Wine Chemistry and Biochemistry

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210 M.V. Moreno-Arribas et al.


Alcaide-Hidalgo, J.M., Moreno-Arribas, M.V., Polo, M.C., & Pueyo, E. (2008). Partial character-
ization of peptides from red wines. Changes during malolactic fermentation and ageing with
lees.Food Chem., 107, 622–630.
Alexandre, H., Heintz, D., Chassagne, D., Guilloux-Benatier, M., Charpentier, C., & Feuillat, M.
(2001). Protease A activity and nitrogen fractions released during alcoholic fermentation and
autolysis in enological conditions.J. Ind. Microbiol. Biotechnol., 26, 235–240.
Bartolom ́e, B., Moreno-Arribas, V., Pueyo, E., & Polo, M.C. (1997). On-line photodiode array
detection and OPA-derivatization for identification of small peptides from wine.J. Agric. Food
Chem., 45, 3374–3381.
Cheynier, V., Souquet, J.M., & Moutounet, M. (1989). Glutathione content and glutathione to
hydroxycinamic acid ratio inVitis viniferagrapes and musts.Am. J. Enol. Vitic., 40, 320–324.
Colagrande, O., & Silva, A. (1981). Aspects qualitatives et technologiques de lapplication
des methodes thermiques dans la production des vins mousseux.Conn. Vigne Vin, 15,
179–192.
Desportes, C., Charpentier, M., Duteurtre, B., Maujean, A., & Duchiron, F. (2000). Liq-
uid chromatographic fractionation of small peptides from wine.J. Chromatogr. A, 893,
281–291.
Desportes, C., Charpentier, M., Duteurtre, B., Maujean, A., & Duchiron, F. (2001). Isolation, iden-
tification, and organoleptic characterization of low-molecular-weight peptides from white wine.
Am. J. Enol. Vitic., 52, 376–380.
Doi, E., Shibata, D., & Matoba, T. (1981). Modified colorimetric ninhydrin methods for peptidase
assay.Anal. Biochem., 118, 173–184.
Dos Santos, A.M., Feuillat, M., &Charpentier, C. (2000). Flor yeast metabolism in a model system
similar to cellar ageing of the french Evolution of some by-products, nitrogen compounds and
polysaccharides.Vitis, 39, 129–134.
Elskens, M.T., Jaspers, C.L., & Penninckx, M.J. (1991). Glutathione as an endogenous sulphur
source in the yeastSaccharomyces cerevisiae.J. Gen. Microbiol., 137, 637–644.
Feuillat, M., Bidan, P., & Rosier,V. (1977). Croissance des bact ́eries lactiques `a partir des princi-
paux constituants azot ́es du vin.Ann. Technol. Agric., 28, 435–447.
Feuillat, M., Brillant, G.,& Rochard, J. (1980). Mise en ́evidence d’une production de proteaes
exocellulaires par les levures au cours de la fermentation alcoolique du mo ˆut de raisin.Conn.
Vigne Vin, 14, 37–52.
G ́omez-Ruiz J.A., Ramos, M., & Recio, I. (2004) Identification of angiotensin-converting enzyme
inhibitory peptides in Manchego cheese by high-performance liquid chromatography-tamdem
mass spectrometry.J. Chromatog. A, 1054, 269–277.
Gonz ́alez-Llano, D., Herraiz, T., & Polo, M.C. (2004). Peptides. In: M.L. Leo Nollet (Ed.),Hand-
book of Food Analysis, Vol. 1: Physical Characterization and Nutrient Analysis. Chapter 6 (pp.
125–166). New York: Marcel Dekker.
Lavigne, V., Pons, A., & Dubourdieu, D. (2007). Assay of glutathion in must and wines using
capillary electrophoresis and laser-induced fluorescence detection. Changes in concentra-
tion in dry white wines during alcoholic fermentation and aging.J. Chromatog. A, 1139,
130–135.
Leit ́ao, M.C., Teixeira, H.C., Barreto Crespo, M.T., & San Rom ́ao, M.V. (2000). Biogenic amines
occurence in wine. Amino acid decarboxylase and proteolytic activities expression byOeno-
coccus oeni.J. Agric. Food Chem., 48, 2780–2784.
Lin, J.Y. (2003). Antihypertensive effects of tannins isolated from traditional Chinese herbs as
non-specific inhibitors of angiontensin converting enzyme.Life Sci., 73, 1543–1555.
Luguera, C., Moreno-Arribas, M.V., Pueyo, E., & Polo, M.C. (1997). Capillary electrophorestic
analysis of wine proteins. Modifications during the manufacture of sparkling wines.J. Agric.
Food Chem., 45, 3766–3770.
Manca de Nadra, M.C., Farias, M., Moreno-Arribas, M.V., Pueyo, E., & Polo, M.C. (1997). Pro-
teolitic activity ofLeuconostoc oenos: Effect on proteins and polypeptides from white wine.
FEMS Microbiol. Lett., 150, 135–139.

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