity and water-holding capacity of canola protein hydrolysates. , 2008, Food chemistry.
[126] Jie Chen,et al. Reducing, radical scavenging, and chelation properties of in vitro digests of alcalase-treated zein hydrolysate. , 2008, Journal of agricultural and food chemistry.
[127] N. Bhaskar,et al. Optimization of enzymatic hydrolysis of visceral waste proteins of Catla (Catla catla) for preparing protein hydrolysate using a commercial protease. , 2008, Bioresource technology.
[128] D. Schingoethe,et al. The feeding value of corn distillers solubles for lactating dairy cows. , 2008, Journal of dairy science.
[129] E. Romero,et al. Bioconversion of corn distiller's dried grains with solubles (CDDGS) to extracellular proteases and peptones , 2007 .
[130] Ping Liu,et al. Peptide with angiotensin I-converting enzyme inhibitory activity from hydrolyzed corn gluten meal. , 2007, Journal of agricultural and food chemistry.
[131] W. Qi,et al. Time-dependent nature in peptic hydrolysis of native bovine hemoglobin , 2007 .
[132] N. Reddy,et al. An acidic method of zein extraction from DDGS. , 2007, Journal of agricultural and food chemistry.
[133] Fereidoon Shahidi,et al. Antioxidative activity and functional properties of protein hydrolysate of yellow stripe trevally (Selaroides leptolepis) as influenced by the degree of hydrolysis and enzyme type , 2007 .
[134] A. Pihlanto. Antioxidative peptides derived from milk proteins , 2006 .
[135] T. Tsai,et al. Angiotensin I-converting enzyme inhibitor derived from soy protein hydrolysate and produced by using membrane reactor , 2006 .
[136] F. Hidalgo,et al. Coordinate Contribution of Lipid Oxidation and Maillard Reaction to the Nonenzymatic Food Browning , 2005, Critical reviews in food science and nutrition.
[137] A. Mustafa,et al. The Nutritive Value of Thin Stillage and Wet Distillers' Grains for Ruminants - Review - , 2000 .
[138] A. Clemente,et al. Production and characterization of an extensive rapeseed protein hydrolysate , 1999 .
[139] R. Aebersold,et al. High sensitivity analysis of proteins and peptides by capillary electrophoresis‐tandem mass spectrometry: Recent developments in technology and applications , 1998, Electrophoresis.
[140] R. Ahmad,et al. Hydrolysis of Proteins from Liza subviridis , 1998, Asian Fisheries Science.
[141] J. Hamada,et al. Effect of Limited Proteolysis on the Enzymatic Phosphorylation of Soy Protein , 1996 .
[142] T. Klopfenstein,et al. Wet corn distillers byproducts compared with dried corn distillers grains with solubles as a source of protein and energy for ruminants. , 1994, Journal of animal science.
[143] D. Brochetti,et al. Yeast bread containing distillers' dried grain : dough development and bread quality , 1991 .
[144] Y. Kohama,et al. Production of angiotensin-converting enzyme inhibitors from baker's yeast glyceraldehyde-3-phosphate dehydrogenase. , 1990, Journal of pharmacobio-dynamics.
[145] J. Maga,et al. CHEMICAL and SENSORY PROPERTIES OF WHOLEWHEAT PASTA PRODUCTS SUPPLEMENTED WITH WHEAT‐DERIVED DRIED DISTILLERS GRAIN (DDG) , 1989 .
[146] J. Pierce. HORACE BROWN MEMORIAL LECTURE THE ROLE OF NITROGEN IN BREWING , 1987 .
[147] H. Fukui,et al. Studies of Bitter Peptides from Casein Hydrolyzate. I. Synthesis of Bitter Peptide BPIa Corresponding to Arg–Gly–Pro–Pro–Phe–Ile–Val from Casein Hydrolyzate by Alkaline Proteinase of Bacillus subtilis , 1983 .
[148] P Argos,et al. A structural model for maize zein proteins. , 2004, The Journal of biological chemistry.
[149] T. W. Perry,et al. Effect of corn distillers solubles and brewers dried grains with yeast in urea-containing rations on steer performance. , 1972 .
[150] C. Boruff,et al. Nutrient content of alcohol fermentation by-products from corn. , 1944 .