Assessing Membrane-Protein Interactions Using Fourier Transform Infrared Spectroscopy Technique

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Abstract:

Protein fouling has been reported to be one of the main obstacles for the membrane processes applied in water treatment, pharmaceutical industry, and biotechnology, etc. The extent and nature of membrane fouling are by the interfacial interactions between membranes and protein, however, have not been fully understood. In recent years, a Fourier transform infrared (FTIR) spectroscopic method has been developed to quantify and analyze membrane fouling in various conditions and good results have been achieved. The scope of the current paper was to review literature on membrane–protein interactions using FTIR in the membrane systems. It will be conducive to further application of the membrane systems in the future.

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Advanced Materials Research (Volumes 955-959)

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1496-1499

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June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] K.J. Howe and M.M. Clark: Environ. Sci. Technol. Vol. 36 (2002), p.3571.

Google Scholar

[2] Y. Baek, H. Yoon, S. Shim, J. Choi and J. Yoon: Environ. Sci. Technol. Lett. in press.

Google Scholar

[3] A. Higuchi, M. Kyokon, S. Murayama, M. Yokogi, T. Hirasaki and S.I. Manabe: J. Membr. Sci. Vol. 236 (2004), p.137.

Google Scholar

[4] S. Luque, H. Mallubhotla, G. Gehlert, R. Kuriyel, S. Dzengeleski, S. Pearl and G. Belfort: Biotechnol. Bioeng. Vol. 65 (1999), p.247.

DOI: 10.1002/(sici)1097-0290(19991105)65:3<247::aid-bit1>3.0.co;2-h

Google Scholar

[5] S. RV. Castrillón, X. Lu, D.L. Shaffer and M. Elimelech: J. Membr. Sci. Vol. 450 (2014), p.331.

Google Scholar

[6] M. Hadidi and A.L. Zydney: J. Membr. Sci. Vol. 452 (2014), p.97.

Google Scholar

[7] G.D. Luca, F. Bisignano, F. Paone and S. Curcio: J. Membr. Sci. Vol. 452 (2014), p.400.

Google Scholar

[8] C.C. Ho and A.L. Zydney: J. Membr. Sci. Vol. 155 (1999), p.261.

Google Scholar

[9] G. Belfort, R.H. Davis and A.L. Zydney: J. Membr. Sci. Vol. 96 (1994), p.1.

Google Scholar

[10] C. Velasco, M. Ouammou, J. Calvo and A. Hernandez: J. Colloid Interface Sci. Vol. 266 (2003), p.148.

Google Scholar

[11] S.T. Loh, U. Beuscher, T.K. Poddar, A.G. Porter, J.M. Wingard, S.M. Husson and S.R. Wickramasinghe: J. Membr. Sci. Vol. 332 (2009), p.93.

Google Scholar

[12] C. Herrero, P. Prádanos, J. Calvo, F. Tejerina and A. Hernández: J. Colloid Interface Sci. Vol. 187 (1997), p.344.

DOI: 10.1006/jcis.1996.4662

Google Scholar

[13] R. Chan and V. Chen: J. Membr. Sci. Vol. 242 (2004), p.169.

Google Scholar

[14] C. Schmidt, O. Töpfer, A. Langhoff, W. Oppermann and G. Schmidt-Naake: Chem. Mater. Vol. 19 (2007), p.4277.

DOI: 10.1021/cm070174g

Google Scholar

[15] R. Hiesgen, I. Wehl, E. Aleksandrova, E. Roduner, A. Bauder and K.A. Friedrich: Int. J. Energy Res. Vol. 34 (2010), p.1223.

Google Scholar

[16] C. Rein, K. Pszon-Bartosz, K.B. Stibius, T. Bjornholm and C. Helix-Nielsen: Langmuir Vol. 27 (2011), p.499.

DOI: 10.1021/la103632q

Google Scholar

[17] J. Kiefer, N.H. Rasul, P.K. Ghosh and E. von Lieres: J. Membr. Sci. Vol. 452 (2014), p.152.

Google Scholar

[18] S. Belfer, R. Fainchtain, Y. Purinson and O. Kedem: J. Membr. Sci. Vol. 172 (2000), p.113.

Google Scholar

[19] T. Maruyama, S. Katoh, M. Nakajima, H. Nabetani, T.P. Abbott, A. Shono and K. Satoh: J. Membr. Sci. Vol. 192 (2001), p.201.

Google Scholar

[20] G. Kang, Z. Liu, H. Yu and Y. Cao: Desalin. Water Treat. Vol. 37 (2012), p.139.

Google Scholar

[21] K.J. Kim, A.G. Fane, M. Nystroem and A. Pihlajamaki: J. Membr. Sci. Vol. 134 (1997), p.199.

Google Scholar

[22] S. Salgın, S. Takaç and T.H. Özdamar: Sep. Sci. Technol. Vol. 40 (2005), p.1191.

Google Scholar

[23] S. Salgın, S. Takaç and T.H. Özdamar: J. Membr. Sci. Vol. 278 (2006), p.251.

Google Scholar

[24] J. Cho, G. Amy, J. Pellegrino and Y. Yoon: Desalination Vol. 118 (1998), p.101.

Google Scholar

[25] M. Rabiller-Baudry, M. Le Maux, B. Chaufer and L. Begoin: Desalination Vol. 146 (2002), p.123.

DOI: 10.1016/s0011-9164(02)00503-9

Google Scholar

[26] S. Belfer, Y. Purinson and O. Kedem: Desalination Vol. 119 (1998), p.189.

Google Scholar

[27] X. Jin, X. Huang and E.M. Hoek: Environ. Sci. Technol. Vol. 43 (2009), p.3580.

Google Scholar

[28] T. Maruyama, S. Katoh, M. Nakajima, H. Nabetani, T.P. Abbott, A. Shono and K. Satoh: J. Membr. Sci. Vol. 192 (2001), p.201.

Google Scholar

[29] X. Sun: Mod. Appl. Sci. Vol. 4 (2010), p.71.

Google Scholar

[30] D. Kuzmenko, E. Arkhangelsky, S. Belfer, V. Freger and V. Gitis: Desalination Vol 179 (2005), p.323.

DOI: 10.1016/j.desal.2004.11.078

Google Scholar

[31] A. Gugliuzza, M.C. Aceto and E. Drioli: Polym. Int. Vol. 58 (2009), p.1452.

Google Scholar