Author
Listed:
- M. Courel
(UMR 1145 Ingénierie Procédés Aliments, AgroParisTech, INRA, F-91300 Massy, France)
- L. Ait-Ameur
(AgroParisTech, F-75231 Paris Cedex 05, France)
- E. Capuano
(Universita Degli Studi di Napoli Federico II, I-80055 Portici, Italy)
- V. Fogliano
(Universita Degli Studi di Napoli Federico II, I-80055 Portici, Italy)
- F. J. Morales
(Consejo Superior de Investigaciones Científicas, E-28040 Madrid, Spain *E-mail: mathilde.courel@agroparistech.fr$2)
- F. Courtois
(UMR 1145 Ingénierie Procédés Aliments, AgroParisTech, INRA, F-91300 Massy, France)
- I. Birlouez-Aragon
(AgroParisTech, F-75231 Paris Cedex 05, France)
Abstract
This work aimed at studying the influence of baking temperature and formulation on the formation of undesirable Maillard compounds called neoformed contaminants (NFC) in a model cookie system. Four NFCs were observed as furosine (FUR), carboxymethyllysine (CML), hydroxymethylfurfural (HMF) and acrylamide (ACR) for three baking temperatures - 150, 200 and 230°C - and three recipe variables as sugar type, fat saturation level and leavening agent. The results showed significant accumulation of all neoformed contaminants along baking with specifically strong temperature dependence for HMF and ACR while CML and FUR were more time dependent. The type of sugar used is determinant regarding NFC formation: glucose tends to generate more HMF than sucrose at low baking temperatures and more CML whatever the baking temperature. The substitution of sugar by a sugar alcohol like maltitol, allows strongly limiting HMF production. Surprisingly, no promoting effect of ammonium carbonate on ACR could be evidenced.
Suggested Citation
M. Courel & L. Ait-Ameur & E. Capuano & V. Fogliano & F. J. Morales & F. Courtois & I. Birlouez-Aragon, 2009.
"Effects of Formulation and Baking Conditions on Neo-formed Contaminants in Model Cookies,"
Czech Journal of Food Sciences, Czech Academy of Agricultural Sciences, vol. 27(SpecialIs), pages 93-95.
Handle:
RePEc:caa:jnlcjf:v:27:y:2009:i:specialissue1:id:954-cjfs
DOI: 10.17221/954-CJFS
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