Open Access
Issue |
BIO Web of Conferences
Volume 81, 2023
The 4th International Conference on Environmentally Sustainable Animal Industry (ICESAI 2023)
|
|
---|---|---|
Article Number | 00010 | |
Number of page(s) | 9 | |
DOI | https://doi.org/10.1051/bioconf/20238100010 | |
Published online | 19 December 2023 |
- B. O. Alao, A.B. Falowo , A. Chulayo, V. Muchenje, The potential of animal byproducts in food systems: production, prospects and challenges, Sustainability, 9, 1–18, (2017) [Google Scholar]
- N. Zouari, N. Fakhfakh, W.B. Amara-Dali, M. Sellami, L. Msaddak, M. A. Ayadi, Turkey liver: Physicochemical characteristics and functional properties of protein fractions, Food and Bioproducts Processing, 89, 142–148, (2011) [CrossRef] [Google Scholar]
- K.U. Al Awwaly, I. Thohari, M. W. Apriliyani, D. Amertaningtyas, Extraction of chicken head proteins and evaluation of their functional properties, in Proceedings of the International Conference on Environmentally Sustainable Animal Industry, ICESAI, 18-19 November 2020, Malang, Indonesia (2020) [Google Scholar]
- T. R. Hakim, A. Pratiwi, Jamhari, N. A. Fitriyanto, Rusman, M. Z. Abidin, D. N. Matulessy, Y. Erwanto, Extraction of collagen from the skin of kacang goat and production of its hydrolysate as an inhibitor of angiotensin converting enzyme, Tropical Animal Science Journal, 44, 222–228, (2021) [CrossRef] [Google Scholar]
- K.U. Al Awwaly, S. Triatmojo, W. T. Artama, Y. Erwanto, Chemical composition and some functional properties of beef lung protein concentrate extracted by alkaline method, Jurnal Ilmu dan Teknologi Hasil Ternak, 10, 54–62, (2015) [CrossRef] [Google Scholar]
- [Y. Hou, Z. Wu, Z. Dai, G. Wang, G. Wu, Protein hydrolysates in animal nutrition: Industrial production, bioactive peptides, and functional significance, Journal of Animal Science and Biotechnology, 8, 1–13, (2017) [CrossRef] [PubMed] [Google Scholar]
- T. Lafarga, M. Hayes, Bioactive peptides from meat muscle and by-products: generation, functionality and application as functional ingredients, Meat Science, 98, 227–239, (2014) [CrossRef] [PubMed] [Google Scholar]
- E. Susanto, 2019, Bioactive Peptide as Antioxidant: Exploration in Chicken Foot. (Yogyakarta: Deepublish) [Google Scholar]
- A. A. Zaky, J. Simal-Gandara, J. B. Eun, J. H. Shim, A.M.A. El-Aty, Bioactivities, applications, safety, and health benefits of bioactive peptides from food and byproducts: a review, Frontiers in Nutrition, 8, 1–18, (2022) [Google Scholar]
- M. Akbarian, A. Khani, S. Eghbalpour, V. N. Uversky, Bioactive peptides: synthesis, sources, applications, and proposed mechanisms of action, International Journal of Molecular Sciences, 23, 1–30, (2022) [Google Scholar]
- D.E. Cruz-Casas, C. N. Aguilar, J.A. Ascacio-Valdés, R. Rodríguez-Herrera, M.L. Chávez-González, A.C. Flores-Gallegos, Enzymatic hydrolysis and microbial fermentation: the most favorable biotechnological methods for the release of bioactive peptides, Food Chemistry: Molecular Sciences, 3, 1–12, (2021) [Google Scholar]
- A. Pratiwi, T. R. Hakim, M. Z. Abidin, N. A. Fitriyanto, J. Jamhari, R. Rusman, Y. Erwanto, Angiotensin-converting enzyme inhibitor activity of peptides derived from Kacang goat skin collagen through thermolysin hydrolysis, Veterinary World, 14, 161167, (2021) [CrossRef] [PubMed] [Google Scholar]
- J.A. González-Noriega, M. Valenzuela-Melendres, A. Hernández–Mendoza, H. Astiazarán-García, M.Á. Mazorra-Manzano, E.A. Peña-Ramos, Hydrolysates and peptide fractions from pork and chicken skin collagen as pancreatic lipase inhibitors, Food Chemistry: X, 13, 1–7, (2022) [Google Scholar]
- J. O. Onuh, A. T. Girgih, R. E. Aluko, M. Aliani, In vitro antioxidant properties of chicken skin enzymatic protein hydrolysates and membrane fractions, Food Chemistry, 150, 366–373, (2014) [CrossRef] [PubMed] [Google Scholar]
- A. L. A. Gaspardi, D.C. da Silva, L. G. S. Ponte, F. Galland, V.S.N. da Silva, F. M. Simabuco, R. M. N. Bezerra, M. T. B. Pacheco, In vitro inhibition of glucose gastrointestinal enzymes and antioxidant activity of hydrolyzed collagen peptides from different species, Journal of Food Biochemistry, 46, 1–14, (2022) [Google Scholar]
- J. Sun, C. Zhou, J. Cao, J. He, Y. Sun, Y. Dang, D. Pan, Q. Xia, Purification and characterization of novel antioxidative peptides from duck liver protein hydrolysate as well as their cytoprotection against oxidative stress in HepG2 cells, Frontiers in Nutrition, 9, 1–12, (2022) [Google Scholar]
- M. López-Pedrouso, P. Borrajo, M. Pateiro, J. M. Lorenzo, D. Franco, Antioxidant activity and peptidomic analysis of porcine liver hydrolysates using alcalase, bromelain, flavourzyme and papain enzymes, Food Research International, 137, 1–9, (2020) [Google Scholar]
- E. Vimalraj, R. Ramani, V. A. Rao, M. Parthiban, R. Narendrababu, S. Arulkumar, Antidiabetic activity of peptides extracted from chicken intestine hydrolysate, The Pharma Innovation, 11, 1718–1721, (2022) [Google Scholar]
- Z. Khiari, M. Ndagijimana, M. Betti, Low molecular weight bioactive peptides derived from the enzymatic hydrolysis of collagen after isoelectric solubilization/precipitation process of turkey by-products, Poultry Science, 93, 2347–2362, (2014) [CrossRef] [PubMed] [Google Scholar]
- T. Pramualkijja, T. Pirak, S. R. Euston, Valorization of chicken slaughterhouse by products: Production and properties of chicken trachea hydrolysates using commercial proteases, International Journal of Food Properties, 24, 1642–1657, (2021) [CrossRef] [Google Scholar]
- X. Nie, D. Xu, L. Zhao, X. Meng, Antioxidant activities of chicken bone peptide fractions and their maillard reaction product: effects of different molecular weight distribution, International Journal of Food Properties, 20, 5457–5466, (2017) [Google Scholar]
- C. S. F. Bah, A. E. A. Bekhit, A. Carne, M. A. McConnell, Production of bioactive peptide hydrolysates from deer, sheep and pig plasma using plant and fungal protease preparations, Food Chemistry, 176, 54–63, (2015) [CrossRef] [PubMed] [Google Scholar]
- C. Alvarez, M. Rendueles, M. Diaz, The yield of peptides and amino acids following acid hydrolysis of haemoglobin from porcine blood, Animal Production Science, 52, 313–320, (2012) [CrossRef] [Google Scholar]
- Md. S. Islam, W. Hongxin, H. Admassu, A. A. Mahdi, M. Chaoyang, F. A. Wei, In vitro Antioxidant, Cytotoxic and Antidiabetic Activities of Protein Hydrolysates Prepared from Chinese Pond Turtle (Chinemys reevesii), Food Technology & Biotechnology, 59, 360–375, (2021) [CrossRef] [Google Scholar]
- A. M. E. Matinong, Y. Chisti, K. L. Pickering, R. G. Haverkamp, Collagen extraction from animal skin, Biology, 11, 1–15, (2022) [Google Scholar]
- L.L.S. Canabady-Rochelle, C. Harscoat-Schiavo, V. Kessler, A. Aymes, F. Fournier, J. M. Girardet, Determination of reducing power and metal chelating ability of antioxidant peptides: revisited methods, Food Chemistry, 183, 129–135, (2015) [CrossRef] [PubMed] [Google Scholar]
- M.G. Romero-Garay, E. Montalvo-Gonzalez, C. Hernandez-Gonzalez, A. SotoDominguez, E.M. Becerra-Verdin, and M.D.L. Garcia-Magana. Bioactivity of peptides obtained from poultry by-products: a review, Food Chemistry: X, 13, 1–10, (2022) [Google Scholar]
- M. Terashima, T. Baba, N. Ikemoto, M. Katayama, T. Morimoto, S. Matsumura, Novel angiotensin-converting enzyme (ACE) inhibitory peptides derived from boneless chicken leg meat, J. Agric. Food Chem, 58, 7432–7436, (2010) [CrossRef] [PubMed] [Google Scholar]
- Q. Liu, B. Kong, Y. L. Xiong, X. Xia, Antioxidant activity and functional properties of porcine plasma protein hydrolysate as influenced by the degree of hydrolysis, Food Chemistry, 118, 403–410, (2010) [CrossRef] [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.