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ATR-FTIR as a potential tool for controlling high quality vinegar categories

Abstract

Characterization of wine vinegars qualified with a Protected Designation of Origin (PDO) is crucial to certify their quality and authenticity. Spectroscopic techniques as Fourier transform mid infrared spectroscopy (FTIR) with Attenuated Total Reflectance (ATR) has been applied to investigate its potential as a rapid, cost-effective and non-destructive tool for characterizing different categories of high-quality vinegars. Spectra from 67 wine vinegars belonging to the PDOs “Vinagre de Jerez” and “Vinagre Condado de Huelva”, including their different established categories, were analyzed in the 4000–600 cm−1 infrared region. Changes associated to categories were observed in the region 1800–900 cm−1. These changes were assigned to certain compounds that increase during aging (e.g. acetic acids, alcohols, esters) or are characteristic of Pedro Ximenez category (e.g. sugars, furfural). Principal component analysis carried out on the most relevant spectral features, revealed that aging of vinegars clearly affect the ATR-FTIR spectra obtained in each PDO.

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ATR-FTIR as a potential tool for controlling high quality vinegar categories

Author: Ríos-Reina, Rocío; Callejón Fernández, Raquel María; Oliver Pozo, Celia; Amigo Rubio, José Manuel; García-González, Diego Luis
Publisher: Elsevier BV
Year: 2017
DOI: 10.1016/j.foodcont.2017.02.065
Source: https://idus.us.es/bitstreams/185935cf-b1ac-4a08-a0f7-e3e4db206433/download
UNCORRECTED PROOF
Food Con ol xxx (2017) xxx-xxx
Con en s lis s a ailable a ScienceDi ec
Food Con ol
jou nal homepage: www.else ie .com
ATR-FTIR as a po en ial ool o con olling high quali y inega ca ego ies
Rocío Ríos-Reina a, Raquel M. Callejón a, Celia Oli e -Pozo b, José M. Amigo c, Diego L. Ga cía-González b, ∗
aÁ ea de Nu ición y B oma ología, Facul ad de Fa macia, Uni e sidad de Se illa, C/P. Ga cía González n°2, E-41012, Se illa, Spain
bIns i u o de la G asa (CSIC), Campus Uni e sidad Pablo de Ola ide, Building 46, C a. de U e a, km. 1, E–41013, Se illa, Spain
cSpec oscopy and Chemome ics G oup, Depa men o Food Sciences, Facul y o Science, Uni e si y o Copenhagen, Roligheds ej 30, F ede iksbe g CDK-1958, Denma k
ARTICLE INFO
A icle his o y:
Recei ed 20 Decembe 2016
Recei ed in e ised o m 23 Feb ua y
2017
Accep ed 27 Feb ua y 2017
A ailable online xxx
Keywo ds:
Wine inega s
P o ec ed Designa ion o O igin
ATR-FTIR
PCA
Au hen ica ion
ABSTRACT
Cha ac e iza ion o wine inega s quali ied wi h a P o ec ed Designa ion o O igin (PDO) is c ucial o ce i y hei qual-
i y and au hen ici y. Spec oscopic echniques as Fou ie ans o m mid in a ed spec oscopy (FTIR) wi h A enua ed
To al Re lec ance (ATR) has been applied o in es iga e i s po en ial as a apid, cos -e ec i e and non-des uc i e ool
o cha ac e izing di e en ca ego ies o high-quali y inega s. Spec a om 67 wine inega s belonging o he PDOs
“Vinag e de Je ez” and “Vinag e Condado de Huel a”, including hei di e en es ablished ca ego ies, we e analyzed in
he 4000–600 cm−1 in a ed egion. Changes associa ed o ca ego ies we e obse ed in he egion 1800–900 cm−1. These
changes we e assigned o ce ain compounds ha inc ease du ing aging (e.g. ace ic acids, alcohols, es e s) o a e cha ac-
e is ic o Ped o Ximenez ca ego y (e.g. suga s, u u al). P incipal componen analysis ca ied ou on he mos ele an
spec al ea u es, e ealed ha aging o inega s clea ly a ec he ATR-FTIR spec a ob ained in each PDO.
© 2016 Published by Else ie L d.
1. In oduc ion
Vinega is a p oduc ob ained by a double e men a ion p ocess
(alcoholic and ace ous e men a ion o ace i ica ion) by using a wide
a ie y o me hods and di e en aw ma e ials (wine, honey, cide ,
e c.). In he pas , inega was conside ed as a seconda y p oduc in
he amily o e men ed p oduc s and lacked o any ecognized quali y
s anda d. Nowadays, inega is conside ed as a necessa y p oduc in
households all o e he wo ld and many consume s ega d i as high
quali y p oduc .
Wine inega is he mos commonly used inega in Medi e anean
coun ies and Cen al Eu ope. I is he esul o he con e sion o sug-
a s om g ape juice in o e hanol by yeas and he subsequen oxida-
ion o he e hanol by ace ic acid bac e ia (O dóñez, Callejón, Mo ales,
& Ga cía-Pa illa, 2013). The wine inega s a ailable in he ma ke
di e in aw ma e ials and p oduc ion p ocess. Conce ning he la -
e inega s can be p oduced by ei he a quick ace i ica ion sys em
o a slow adi ional p ocess (De la Haba, A ias, Ramí ez, López, &
Sánchez, 2014). The ime and ype o aging (in di e en kinds o
woods) a e o he sou ces o a iabili y and hey g ea ly a ec he ine-
ga quali y. Due o hese p ocesses, chemical modi ica ions ela ed
wi h aging and wi h he mic obiological ac i i y occu and hey p o-
ide speci ic and singula p ope ies o he inal p oduc , being highly
app ecia ed by consume s (Ma u o-Cu ido e al., 2012).
Some wine inega s a e adi ionally linked o a ce ain geog aph-
ical a ea, and hey a e p o ec ed by he Eu opean Union wi h a legal
∗Co esponding au ho .
Email add ess: [email p o ec ed] (D.L. Ga cía-González)
amewo k ha p o ides he ca ego y o “P o ec ed Designa ion o
O igin” (PDO). A p oduc wi h a PDO egis a ion means ha i is
p oduced, p ocessed and p epa ed in a gi en geog aphical a ea using
a ecognized know-how (Council Regula ion (EC) 510/2006). Conse-
quen ly, a PDO egis a ion p o ides an addi ional p o ec ion o con-
sume s agains alsi ica ions and i gua an ees some speci ica ions e-
la ed o hei chemical and senso y ea u es (Chinnici e al., 2009).
The p oduc ion o wine inega in Spain is cen e ed in Andalu-
sia (Sou he n Spain). Andalusia is a egion adi ionally associa ed
o wine cul u e whe e wine inega s ha e been p o ec ed by h ee
di e en PDOs because o hei unique cha ac e is ics: “Vinag e de
Je ez” (also known as “She y wine inega ”), “Vinag e Condado de
Huel a” and ecen ly “Vinag e Mon illa-Mo iles”. The i s wo PDOs
a e al eady well es ablished and widely comme cialized whe eas
“Vinag e Mon illa-Mo iles” was jus g an ed i s PDO s a us in 2015
(EU 2015/48) and hei inega s a e s a ing o appea on he ma ke .
Fu he mo e, wi hin each PDO, he e a e di e en ca ego ies acco d-
ing o hei aging ime and ype in wood ba els. The high quali y o
hese PDOs a e he consequence o he aw ma e ial (e.g. g ape a-
ie y, o igin), he wooden cask used (e.g. Ame ican Oak casks) and
he me hods o aging. Aging p ocedu es in hese PDOs comp ises he
“c iade as y sole a” (also called dynamic aging sys em) and “añada”
(also called s a ic sys em) sys ems. The inega in he i s sys em is
aged in di e en bu s in which aged and young inega s a e sequen-
ially mixed, while he inega in he second sys em is aged in a single
bu wi hou mixing wi h o he inega s.
The egula ion on PDO “Vinag e de Je ez” (BOJA, 2008a) de-
sc ibe h ee ca ego ies acco ding o aging ime in oak ba els by he
dynamic sys em “c iade as y sole a”: “Vinag e de Je ez” (aged in
wood a leas 6 mon hs),“Vinag e de Je ez Rese a” (wi h a mini
h p://dx.doi.o g/10.1016/j. oodcon .2017.02.065
0956-7135/© 2016 Published by Else ie L d.
UNCORRECTED PROOF
2 Food Con ol xxx (2017) xxx-xxx
mum aging ime o 2 yea s.), “Vinag e de Je ez G an Rese a” (aged
o 10 o mo e yea s). This egula ion also desc ibes semi-swee ca e-
go ies (i.e. “Ped o Ximenez”, “Mosca el”).
The egula ion on PDO “Vinag e Condado de Huel a” (BOJA,
2008b) also es ablishes he ollowing ca ego ies: “Vinag e Condado
de Huel a” (no aging), “Vinag e Viejo Condado de Huel a Sole a”
(aged a leas 6 mon hs), “Vinag e Viejo Condado de Huel a Rese a”
(aged a leas 2 yea s), all aged by he sys em “c iade as y sole a”. Fu -
he mo e, he e is one mo e ca ego y named “Vinag e Viejo Condado
de Huel a Añada” aged a leas 3 yea s bu in s a ic aging sys em.
These inega s ha e high p ices in he ma ke due o hei high
quali y, he long aging ime and hence, he high cos o hei p o-
duc ion. Tha explains ha hese p oduc s a e ulne able o aud
(Callejón e al., 2012; Sáiz-Abajo, González-Sáiz, & Piza o, 2004)
and new ools a e equi ed o igh agains alsi ica ion o mislabeling.
Fu he mo e, he g owing consume demand and he inc easing di e -
si y o wine inega s has aised a need o cha ac e ize hem and o p o-
ide an adequa e quali y con ol o de end hei iden i y (Ce ezo e al.,
2008; Liu, He, & Wang, 2008; Ma u o-Cu ido e al., 2012). Di e -
en senso y and physicochemical echniques such as gas-ch oma og a-
phy-mass spec ome y (GC-MS), a omic abso p ion spec ome y o
high-pe o mance liquid ch oma og aphy (HPLC) ha e been used o
cha ac e ize inega s (Ci lini, Caligiani, Palla, & Palla, 2011; Na e a,
Cas o, De Valme Ga cía-Mo eno, He nández, & Ga cía-Ba oso,
2003). Howe e , hese echniques a e o en expensi e and ime-con-
suming. Rapid me hods based on non- a ge ed echnique can p o-
ide a solu ion o ood au hen ica ion (Bae en & Da denne, 2002).
In pa icula , Fou ie ans o m in a ed spec oscopy (FTIR) has be-
come an impo an ool o quan i a i e analysis (Rod iguez-Saona &
Allendo , 2011). FTIR combined wi h chemome ics has gained wide
accep ance in he iden i ica ion o chemical compounds in oods o
au hen ici y and classi ica ion pu poses (G assi, Amigo, Lyndgaa d,
Foschino, & Casi aghi, 2014; Mo os, Iñón, Ga igues, & de la
Gua dia, 2008; Regmi, Palma, & Ba oso, 2012; Tay, Singh,
K ishnan, & Go e, 2002; Van de Voo , Ghe le , Ga cía-González, &
Li, 2008).
The use o an accesso y o A enua ed To al Re lec ance (ATR)
in FTIR s udies allows he di ec analysis o liquids in a simple and
non-des uc i e manne wi h enough sensi i i y (Gou inhas, de
Almeida, Ca alho, Machado, & Ba os, 2015; Ve sa i, Pa pinello,
Chinnici, & Meglioli, 2011). Thus, ATR-FTIR has p o en o be an ap-
p op ia e me hod o he au hen ica ion o se e al liquid oods such as
inega (Dong, Zheng, Jiao, Lang, & Zhao, 2016; Gue e o, Mejías,
Ma ín, Lo illo, & Ba oso, 2010), oli e oil, wine, milk o honey
(Bendini e al., 2007; Be in, Fe gusson, Pe y, Janik, & Cozzolino,
2006; Gou inhas e al., 2015; Kelly, Pe isco, & Downey, 2006;
Ta an ilis, T oianou, Pappas, Ko se idis, & Polissiou, 2008; Tena,
Apa icio-Ruiz, & Ga cía-González, 2014). Sca ce s udies ha e been
ca ied ou in he cha ac e iza ion o inega s belonging o PDOs
and wi h di e en aging imes, al hough some s udies al eady poin ed
ou he u ili y o di e en spec oscopic echniques (e.g. nea in a ed
and luo escence spec oscopy) in inega s udies (De la Haba, A ias,
Ram, í, ez, L, ó, pez, S, á, & nchez, 2014; Callejón e al., 2012).
The aim o his wo k was o s udy he po en ial o ATR-FTIR o
he cha ac e iza ion o wine inega ca ego ies (aged and swee ) es-
ablished in wo Andalusian PDOs (“Vinag e de Je ez” and “Vina-
g e Condado de Huel a”). Fo his pu pose, he mos ele an spec-
al bands we e iden i ied and he in o ma ion ha hey p o ided we e
assessed in e ms o chemical assignmen and inega cha ac e is-
ics. P incipal componen analysis (PCA) was used as unsupe ised
me hod in o de o explo e and compa e he da a s uc u e and o help
in he in e p e a ion o ATR-FTIR analysis.
2. Ma e ials and me hods
2.1. Samples
Six y-se en wine inega samples belonging o di e en ca ego ies
egis e ed as P o ec ed Designa ion o O igin, named “Vinag e de
Je ez” and “Vinag e Condado de Huel a”, we e collec ed om di e -
en wine ies o Andalusia (Spain). Samples we e di ided as ollows:
36 “Vinag e de Je ez” and 31 “Vinag e Condado de Huel a” includ-
ing samples o each es ablished ca ego y (Table 1).
2.2. Chemicals
Ace ic acid was ob ained om Me ck (Mad id, Spain), and i was
o analy ical quali y. Wa e was ob ained om a Milli-Q pu i ica ion
sys em (Millipo e, USA).
2.3. ATR-FTIR spec oscopy analysis
Spec al da a we e collec ed on a B uke Ve ex 70 FTIR spec-
ome e equipped wi h a DGTS de ec o (B uke Op ics, E lingen,
Ge many). The sampling s a ion was equipped wi h an o e head and
de achable mul i- e lec ion a enua ed o al e lec ance accesso y
(ATR, six bounces, Specac, O ping on, U.K.). This accesso y consis s
on a 45° angle ZnSe c ys al moun ed in a shallow channel o he sam-
ple. Each spec um was eco ded a he same empe a u e (22 °C) in
he egion o 4000–600 cm−1 by an a e age o 50 scans a a esolu ion
o 4 cm−1. Be o e scanning each sample, a backg ound spec um was
aken wi h an emp y ATR c ys al and eco ded in he compu e . Each
sample (250 μL) was sp ead uni o mly h ough he ATR c ys al us-
ing a mic opipe e. A e he analysis, he ATR c ys al was ho oughly
cleaned o elimina e he p esence o inega esidues be ween mea-
su emen s and hen wiped wi h co on. Spec a we e examined using
OPUS e sion 7.0 (B uke Op ics, E lingen, Ge many) and manipu-
la ed wi h OMNIC so wa e. Each sample was analyzed in iplica e.
2.4. Da a analysis
Da a p ocessing and s a is ical analysis was pe o med wi h MAT-
LAB e sion 8.4.0.150421 (R2014b) and PLS- oolbox e sion 7.0.2
(Eigen ec o Resea ch Inc., Manson, WA). Di e en p ep ocessing
me hods we e s udied p io o PCA including s anda d no mal a ia e
(SNV), i s and second de i a i e. Mo eo e , he spec a we e p op-
e ly no malized by mean cen e ing a e p ep ocessing. A e some i-
als and compu a ions, p ep ocessing was ound no o be necessa y.
The e o e, he aw spec a we e jus no malized by mean cen e ing.
Table 1
Wine inega samples analyzed in his s udy.
P o ec ed Designa ion o
O igin (PDO) Ca ego ies code
Aging ime
(mon hs) n
“Vinag e de Je ez” “Vinag e de
Je ez”
JCR ≥6 15
“Rese a” JRE ≥24 15
“G an Rese a” JGR ≥120 3
“Ped o Ximenez” JPX – 3
“Vinag e Condado de Huel a” “Condado de
Huel a”
CSC 0 10
“Viejo Sole a” CSO ≥6 7
“Viejo Rese a” CRE ≥24 10
“Viejo Añada” CAN ≥36 4
UNCORRECTED PROOF
Food Con ol xxx (2017) xxx-xxx 3
P incipal componen analysis (PCA) was applied o he
1500–900 cm−1 spec al egion o he o al o samples in iplica e in
o de o explo e he da a s uc u e and o iden i y he main sou ces o
a iabili y in he spec a. Full c oss alida ion (lea e-one sample-ou )
was applied, unde s anding as sample all he analy ical eplica es o
he same sample. Fac o loadings o each p incipal componen we e
used o assess abou he ela i e impo ance o each wa enumbe and
he co ela ion o hem wi h speci ic composi ional p ope ies acco d-
ing o hei ca ego y.
3. Resul s and discussion
3.1. In e p e a ion o ATR-FTIR wine inega spec a
The i s s ep in his wo k was o iden i y he mos ema kable
bands ela ed o he majo compounds ha cha ac e ize wine ine-
ga samples. Fig. 1 shows he ATR-FTIR spec a o some analyzed
inega s. Fo a compa a i e pu pose, a spec um o Millipo e Q-pu-
i ied wa e is shown, as well as a spec um o a mix u e o pu e
ace ic acid and wa e . In he i s one (Fig. 1, spec um A; Table
2), he in ense bands de ec ed in he egions o 3800–2790 cm−1 and
1685–1550 cm−1 we e mainly assigned o OH g oups o wa e .
The ATR-FTIR spec a o a s anda d o ace ic acid dilu ed in wa e
(Fig. 1, spec um B) showed he p esence o h ee new bands: one
a ∼1711 cm−1 assigned o he C O g oup o ace ic acid, and wo
bands nea ∼1410 and ∼1290 cm−1 explained by C O s e ching and
C O H in-plane bending espec i ely (Mo os e al., 2008; Sil a,
Feliciano, Boas, & B onze, 2014; Ta an ilis e al., 2008; Ve sa i e
al., 2011). Ace ic acid also abso bs a 3800–2790 cm−1 due o C
H and O H s e ching, al hough i is no obse able in he spec-
um o being o e lapped by O H abso p ion o wa e (Mo os e
al., 2008). Conce ning he spec a o inega samples (spec a C, D
and E in Fig. 1), all he bands associa ed o wa e and ace ic acid
we e he mos in ense ones. O he mino bands we e cha ac e is ics
o some speci ic kinds o inega s (Table 2). Thus, he egion a
1500–900 cm−1 also showed spec al bands assigned o complex in e -
ac ing ib a ions, esul ing in a unique inge p in o each inega .
Fig. 2 shows wo ATR-FTIR spec a co esponding o an aged
wine inega (Rese a ca ego y) and a “Ped o Ximenez” wine ine-
ga , bo h o hem om PDO “Vinag e de Je ez”. In addi ion o he
bands assigned o wa e and ace ic acid (spec al bands 1 o 6), he
egion 1500–900 cm−1 shows o he abso p ion bands assigned o C
O, C C, C H, C N, N H and C O g oups (S ua , 2004)
(Table 2). These bands we e p oduced by he p esence o ca boxylic
acids, aldehydes, es e s, e he s, alcohols and phenols and some ni-
ogen compounds p esen ed in wine inega (Callejón e al., 2008b;
S ua , 2004). All hese chemical g oups ha e been iden i ied in ine-
ga s and hey ha e an impac on quali y p ope ies (Callejón, Mo ales,
Sil a Fe ei a, & T oncoso, 2008a). Fig. 2.A and 2.B shows he a e -
age spec a ( egion 1160–900 cm−1) o he aged ca ego ies o “Vina-
g e de Je ez” and “Vinag e Condado de Huel a” espec i ely. Peaks
7, 8 and 9 (∼1085, ∼1045 and 1015 cm−1) we e assigned o alcohol
compounds, aldehydes, and some es e s and e he s as well as acids
(Dua e, Ba os, Almeida, Sp aul, & Gil, 2004; Nieuwoud , P io ,
P e o ius, Manley, & Baue , 2004; Ve sa i e al., 2011). These bands
we e ela ed o he a o emen ioned chemical compounds whose con-
cen a ion inc ease du ing aging (Mo ales, Tes aye, Ga cía-Pa illa,
Casas, & T oncoso, 2001; Mo ales, Tes aye, Ga cía-Pa illa, Casas,
& T oncoso, 2002; Tes aye, Mo ales, Ga cía-Pa illa, & T oncoso,
2002) being esponsible o he a ia ions in he abso bance in ensi-
ies ha a e shown in he egion 1160–900 cm−1 (Fig. 2.A and 2.B).
Vinega s wi h longe aging pe iod, such as “Vinag e de Je ez G an
Rese a” (JGR), “Vinag e de Je ez Rese a” (JRE), “Vinag e Con-
dado de Huel a Rese a” (CRE), and “Vinag e Condado de Huel a
Añada” (CAN), showed an inc ease in he in ensi y o he band a
∼1045 cm−1 (band 8) and a sligh inc emen a ∼1085 cm−1 (band 7).
These wo spec al bands we e explained by he p esence o alcoholic
and es e compounds (mainly e hanol and e hyl ace a e), whose unc-
ional g oups (C O) abso b a his ange o he spec um (Dua e
e al., 2004; S ua , 2004). The spec al di e ences obse ed in aged
ca ego ies ag ee wi h he ac ha aging
Fig. 1. Compa ison be ween ATR-FTIR spec a o Millipo e Q-pu i ied wa e (A), a pu e ace ic acid solu ion in wa e (B), and some inega samples (“Vinag e de Je ez” PDO) o
di e en ca ego ies: “C ianza” (C), “Rese a” (D) and “Ped o Ximenez” (E).
UNCORRECTED PROOF
4 Food Con ol xxx (2017) xxx-xxx
Table 2
Chemical assignmen o he bands obse ed in he ATR-FTIR spec a o wine inega s
(S ua , 2004; Ald ich lib a y; Sigma Sample lib a y).
Compounds P incipal G oup Iden i ied
Spec al Region
(cm−1)
Wa e O H band 3800–2790;
1685–1550
Ace ic acid C H, C O, C O
s e ching and C O H
in-plane bending
3800–2790;
1800–1680;
1475–1230
Acids C O s e ching 1300–1000
E hanol, Glyce ol C O s e ching 1100–1000
Alcohols (e.g. 1-hexanol,
2-me hyl-1-bu anol)
O H s e ching band, C
O s e ching
3600; 1575–900
Es e s (e.g. e hyl ace a e,
isoamyl ace a e, e hyl
p opanoa e)
Alipha ic and a oma ic C
O and C O s e ching
1700–1100
Suga s ( uc ose, glucose) O H, CH21065–1030
Aldehydes (e.g.
Benzaldehyde)
C O s e ching 1700–1600
Phenols (e.g. guaiacol,
eugenol, 4-e hylphenol)
C O, O H s e ching 1800–900
Fu u als C O, C C 1300–840 and
∼1020
p omo es se e al phenomena ha a ec s he chemical composi ion
o inega s (Callejón, Mo ales, Sil a Fe ei a, & T oncoso, 2008b).
The main changes in ol e wa e losses h ough wood po es, inc eases
in ace ic acid concen a ion, ex ac ion o phenolic compounds om
wood and o ma ion o a oma compounds, mainly es e s (Callejón e
al., 2008b; Ga cía-Pa illa, He edia, & T oncoso, 1999).
Fig. 2 also showed he spec a o a “Ped o Ximenez” inega ,
which is a pa icula swee ca ego y o PDO “Vinag e de Je ez”.
I s spec um showed a singula g oup o peaks in he egion o
1175–1000 cm−1 (band 10, Fig. 2). This kind o inega has a high
ca bohyd a e con en and hey su e a Mailla d eac ion ha induces
he condensa ion o he educing ca bohyd a es (glucose and uc-
ose) and ee amino acids p oducing an appea ance o b own pig-
men s and ola ile compounds (Casale, Sáiz Abajo, González Sáiz,
Piza o, & Fo ina, 2006). Thei cha ac e is ic bands in he egion o
1175–1000 cm−1 mainly esul ed om g ape suga s and u u al com-
pounds ha a e cha ac e is ics o hese swee inega s (Casale e al.,
2006). In ac , in p e ious s udies he spec a o glucose and uc ose
showed a majo peak a 1034 and 1062 cm−1 espec i ely (Si akesa a
& I udaya aj, 2000) and u u al a 1020 cm−1 and 1300–840 cm−1
(Dong e al., 2016) (Table 2).
3.2. P incipal componen analysis
In o de o check he abili y o he a o emen ioned bands o cha -
ac e ize Andalusian PDO inega s and o ind ou i he spec al p o-
ile o hese wine inega s may be consis en ly co ela ed wi h spe-
ci ic composi ional p ope ies and/o sample aging, p incipal compo-
nen analysis (PCA) was pe o med. PCA was used o de ec g oups
o samples, ou lie s and o p o ide a isual ep esen a ion o he e-
la ionships wi hin he samples and be ween hem (sco es) and he
a iables (loadings). PCA was ca ied ou wi h he spec al egion
1500–900 cm−1, p e iously p ep ocessed by mean cen e ing, o he o-
al o samples by iplica e om each PDO.
3.2.1. PDO “Vinag e de Je ez”
The wo i s p incipal componen s (PCs) o he di e en aged
ca ego ies and Ped o Ximenez inega s included in he “Vinag e de
Je ez” PDO explained 97.33% o he o al a iance. Fig. 3 shows he
sco es and loadings plo s in he plane de ined by PC1 and PC2. PC1
allowed he sepa a ion o he “Ped o Ximenez” samples. Addi ion-
ally, samples we e dis ibu ed along PC1 acco ding o hei aging (Fig.
3-A): “G an Rese a” wi h posi i e alues o PC1; “C ianza”, wi h
nega i e alues o PC1; and “Rese a” wi h bo h nega i e and posi-
i e alues o PC1. This di e ence is mainly due o he wide ange o
aging ime in hese inega s ( om 6 mon hs o >10 yea s). None he-
less, some o e lapping was obse ed in he PCA sco es plo since
aging is a ac o ha de elops wi h ime. Thus, “Rese a” inega s
(2–10 yea s) ha we e aged o sligh ly mo e han 2 yea s we e ob-
se ed close o “C ianza” ca ego y (6 mon hs–2 yea s). Simila e
Fig. 2. ATR-FTIR spec um o an aged wine inega (“Vinag e de Je ez Rese a”) and a swee inega (“Vinag e de Je ez Ped o Ximenez”). Two inse s (A and B) shows he
selec ed spec al ange o each PDO aged ca ego ies (“Vinag e de Je ez” and “Vinag e Condado de Huel a”). No e: (1) 3800–2790 cm−1; (2) 1800–1680 cm−1; (3) 1685–1550 cm−1;
(4) (5) (6) 1475–1230 cm−1 (7) ∼1085 cm−1; (8) ∼1045 cm−1; (9) ∼1015 cm−1; (10) 1175–1000 cm−1. The ac onyms o he di e en inega ca ego ies a e de ined in Table 1.
UNCORRECTED PROOF
Food Con ol xxx (2017) xxx-xxx 5
Fig. 3. Resul s o p incipal componen analysis ca ied ou wi h ATR-FTIR spec al da a o “Vinag e de Je ez” samples (in iplica e). The sco e plo s wi h and wi hou “Ped o
Ximenez” ca ego y (A and C espec i ely) a e shown as well as he co esponding loadings o he i s wo p incipal componen s (PC1 and PC2) (B and D). The ac onyms o he
di e en inega ca ego ies a e de ined in Table 1.
sul s we e ob ained in a p e ious wo k (Callejón e al., 2012) in
which inega s o di e en aging we e analyzed by luo escence spec-
oscopy. The loadings plo co esponding o he wo PCs wi h highe
amoun o o al a iance, PC1 and PC2 (Fig. 3.B), shows ha wo
speci ic egions o he spec a had mo e impo ance in he model
(1175–1000 cm−1 and 1475–1230 cm−1). PC1 (87.96% o he o al
a iance) was mainly associa ed wi h posi i e alues o he spec al
egion o 1175–1000 cm−1. This egion was asc ibed o he samples
wi h highe amoun o suga s om g ape-juice in hei composi ion
ha was cha ac e is ic o “Ped o Ximenez” inega s. These loadings
o PC1 explained ha Ped o Ximenez samples we e sepa a ed om
he es o inega s. In addi ion o his egion, PC2 loadings showed
posi i e alues a he abso p ion bands cha ac e is ics o ace ic acid
(1475–1230 cm−1) explaining ha he majo i y o wine inega sam-
ples wi h mo e aging ime we e loca ed in he posi i e side o PC2
(e.g. all “G an Rese a” and many “Rese a” samples).
Once he Ped o Ximenez samples we e explained and showed dis-
inc i e spec al cha ac e is ics, hey we e emo ed om he da a in
o de o ca y ou a di e en ia ion o he es o inega s (aged ca e-
go ies). Sco es and loadings o he i s wo PCs a e shown in Fig. 3.C
and 3.D, accoun ing o 95.98% o he o al a iabili y. Once again,
wo egions o he spec a whe e highligh ed in he loadings plo :
1475–1230 cm−1 and he wo peaks a ∼1085 cm−1 and ∼1045 cm−1.
The highes con ibu ions co esponded o he bands assigned o ace ic
acid and alcoholic, e he s and es e s compounds espec i ely, indi-
ca ing he ela ionship p e iously desc ibed (Fig. 2) be ween aging
ime and he inc ease o hese compounds. The p ojec ion on o he
educed space spanned by he PCs allowed he sepa a ion o “G an
Rese a” and “C ianza” ca ego ies (wi h posi i e and nega i e al-
ues o PC1 espec i ely) in he sco e plo (Fig. 3.C), while he sam-
ples o he “Rese a” ca ego y we e dis ibu ed be
ween he wo o he g oups, showing he impo ance o he aging in
he spec al cha ac e is ics.
3.2.2. PDO “Vinag e Condado de Huel a”
A PCA was ca ied ou wi h samples o all he ca ego ies o wine
inega comme cialized by “Vinag e Condado de Huel a” PDO (Fig.
4). The esul s ob ained we e simila o he PCA ca ied ou o “Vina-
g e de Je ez” samples. Fig. 4 shows he sco es and loadings plo s o
he i s wo p incipal componen s (PCs), accoun ing o 97.08% o
he o al a iabili y. The sco e plo (Fig. 4.A) shows ha PC1 ex-
plained mos o he a iabili y (81.39%) and allowed he di e en ia-
ion be ween wo g oups: he less aged inega s (“Vinag e Condado
de Huel a”) placed in he nega i e side o PC1, o he mos aged ine-
ga s (“Añada” and “Rese a”) in he posi i e side. Mo eo e , om
a concep ual s andpoin , i is possible o a he a i m ha he aging
di ec ion is no only PC1 bu i is he diagonal o he PC1 s PC2
plo , so ha mo e aged inega s esul in a simul aneous inc ease in
he sco es along bo h componen s. Once again, he e was an o e -
lapping o samples belonging o he in e media e ca ego y “Sole a”,
aged om 6 mon hs o 2 yea s, wi h he ca ego y immedia ely mo e
aged “Rese a”, aged o mo e han 2 yea s. In ega ds o he loadings
(Fig. 4.B), he highes con ibu ions o PC1 co esponded o he bands
assigned o ace ic acid (1475–1230 cm−1), and he posi i e loadings
o PC1 and PC2 we e assigned o alcoholic, e he s and es e s com-
pounds (1085 cm−1 and 1045 cm−1). These highligh ed egions con-
i med again he ela ionship be ween aging ime and he in ensi y o
hese bands. The loading p o ile shown in Fig. 4-B we e simila o
hose ob ained wi h he samples om “Vinag e de Je ez” PDO (Fig.
3-D).
These esul s sugges ed ha FTIR spec a could be used o iden-
i y he main di e ences be ween he es ablished ca ego ies o wine
inega s wi hin each PDO. The “ inge p in ” egion o inega spec

UNCORRECTED PROOF
6 Food Con ol xxx (2017) xxx-xxx
Fig. 4. Resul s o p incipal componen analysis ca ied ou wi h ATR-FTIR spec al da a o “Vinag e Condado de Huel a” samples (in iplica e). The sco e plo (A) is shown as
well as he co esponding loadings o he i s wo p incipal componen s (PC1 and PC2) (B). The ac onyms o he di e en inega ca ego ies a e de ined in Table 1.
a has demons a ed o p o ide impo an in o ma ion o cha ac e iz-
ing each wine inega .
In addi ion o he di e en ia ion o ca ego ies wi hin each PDO,
he spec al signals o he wo PDOs we e included in he same PCA
model. In his s udy, only he ca ego ies wi h he same ange o ag-
ing (>6 mon hs and >24 mon hs) we e conside ed since hey a e com-
pa able be ween PDOs (Table 1). Fig. 5.A shows he sco es plo o
he i s wo PCs, accoun ing o 93.98% o he o al a iabili y. The
sco es showed a clea di e en ia ion be ween he wo PDOs. These e-
sul s ein o ced ha wine inega s p oduced unde he speci ica ions
o PDOs ha e unique quali y and cha ac e is ics. The spec al load-
ings esponsible o di e en ia ion (Fig. 5.B) we e again loca ed in he
anges 1475–1230 cm−1 and 1175–1000 cm−1, al eady selec ed in p e-
ious PCA models.
4. Conclusions
In his s udy, FTIR p o ed o be use ul o a simple cha ac e i-
za ion o he es ablished aging ca ego ies o high quali y wine ine-
ga s p o ec ed unde PDO. The abili y o he spec al bands in dis in-
guishing inega s by hei ca ego ies and aging ime is mainly based
on a se ies o bands obse ed in he egion o 1500–900 cm−1. These
bands p o ided aluable in o ma ion abou changes ela ed o spe-
ci ic compounds du ing aging in wood ba els (ace ic acid, alcohols,
e he s, es e s, e c.). Since aging is a con inuous a iable, he in e me
dia e ca ego ies in aging (e.g. “Rese a”) we e o e lapped wi h he
o he ca ego ies o some ex en , while he spec al da a allowed a
clea sepa a ion o he mos and leas aged ca ego ies. This p oce-
du e also allowed cha ac e izing swee inega s (“Ped o Ximenez”
ca ego y) whose spec a we e clea ly di e en compa ed o aged ca -
ego ies, mos ly due o bands assigned o suga s and Mailla d com-
pounds (1175–1000 cm−1). Fu he mo e, he unique cha ac e is ics o
he Spanish PDO wine inega s, which di ec ly a ec he ATR-FTIR
spec a, also allowed he di e en ia ion be ween PDOs.
The ad an ages o his me hod (e.g. as , non-des uc i e and wi h
no-sample p epa a ion) would allow implemen ing his measu emen
as an addi ional con ol o PDO councils and p oduce s o assess he
ca ego y o he di e en wine inega s es ablished in each PDO, and
o moni o he aging p ocess wi h a simple and apid p ocedu e. The
chemical assignmen o he bands desc ibed in his wo k and he p e i-
ous knowledge o inega composi ion p o ided an addi ional chemi-
cal suppo o FTIR spec oscopy o his applica ion.
Funding
This wo k was suppo ed by he “Conseje ía de Economía,
Inno ación y Ciencia, Jun a de Andalucía” unde he p ojec
P12-AGR-1601 and by a FPU schola ship o he Minis e io de
Educación, Cul u a y Depo e.
Fig. 5. Resul s o p incipal componen analysis ca ied ou wi h ATR-FTIR spec al da a o “Vinag e de Je ez” (“J”) and “Vinag e Condado de Huel a” (“C”) PDOs. The sco es plo
(A) is shown as well as he co esponding loadings o he i s wo p incipal componen s (PC1 and PC2) (B). The ac onyms o he inega ca ego ies a e de ined in Table 1.
UNCORRECTED PROOF
Food Con ol xxx (2017) xxx-xxx 7
Acknowledgmen s
We would like o hank o he Regula o y Councils o he wine
inega PDOs o hei in aluable help wi h he acquisi ion o he sam-
ples o his s udy.
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