93
Fruitier-Arnaudin I, Cohen M, Bordenave S, Sannier F, Piot J-M (2002) Comparative effects
of angiotensin IV and two hemorphins on angiotensin-converting enzyme activity. Peptides
23(8):1465–1470
Fukada Y, Mizutani S, Nomura S, Hara W, Matsui R, Nagai K, Murakami Y, Washio N, Ikemoto
N, Terashima M (2016) Antioxidant activities of a peptide derived from chicken dark meat. J
Food Sci Technol 53(5):2476–2481
Fukui K, Shiomi H, Takagi H, Hayashi K, Kiso Y, Kitagawa K (1983) Isolation from bovine brain
of a novel analgesic pentapeptide, neo-kyotorphin, containing the Tyr-Arg (kyotorphin) unit.
Neuropharmacology 22(2):191–196
Geldof AA, Mastbergen SC, Henrar RE, Faircloth GT (1999) Cytotoxicity and neurocytotoxicity
of new marine anticancer agents evaluated using in vitro assays. Cancer Chemother Pharmacol
44(4):312–318
Gelse K, Pöschl E, Aigner T (2003) Collagens – structure, function, and biosynthesis. Adv Drug
Deliv Rev 55(12):1531–1546
Gomes I, Grushko JS, Golebiewska U, Hoogendoorn S, Gupta A, Heimann AS, Ferro ES, Scarlata
S, Fricker LD, Devi LA (2009) Novel endogenous peptide agonists of cannabinoid receptors.
FASEB J 23(9):3020–3029
Gomes I, Dale CS, Casten K, Geigner MA, Gozzo FC, Ferro ES, Heimann AS, Devi LA (2010)
Hemoglobin-derived peptides as novel type of bioactive signaling molecules. AAPS J
12(4):658–669
González-García E, Marina ML, García MC (2014) Plum (Prunus domestica L.) by-product as a
new and cheap source of bioactive peptides: extraction method and peptides characterization.
J Funct Foods 11:428–437
Gunasekera SP, Pomponi SA, McCarthy PJ (1994) Discobahamins A and B, new peptides from the
Bahamian deep water marine sponge Discodermia sp. J Nat Prod 57(1):79–83
Guo H, Kouzuma Y, Yonekura M (2009) Structures and properties of antioxidative peptides derived
from royal jelly protein. Food Chem 113(1):238–245
Haque E, Chand R, Kapila S (2008) Biofunctional properties of bioactive peptides of milk origin.
Food Rev Int 25(1):28–43
Hartmann R, Wal J-M, Bernard H, Pentzien A-K (2007) Cytotoxic and allergenic potential of
bioactive proteins and peptides. Curr Pharm Des 13(9):897–920
Hazato T, Kase R, Ueda H, Takagi H, Katayama T (1986) Inhibitory effects of the analgesic neuropeptides kyotorphin and neo-kyotorphin on enkephalin-degrading enzymes from monkey
brain. Biochem Int 12(3):379–383
Herbst JJ, Ross SA, Scott HM, Bobin SA, Morris NJ, Lienhard GE, Keller SR (1997) Insulin
stimulates cell surface aminopeptidase activity toward vasopressin in adipocytes. Am J Physiol
Endocrinol Metab 272(4):E600–E606
Hervé-Grépinet V, Réhault-Godbert S, Labas V, Magallon T, Derache C, Lavergne M, Gautron
J, Lalmanach A-C, Nys Y (2010) Purification and characterization of avian β-defensin 11, an
antimicrobial peptide of the hen egg. Antimicrob Agents Chemother 54(10):4401–4409
Ibrahim H (1996) Insights into the structure-function relationships of ovalbumin, ovotransferrin,
and lysozyme. In: Hen Eggs: Basic and Applied Science, Taylor & Francis, p 37
Ibrahim HR, Sugimoto Y, Aoki T (2000) Ovotransferrin antimicrobial peptide (OTAP-92)
kills bacteria through a membrane damage mechanism. Biochim Biophys Acta Gen Subj
1523(2-3):196–205
Inoue N, Hamasaki A, Hidaka S, Miura N, Fukahori M, Maruyama M, Kawahara S, Ohta K,
Muguruma M (2013) Analysis of the components of porcine liver hydrolysate and examination of the antioxidant activity and angiotensin converting enzyme (ACE)-inhibiting activity.
Yakugaku Zasshi 133(1):107–115
Jäkälä P, Vapaatalo H (2010) Antihypertensive peptides from milk proteins. Pharmaceuticals
3(1):251–272
Jang A, Jo C, Kang K-S, Lee M (2008) Antimicrobial and human cancer cell cytotoxic effect of synthetic angiotensin-converting enzyme (ACE) inhibitory peptides. Food Chem 107(1):327–336
5 Bioactive Peptides and Their Natural Sources
Fruitier-Arnaudin I, Cohen M, Bordenave S, Sannier F, Piot J-M (2002) Comparative effects
of angiotensin IV and two hemorphins on angiotensin-converting enzyme activity. Peptides
23(8):1465–1470
Fukada Y, Mizutani S, Nomura S, Hara W, Matsui R, Nagai K, Murakami Y, Washio N, Ikemoto
N, Terashima M (2016) Antioxidant activities of a peptide derived from chicken dark meat. J
Food Sci Technol 53(5):2476–2481
Fukui K, Shiomi H, Takagi H, Hayashi K, Kiso Y, Kitagawa K (1983) Isolation from bovine brain
of a novel analgesic pentapeptide, neo-kyotorphin, containing the Tyr-Arg (kyotorphin) unit.
Neuropharmacology 22(2):191–196
Geldof AA, Mastbergen SC, Henrar RE, Faircloth GT (1999) Cytotoxicity and neurocytotoxicity
of new marine anticancer agents evaluated using in vitro assays. Cancer Chemother Pharmacol
44(4):312–318
Gelse K, Pöschl E, Aigner T (2003) Collagens – structure, function, and biosynthesis. Adv Drug
Deliv Rev 55(12):1531–1546
Gomes I, Grushko JS, Golebiewska U, Hoogendoorn S, Gupta A, Heimann AS, Ferro ES, Scarlata
S, Fricker LD, Devi LA (2009) Novel endogenous peptide agonists of cannabinoid receptors.
FASEB J 23(9):3020–3029
Gomes I, Dale CS, Casten K, Geigner MA, Gozzo FC, Ferro ES, Heimann AS, Devi LA (2010)
Hemoglobin-derived peptides as novel type of bioactive signaling molecules. AAPS J
12(4):658–669
González-García E, Marina ML, García MC (2014) Plum (Prunus domestica L.) by-product as a
new and cheap source of bioactive peptides: extraction method and peptides characterization.
J Funct Foods 11:428–437
Gunasekera SP, Pomponi SA, McCarthy PJ (1994) Discobahamins A and B, new peptides from the
Bahamian deep water marine sponge Discodermia sp. J Nat Prod 57(1):79–83
Guo H, Kouzuma Y, Yonekura M (2009) Structures and properties of antioxidative peptides derived
from royal jelly protein. Food Chem 113(1):238–245
Haque E, Chand R, Kapila S (2008) Biofunctional properties of bioactive peptides of milk origin.
Food Rev Int 25(1):28–43
Hartmann R, Wal J-M, Bernard H, Pentzien A-K (2007) Cytotoxic and allergenic potential of
bioactive proteins and peptides. Curr Pharm Des 13(9):897–920
Hazato T, Kase R, Ueda H, Takagi H, Katayama T (1986) Inhibitory effects of the analgesic neuropeptides kyotorphin and neo-kyotorphin on enkephalin-degrading enzymes from monkey
brain. Biochem Int 12(3):379–383
Herbst JJ, Ross SA, Scott HM, Bobin SA, Morris NJ, Lienhard GE, Keller SR (1997) Insulin
stimulates cell surface aminopeptidase activity toward vasopressin in adipocytes. Am J Physiol
Endocrinol Metab 272(4):E600–E606
Hervé-Grépinet V, Réhault-Godbert S, Labas V, Magallon T, Derache C, Lavergne M, Gautron
J, Lalmanach A-C, Nys Y (2010) Purification and characterization of avian β-defensin 11, an
antimicrobial peptide of the hen egg. Antimicrob Agents Chemother 54(10):4401–4409
Ibrahim H (1996) Insights into the structure-function relationships of ovalbumin, ovotransferrin,
and lysozyme. In: Hen Eggs: Basic and Applied Science, Taylor & Francis, p 37
Ibrahim HR, Sugimoto Y, Aoki T (2000) Ovotransferrin antimicrobial peptide (OTAP-92)
kills bacteria through a membrane damage mechanism. Biochim Biophys Acta Gen Subj
1523(2-3):196–205
Inoue N, Hamasaki A, Hidaka S, Miura N, Fukahori M, Maruyama M, Kawahara S, Ohta K,
Muguruma M (2013) Analysis of the components of porcine liver hydrolysate and examination of the antioxidant activity and angiotensin converting enzyme (ACE)-inhibiting activity.
Yakugaku Zasshi 133(1):107–115
Jäkälä P, Vapaatalo H (2010) Antihypertensive peptides from milk proteins. Pharmaceuticals
3(1):251–272
Jang A, Jo C, Kang K-S, Lee M (2008) Antimicrobial and human cancer cell cytotoxic effect of synthetic angiotensin-converting enzyme (ACE) inhibitory peptides. Food Chem 107(1):327–336
5 Bioactive Peptides and Their Natural Sources
