A Review on the Use of Chitosan and its Derivatives as Radical Scavenger and Metal Ions Chelating Agent

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Abstract:

Chitosan has unique properties among biopolymers, especially due to the presence of several reactive groups, such as OH and NH2, which can react with many compounds. Chitosan and its derivatives are able to chelate metal ions, eliminate free radicals and resist oxidation. The development of chitosan and its derivatives used as metal ions chelating agent and free radical scavenger was overviewed. In addition, the application of chitosan and its derivatives and their potentiality in paper industry was prospected.

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Advanced Materials Research (Volumes 734-737)

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2218-2221

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August 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] M. Rinaudo. Prog. Polym. Sci., 31:603-632(2006).

Google Scholar

[2] Xue, C., Yu, G., Hirata, T., Terao, J., and Lin, H. in: Antioxidative activities of several marine polysaccharides evaluated in a phosphatidylcholine-liposomal suspension and organic solvents, volume 62 of Bioscience, Biotechnology, and Biochemistry, 206-209(1998).

DOI: 10.1271/bbb.62.206

Google Scholar

[3] Je, J.Y., Park, P.J. and Kim, S.K.. Free radical scavenging properties of hetero- chitooligosaccharides using an ERS spectroscopy. Food Chem., 42:381-387(2004).

DOI: 10.1016/j.fct.2003.10.001

Google Scholar

[4] Wenming Xie,Peixin Xu and Qing Liu. Antioxidant activity of water-soluble chitosan derivative. Bioorg. Med. Chem. Lett. 11:699-1701(2001).

Google Scholar

[5] Chiang, M.T., Yao, H.T. and Chen, H.C.. Biosci. Biotechnol. Biochem., 64:965-971(2000).

Google Scholar

[6] P. Park, J.Je, and S. Kim. Carbohydr. Polym., 55:17-22(2004).

Google Scholar

[7] Kim, K.W. and Thomas, R.L.. Antioxidative activity of chitosans with varying molecular weights. Food Chem., 101:308-313(2007).

DOI: 10.1016/j.foodchem.2006.01.038

Google Scholar

[8] Ji, X., Zhong, Z., Chen, X., Xing, R., Liu, S., Wang, L.and Lia, P.. Preparation of 1,3,5-thiadiazine-2-thione derivatives of chitosan and their potential antioxidant activity in vitro. Bioorg. Med. Chem. Lett. 17:4275-4279(2007).

DOI: 10.1016/j.bmcl.2007.05.020

Google Scholar

[9] Matsugo, S., Mizuie, M., Matsugo, M., Ohwa, R., Kitano, K., and Konishi, T. in: Synthesis and antioxidant activity of watersoluble chitosan derivatives, volume 44 of Biochemistry and Molecular Biology International, 939-948(1998).

DOI: 10.1080/15216549800202002

Google Scholar

[10] Santhosh, S., Sini, T.K., Anandan, R.and Mathew, P.T.. Toxicology, 219:53-59(2006).

Google Scholar

[11] Roberts, G.A.F. Chitin Chemistry(Trans MacMillan, London, U.K. 350(1992)).

Google Scholar

[12] Guibal, E.. Metal ion interactions with chitosan: a review. Separ. Purif. Technol., 38(1):43-74(2004).

Google Scholar

[13] Varma, A.J., Deshpande, S.V. and Kennedy, J.F.. Metal complexation by chitosan and its derivatives: a review. Carbohyd. Polym., 55(1):77-93(2004).

DOI: 10.1016/j.carbpol.2003.08.005

Google Scholar

[14] Inoue Katsutoshi, Yoshizuka Kazuhsm., et al.. JP,166(04):236A2(1992).

Google Scholar

[15] DottiLuca, Dellben Franco. Carbohydr. Polym., 18(4):273-282(1992).

Google Scholar

[16] Z K Yang, Y TWang, Y R Tang. J Appl Polym Sci., 75(10) :1255-1260(2002).

Google Scholar

[17] Kurita K, Sannan T, Iwakura Y.. J Appl Polym Sci., 23:511- 521(1979).

Google Scholar

[18] Muzzarelli R A A. Chitin. New York, Pergamon press, 134(1977).

Google Scholar

[19] P. Lertsutthiwong, M.M. Nazhad, S. Chandrkrachang, and W.F. Stevens. Appita J., 57(4):274 (2004).

Google Scholar

[20] M. Nishiyama. Annals of the High Performance Paper Society, Japan, 23:11(1983).

Google Scholar

[21] G.G. Allan, J.P. Carroll, Y. Hirabayashi, M. Muvundamina, and J.G. Winterowd. Material Research Society Symposium Proceedings, 197-239 (1990).

Google Scholar

[22] M. Laleg. "Proceedings 87th Pulp and Paper Technical Association of Canada, Annual Meeting -Technical Section", C67-C75(2001).

Google Scholar

[23] Skorikova, E.E., Kolyuzhnaya, R.I., and Vikhoreva R.A.. Vysokomol. Soedin., 381:61-65(1996).

Google Scholar

[24] Shepherd, R., Reader, S., and Falshaw, A.. Glycoconjugate J., 14:535-542(1997).

DOI: 10.1023/a:1018524207224

Google Scholar

[25] Bykova, V.M. and Nemtsev, S.V.. Khimiya khitina I khitozana (Chemistry of Chitin and Chitosan), Moscow, Nauka, 6-22(2002).

Google Scholar

[26] Mi Zhang and Tianwei Tan. J. Bioact. Compat. Polym., 18:391-400(2003).

Google Scholar