Chemistry Reference
In-Depth Information
Dutra, R.C., Tarassuk, N.P., Kleiber, M. 1958. Origin of the carbon dioxide produced in the
browning reaction of evaporated milk. J. Dairy Sci. 41, 1017-1023.
Dworschak, E., Heged¨ s, M. 1974. Effect of heat treatment on the nutritive value of proteins in
milk powder. Acta Aliment. Acad. Scient. Hungaricae 6, 337-347.
Earley, R.A., Hansen, A.P. 1982. Effect of process and temperature during storage on ultra-high
temperature steam-injected milk. J. Dairy Sci. 65, 11-16.
Eichner, K., Ciner-Doruk, M. 1979. Formation and stability of Amadori compounds in low
moisture model systems. Lebensm. Unters. Forsch. 168, 360-367.
Eichner, K., Karel, M. 1972. The influence of water content and water activity on the sugar-
amino browning reaction in model systems under various conditions. J. Agric. Food Chem.
20, 218-223.
Elliott, A.J., Datta, N., Amenu, B., Deeth, H.C. 2005. Heat-induced and other chemical changes
in commercial UHT milks. J. Dairy Res. 72, 442-446.
El-Shafei, M.M., Al-Amoudy, N.S., Said, A.K. 1988. Effect of the drying process on the nutritive
value of milk, Part 2. Biological evaluation. Nahrung, 32, 559-564.
El Zeany, B-D. 1982. Oxidised lipids-proteins browning reaction. Part 7: effects of carbonyl
group reactants. Rev. Ital. Sost. Grasse 59, 423-425.
Erbersdobler, H.F., Dehn-M¨ ller, B. 1989. Formation of early Maillard products during UHT
treatment of milk. In: Heat-Induced Changes in Milk, Bulletin 238 (P.F. Fox, ed.), pp. 62-70,
International Dairy Federation, Brussels.
Erbersdobler, H.F., Dehn, B., Nangpal, A., Reuter, H. 1987. Determination of furosine in heated
milk as a measure of heat intensity during processing. J. Dairy Res. 54, 147-151.
Evangelisti, F., Calcagno, C., Nardi, S., Zunin, P. 1999. Deterioration of protein fraction by
Maillard reaction in dietetic milks. J. Dairy Res. 66, 237-243.
Evangelisti, F., Calcagno, C., Zunin, P. 1993. Changes induced by Maillard reaction in milk
formulas. Riv. Sci. Aliment. 22, 77-82.
Evangelisti, F., Calcagno, C., Zunin, P. 1994. Relationship between blocked lysine and carbohy-
drate composition of infant formulas. J. Food Sci. 59, 335-337.
Fayle, S.E., Gerrard, J.A. 2002. The Maillard Reaction, Royal Society of Chemistry, Cambridge,
UK.
FDA. 2007. Exploratory data on furan in food: Individual food products, www.cfsan.fda.gov/
dms/furandat.html (accessed 10/8/07).
Feather, M.S. 1970. The conversion of d-xylose and d-glucuronic acid to 2-furaldehyde.
Tetrahedron Lett. 48, 4143-4145.
Feather, M.S. 1981. Amine-assisted sugar dehydration reactions. Prog. Food Nutr. Sci. 5, 37-45.
Feather, M.S. 1989. The formation of deoxyglycosuloses (deoxyosones) and their reactions
during the processing of food. In: Frontiers in Carbohydrate Research - 1 (R.P. Millane,
J.N. Be Miller, R. Chandrasekaran, eds.), pp. 66-73, Elsevier Science Publishers, New York.
Ferrer, E., Alegria, A., Farre, R., Abellan, P. Romero, F., Clemente, G. 2003. Evolution of
available lysine and furosine contents in milk-based infant formulas throughout the shelf-life
storage period. J. Sci. Food Agric. 83, 465-472.
Ferretti, A., Flanagan, V.P. 1971. The lactose-casein (Maillard) browning system: Volatile
components. J. Agric. Food Chem. 19, 245-249.
Ferretti, A., Flanagan, V.P. 1972. Steam volatile constituents of stale non-fat dry milk. The role
of the Maillard reaction in staling. J. Agric. Food Chem. 20, 695-698.
Finot, P.-A. 2005. The absorption and metabolism of modified amino acids in processed foods.
J. AOAC Int. 88, 894-903.
Finot, P.A., Deutsch, R., Bujard, E. 1981. The extent of the Maillard reaction during the
processing of milk. Prog. Food Nutr. Sci. 5, 345-355.
Fox, P.F. 1981. Heat-induced changes in milk preceding coagulation. J. Dairy Sci. 64, 2127-2137.
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