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Original Articles

In Vitro Angiotensin I-Converting Enzyme Inhibition of Casein Hydrolysate Responsible for Plastein Reaction in Ethanol-Water Medium, Solvent Fractionation, and Protease Digestion

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Pages 1577-1590 | Received 30 Aug 2012, Accepted 07 Dec 2012, Published online: 21 Mar 2014

REFERENCES

  • Papadogiannis, D.E.; Protogerou, A.D. Blood pressure variability: A confounder and a cardiovascular risk factor. Hypertension Research 2011, 34, 162–163.
  • Sieber, R.; Bütikofer, U.; Egger, C.; Portmann, R.; Walther, B.; Wechsler, D. ACE-inhibitory activity and ACE-inhibiting peptides in different cheese varieties. Dairy Science and Technology 2010, 90 (1), 47–73.
  • Li, G.H.; Lea, G.W.; Shi, Y.H.; Sundar, S. Angiotensin I-converting enzyme inhibitory peptides derived from food proteins and their physiological and pharmacological effects. Nutrition Research 2004, 24 (7), 469–486.
  • Erdmann, K.; Cheung, B.W.Y.; Schröder, H. The possible roles of food-derived bioactive peptides in reducing the risk of cardiovascular disease. The Journal of Nutritional Biochemistry 2008, 19 (10), 643–654.
  • Yu, Y.K.; Hu, J.E.; Miyaguchi, Y.; Bai, X.F.; Du, Y.G.; Lin, B.C. Isolation and characterization of angiotensin I-converting enzyme inhibitory peptides derived from porcine hemoglobin. Peptides 2006, 27 (11), 2950–2956.
  • Oshima, G.; Shimabukuro, H.; Nagasawa, K. Peptide inhibitors of angiotensin I-converting enzyme in digests of gelatin by bacterial collagenase. Biochimica et Biophysica Acta-Enzymology 1979, 566 (1), 128–137.
  • Gobbetti, M.; Ferranti, P.; Smacchi, E.; Goffredi, F.; Addeo, F. Production of angiotensin-I-converting-enzyme-inhibitory peptides in fermented milks started by Lactobacillus delbrueckii subsp. bulgaricus SS1 and Lactococcus lactis subsp. cremoris FT4. Applied and Environmental Microbiology 2000, 66 (9), 3898–3904.
  • Pihlanto, A.; Virtanen, T.; Korhonen, H. Angiotensin I converting enzyme (ACE) inhibitory activity and antihypertensive effect of fermented milk. International Dairy Journal 2010, 20 (1), 3–10.
  • Raghavan, S.; Kristinsson, H.G. ACE-inhibitory activity of tilapia protein hydrolysates. Food Chemistry 2009, 117 (4), 582–588.
  • Jang, A.; Lee M. Purification and identification of angiotensin converting enzyme inhibitory peptides from beef hydrolysates. Meat Science 2005, 69 (4), 653–661.
  • Mullally, M.M.; Meisel, H.; FitzGerald, R.J. Identification of a novel angiotensin I-converting enzyme inhibitory peptide corresponding to a tryptic fragment of bovine β-lactoglobulin. FEBS Letters 1997, 27 (2–3), 99–101.
  • Meisel, H. Biochemical properties of regulatory peptides derived from milk proteins. Biopolymers 1997, 43 (2), 119–128.
  • Miguel, M.; Contreras, M.M.; Recio, I.; Aleixandre, A. ACE-inhibitory and antihypertensive properties of a bovine casein hydrolysate. Food Chemistry 2009, 112 (1), 211–214.
  • Contreras, M.M.; Carrón, R.; Montero, M. J.; Ramos, M.; Recio, I. Novel casein-derived peptides with antihypertensive activity. International Dairy Journal 2009, 19 (10), 566–573.
  • Miguel, M.; Alonso, M.J.; Salaices, M.; Aleixandre, A.; López-Fandiño, R. Antihypertensive, ACE-inhibitory, and vasodilator properties of an egg white hydrolysate: Effect of a simulated intestinal digestion. Food Chemistry 2007, 104 (1), 163–168.
  • Fujita, H.; Usui, H.; Kurahashi, K.; Yoshikawa, M. Isolation and characterization of Ovokinin, a bradykinin B1 agonist peptide derived from ovalbumin. Peptides 1995, 16 (5), 785–790.
  • Rao, S.Q.; Sun, J.; Liu, Y.T.; Zeng, H.W.; Su, Y.J.; Yang, Y.J. ACE inhibitory peptides and antioxidant peptides derived from in vitro digestion hydrolysate of hen egg white lysozyme. Food Chemistry 2012, 135 (3), 1242–1252.
  • Tomatsu, M.; Shimakage, A.; Shinbo, M.; Yamada, S.; Takahashi, S. Novel angiotensin I-converting enzyme inhibitory peptides derived from soya milk. Food Chemistry 2013, 136 (2), 612–616.
  • Wu, J.; Ding, X. Hypotensive and physiological effect of angiotensin I-converting enzyme inhibitory peptides derived from soy protein on spontaneously hypertensive rats. Journal of Agricultural and Food Chemistry 2001, 49 (1), 501–506.
  • Yamashita, M.; Arai, S.; Fujimaki, M. Plastein reaction for food protein improvement. Journal of Agricultural and Food Chemistry 1976, 24 (6), 1100–1104.
  • Andrews, A.T.; Alichanidis, E. The plastein reaction revisited: Evidence for a purely aggregation reaction mechanism. Food Chemistry 1990, 35 (4), 243–261.
  • Combes, D.; Lozano, P. α-Chymotrypsin in plastein synthesis influence of water activity. Annals of the New York Academy of Science (Enzyme Engineering XI) 1992, 672, 409–414.
  • Eriksen, S.; Fagerson, I.S. The plastein reaction and its application: A review. Journal of Food Science 1976, 41 (3), 490–493.
  • Yamashita, M.; Arai, S.; Imaizumi, Y.; Amano, Y.; Fujimaki, M. A one-step process for incorporation of L-methionine into soy protein by treatment with papain. Journal of Agricultural and Food Chemistry 1979, 27 (1), 52–56.
  • Zhao, X.H.; Li, Y.Y. An approach to improve ACE inhibitory activity of casein hydrolysates with plastein reaction catalyzed by Alcalase. European Food Research and Technology 2009, 229 (5), 795–805.
  • Gao, B.; Zhao, X.H. Modification of soybean protein hydrolysates by alcalase-catalyzed plastein reaction and the ACE-inhibitory activity of the modified product in vitro. International Journal of Food Properties 2012, 15 (5), 982–996.
  • Xu, W.; Li, T.J.; Zhao, X.H. Coupled Neutrase-catalyzed plastein reaction mediated the ACE-inhibitory activity in vitro of casein hydrolysates prepared by Alcalase. International Journal of Food Properties 2013, 16 (2), 429–443.
  • Zhao, X.H.; Wu, D.; Li, T.J. Preparation and the radical scavenging activity of papain-catalyzed casein plasteins. Dairy Science and Technology 2010, 90 (5), 521–535.
  • Zhao, X.H.; Song J.T. Evaluation of antioxidant properties in vitro of plastein-reaction-stressed soybean protein hydrolysate. International Journal of Food Properties 2014, 17 (1), 152–162.
  • Zhao, X.H.; Li, Y.Y. Preparation of Alcalase-catalyzed casein plasteins in the presence of proline addition and the ACE-inhibitory activity of the plasteins in vitro. European Food Research and Technology 2010, 231 (2), 197–201.
  • Sun, H.; Zhao, X.H. Angiotensin I-converting enzyme inhibition and enzymatic resistance in vitro of casein hydrolysate treated by plastein reaction and fractionated with ethanol/water or methanol/water. International Dairy Journal 2012, 24 (1), 27–32.
  • Sarath, G.; De La Motte, R.S.; Wagner, F.W. Protease assay methods. In: Proteolytic Enzymes, a Practical Approach; Beynon, R.J.; Bond, J.S.; Eds.; IRL Press: Oxford, UK, 1989, 25–55.
  • International Dairy Federation (IDF). Determination of the Nitrogen (Kjeldahl method) and Calculation of the Crude Protein Content. IDF Standard 20B. International Dairy Federation: Brussels, Belgium, 1993.
  • Church, F.C.; Swaisgood, H.E.; Porter, D.H.; Catignani, G.L. Spectrophotometric assay using o-phthaldialdehyde for determination of proteolysis in milk and isolated milk proteins. Journal of Dairy Science 1983, 66 (6), 1219–1227.
  • Adler-Nissen, J. Determination of the degree of hydrolysis of food protein hydrolysates by trinitrobenzenesulfonic acid. Journal of Agricultural and Food Chemistry 1979, 27 (6), 1256–1261.
  • Cushman, D.W.; Cheung, H.S. Spectrophotometric assay and properties of the angiotensin -converting enzyme of rabbit lung. Biochemical Pharmacology 1971, 20 (7), 1637–1648.
  • George, B.; Janssen, A.E.M.; Halling, P.J. Water activity fails to predict critical hydration level for enzyme activity in polar organic solvents: Interconversion of water concentrations and activities. Enzyme and Microbial Technology 1997, 20 (6), 471–477.
  • Williams, R.J.H.; Brownsell, V.L.; Andrews, A.T. Application of the plastein reaction to mycoprotein: I. Plastein synthesis. Food Chemistry 2001, 72 (3), 329–335.
  • Qian, Z.J.; Je, J.Y.; Kim, S.K. Antihypertensive effect of angiotensin I converting enzyme-inhibitory peptide from hydrolysates of bigeye tuna dark muscle, Thunnus obesus. Journal of Agricultural and Food Chemistry 2007, 55 (21), 8398–8403.
  • Hang, M.; Zhao, X.H. Fermentation time and ethanol/water-based solvent system impacted in vitro ACE-inhibitory activity of the extract of Mao-tofu fermented by Mucor spp. CyTA-Journal of Food 2012, 10 (2), 137–143.
  • Markland, F.S.; Smith, E.L. Substilisins: Primary Structure, Chemical, and Physical Properties, Boyer, P.D.; Ed.; The Enzyme, 1st Ed., Academic Press: New York. 561–608, 1971.

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