Open Access
Issue |
E3S Web Conf.
Volume 602, 2025
International Conference on Materials and Energy (ICOME2024)
|
|
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Article Number | 02004 | |
Number of page(s) | 7 | |
Section | Materials | |
DOI | https://doi.org/10.1051/e3sconf/202560202004 | |
Published online | 14 January 2025 |
- O. Villamil, H. Váquiro, J.F. Solanilla, Fish viscera protein hydrolysates: Production, potential applications and functional and bioactive properties. Food Chem, 224 (2017). [Google Scholar]
- K. Hsu, Purification of antioxidative peptides prepared from enzymatic hydrolysates of tuna dark muscle by-product. Food Chem, 122 (1)(2010). [PubMed] [Google Scholar]
- R. Slizyte, K. Rommi, R. Mozuraityte R, P. Eck P, K. Five, T. Rustad, Bioactivities of fish protein hydrolysates from defatted salmon backbones. Biotechnol. Rep, 11(2016). [Google Scholar]
- S-K. Kim, I. Wijesekara, Development and biological activities of marine-derived bioactive peptides: A review. J. Funct. Foods, 2(1) (2010). [Google Scholar]
- L. Najafian. A.S. Babji, A review of fish-derived antioxidant and antimicrobial peptides: Their production, assessment, and applications, Pept, 33(1) (2012). [Google Scholar]
- J. Venkatesan, S. Anil, S.K. Kim, M.S. Shim, Marine Fish Proteins and Peptides for Cosmeceuticals: A Review. Mar Drugs, 15(5)(2017). [Google Scholar]
- W.J. Lahl, S.D. Braun, Enzymatic production of protein hydrolysates for food use. J. Food Technol, 48(10)(1994). [Google Scholar]
- V.K. Pasupuleti, S. Braun, State of the Art Manufacturing of Protein Hydrolysates. In: Pasupuleti VK, Demain AL, editors. Protein Hydrolysates in Biotechnology (Springer Netherlands, 2010). [CrossRef] [Google Scholar]
- M. Chalamaiah, B. Dinesh Kumar, R. Hemalatha, T. Jyothirmayi, Fish protein hydrolysates: proximate composition, amino acid composition, antioxidant activities and applications: a review. Food Chem, 135(4) (2012). [Google Scholar]
- J.G dos Santos Aguilar, H.H. Sato, Microbial proteases: Production and application in obtaining protein hydrolysates. Food Res. Int, 103(2018). [Google Scholar]
- P. Fernandes, Enzymes in Fish and Seafood Processing. Front. bioeng. biotechnol. 4(59)(2016). [CrossRef] [Google Scholar]
- S. Ranathunga, N. Rajapakse, S-K Kim, Purification and characterization of antioxidative peptide derived from muscle of conger eel (Conger myriaster). Eur Food Res Technol, 222(3) (2006). [Google Scholar]
- G. Maroti, A. Kereszt, E. Kondorosi, P. Mergaert, Natural roles of antimicrobial peptides in microbes, plants and animals. Res Microbiol, 162(4)(2011). [Google Scholar]
- L-j. Zhang, R.L. Gallo RL, Antimicrobial peptides. Curr Biol, 26(1)(2016). [Google Scholar]
- M.M. Bradford, A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem, 72 (1)(1976). [Google Scholar]
- M.R. Yeaman, N.Y. Yount NY, Mechanisms of antimicrobial peptide action and resistance. Pharmacol Rev, 55(1)(2003). [Google Scholar]
- V. Rajanbabu, J-Y. Chen, Applications of antimicrobial peptides from fish and perspectives for the future. Pept, 32(2)(2010). [Google Scholar]
- Y. Chen, M.T. Guarnieri A.I. Vasil, M.L. Vasil C.T. Mant R.S. Hodges, Role of Peptide Hydrophobicity in the Mechanism of Action of α-Helical Antimicrobial Peptides. Antimicrob Agents Chemother, 51(4) (2007). [Google Scholar]
- P. Bulet, R. Stöcklin, L. Menin, Anti-microbial peptides: from invertebrates to vertebrates. Immunol. Rev, 198(1)(2004). [Google Scholar]
- K.V.R. Reddy, R.D. Yedery, C. Aranha, Antimicrobial peptides: premises and promises. Int. J. Antimicrob, 24(6)(2004). [Google Scholar]
- E.B. Daliri, D.H. Oh, B.H. Lee BH. Bioactive Peptides. Foods. 6, 5 (2017). [Google Scholar]
- Y. Su, Isolation and identification of pelteobagrin, a novel antimicrobial peptide from the skin mucus of yellow catfish (Pelteobagrus fulvidraco). Comp Biochem Physiol B Biochem Mol Biol, 158(2)(2011). [Google Scholar]
- W. Tang, H. Zhang, L. Wang, H. Qian, X. Qi, Targeted separation of antibacterial peptide from protein hydrolysate of anchovy cooking wastewater by equilibrium dialysis. Food Chem, 168(2015). [Google Scholar]
- Y. Huan, Q. Kong, H. Mou, H. Yi, Antimicrobial Peptides: Classification, Design, Application and Research Progress in Multiple Fields. ront. microbiol, 11(2020). [Google Scholar]
- J.H. Lee, K.S. Cho, J. Lee, J. Yoo, J. Lee, J. Chung, Diptericin-like protein: an immune response gene regulated by the anti-bacterial gene induction pathway in Drosophila. Gene, 271(2)(2001). [Google Scholar]
- Y.M. Kwon, H.J. Kim, Y.I. Kim, Y.J. Kang, I.H. Lee, B.R. Jin BR, Comparative analysis of two attacin genes from Hyphantria cunea. Comp Biochem Physiol B Biochem Mol Biol, 151(2)(2008). [Google Scholar]
- D.I. Chan, E.J. Prenner, H.J. Vogel, Tryptophanand arginine-rich antimicrobial peptides: structures and mechanisms of action. Biochim Biophys Acta, 1758(9)(2006). [Google Scholar]
- A. Walrant, A. Bauzá, C. Girardet, I.D. Alves, S. Lecomte, F. Illien. Ionpair-π interactions favor cell penetration of arginine/tryptophan-rich cell-penetrating peptides. Biochim Biophys Acta Biomembr, 1862(2)(2020). [Google Scholar]
- M.B. Strøm, O. Rekdal, J.S. Svendsen. Antimicrobial activity of short arginineand tryptophanrich peptides. J. Pept. Sci, 8(8)(2002). [Google Scholar]
- M. Bacalum, L. Janosi, F. Zorila, A-M. Tepes, C. Ionescu, E. Bogdan, Modulating short tryptophanand arginine-rich peptides activity by substitution with histidine. Biochim Biophys Acta Gen Subj, 1861(7) (2017). [Google Scholar]
- J. Wang, S. Chou, L. Xu, X. Zhu, N. Dong, A. Shan, High specific selectivity and Membrane-Active Mechanism of the synthetic centrosymmetric α-helical peptides with Gly-Gly pairs. Sci. Rep, 5, 1, 15963 (2015). [CrossRef] [Google Scholar]
- H-K. Kang, C. Kim, C.H. Seo, Y. Park, The therapeutic applications of antimicrobial peptides (AMPs): a patent review. J. Microbiol, 55(1)(2017). [Google Scholar]
- S. Ravichandran, K. Kumaravel, G. Rameshkumar and T.T. AjithKumar. Antimicrobial peptides from the marine fishes. Res J Immunol, 3(2010). [Google Scholar]
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