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190 Advances in textile biotechnology
lenting h b m, schroeder m, gübitz g m, cavaco-paulo a and shen j (2007), ‘New
enzyme-based process direction to prevent wool shrinking without substantial
tensile strength loss’, Biotechnol Lett, 28, 711–716.
levene r and shakkour g (1995), ‘Wool fibres of enhanced lustre obtained by enzy-
matic descaling’, J Soc Dyers Color, 111, 352–359.
levene r, cohen y and barkai d (1996), ‘Applying proteases to confer improving
shrink-resistance to wool’, J Soc Dyers Color, 112, 6–10.
liu y, wu g and gu l (2008), ‘Enzymatic treatment of PET fabrics for improved
hydrophilicity’, AATCC Rev, 8(2), 44–48.
maclaren j and milligan b (1981), Wool science; the chemical reactivity of the wool
fi bre, Science Press, Marrickuille, Australia, pp. 299–300.
mahmoodi n m, arami m, mazaheri f and rahimi s (2010), ‘Degradation of sericin
(degumming) of Persian silk by ultrasound and enzymes as a cleaner and envi-
ronmentally friendly process’, J Cleaner Prod, 18(2), 146–151.
mall j k, sims p and carr c m (2002), ‘Surface chemical analysis of lipase enzyme
treatments on wool and mohair’, J Text Inst, 93(1), 43–51.
marsh r e, corey r b and pauling l (1955a), ‘The structure of Tussah silk fi broin
(with a note on the structure of β-poly-l-alanine)’, Acta Cryst, 8, 710–715.
marsh r e, corey r b and pauling l (1955b), ‘An investigation of the structure of
silk fi broin’, Biochem Biophys Acta, 16, 1–34.
mcdevitt j p and winkler j (1998), ‘Method for enzyme treatment of wool’, United
States Patent 6051033.
meade s j, dyer j m, caldwell j p and bryson w g (2005), ‘Covalent attachment
of novel surface modifications to wool fabric via removal of surface lipids’,
Proceedings of the 11th International Wool Textile Research Conference, Leeds,
UK
meade s j, dyer j m, caldwell j p and bryson w g (2008), ‘Covalent modifi cation
of wool fibre surface: removal of the outer lipid layer’, Text Res J, 78, 943–957.
mitra g, bhattacharya s k, mazumdar p k and moon m a (2009), ‘A review on
chemical processing of silk’, Colourage, 56(2), 48–52.
mita k, ichimura s and james c t (1994), ‘Highly repetitive structure and its organi-
zation of the silk fi broin gene’, J Mol Evol, 38, 583–592.
moncrieff r w (1953), Wool shrinkage and its prevention, The National Trade Press
Ltd, London, 322–332.
mori m and inagaki n (2006), ‘Relationship between anti-felting properties and
physicochemical properties of wool fibers treated with Ar-plasma’, Text Res J,
76(9), 687–694.
nc-iubmb (nomenclature committee of the international union of biochemistry
and molecular biology) (2008), Enzyme nomenclature: recommendations of pep-
tidase nomenclature, http://www.chem.qmul.ac.uk/iubmb/enzyme/EC34/.
nolte h, bishop d p and höcker h (1996), ‘Effects of proteolytic and lipolytic
enzymes on untreated and shrink-resist-treated wool’, J Text Inst, 87, Part 1, No
1, 212–226.
okada m, kimura y, maekawa m and joko k (2008), ‘SEM images of wool fi ber
cross sections etched by means of protease digestion’, Sen-i Gakkaishi 64(5),
118–124.
pearson a j c, anderson c a and wood g f (1976), ‘Ultrafiltration of wool scouring
effl uents’, J – Water Pollut Control Fed, 48(5), 945–953.
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