Macrowine 2021
IVES 9 IVES Conference Series 9 IBMP-Polypenol interactions: Impact on volatility and sensory perception in model wine solution

IBMP-Polypenol interactions: Impact on volatility and sensory perception in model wine solution

Abstract

3-Isobutyl-2-methoxypyrazine (IBMP) is one of the key molecules in wine aroma with a bell pepper aroma and a very low threshold in wine, 1-6 ng/L for white wine and 10-16 ng/L in red wine1. The differences in these thresholds are likely due to IBMP-non volatile matrix interactions. It has indeed been shown that polyphenols may influence the volatility of flavor compounds2. In the present study, we focus on IBMP-polyphenols interactions in relation to volatility and sensory perception in model wine solution. Methods: 1. GC-MS Static Headspace Analysis: Samples were analyzed by Static headspace analysis with an Agilent 7890A gas chromatograph coupled to HP 5975C mass spectrometry detector (Agilent Technologies, Santa Clara, CA, USA). The analyses of polyphenols and IBMP in model wine were all performed in 10ml vial flasks with volumes of 1ml of model wine volume. IBMP was quantified in Single Ion Monitoring (SIM) mode. The ions used for SIM mode were m/z 94, 121, 154. All the solutions were at fixed pH and ethanol concentration (pH 3.5, 12% Ethanol). For each experiment a control of IBMP, polyphenol, a blank and a mix between IBMP and polyphenol were prepared. 2. Sensory Analysis: Triangular tests were performed by trained panelists (n=26) to orthonasally differentiate between IBMP on its own and IBMP in the presence of a polyphenol. 3. NMR Spectroscopy : Spectra were performed on an Agilent 500 MHz DD2 NMR spectrometer (Agilent Technologies, Santa Clara, CA, USA).Titrations of polyphenols were obtained by addition of IBMP solubilized in CD3OD (~200mM) to quercetin or polydatin (~20mM) CD3OD solution. Absolute concentrations of both aroma and polyphenols were accurately determined from the surface integration of well-separated 1D 1H signal using qNMR method. Results: 1. The headspace analysis showed that polydatin and quercetin decreased the volatility of IBMP. 2. Compared to the control (IBMP without polyphenol), significant results were found in sensory analysis (triangular tests) for polytadin (P < 0030) and quercetin (P < 0000) in presence of IBMP at 8 ng/L in model wine solution 3. Variations in NMR 1H chemical shifts were observed in titration experiments which suggest different possible sites for the interactions of IBMP with the polyphenols

[1] D. Sidhu, J.Lund, Y. Kotseridis, C.Saucier (2015). Methoxypyrazine Analysis and influence of Viticultural and Enological Procedures on their Levels in Grapes, Musts, and Wines, Critical reviews in Food Science and Nutrition, 55:4, 485-502, [2]. Aronson, J., & Ebeler, S. E. (2004). Effect of polyphenol compounds on the headspace volatility of flavors. American Journal of Enology and Viticulture, 55 :1, 13-21.

Publication date: May 17, 2024

Issue: Macrowine 2016

Type: Article

Authors

Cédric Saucier*, Audrey Bloem, Christine Le Guernevé, Damien Lorenzi, Elizabeth Johansson Filote, Nicolas Bouvier, Peggy Rigou, Veronique Cheynier

*Université de Montpellier

Contact the author

Tags

IVES Conference Series | Macrowine | Macrowine 2016

Citation

Related articles…

Evaluation of Polarized Projective Mapping as a possible tool for attributing South African Chenin blanc dry wine styles

Multiple Factor Analysis (MFA) According to the Chenin blanc Association of South Africa, there are three recognized dry wine styles, Fresh and Fruity (FF), Rich and Ripe Unwooded (RRU), and Rich and Ripe Wooded (RRW), classically attributed with the help of sensory evaluation. One of the “rapid methods” has drawn our attention for the purpose of simplifying and making style attribution for large sample sets, evaluated during different sessions, more robust. Polarized Projective Mapping (PPM) is a hybrid of Projective Mapping (PM) and Polarised Sensory Positioning (PSP). It is a reference-based method in which poles
(references) are used for the evaluation of similarities and dissimilarities between samples.

Reaction Mechanisms of Copper and Iron with Hydrogen Sulfide and Thiols in Model Wine

Fermentation derived sulfidic off-odors due to hydrogen sulfide (H2S) and low molecular weight thiols are commonly encountered in wine production and removed by Cu(II) fining. However, the mechanism underlying Cu(II) fining remains poorly understood, and generally results in increased Cu concentration that lead to deleterious reactions in finished wine. The present study describes a mechanistic investigation of the iron and copper mediated reaction of H2S, cysteine, 3-sulfanylhexan-1-ol, and 6-sulfanylhexan-1-ol with oxygen. The concentrations of H2S, thiols, oxygen, and acetaldehyde were monitored over time. It was found that Cu(II) was rapidly reduced by both H2S and thiols to Cu(I).

Ageing of sweet wines: oxygen evolution according to bung and barrel type

Barrel ageing is a crucial step in the wine process because it allows many changes to the wine as enrichment, colour stabilization, clarification and also a slow oxygenation. Effects of the oak barrel have to be known to prevent oxidation of the wine. The type of bung used during ageing is also a parameter to consider. Ageing sweet wines in barrel is a real challenge. These wines may need some oxygen at the beginning of ageing but they should be protected at the end of their maturation, to avoid oxidation.

Petrolomics-derived data interpretation to study acetaldehyde-epicatechin condensation reactions

During red wine ageing or conservation, color and taste change and astringency tends to reduce. These changes result from reactions of flavan-3-ols and/or anthocyanins among which condensation reactions with acetaldehyde are particularly important. The full characterization of these reactions has not been fully achieved because of difficulties in extracting and separating the newly formed compounds directly from wine. Model solutions mimicking food products constitute a simplified medium for their exploration, allowing the detection of the newly formed compounds, their isolation, and their structure elucidation.

Determination of metallic elements in Chilean wines by atomic absorption spectroscopy and inductively coupled plasma–mass spectrometry

The chemical composition of wines depends on series of variables such as the type of grape, edaphoclimatic conditions, and viticulture and winemaking practices employed during production. Metallic elements play a significant role during winemaking (e.g. as catalysts of oxidation reactions) and have been previously employed for the classification of wines according to provenance. In this work, we focused on the analysis of metallic elements (K, Na, Ca, Zn, Cu, Fe, Mg, Mn, Ni, Cr, Al, Pb, Cd, Hg, Se, Co, Sn and As) in 145 Chilean wine samples (102 reds and 43 white wines), of seven grape varieties, and five of the major wine producing regions in Chile.