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126    Advances in textile biotechnology


              5.7    Sources of further information and advice
              Araújo R, Casal M and Cavaco-Paulo A (2008), ‘Application of enzymes
                for textile fi bres  processing’,  Biocatal Biotransform,  26, 332–349. doi:
                10.1080/10242420802390457.
              Cavaco-Paulo A and Gübitz G M (2003), Textile processing with enzymes,
                Cambridge, Woodhead Publishing Ltd.
              Edwards J V, Buschle-Diller G and Goheen S C (2006), Modifi ed fi bres with
                medical and specialty applications, Netherlands, Springer.
              Eriksson K-E L and Cavaco-Paulo A (1998), Enzyme applications in fi bre
                processing (ACS Symposium Series), Washington, American Chemical
                Society.

              Masson J C (1995), Acrylic fibre technology and applications, New York,
                CRC.
              Matamá T (2009), Surface functionalization of acrylic and cellulose acetate
                fi bres, Germany, VDM Verlag Dr. Müller.
              Rustemeyer P (2004),  Cellulose acetates: properties and applications
                (Macromolecular Symposia), Weinheim, Wiley-VCH.
              Silva C and Cavaco-Paulo A (2008), ‘Biotransformations in synthetic fi bres’,
                Biocatal Biotransform, 26, 350–356. doi: 10.1080/10242420802357845.


              5.8    References
              altaner c, saake b and puls j (2001), ‘Mode of action of acetylesterases associated
                with endoglucanases towards water-soluble and -insoluble cellulose acetates’,
                Cellulose, 8, 259–265. doi: 10.1023/A:1015164311521.

              altaner  c,  saake  b and  puls  j (2003),  ‘Specificity of an  Aspergillus niger
                esterase deacetylating cellulose acetate’,  Cellulose,  10, 85–95. doi: 10.1023/
                A:1023010330865.
              araújo r, silva c, o’neill a, micaelo n, gübitz g, soares c m, casal m and cavaco-
                paulo a (2007), ‘Tailoring cutinase activity towards polyethylene terephthalate
                and polyamide 6.6 fi bres’,  J Biotechnol,  128, 849–857. doi: 10.1016/j.
                jbiotec.2006.12.028.
              arnold  f  h (2001), ‘Combinatorial and computational challenges for biocatalyst
                design’, Nature, 409, 253–257. doi: 10.1038/35051731.
              ball  p (2001), ‘Biocatalysis: synthesis methods that exploit enzymatic activities’,
                Nature, 409, 225. doi: 10.1038/35051694.
              bandyopadhyay a k, nagasawa t, asano y, fujishiro k, tani y and yamada h (1986),

                ‘Purification and characterization of benzonitrilases from Arthrobacter sp. Strain
                J-1’, Appl Environ Microbiol, 51, 302–306.
              banerjee  a,  sharma  r and  banerjee  u  c (2002), ‘The nitrile-degrading enzymes:
                current status and future prospects’, Appl Microbiol Biotechnol, 60, 33–44. doi:
                10.1007/s00253-002-1062-0.
              banerjee a, sharma r and banerjee u c (2003), ‘A rapid and sensitive fl uorometric
                assay method for the determination of nitrilase activity’, Biotechnol Appl Biochem,
                37, 289–293. doi: 10.1042/BA20020106.



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