Chemical composition and sensory profiling of coffees treated with asparaginase to decrease acrylamide formation during roasting.
Acrylamide
/ analysis
Asparaginase
Asparagine
/ analysis
Coffea
/ chemistry
Coffee
/ chemistry
Taste
Humans
Volatile Organic Compounds
/ analysis
Cooking
/ methods
Alkaloids
/ analysis
Chlorogenic Acid
/ analysis
Caffeine
/ analysis
Male
Food Handling
/ methods
Maillard Reaction
Hot Temperature
Chromatography, High Pressure Liquid
Seeds
/ chemistry
Female
Acrylamide
Asparaginase
Asparagine
Chlorogenic acids
Coffee and health
Maillard reaction
Organic volatile compounds
Sensory analysis
Specialty coffee
Steam treatment
Journal
Food research international (Ottawa, Ont.)
ISSN: 1873-7145
Titre abrégé: Food Res Int
Pays: Canada
ID NLM: 9210143
Informations de publication
Date de publication:
Jun 2024
Jun 2024
Historique:
received:
21
01
2024
revised:
08
04
2024
accepted:
16
04
2024
medline:
11
5
2024
pubmed:
11
5
2024
entrez:
10
5
2024
Statut:
ppublish
Résumé
Acrylamide is an amide formed in the Maillard reaction, with asparagine as the primary amino acid precursor. The intake of large amounts of acrylamide has induced genotoxic and carcinogenic effects in hormone-sensitive tissues of animals. The enzime asparaginase is one of the most effective methods for lowering the formation of acrylamide in foods such as potatoes. However, the reported sensory outcomes for coffee have been unsatisfactory so far. This study aimed to produce coffees with reduced levels of acrylamide by treating them with asparaginase while retaining their original sensory and bioactive profiles. Three raw samples of Coffea arabica, including two specialty coffees, and one of Coffea canephora were treated with 1000, 2000, and 3000 ASNU of the enzyme. Asparagine and bioactive compounds (chlorogenic acids-CGA, caffeine, and trigonelline) were quantified in raw and roasted beans by HPLC and LC-MS, while the determination of acrylamide and volatile organic compounds was performed in roasted beans by CG-MS. Soluble solids, titratable acidity, and pH were also determined. Professional cupping by Q-graders and consumer sensory tests were also conducted. Results were analyzed by ANOVA-Fisher, MFA, PCA and Cluster analyses, with significance levels set at p ≤ 0.05. Steam treatment alone decreased acrylamide content by 18.4%, on average, and 6.1% in medium roasted arabica and canefora coffees. Average reductions of 32.5-56.0% in acrylamide formation were observed in medium roasted arabica beans when 1000-3000 ASNU were applied. In the canefora sample, 59.4-60.7% reductions were observed. However, steam treatment primarily caused 17.1-26.7% reduction of total CGA and lactones in medium roasted arabica samples and 13.9-22.0% in canefora sample, while changes in trigonelline, caffeine, and other evaluated chemical parameters, including the volatile profiles were minimal. Increasing enzyme loads slightly elevated acidity. The only sensory changes observed by Q-graders and or consumers in treated samples were a modest increase in acidity when 3000 ASNU was used in the sample with lower acidity, loss of mild off-notes in control samples, and increased perception of sensory descriptors. The former was selected given the similarity in chemical outcomes among beans treated with 2000 and 3000 ASNU loads.
Identifiants
pubmed: 38729693
pii: S0963-9969(24)00403-4
doi: 10.1016/j.foodres.2024.114333
pii:
doi:
Substances chimiques
Acrylamide
20R035KLCI
Asparaginase
EC 3.5.1.1
Asparagine
7006-34-0
Coffee
0
Volatile Organic Compounds
0
trigonelline
3NQ9N60I00
Alkaloids
0
Chlorogenic Acid
318ADP12RI
Caffeine
3G6A5W338E
Types de publication
Journal Article
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
114333Informations de copyright
Copyright © 2024 Elsevier Ltd. All rights reserved.
Déclaration de conflit d'intérêts
Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.