This work could not be checked — none of the deposited references carry a DOI. No claim is made either way
about its reference list.
The 102 references without a DOI — listed, not checked
no DOI — not checkedSchrezenmeir J, Korhonen H, Williams M et al (2000) Foreword Br J Nutr 84 S1
no DOI — not checkedGoldman AS (1993) The immune system of human milk: antimicrobial, antiinflammatory and immunomodulating properties Pediatr Infect Dis J 12 664–671
no DOI — not checkedFox P (2009) Milk: an overview. In: Milk Proteins from Expression to Food Thompson A, Boland M, Singh H eds, Academic Press, San Diego, CA, p 1–54
no DOI — not checkedKorhonen H, Pihlanto A (2007) Technological options for the production of health-promoting proteins and peptides derived from milk and colostrum Curr Pharm Des 13 829–843
no DOI — not checkedKorhonen HJ (2009) Bioactive components in bovine milk. In: Bioactive Components in Milk and Dairy Products Park YW ed, Wiley-Blackwell, Iowa, p 15–42
no DOI — not checkedSmithers GW (2008) Whey and whey proteins — from ‚gutter-to-gold’ Int Dairy J 18 695–704
no DOI — not checkedKrissansen GW (2007) Emerging health properties of whey proteins and their clinical implications J Am Coll Nutr 26 713S–723S
no DOI — not checkedHartmann R, Meisel H (2007) Food-derived peptides with biological activity: from research to food applications Curr Opin Biotechnol 18 1–7
no DOI — not checkedKorhonen H, Pihlanto A (2006) Bioactive peptides: Production and functionality Int Dairy J 16 945–960
no DOI — not checkedEigel VN, Buytler JE, Ernstrom CA et al (1984) Nomenclature of proteins of cow’s milk: fifth revision J Dairy Sci 67 1599–1631
no DOI — not checkedLuhovyy BL, Akhavan T, Anderson H (2007) Whey proteins in the regulation of food intake and satiety J Am Coll Nutr 26 704S–712S
no DOI — not checkedGunnarsson PT, Winzell MS, Deacon CF et al (2006) Glucose-induced incretin hormone release and inactivation are differently modulated by oral fat and protein in mice Endocrinology 147 3173–3180
no DOI — not checkedPal S, Ellis V, Dhaliwal S (2010) Effects of whey protein isolate on body composition, lipids, insulin and glucose in overweight and obese individuals Br J Nutr 104 716–723
no DOI — not checkedAkhavan T, Luhovyy BL, Brown PH, Cho CE, Anderson GH (2010) Effect of premeal consumption of whey protein and its hydrolysate on food intake and postmeal glycemia and insulin responses in young adults Am J Clin Nutr 91 966–975
no DOI — not checkedHa E, Zemel MB (2003) Functional properties of whey, whey components, and essential amino acids: mechanisms underlying health benefits for active people (review) J Nutr Biochem 14 251–258
no DOI — not checkedPennings B, Boirie Y, Senden JM, Gijsen AP et al (2011) Whey protein stimulates postprandial muscle protein accretion more effectively than do casein and casein hydrolysate in older men Am J Clin Nutr 93(5) 997–1005
no DOI — not checkedEdwards PB, Creamer LK, Jameson GB (2009) Structure and stability of whey proteins In: Milk Proteins from Expression to Food Thompson A, Boland M, Singh H eds, Academic Press San Diego, CA p 163–203
no DOI — not checkedChatterton DEW, Smithers G, Roupas P, Brodkorb A (2006) Bioactivity of β-lactoglobulin and α-lactalbumin β-Technological implications for processing Int Dairy J 16 1229–1240
no DOI — not checkedMeisel H, Walsh D, Murray B, FitzGerald RJ (2009) ACE inhibitory peptides In: Nutraceutical Proteins and Peptides in Health and Disease Mine Y, Shadi F eds, Taylor Francis Group, Boca Raton FL, p 269–315
no DOI — not checkedHernández-Ledesma B, Recio I, Amigo L (2008) β-Lactoglobulin as source of bioactive peptides Amino Acids 35 257–265
no DOI — not checkedHernández-Ledesma B, Dávalos A et al (2005) Preparation of antioxidant enzymatic hydrolysates from α-lactalbumin and β-lactoglobulin Identification of active Peptides by HPLC-MS/MS J Agric Food Chem 53 588–593
no DOI — not checkedSipola M, Finckenberg P, Vapaatalo H et al (2002) [alpha]-lactorphin and [beta]-lactorphin improve arterial function in spontaneously hypertensive rats Life Sci 71 1245–1253
no DOI — not checkedYamauchi R, Ohinata K, Yoshikawa M (2003) Beta-lactotensin and neurotensin rapidly reduce serum cholesterol via NT2 receptor Peptides 24 1955–1961
no DOI — not checkedYamauchi R, Wada E, Yamada D, Yoshikawa M et al (2006) Effect of [beta]-lactotensin on acute stress and fear memory Peptides 27 3176–3182
no DOI — not checkedNagaoka S (2006) Cholesterol lowering proteins and peptides In: Nutraceutical Proteins and Peptides in Health and Disease Mine Y, Shahidi T eds, Taylor Francis Group, Boca Raton FL, p 41–68
no DOI — not checkedJackson JG, Janszen DB, Lonnerdal B et al (2004) A multinational study of α-lactalbumin concentrations in human milk J Nutr Biochem 15 517–521
no DOI — not checkedMarkus CR, Jonkman LM, Lammers JHCM et al (2005) Evening intake of α-lactalbumin increases plasma tryptophan availability and improves morning alertness and brain measures of attention Am J Clin Nutr 81 1026–1033
no DOI — not checkedScrutton H, Carbonnier A, Cowen PJ, Harmer C (2007) Effects of α-lactalbumin on emotional processing in healthy women J Psychopharmacol 21 519–524
no DOI — not checkedUshida Y, Shimokawa Y, Matsumoto H et al (2003) Effects of bovine α-lactalbumin on gastric defense mechanisms in naive rats Biosci Biotechnol Biochem 67 577–583
no DOI — not checkedRosaneli CF, Bighetti AE, Antonio MA et al (2004) Protective effect of bovine milk whey protein concentrate on the ulcerative lesions caused by subcutaneous administration of indomethacin J Med Food 7 309–314
no DOI — not checkedMezzaroba LFH, Carvalho JE, Ponezi AN et al (2006) Antiulcerative properties of bovine [alpha]-lactalbumin Int Dairy J 16 1005–1012
no DOI — not checkedBlouet C (2007) Meal cysteine improves postprandial glucose control in rats fed a high-sucrose meal J Nutr Biochem 18 519–524
no DOI — not checkedPilvi TK, Harala S, Korpela R, Mervaala EM (2009) Effects of high-calcium diets with different whey proteins on weight loss and weight regain in high-fat-fed C57BL/6J mice Br J Nutr 102 337–341
no DOI — not checkedHursel R, van der Zee L, Westerterp-Plantenga MS (2010) Effects of a breakfast yoghurt, with additional total whey protein or caseinomacropeptide-depleted alpha-lactalbumin-enriched whey protein, on diet-induced thermogenesis and appetite suppression Br J Nutr 103 775–780
no DOI — not checkedEFSA Panel on Dietetic Products, Nutrition and Allergies (NDA) (2010) Scientific Opinion on the substantiation of health claims related to whey protein and increase in satiety leading to a reduction in energy intake (ID 425), contribution to the maintenance or achievement of a normal body weight (ID 1683), growth or maintenance of muscle mass (ID 418, 419, 423, 426, 427, 429, 4307), increase in lean body mass during energy restriction and resistance training (ID 421), reduction of body fat mass during energy restriction and resistance training (ID 420, 421), increase in muscle strength (ID 422, 429), increase in endurance capacity during the subsequent exercise bout after strenuous exercise (ID 428), skeletal muscle tissue repair (ID 428) and faster recovery from muscle fatigue after exercise (ID 423, 428, 431), pursuant to Article 13(1) of Regulation (EC) No 1924/20061 EFSA J 8 1818
no DOI — not checkedSternhagen LG, Allen JC (2001) Growth rates of a human colon adenocarcinoma cell line are regulated by the milk protein alphalactalbumin Adv Exp Med Biol 501 115–120
no DOI — not checkedGustafsson L, Leijonhufvud I, Aronsson A et al (2004) Treatment of Skin Papillomas with Topical α-Lactalbumin-Oleic Acid N Engl J Med 350 2663–2672
no DOI — not checkedGustafsson L, Hallgren O, Mossberg A et al (2005) HAMLET kills tumor cells by apoptosis: structure, cellular mechanisms, and therapy J Nutr 135 1299–1303
no DOI — not checkedWong CW, Seow HF, Husband AJ, Regester GO et al (1997) Effects of purified bovine whey factors on cellular immune functions in ruminants Vet Immunol Immunopathol 56 85–96
no DOI — not checkedKayser H, Meisel H (1996) Stimulation of human peripheral blood lymphocytes by bioactive peptides derived from bovine milk proteins FEBS Lett 383 18–20
no DOI — not checkedJaziri M, Migliore-Samour D, Casabianca-Pignède MR et al (1992) Specific binding sites on human phagocytic blood cells for Gly-Leu-Phe and Val-Glu-Pro-Ile-Pro-Tyr, immunostimulating peptides from human milk proteins Biochim Biophys Acta 1160 251–261
no DOI — not checkedPihlanto-Leppälä A, Koskinen P, Piilola K et al (2000) Angiotensin I-converting enzyme inhibitory properties of whey protein digests: concentration and characterization of active peptides J Dairy Res 67 53–64
no DOI — not checkedNurminen M-L, Sipola M, Kaarto H et al (2000) Alpha-lactorphin lowers blood pressure measured by radiotelemetry in normotensive and spontaneously hypertensive rats Life Sci 66 1535–1543
no DOI — not checkedThomä-Worringer C, Sörensen J, López-Fandino R (2006) Health effects and technological features of caseinomacropeptide Int Dairy J 16 1324–1333
no DOI — not checkedYvon M, Beucher S, Guilloteau P, Le Huerou-Luron I et al (1994) Effects of caseinomacropeptide (CMP) on digestion regulation Reprod Nutr Dev 34 527–537
no DOI — not checkedChabance B, Marteau P, Rambaud JC et al (1998) Casein peptide release and passage to the blood in humans during digestion of milk or yogurt Biochimie 80 155–165
no DOI — not checkedBurton-Freeman BM (2008) Glycomacropeptide (GMP) is not critical to whey-induced satiety, but may have a unique role in energy intake regulation through cholecystokinin (CCK) Physiol Behav 93 379–387
no DOI — not checkedRoyle PJ, McIntosh GH, Clifton PM (2008) Whey protein isolate and glycomacropeptide decrease weight gain and alter body composition in male Wistar rats Br J Nutr 100 88–93
no DOI — not checkedGustafson DR, McMahon DJ, Morrey J, Nan R (2001) Appetite is not influenced by a unique milk peptide: caseinomacropeptide (CMP) Appetite 36 157–163
no DOI — not checkedKeogh JB, Woonton BW, Taylor CM et al (2010) Effect of glycomacropeptide fractions on cholecystokinin and food intake Br J Nutr 104 286–290
no DOI — not checkedBrody EP (2000) Biological activities of bovine glycomacropeptide Br J Nutr 84 S39–S46
no DOI — not checkedManso MA, López-Fandino R (2004) K-Casein macropeptides from cheese whey: Physicochemical, biological, nutritional, and technological features for possible uses Food Rev Int 20 329–355
no DOI — not checkedRequena P, González R, López-Posadas R et al (2010) The intestinal antiinflammatory agent glycomacropeptide has immunomodulatory actions on rat splenocytes Biochem Pharmacol 79 1797–1804
no DOI — not checkedLópez-Posadas R, Requena P, González R et al (2010) Bovine glycomacropeptide has intestinal antiinflammatory effects in rats with dextran sulfate-induced colitis J Nutr 140 2014–2019
no DOI — not checkedGapper LW, Copestake DEJ, Otter DE, Indyk HE (2007) Analysis of bovine immunoglobulin G in milk, colostrum and dietary supplements: a review Anal Bioanal Chem 389 93–109
no DOI — not checkedKorhonen HJT, Marnila P (2009) Bovine milk immunoglobulins against microbial human diseases In: Dairy Ingredients Food and Nutraceutical Uses Corredig M ed, Woodhead Publishing Limited Oxford, p 269–289
no DOI — not checkedScammel AW (2001) Production and uses of colostrums Aust J Dairy Technol 56 74–82
no DOI — not checkedTripathi V, Vashishtha B (2006) Bioactive compounds of colostrum and its application Food Rev Int 22 225–244
no DOI — not checkedCrittenden R, Buckley J, Cameron-Smith D et al (2009) Functional dairy protein supplements for elite athletes Aust J Dairy Technol 64 133–137
no DOI — not checkedKelly GS (2003) Bovine colostrums: a review of clinical uses Altern Med Rev 8 378–394, 2003
no DOI — not checkedWakabayashi H, Yamauchi K, Takase M (2006) Lactoferrin research, technology and application Int Dairy J 16 1241–1251
no DOI — not checkedMarnila P, Korhonen HJT (2009) Lactoferrin for human health In: Dairy Ingredients Food and Nutraceutical Uses Corredig M ed, Woodhead Publishing Limited Oxford, p 290–307
no DOI — not checkedZimecki M, Kruzel ML (2007) Milk-derived proteins and peptides of potential therapeutic and nutritive value J Exp Ther Oncol 6 89–106
no DOI — not checkedUshida Y, Sekine K, Kuhara T et al (1999) Possible chemopreventive effects of bovine lactoferrin on esophagus and lung carcinogenesis in the rat Jpn J Cancer Res 90 262–267
no DOI — not checkedMohan KV, Letchoumy PV, Hara Y, Nagini S (2008) Combination chemoprevention of hamster buccal pouch carcninogensis by bovine lactoferrin and black tea polyphenols Cancer Invest 26 193–201
no DOI — not checkedLee WJ, Farmer JL, Hilty M, Kim YB (1998) The protective effects of lactoferrin feeding against endotoxin lethal shock in germfree piglets Infect Immun 66 1421–1426
no DOI — not checkedBroxmeyer HE, Williams DE, Hangoc G et al (1987) The opposing actions in vivo on murine myelopoiesis of purified preparations of lactoferrin and the colony stimulating factors Blood Cells 13 31–48
no DOI — not checkedElrod KC, Moore WC, Abraham WM, Tanaka RD (1997) Lactoferrin, a potent tryptase inhibitor, abolishes late-phase airway responses in allergic sheep Am J Respir Crit Care Med 156 375–381
no DOI — not checkedCornish J (2004) Lactoferrin promotes bone growth BioMetals 17 331–335
no DOI — not checkedKussendrager KD, van Hooijdonk ACM (2000) Lactoperoxidase: physico-chemical properties, occurrence, mechanism of action and applications Br J Nutr 84 19–25
no DOI — not checkedSeifu E, Buys EM, Donkin EF (2005) Significance of the lactoperoxidase system in the dairy industry and its potential applications: a review Trends Food Sci Technol 16 137–154
no DOI — not checkedGauthier SF, Pouliot Y, Maubois J-L (2006) Growth factors from bovine milk and colostrum: composition, extraction and biological activities Lait 86 99–12
no DOI — not checkedMontoni A, Gauthier SF, Richard C et al (2009) Bovine colostrum as substrate for the preparation of growth factorenriched protein extracts: Identifying the optimal collection period during lactation Dairy Sci Technol 89 511–518
no DOI — not checkedErdmann K, Cheung BW, Schroder H (2008) The possible roles of food-derived bioactive peptides in reducing the risk of cardiovascular disease J Nutr Biochem 19 643–654
no DOI — not checkedPellegrini A (2003) Antimicrobial peptides from food proteins Curr Pharm Des 9 1225–1238
no DOI — not checkedMullally MM, Meisel H, FitzGerald RJ (1997) Angiotensin-I-converting enzyme inhibitory activities of gastric and pancreatic proteinase digests of whey proteins Int Dairy J 7 299–303
no DOI — not checkedVermeirssen V, van der Bent A, Van Camp J et al (2004) A quantitative in silico analysis calculates the angiotensin I converting enzyme (ACE) inhibitory activity in pea and whey protein digests Biochimie 86 231–239
no DOI — not checkedDzuiba J, Iwaniak A (2006) Database of protein and bioactive peptide sequences In: Nutraceutical Proteins and Peptides in Health and Disease Mine Y, Shahidi T eds, Taylor Francis Group, Boca Raton FL, p 543–563
no DOI — not checkedPripp AH (2005) Initial proteolysis of milk proteins and its effect on formation of ACE-inhibitory peptides during gastrointestinal proteolysis: a bioinformatic, in silico, approach Eur Food Res Technol 221 712–716
no DOI — not checkedMinkiewicz P, Dziuba J, Iwaniak A, Dziuba M, Darewicz M (2008) BIOPEP database and other programs for processing bioactive peptide sequences J AOAC Int 91 965–980
no DOI — not checkedVen van der C, Gruppen H, de Bont DBA, Voragen AGJ (2002) Optimisation of the angiotensin converting enzyme inhibition by whey protein hydrolysates using response surface methodology Int Dairy J 12 813–820
no DOI — not checkedRoufik S, Gauthier SF, Turgeon SL (2006) In vitro digestibility of bioactive peptides derived from bovine [beta]-lactoglobulin Int Dairy J 16 294–302
no DOI — not checkedPihlanto-Leppala A, Rokka T, Korhonen H (1998) Angiotensin I Converting Enzyme Inhibitory Peptides Derived from Bovine Milk Proteins Int Dairy J 8 325–331
no DOI — not checkedBelem MAF, Gibbs BF, Lee BH (1999) Proposing sequences for peptides derived from whey fermentation with potential bioactive sites J Dairy Sci 82 486–493
no DOI — not checkedPan D, Guo Y (2010) Optimization of sour milk fermentation for the production of ACEinhibitory peptides and purification of a novel peptide from whey protein hydrolysate Int Dairy J 20 472–479
no DOI — not checkedPaul M, Somkuti GA (2009) Degradation of milk-based bioactive peptides by yogurt fermentation bacteria Lett Appl Microbiol 49 345–350
no DOI — not checkedPihlanto-Leppälä A (2001) Bioactive peptides derived from bovine whey proteins: opioid and ACE-inhibitory peptides Trends Food Sci Technol 11 347–356
no DOI — not checkedPouliot Y, Gauthier SF, L’Heureux J (2000) Effect of peptide distribution on the fractionation of whey protein hydrolysate using nanofiltraton membranes Lait 80 113–120
no DOI — not checkedLapointe JF, Gauthier SF, Pouliot Y, Bouchard C (2003) Effect of hydrodynamic conditions on fractionation of beta-lactoglobulin tryptic peptides using nanofiltration membranes J Membr Sci 212 55–67
no DOI — not checkedLapointe JF, Gauthier SF, Pouliot Y, Bouchard C (2006) Selective separation of cationic peptides from a tryptic hydrolysate of beta-lactoglobulin by electrofiltration Biotechnol Bioeng 94 223–233
no DOI — not checkedRecio I, Visser S (1999) Two ion-exchange chromatographic methods for the isolation of antibacterial peptides from lactoferrin In situ enzymatic hydrolysis on an ion-exchange membrane J Chromatogr A 831 191–201
no DOI — not checkedPlate K, Beutel S, Buchholz H et al (2006) Isolation of bovine lactoferrin, lactoperoxidase and enzymatically prepared lactoferricin from proteolytic digestion of bovine lactoferrin using adsorptive membrane chromatography J Chromatogr A 1117 81–86
no DOI — not checkedWalsh DJ, Bernard H, Murray BA et al (2004) In vitro generation and stability of the lactokinin β-lactoglobulin fragment (142–148) J Dairy Sci 87 3845–3857
no DOI — not checkedVermeirssen V, Deplancke B, Tappenden KA, Camp J Van, Gaskins HR, Verstraete W (2002) Intestinal transport of the lactokinin Ala-Leu-Pro-Met-His-Ile-Arg through a Caco-2 Bbe monolayer J Peptide Sci 8 95–100
no DOI — not checkedFoltz M, van der Pijl PC, Duchateau GSMJE (2011) Current in vitro testing of bioactive peptides is not valuable J Nutr 140 117–118
no DOI — not checkedJauhiainen T, Korpela R (2007) Milk peptides and blood pressure J Nutr 137 825S–829S
no DOI — not checkedMurray BA, FitzGerald RJ (2007) Angiotensin converting enzyme inhibitory peptides derived from food proteins: Biochemistry, bioactivity and production Curr Pharm Des 13 773–791
no DOI — not checkedSaito T (2008) Antihypertensive peptides derived from bovine casein and whey proteins Adv Exp Med Biol 606 295–317
no DOI — not checkedBoelsma E, Kloek J (2009) Lactotripeptides and antihypertensive effects: A critical review Br J Nutr 101 776–786
no DOI — not checkedScholthauer R-C, Schollum LM, Reid JR et al (2006) Bioactive whey protein hydrolysate US Patent No US 7,148,034 B2
no DOI — not checkedPins JJ, Keenan JM (2006) Effects of whey peptides on cardiovascular disease risk factors J Clin Hypertens 8 775–782
no DOI — not checkedBallard K, Bruno R, Seip R et al (2009) Acute ingestion of a novel whey-derived peptide improves vascular endothelial responses in healthy individuals: a randomized, placebo controlled trial Nutr J 8 34
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