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Affinity Precipitation of Proteins 51<br />

23. So, L. L. and Goldstein, I. J. (1967) Protein–carbohydrate interaction. IV. Application<br />

of the quantitative precipitin method to polysaccharide–Concanavalin A<br />

interaction. J. Biol. Chem. 242, 1617–1622.<br />

24. Galaev, I. Yu. and Mattiasson, B. (1999) Smart polymers and what they could do<br />

in biotechnology and medicine. Trends Biotechnol. 17, 335–340.<br />

25. Schild, H. G. (1992) Poly(N-isopropylacrylamide): experiment, theory and applications.<br />

Prog. Polym. Sci. 17, 163–249.<br />

26. Porath, J. (1992) Immobilized metal affinity chromatography. Protein Expr. Purif.<br />

3, 263–281.<br />

27. Kumar, A., Galaev, I. Yu., and Mattiasson, B. (1998) Affinity precipitation<br />

of –amylase inhibitor from wheat meal by metal chelate affinity binding<br />

using Cu(II)-loaded copolymers of 1-vinylimidazole with N-isopropylacrylamide.<br />

Biotechnol. Bioeng. 59, 695–704.<br />

28. Liu, K. J. and Gregor, H. P. (1965) Metal-polyelectrolyte. X. Poly-Nvinylimidazole<br />

complexes with zinc(II) and with copper(II) and nitrilotriacetic<br />

acid. J. Phys. Chem. 69, 1252–1259.<br />

29. Todd, R. J., Johnson, R. D., and Arnold, F. H. (1994) Multiple-site binding<br />

interactions in metal-affinity chromatography. I. Equilibrium binding of engineered<br />

histidine-containing cytochromes c. J. Chromatogr. 662, 13–26.<br />

30. Gold, D. H. and Gregor, H. P. (1960) Metal–polyelectrolyte complexes. VIII. The<br />

poly-N-vinylimidazole–copper(II) complex. J. Phys. Chem. 64, 1464–1467.<br />

31. Balan, S., Murphy, J., Galaev, I., Yu., Kumar, A., Fox, G. E., Mattiasson, B.,<br />

and C. Willson, R. C. (2003). Metal chelate affinity precipitation of RNA and<br />

purification of plasmid DNA. Biotechnol. Lett. 25, 1111–1116.<br />

32. Urry, D. W, Luan, C. H., Harris, C., and Parker, T. M. (1997) Protein-based<br />

materials with a profound range of properties and applications: the elastin T t<br />

hydrophobic paradigm. In: McGrath, K. and Kaplan, D. (ed.), Proteinbased<br />

Materials, (pp. 133–177) Birkhauser, Boston.<br />

33. Kostal, J., Mulchandani, A., and Chen, W. (2001) Tunable biopolymers for heavy<br />

metal removal. Macromolecules 34, 2257–2261.<br />

34. Carter, S., Rimmer, S., Sturdy, A., and Webb, M. (2005) Highly<br />

branched stimuli responsive poly[(N-isopropylacrylamide)-co-(1,2-propandiol-3-<br />

methacrylate)]s with protein binding functionality. Macromol. Biosci. 5, 373–378.<br />

35. Carter, S., Hunt, B., and Rimmer, S. (2005) Highly branched poly(N-isopropylacrylamide)s<br />

with imidazole end groups prepared by radical polymerization in the<br />

presence of a styryl monomer containing a dithioester group. Macromolecules 38,<br />

4595–4603.<br />

36. Smith, P. K., Krohn, R. I., Hermanson, G. T., Mallia, A. K., Gartner, F. H.,<br />

Provenzano, M. D., Fujimoto, E. K., Goeke, N. M., Olson, B. J., and Klenk, D. C.<br />

(1985) Measurement of protein using bicinchoninic acid. Anal. Biochem. 150,<br />

76–85.<br />

37. Galaev, I. Yu., Kumar, A., and Mattiasson, B. (1999) Metal-copolymer complexes<br />

of N-isopropylacrylamide for affinity precipitation of proteins. J. Mol. Sci-Pure<br />

Appl. Chem. A36, 1093–1105.

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