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Leptin and Nutrition in Gestational Diabetes

Abstract

Leptin is highly expressed in the placenta, mainly by trophoblastic cells, where it has an important autocrine trophic effect. Moreover, increased leptin levels are found in the most frequent pathology of pregnancy: gestational diabetes, where leptin may mediate the increased size of the placenta and the fetus, which becomes macrosomic. In fact, leptin mediates the increased protein synthesis, as observed in trophoblasts from gestational diabetic subjects. In addition, leptin seems to facilitate nutrients transport to the fetus in gestational diabetes by increasing the expression of the glycerol transporter aquaporin-9. The high plasma leptin levels found in gestational diabetes may be potentiated by leptin resistance at a central level, and obesity-associated inflammation plays a role in this leptin resistance. Therefore, the importance of anti-inflammatory nutrients to modify the pathology of pregnancy is clear. In fact, nutritional intervention is the first-line approach for the treatment of gestational diabetes mellitus. However, more nutritional intervention studies with nutraceuticals, such as polyphenols or polyunsaturated fatty acids, or nutritional supplementation with micronutrients or probiotics in pregnant women, are needed in order to achieve a high level of evidence. In this context, the Mediterranean diet has been recently found to reduce the risk of gestational diabetes in a multicenter randomized trial. This review will focus on the impact of maternal obesity on placental inflammation and nutrients transport, considering the mechanisms by which leptin may influence maternal and fetal health in this setting, as well as its role in pregnancy pathologies.

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Leptin and Nutrition in Gestational Diabetes

Author: Pérez Pérez, Antonio; Vilariño García, Teresa; Guadix, Pilar; Dueñas, José L.; Sánchez Margalet, Víctor
Publisher: MPDI
Year: 2020
DOI: 10.3390/nu12071970
Source: https://idus.us.es/bitstreams/9ee92e78-be86-4a67-8f7b-ca1a3da3e84e/download
nu ien s
Re iew
Lep in and Nu i ion in Ges a ional Diabe es
An onio Pé ez-Pé ez 1,*, Te esa Vila iño-Ga cía1, Pila Guadix 2, JoséL. Dueñas 2
and Víc o Sánchez-Ma gale 1,*
1Depa men o Medical Biochemis y and Molecula Biology, and Immnology, School o Medicine,
Vi gen Maca ena Uni e si y Hospi al, 41009 Se ille, Spain; [email p o ec ed]
2Obs e ics and Gynecology Se ice, Vi gen Maca ena Uni e si y Hospi al, 41009 Se ille, Spain;
[email p o ec ed] (P.G.); [email p o ec ed] (J.L.D.)
*Co espondence: [email p o ec ed] (A.P.-P.); [email p o ec ed] (V.S.-M.);
Tel: +34-955008111 (A.P.-P. & V.S.-M.)
Recei ed: 18 May 2020; Accep ed: 30 June 2020; Published: 2 July 2020

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Abs ac :
Lep in is highly exp essed in he placen a, mainly by ophoblas ic cells, whe e i has an
impo an au oc ine ophic e ec . Mo eo e , inc eased lep in le els a e ound in he mos equen
pa hology o p egnancy: ges a ional diabe es, whe e lep in may media e he inc eased size o he
placen a and he e us, which becomes mac osomic. In ac , lep in media es he inc eased p o ein
syn hesis, as obse ed in ophoblas s om ges a ional diabe ic subjec s. In addi ion, lep in seems
o acili a e nu ien s anspo o he e us in ges a ional diabe es by inc easing he exp ession o
he glyce ol anspo e aquapo in-9. The high plasma lep in le els ound in ges a ional diabe es
may be po en ia ed by lep in esis ance a a cen al le el, and obesi y-associa ed in lamma ion plays
a ole in his lep in esis ance. The e o e, he impo ance o an i-in lamma o y nu ien s o modi y
he pa hology o p egnancy is clea . In ac , nu i ional in e en ion is he i s -line app oach o
he ea men o ges a ional diabe es melli us. Howe e , mo e nu i ional in e en ion s udies wi h
nu aceu icals, such as polyphenols o polyunsa u a ed a y acids, o nu i ional supplemen a ion
wi h mic onu ien s o p obio ics in p egnan women, a e needed in o de o achie e a high le el
o e idence. In his con ex , he Medi e anean die has been ecen ly ound o educe he isk o
ges a ional diabe es in a mul icen e andomized ial. This e iew will ocus on he impac o
ma e nal obesi y on placen al in lamma ion and nu ien s anspo , conside ing he mechanisms
by which lep in may in luence ma e nal and e al heal h in his se ing, as well as i s ole in
p egnancy pa hologies.
Keywo ds:
nu i ion; polyphenolic compounds; bioac i e compounds; lep in esis ance; obesi y;
in lamma ion; ges a ional diabe es melli us; Medi e anean die
1. In oduc ion
Ges a ional diabe es (GDM) is a hype glycemic s a e ha is ecognized o he i s ime du ing
p egnancy [
1
], and i s pa hophysiology is no ully cla i ied ye . GDM is one o he mos common
complica ions in p egnancy, a ec ing 3–8% o all p egnancies [
2
]. This p e alence has inc eased in
ecen decades (
≥
20% o p egnancies in some pa s o he wo ld), bo h in de eloped and de eloping
coun ies, due o inc eased a e age age o p egnan women and inc eased obesi y [
3
], one o he g ea es
public heal h challenges o he 21s cen u y. Al hough he GDM pheno ype is highly he e ogeneous [
4
],
hal o i s p e alence can be explained by o e weigh and obesi y [
5
]. Indeed, obese women ha e an
inc eased isk o GDM compa ed o women o no mal weigh [
4
]. Mo eo e , in women wi h GDM,
p e-p egnancy obesi y, excessi e ges a ional weigh gain and poo glycemic con ol a e also linked wi h
o he s p egnancy complica ions, such as ges a ional hype ension and p eeclampsia [
6
]. I has e en
been epo ed ha excessi e ges a ional weigh gain was he a iable wi h he g ea es e ec on he
Nu ien s 2020,12, 1970; doi:10.3390/nu12071970 www.mdpi.com/jou nal/nu ien s
Nu ien s 2020,12, 1970 2 o 18
p obabili y o a newbo n wi h mac osomia (a condi ions associa ed wi h an inc eased isk o pe ina al
mo ali y and neona al mo bidi y). GDM also inc eases, in u n, he isk, in bo h mo he and o sp ing,
o de eloping ype 2 diabe es, me abolic synd ome and obesi y [
7
,
8
]. The e o e, obesi y du ing
p egnancy is an impo an isk ac o o ad e se heal h ou comes bo h in he mo he and o sp ing,
and imposes subs an ial economic bu dens. The e o e, p e en ion o obesi y would be di ec ly ela ed
o a lowe isk o GDM. Impai ed glucose homeos asis in GDM is also ela ed o highe p oduc ion o
eac i e oxygen species (ROS), consequen ly deple ing he an i-oxida i e s a us. This is why, o es ain
he sp ead o epidemic excess weigh , women mus ecei e a comp ehensi e in e en ion be o e,
du ing, and a e p egnancy. Li es yle changes, including nu i ion ini ia ed du ing ea ly p egnancy,
ha e been unsuccess ul o e all in p e en ing GDM in a - isk obese women [
9
]. Now, he e is a
consensus ega ding he need o e ec i e in e en ions a ge ing obesi y and li es yle ha educe he
me abolic bu den ea lie in li e, well be o e mo he hood, and i unde lines ha such in e en ions
may bene i bo h he mo he and he u u e o sp ing. Al hough ene gy es ic ion leading o weigh
loss is a success ul die a y in e en ion o imp o ing obesi y-associa ed me abolic diso de s, o he
die a y in e en ions, such as hose leading o a educ ion in adipose issue in lamma ion ega dless o
weigh loss, ha e no been explo ed in de ail. In his sense, lep in, p oduced by adipocy es, is a key
egula o o appe i e and is p esen in ele a ed concen a ions in obesi y [
10
]. The e o e, new esea ch
in o nu i ional mechanisms ha es o e lep in me abolism and signals o ene gy homeos asis may
inspi e new ea men op ions o obesi y- ela ed diso de s such as GDM. In his e iew, we wan ed
o add ess he cu en insigh s and eme ging concep s on po en ially aluable nu ien s and ood
componen s o modula e lep in me abolism. Mo eo e , obesi y is associa ed wi h a ch onic low-g ade
in lamma ion in he adipose issue [
11
], and se e al die a y ood componen s, such as phenols, pep ides,
and i amins, a e able o dec ease he g ade o in lamma ion and imp o e lep in sensi i i y by up-
o down- egula ion o lep in- ela ed genes. O he s ood componen s, such as sa u a ed a y acids
should be a oided, since hey may wo sen ch onic in lamma ion, subsequen ly inc easing he isk
o pa hological complica ions. Finally, gi en he c ucial ole ha he placen a plays in media ing
p egnancy ou comes, i is impo an o conside he impac o mic onu ien supplemen a ion on he
mechanisms associa ed wi h placen al unc ion, as well as ma e nal and e al homeos asis.
2. Lep in
The ho mone lep in, disco e ed in 1994 [12], c i ically egula es body weigh and me abolism a
cen al le el in he b ain [
13
], and dis up ion o lep in/lep in ecep o (LEPR) signaling esul s in mo bid
obesi y and se e e me abolic disease [
14
,
15
]. In indi iduals o no mal weigh , he b ain esponds
o inc eased plasma lep in le els by educing ood in ake and inc easing ene gy expendi u e [
16
,
17
].
Lep in and lep in ecep o s a e highly exp essed in he p eop ic a ea (POA), in he a cua e nucleus
(ARC) o he hypo halamus as well as in o he egions, such as he la e al hypo halamus, en omedial
hypo halamus and do somedial hypo halamus (DMH) [
18
]. The e, i egula es ene gy homoeos asis
and he neu oendoc ine unc ion, among o he unc ions [
19
]. In hese egions, lep in signaling is
media ed by he JAK2/S a 3 pa hway, in which se e al nega i e egula o s o JAK2, including SOCS3
and PTP1B, ha e been epo ed o p omo e obesi y [
20
,
21
], suppo ing he no ion ha JAK2 inhibi o y
molecules inc ease isk o lep in esis ance and obesi y. The e o e, hype lep inemia and hypo halamic
in lamma ion in die -induced obesi y may ac i a e a common nega i e egula o o lep in signaling,
SOCS3 o PTP1B, and con ibu e o cen al lep in esis ance. In ac , up- egula ion o SOCS3 in
p oopiomelanoco in (POMC) neu ons leads o impai men o STAT3 signaling, wi h consequen ial
lep in esis ance and obesi y, as well as glucose in ole ance [
22
]. I has also been epo ed ha mice
wi h whole body o neu on-speci ic dele ion o PTP1B a e hype sensi i e o lep in, and a e esis an o
die -induced obesi y [
23
]. Impo an ly, obesi y is associa ed wi h impai ed adipose sympa he ic ne e
ansmissions [
24
,
25
], bu he unde lying mechanism is poo ly unde s ood. In his con ex , he lep in
esis ance a a cen al le el may p e en nega i e eedback on he an i-in lamma o y ac ion o he
sympa he ic ne ous sys em (SNS) [
15
,
26
]. Tha is why lep in is now conside ed one o he adipokines
Nu ien s 2020,12, 1970 3 o 18
esponsible o he in lamma o y s a e ound in obesi y ha could p edispose o GDM. Su p isingly,
Sh2b1 (an SH2 and PH domain-con aining adap o p o ein) [
27
,
28
] has eme ged as an endogenous
sensi ize o lep in ac ion on he sympa he ic ne ous sys em (SNS) and ene gy expendi u e, pe haps
by enhancing JAK2 ac i a ion [
29
]. In his way, he LepR Sh2b1 neu on media es lep in s imula ion o
he SNS and suppo s he p ese a ion o adipose SNS agains degene a ion [30].
Apa om he JAK-2/S a -3 pa hway, ac i a ion o he MC4R signaling pa hway by
p oopiomelanoco in (POMC)-de i ed melanocy e s imula ing ho mone (MSH) pep ides also
ep esen s a c i ical con e gence poin in he con ol o body weigh . The lep in–melanoco in pa hway
(MC4R pa hway) in eg a es pa allel inpu s om he o exigenic pep ides gh elin, neu opep ide
Y (NPY) and agou i- ela ed pep ide (AgRP), and ac i a ion o he MC4R pa hway dominan ly
coun e ac s hese o exigens. Limi ed e icacy o li es yle in e en ion in indi iduals wi h mu a ions in
gene-encoding componen s o his pa hway demons a es i s impo ance in he con ol o body weigh
homeos asis [31,32].
The e o e, lep in can ac as me abolic swi ch connec ing he nu i ional s a us o he body o
high ene gy-consuming p ocesses. This is especially impo an in p egnancy, whe e lep in no only
modula es sa ie y and ene gy homoeos asis in he mo he [
13
,
33
], bu i is also p oduced by he
placen a, which esponds o he en i onmen a emp ing o main ain e al iabili y. This placen al
p oduc ion o lep in is one o he majo sou ces o highe le els o ma e nal ci cula ing lep in o he
han ma e nal gain o a mass [
34
]. Thus, he e ec s o placen al lep in on he mo he may con ibu e
o endoc ine-media ed al e a ions in ene gy balance, such as he mobiliza ion o ma e nal a , which
could u he agg a a e he insulin esis ance associa ed wi h p egnancy and he onse o GDM [
35
,
36
].
In ac , obese p egnan women ha e signi ican ly ele a ed plasma lep in concen a ions compa ed wi h
nonobese p egnan women h oughou p egnancy [
1
]. Mo eo e , ma e nal obesi y is also associa ed
wi h changes in he placen al unc ion and s uc u e, which likely impac e al g ow h and de elopmen .
Fo example, obesi y has been associa ed wi h se e al changes ela ed mainly wi h placen al size,
hype ascula iza ion, highe b anching capilla ies o he illi (cho angiosis) [
37
,
38
] and inc eased
glycogen deposi s, among o he s. Inc eased mac ophage in il a ion is also e iden in he placen a
o obese women, sugges ing an exagge a ion o he in lamma o y s a e which occu s in no mal
p egnancy [
39
]. Howe e , i is unclea which his ological changes a e due o he pa hophysiology and
which a e compensa o y adap a ions o his disease. Rega dless, al e a ions in placen al nu ien and
ho mone anspo e capaci y ha e been demons a ed in human and animal models o obesi y, and a e
hypo hesized as a mechanism leading o an accele a ed e al g ow h ajec o y and mac osomia [
1
].
In his sense, we ha e demons a ed ha he inc eased exp ession o aquapo in-9 (AQP9) (o o he s
aquaglyce opo ins) obse ed in placen as om obese women wi h GDM could be media ed by
hype lep inemia, sugges ing an inc ease in he anspo o glyce ol o he e us and hus con ibu ing
o he inc eased ene gy in ake equi emen s in he mac osomic e us in GDM [
40
]. Lep in has also been
iden i ied as a c i ical ophic ac o ha in luences he de elopmen o he hypo halamic p ojec ions [
40
].
Al e a ions in he pa e n o lep in sec e ion (p ema u e peak, excess, o de iciency) du ing neona al
li e could ha e signi ican ad e se e ec s on hypo halamic de elopmen and me abolic pheno ype [
41
]
(Figu e 1).
Finally, one o he pe iphe al unc ions o lep in is a egula o y ole in he in e play be ween
ene gy me abolism and he immune sys em, which is, in pa , esponsible o he in lamma o y s a e
associa ed o obesi y [
42
]. Se e al in lamma o y media o s p oduced by in lamma o y cells also
egula e lep in exp ession and p omo e he de elopmen o ch onic in lamma ion [
43
]. In his ega d,
lep in e ec s include he in lamma ion and he modula ion o inna e and adap i e immuni y [
44
,
45
].
The e o e, p oin lamma o y lep in ac ions migh also ha e signi ican implica ions in he pa hogenesis
o GDM [29,46].
Taken all oge he , since hypo halamic in lamma ion esul s in cen al lep in esis ance and hepa ic
insulin esis ance [
47
], blocking he pe iphe al and cen al in lamma ion induced by a high a die
could ha e he po en ial o ea obesi y and GDM. The e o e, no el he apies inco po a ing e ec i e
Nu ien s 2020,12, 1970 4 o 18
na u al agen s (mac o and mic onu ien s), pa icula ly agen s wi h he dual p ope ies o p e en ing
in lamma ion and con olling body weigh by imp o ing lep in sensi i i y, migh be an al e na i e
in e en ion a ge ing obesi y and GDM.
Nu ien s 2020, 12, x FOR PEER REVIEW 4 o 19
p e en ing in lamma ion and con olling body weigh by imp o ing lep in sensi i i y, migh be an
al e na i e in e en ion a ge ing obesi y and GDM.
Figu e 1. E ec s o bioac i e ood compounds on he lep in esis ance associa ed wi h obesi y and
ges a ional diabe es.
Lep in le els a e inc eased in ges a ional diabe es wi h obesi y (1). The high plasma lep in le els
may be po en ia ed by lep in esis ance a cen al le el, in which SOCS3 and PTPB a e induced by
lep in and in ol ing in a nega i e eed-back loop. The esul ing e ec is a dec ease in he lep in-
induced ac i a ion o he JAK2/STAT-3 signaling, leading o a educ ion in he cen al e ec s o lep in
(2). Lep in also impac s he placen a i sel in an au oc ine/pa ac ine ashion. The in eg a ion o
nume ous signaling by in acellula egula o y pa hways such as MAPK, PI3K and JAK-STAT has
been demons a ed o inc ease he size o he placen a and o a ec placen al nu ien anspo and
e al g ow h (mac osomia) (3). Bioac i e ood compounds such as polyphenols migh educe
ci cula ing lep in le els, pa ly dec easing lep in exp ession in he placen a om women wi h GDM.
The esul ing e ec is a dec ease in he lep in esis ance a a cen al le el and op imal placen al
nu ien s anspo .
3. Nu ien s and Bioac i e Food Componen s Use ul o Coun e ac ing Hype lep inemia and
Lep in Resis ance in GDM
Since he landma k Hype glycemia and Ad e se P egnancy Ou comes (HAPO) s udy in 2010,
an in e na ional consensus on diagnos ic c i e ia has no been eached nea ly a decade la e [47].
Howe e , he e is now a consensus ega ding he need o e ec i e in e en ions a ge ing obesi y.
In his ega d, since i s -line medical (pha maceu ical) he apy has ecen ly been called in o ques ion
[48] and he socioemo ional componen o nu i ion he apy o GDM has a dominan in luence on
adhe ence [49], o he die a y s a egies should be u he in es iga ed in de ail. Fo example, since
die plays an impo an ole in in lamma ion, and bo h obesi y and GDM a e conside ed a s a e o
ch onic in lamma ion, a heal hy and ac i e li e s yle, which includes a die ich in ui s, ege ables,
non-suga ed oods, non-ul a-p ocessed oods associa ed wi h a highe p e en ion o in lamma o y
diseases should be inco po a ed in o he die [50]. Howe e , a high consump ion o ed, p ocessed
Figu e 1.
E ec s o bioac i e ood compounds on he lep in esis ance associa ed wi h obesi y and
ges a ional diabe es.
Lep in le els a e inc eased in ges a ional diabe es wi h obesi y (1). The high plasma lep in
le els may be po en ia ed by lep in esis ance a cen al le el, in which SOCS3 and PTPB a e induced
by lep in and in ol ing in a nega i e eed-back loop. The esul ing e ec is a dec ease in he
lep in-induced ac i a ion o he JAK2/STAT-3 signaling, leading o a educ ion in he cen al e ec s o
lep in (2). Lep in also impac s he placen a i sel in an au oc ine/pa ac ine ashion. The in eg a ion o
nume ous signaling by in acellula egula o y pa hways such as MAPK, PI3K and JAK-STAT has been
demons a ed o inc ease he size o he placen a and o a ec placen al nu ien anspo and e al
g ow h (mac osomia) (3). Bioac i e ood compounds such as polyphenols migh educe ci cula ing
lep in le els, pa ly dec easing lep in exp ession in he placen a om women wi h GDM. The esul ing
e ec is a dec ease in he lep in esis ance a a cen al le el and op imal placen al nu ien s anspo .
3. Nu ien s and Bioac i e Food Componen s Use ul o Coun e ac ing Hype lep inemia and
Lep in Resis ance in GDM
Since he landma k Hype glycemia and Ad e se P egnancy Ou comes (HAPO) s udy in 2010, an
in e na ional consensus on diagnos ic c i e ia has no been eached nea ly a decade la e [
47
]. Howe e ,
he e is now a consensus ega ding he need o e ec i e in e en ions a ge ing obesi y. In his
ega d, since i s -line medical (pha maceu ical) he apy has ecen ly been called in o ques ion [
48
]
and he socioemo ional componen o nu i ion he apy o GDM has a dominan in luence on
adhe ence [
49
], o he die a y s a egies should be u he in es iga ed in de ail. Fo example, since
die plays an impo an ole in in lamma ion, and bo h obesi y and GDM a e conside ed a s a e o
ch onic in lamma ion, a heal hy and ac i e li e s yle, which includes a die ich in ui s, ege ables,
non-suga ed oods, non-ul a-p ocessed oods associa ed wi h a highe p e en ion o in lamma o y
diseases should be inco po a ed in o he die [
50
]. Howe e , a high consump ion o ed, p ocessed
mea , sa u a ed o ans- a , ul a-p ocessed ood based on e ined ing edien s o alcohol associa ed
wi h p o-in lamma o y p ocesses should be a oided [35,36].
Nu ien s 2020,12, 1970 5 o 18
Since obese women and women wi h GDM show high ci cula ing lep in le els and a e hence
conside ed lep in- esis an [
51
,
52
], we ha e iden i ied nu i ional s a egies o coun e ac lep in
esis ance in bo h obesi y and GDM. In his con ex , se e al mic o- and mac o-nu ien s and bioac i e
ood componen s migh ha e he abili y o inc ease lep in sensi i i y and o e e se lep in esis ance in
obesi y and GDM.
3.1. Polyphenolic Compounds
Polyphenolic compounds such as la onoids ep esen an impo an bioac i e componen in
plan s ( ui s, ege ables, legumes, ea, e c.) wi h some speci ic pa s o hese oods iche in la onoids
han o he s ( o example he peel o ce ain ui s) [
53
]. The accumula ion o la onoids o en occu s in
plan s subjec ed o abio ic s esses. This ac has made hei de e mina ion an a ac i e ield in ood
science and, in ecen yea s, an inc eased numbe o s udies ha e analyzed hei po en ial bene i s in
human heal h.
As men ioned abo e, bo h he impac o nu i ional s a us on he immune sys em, specially T
cells [
54
,
55
] and he ole o lep in as a media o o in lamma ion [
42
], as well as a link be ween ene gy
s o es and he immune esponse, ha e been p oposed [
56
,
57
]. In his sense, he (poly)phenols migh
modula e bo h he lep in e ec and ci cula ing lep in le els using di e en expe imen al app oaches.
Fo example, i has been epo ed ha la onoids ha e an i-in lamma o y p ope ies and hus ha e an
impo an ole in he con ol o se e al immune cells and immune mechanisms ha a e impo an in
he in lamma o y p ocesses. Mo e speci ically, ce ain la onoids (my ice in, que ce in, p ocyanidins)
can inhibi mul iple cen al kinases ha a e in ol ed in mul iple signaling pa hways ela ed o
in lamma ion [
58
], such as phosphoinosi ol kinase, p o ein kinase C (PKC), phospha idylinosi ol kinase
and y osine kinase o cyclin-dependen kinase-4 [
59
]. Besides, la onoids can modula e hese p o ein
kinases ia inhibi ion o ansc ip ion ac o s (e.g., NF-
κ
B and AP-1) [
60
]. In iguingly, bo h insulin
and lep in sha e se e al signaling pa hways, such as mi ogen-ac i a ed p o ein kinase (MAPK) and
he phospha idylinosi ol 3-kinase (PI3K) pa hway, which may also ac i a e se e al p o ein kinases
in ol ed in signal ansduc ion du ing he in lamma ion p ocess, ia NF-
κ
B. In his con ex , ou g oup
ha e demons a ed ha he inc ease in placen al lep in exp ession is media ed by NF
κ
B signaling [
61
].
The e o e, in GDM, associa ed wi h insulin esis ance, hype insulinemia and hype lep inemia [
62
,
63
],
la onoids migh down egula e he syne gis ic in e ac ion be ween insulin and lep in signaling in he
in lamma o y p ocesses. In addi ion, la onoids migh also dec ease lep in exp ession in he placen a
o women wi h GDM.
I has also been epo ed ha high cAMP le els inhibi lep in exp ession by human cho ionic
gonado opin (hCG), and hese inc eased le els o cAMP ha e been associa ed wi h an i-in lamma o y
unc ions [
64
]. In his sense, la onoids ha e also demons a ed he po en ial o block cAMP deg ada ion
and p olong cAMP signaling [
65
]. Finally, la onoids may ha e an impac on cell ac i a ion, signaling
ansduc ion and cy okine p oduc ion in se e al immune cells. Fo ins ance, la onoids ha e been
shown o inhibi ma u a ion o dend i ic cells (DCs) by supp essing he exp ession o CD83 and CD80,
which would ansla e in o an inhibi o y e ec in he sec e ion o p o-in lamma o y cy okines [
66
,
67
].
These e ec s a e con a y o lep in, which p omo es he swi ch owa ds Th1 cell immune esponses by
inc easing in e e on-
γ
(IFN-
γ
) exp ession and acili a es Th17 esponses. All hese indings posi ion
la onoids as modula o s o immune esponse and, e y speci ically, as inhibi o s o ansc ip ion
ac o s, in ol ed in he exp ession o di e en p o-in lamma o y genes such as he lep in gene [60].
On he o he hand, i is well known ha he imbalance be ween he oxida i e and an i-oxida i e
sys ems plays a c ucial ole in he pa hogenesis o se e al human diseases such as obesi y and
diabe es, among o he s [
68
–
70
]. In his con ex , la onoids a e also po en an ioxidan s ha a e able
o sca enge ee adicals and dec ease hei o ma ion. Fo example, g ape juice by-p oduc s a e
a sou ce o phenolic compounds wi h demons a ed an ioxidan ac i i ies [
71
]. In hese, he main
phenolic compounds include la ones (lu eolin) [
71
,
72
], la onols (my ice in, ise in, que ce in and
kaemp e ol de i a i es) [
70
,
73
], an hocyanins (cyanidin-3-glucoside) [
74
], la an-3-ols (ca echin and

Nu ien s 2020,12, 1970 6 o 18
epica echin monome s and p oan hocyanidins) [
75
,
76
], s ilbenes ( es e a ol), and phenolic acids [
74
].
The mos s udied o hese is es e a ol, which has been demons a ed o diminish ci cula ing
lep in le els and o educe in ake [
77
] by inc easing phospho-STAT3 con en in he hypo halamus,
wi h no changes in SOCS3. This sugges ha es e a ol migh imp o e he lep in sensi i i y in
obesi y [78,79]. P oan hocyanidins (PACs), known as condensed annins, a e ound in a wide a ie y
o ui s (e.g., be ies), in addi ion o g apes, and o he sou ces such as lowe s, seeds o some plan s,
nu s o ba ks [
80
,
81
]. Plan and ood-de i ed PACs a e also a ac ing a en ion due o hei abili y
o p e en ch onic diseases [
82
]. Fo example, PACs om g ape seeds and blackbe y–bluebe y
e men ed be e ages ha e shown high an i-in lamma o y and an ioxidan ac i i y
in i o
[
83
] and
ha e shown a b oad he apeu ic heal h e ec agains diabe es melli us and obesi y. In his ega d,
obesi y and ela ed complica ions such as GDM a e linked wi h highe suscep ibili y o oxida i e s ess
and he adminis a ion o g ape seed ex ac s has shown an imp o emen in he oxida i e s a us in
obese people by inhibi ing lipid pe oxida ion and a oiding ROS p oduc ion [
84
]. Mo eo e , PACs can
educe in lamma ion by dec easing he oxida i e s ess o o he indi ec mechanisms [
85
]. In his sense,
PACs om g ape seed ex ac modula e IL-6, TNF-
α
and adiponec in gene exp ession in adipose issue,
hus, educing he die -induced low-g ade in lamma ion [
86
]. PAC- ich ex ac s ha e also p o ed o be
in ol ed in obesi y modula ion (e en a low doses) h ough he supp ession o ood in ake and he
inc ease in ene gy expendi u e [
87
], possibly by media ing lep in le els. Howe e , he mechanism
unde lying his e ec o g ape seed PACs has no been ully elucida ed. Finally, g ape seed ex ac
imp o ed he insulin esis ance index as well as he plasma glucose and insulin le els in die -induced
obese animal models [88], al hough he e a e disc epancies in his ega d.
O he bioac i e ood compounds ha e also been p o en o be able o educe ci cula ing lep in
le els in obesi y. My ice in, a bio la onoid abundan in o he s ui s (e.g., be ies), as well as
ea and ege ables, has been shown o educe hype lep inemia and o a o insulin ac ion ia
PI3-kinase pa hway ac i a ion, and ansloca ion o glucose anspo e sub ype 4 (GLUT4) o he cell
memb ane [
89
]. Accumula ing e idence also sugges s ha p opolis ex ac s ( ich in la onoids and
cinnamic acid de i a i es) ha e he apeu ic e ec s on obesi y by con olling adipogenesis, adipokine
sec e ion, ood in ake, and ene gy expendi u e. Pa icula ly, conside ing he ano ec ic ac i i y o lep in,
p opolis has po en ial o a enua e eeding and subsequen ly p e en obesi y [
90
]. Mo eo e , a ious
epo s in animal and cellula models ha e demons a ed ha p opolis and i s de i ed compounds
imp o e insulin sec e ion and insulin sensi i i y by modula ing oxida i e s ess, he accumula ion o
ad anced glyca ion end p oduc s (AGEs), and adipose issue in lamma ion, all o which con ibu e o
insulin esis ance o de ec s in insulin sec e ion [
91
,
92
]. Fo example, se e al la onoids in p opolis,
such as que ce in, ch ysin, lu eolin, amen o la one, lu eolin 7-O-glucoside and daidzein, ha e been
ound o ha e he apeu ic e ec s in diabe ic animal models by di e en mechanisms [
93
,
94
]. I has
also been epo ed ha p opolis mi iga es me abolic dys unc ion h ough no maliza ion o in es inal
mic o lo a [
95
]. The e o e, p opolis in ake migh ha e bene icial e ec s o me abolic diso de s such as
GDM, a ibu able o la onoids and na u al phenols. Howe e , p opolis migh ha e ad e se e ec s
on pa ien s and, he e o e, moni o ing o biological e ec s should be ca ied ou .
The polyphenols o oli es and oli e lea es also ha e nume ous bene icial e ec s on human heal h,
such as an ioxidan capaci y, hypoglycemic [
96
] and an i-in lamma o y [
97
], as well as a coadju an
ole in he ea men o obesi y [
98
]. In his sense, oleu opein, esponsible o he bi e as e o oli e
lea es and d upes, and i s de i ed o m, he mos abundan phenolic compounds p esen in oli es
and oli e oils, a e well known o hei hypoglycemic p ope y; possibly by he po en ial o a ec ing
glucose-induced insulin elease and/o inc easing pe iphe al glucose up ake [
99
]. This hypoglycemic
e ec is also a ibu ed, a leas in pa , o he an ioxidan ac i i y o oleu opein [
100
]. Mo eo e , i has
been epo ed ha oleu opein down- egula es lep in mRNA le els in epididymal adipose issue and
educes se um lep in le els [
101
]. Tha is why he p ophylac ic use o oleu opein has been p oposed in
he educ ion in complica ions esul ing om oxida i e s ess in obesi y and diabe es [
99
]. O he majo
phenolic componen s p esen —no only in oli e ex ac s bu in ui s (e.g., g apes), such as lu eolin
Nu ien s 2020,12, 1970 7 o 18
and lu eolin-4
0
-O-
β
-D-glucopy anoside—ha e been shown o inhibi he o ma ion o AGEs and, hus,
migh delay he de elopmen o diabe ic complica ions [
96
]. Howe e , hese e ec s ha e been es ed
in animals and i is necessa y o pe o m s udies in humans in o de o con i m he bene i s a ibu ed
o polyphenols om oli es in GDM.
3.2. Polyunsa u a ed Fa y Acids (PUFAs)
The de eloping e us equi es subs an ial amoun s o a y acids o suppo apid cellula g ow h
and ac i i y, and especially, me abolic de i a i es o he essen ial a y acids such as linolenic acid (
Ω
-3)
and linoleic acid (
Ω
-6) and polyunsa u a ed a y acids (PUFAs) a e c ucial [
102
]. The mos biologically
impo an PUFAs a e docosahexaenoic acid (DHA) and eicosapen aenoic acid (EPA) [
102
]. In his
con ex , DHA appea s o be c ucial o he e us and in an o ea ly neu al de elopmen (b ain and
isual sys em) [
103
]. Howe e , mode n die a y ends ha e led o an imbalance in he consump ion
o PUFAs, wi h de iciency in
Ω
-3 and inc easing
Ω
-6 PUFA in ake which a exceeds nu i ional
equi emen s, p omo ing he pa hogenesis o many p e alen human diseases including GDM [104].
The placen a may play a key ole in he egula ion o a y acid a ailabili y ia he elease o
placen al-de i ed lep in, a po en s imula o o lipolysis [
105
]. In ac , ma e nal ci cula ing o al a y
acid concen a ions inc ease du ing p egnancy, enhancing placen al access o a y acids. Howe e ,
as men ioned abo e, GDM is associa ed wi h oxida i e s ess and placen al in lamma ion [
106
], and
impai ed placen al a y acid anspo has been epo ed [107].
Gi en ha PUFAs exhibi bo h an i-oxida i e and an i-in lamma o y ac i i ies, ma e nal die a y
DHA and EPA supplemen a ion has been p oposed as a po en ial he apeu ic in e en ion o
his placen a- ela ed diso de . Fo example, ma e nal die a y supplemen a ion wi h
Ω
-3 PUFAs
du ing p egnancy exe s bene icial e ec s such as educed in lamma ion by ei he dis up ing
p oin lamma o y eicosanoid gene a ion o p omo ing he gene a ion o an i-in lamma o y o ms [
108
].
Mo eo e , i has been also epo ed ha die a y supplemen a ion wi h
Ω
-3 PUFAs modula es he
ac i i y o key ansc ip ion ac o s (pe oxisome p oli e a o -ac i a ed ecep o s (PPARs) and/o
nuclea ac o
κ
B (NF-
κ
B)) and he G-p o ein-coupled ecep o (GPR120) in ol ed in in lamma o y
signaling
[109–111]
. Consequen ly, die a y supplemen a ion wi h
Ω
-3 PUFAs migh educe isk o
p egnancy complica ions [
112
] as well as he adipose issue in lamma ion ia GPR120-media ed
supp ession o mac ophage p oin lamma o y cy okine sec e ion, including lep in [
113
]. Indeed,
DHA and EPA ha e been shown o educe ci cula ing lep in le els ac i a ing he adenosine
5’-monophospha e-ac i a ed p o ein kinase (AMPK) pa hway [
114
]. Ano he bene icial e ec o
he
Ω
-3 PUFAs on GPR120 is he inc ease in he ansloca ion o in acellula esicles con aining
GLUT4, which enhances glucose up ake by adipocy es [
111
]. Oleic acid, a monounsa u a ed a y
acid (MUFA), also educes hype lep inemia ia down- egula ing PPAR
γ
mRNA le els in abdominal
isce al whi e adipose issue in obese mice [
115
]. Th ough modula ion o adipokine sec e ion, hese
a y acids also a o insulin sensi i i y [116].
Finally, excessi e oxida i e s ess in u e o-placen al issues plays a pi o al ole in he de elopmen
o GDM [
106
]. In his con ex ,
Ω
-3 PUFAs could po en ially limi oxida i e damage by educing ROS
gene a ion [117]. Howe e , i would be impo an o asce ain he po en ial isks o excessi e die a y
PUFA in ake gi en he suscep ibili y o PUFAs o lipid pe oxida ion, which may exace ba e cellula
damage caused by an oxida i e insul [118].
All oge he , hese indings highligh he po en ial bene i o die a y supplemen a ion wi h PUFAs
o limi oxida i e damage and in lamma ion associa ed wi h obesi y and GDM, al hough u he
esea ch in humans is equi ed o cla i y whe he hese a y acids can p e en GDM and he po en ial
isks associa ed i hey a e used as supplemen s.
3.3. Te penes
The e is e idences ha ca es ol and/o i s me aboli es (kahweol), na u al di e penes ex ac ed
om co ee beans, can p e en some ch onic diseases such as me abolic disease [
119
–
121
]. In his
Nu ien s 2020,12, 1970 8 o 18
con ex , i has been demons a ed ha ca es ol p omo es insulin sec e ion and also inc eased glucose
up ake in muscle cells, simila ly o ha o an idiabe ic osigli azone. Mo eo e , kahweol can ac i a e
he AMPK pa hway, a cen al modula o o he me abolism o glucose and lipid ha s imula es glucose
up ake and inhibi s he lipid accumula ion. A la ge numbe o s udies ha e also shown ha ca es ol
and kahweol ha e an i-in lamma ion and an ioxidan ac i i y, as well as an inhibi o y e ec on cell
p oli e a ion. Mo e speci ically, ca es ol blocks he AP-1 pa hway o educe PGE2 p oduc ion and
blocks he PI3K/Ak pa hway, p omo ing apop osis in umo cells [
122
]. All hese e ec s could be
bene icial in he placen al o e g ow h obse ed in GDM. Howe e , despi e he ac ha ca eine
has been shown o ac i a e STAT-3 ia decline o ER s ess in he hypo halamus [
123
], i has been
epo ed ha kahweol down- egula ed he STAT3 signaling pa hway by inhibi ing i s cons i u i e
phospho yla ion and ac i a ion [
124
], which may agg a a e he lep in esis ance in obesi y. The e o e,
u he esea ch and clinical ials a e needed o con i m whe he he co ee di e penes migh be used
o p e en o ea GDM in humans.
E idence has been epo ed ega ding he e ec o ea p e en ing obesi y and abno mal glucose
and lipid me abolism [
125
]. In his sense, in addi ion o phenolic componen s, a majo bioac i e
componen o ea ex ac is easaponin, a i e pene wi h signi ican an i-in lamma o y p ope ies.
Mo e speci ically, easaponin inhibi s p oin lamma o y cy okines by supp essing NF
κ
B signaling
ups eam o IKK/I
κ
B
α
[
125
]. The an i-in lamma o y e ec s o easaponin ha e been associa ed wi h
an imp o ed glycemic s a us in animal models. Mo eo e , easaponin dec eases he exp ession o
hypo halamic p oin lamma o y cy okines as well as he in lamma o y signaling in he mediobasal
hypo halamus [
125
]. This may con ibu e o imp o ed lep in sensi i i y and hypo halamic lep in
signaling ia p-STAT3. In ac , easaponin signi ican ly dec eases he le el o SOCS3, a nega i e
egula o o cen al lep in signaling in he hypo halamus o high- a die -induced obese mice.
The e o e, easaponin has impo an e ec s in imp o ing glucose ole ance, cen al lep in sensi i i y,
and hypo halamic lep in signaling [
125
], and i migh be a po en ial candida e as he apeu ic in e en ion
o obesi y and GDM.
3.4. P obio ics
Ea ly epo s o expe imen al and human s udies ega ding he ole o gu mic obio a p omo ing
gu ba ie unc ions and con olling in lamma o y esponses ha e a ac ed scien i ic in e es . The gu
mic obio a is highly sensi i e o he die and may be in ol ed in a accumula ion, a o ing hyd olysis
and abso p ion o indiges ible polysaccha ides and, hus, excessi e s o age o nu ien s [
126
,
127
]. In ac ,
a dis inc i e gu mic obio a composi ion in obesi y has been epo ed in humans [
127
]. Fo example,
a lowe ibe in ake has been epo ed o be associa ed wi h educed gu mic obio a di e si y and
ichness, g ea e abundance o genus associa ed wi h ype 2 diabe es melli us [
128
,
129
], and genus
wi h known p o-in lamma o y capaci y [
34
]. Physiological weigh gain du ing p egnancy [
130
,
131
]
also in luences he gu mic obio a composi ion in pa allel wi h weigh gain, a o ing a highe
numbe o Bi idobac e ium spp and a lowe p opo ion o S aphylococcus spp [
132
]. These shi
in mic obial composi ion a e mo e p onounced in obese p egnancy and women wi h o e weigh
gain du ing p egnancy [
130
–
133
]. The e o e, a easonable s a egy o igh GDM migh be based
on speci ic p obio ics, which migh coun e ac excessi e abso p ion and s o age o nu ien s by
modi ica ion o he gu mic obio a composi ion. P obio ics in GDM migh balance he e ec o abe an
indigenous mic obio a and no malize he inc eased in es inal pe meabili y, as well as he sec e ion
o p oin lamma o y media o s, including lep in. The e o e, as men ioned in a clinical ial [
134
],
speci ic p obio ics o p obio ic oods migh be used as die a y adjunc s o educe he isk o diseases
associa ed wi h abe an gu mic obio a composi ion, inc eased in es inal pe meabili y o al e ed
immunological o me abolic balance such as GDM. In ac , he impac o p obio ics on GDM migh
be mo e p onounced in a high- isk popula ion (e.g., obesi y). Mo eo e , p obio ics supplemen a ion
would no only a ec he ma e nal me abolic s a e, bu would also modula e e al physiology and
migh ha e a long- e m p og amming e ec on child heal h [
135
–
137
]. Howe e , cu en knowledge
Nu ien s 2020,12, 1970 9 o 18
abou gu mic obio a and die esponse in p egnancy complica ed by GDM is limi ed and u u e s udies
ha in eg a e gene ics and clinical a iables should be aken in o accoun .
3.5. O he s Bioac i e Compounds
Lycopene is a lipophilic ca o enoid which is esponsible o he ed colo in a ious ege ables
and ui s, and is commonly ound in oma oes [
138
,
139
]. This ca o enoid is known o i s an ioxidan
and an i-in lamma o y e ec s [
140
], and has been epo ed o imp o e diseases wi h ch onic
in lamma o y backg ounds such as obesi y. As men ioned abo e, hype lep inemia is associa ed
wi h p o-in lamma o y esponses and wi h he ch onic subin lamma o y s a e obse ed in obesi y [
141
].
In his con ex , i has been sugges ed ha lycopene supplemen a ion may a enua e he in lamma o y
esponse in obesi y, a leas in pa , by minimizing hype lep inemia [
142
,
143
]. O he bioac i e
compounds o many c uci e ous ege ables (e.g., wa e c ess and b occoli) a e iso hiocyana es (ITCs),
cha ac e ized by he p esence o hiol- eac i e chemicals ha can modi y c i ical cys eine esidues on
a a ie y o cellula p o eins [
144
–
146
]. As men ioned abo e, accumula ing e idence sugges s ha
PTP1B could be in ol ed in he pa hways leading o lep in esis ance as a majo nega i e egula o
o lep in and insulin signaling. In his sense, ITCs ha e been ound o inac i a e PTP1B [
147
,
148
],
which has a eac i e cys eine esidue a he ca aly ic cen e [
147
]. Pa icula ly, phene hyl iso hiocyana e
(PEITC), a ela i ely non oxic cons i uen , in addi ion o inhibi ing cellula PTP1B ac i i y, has been
demons a ed o enhance phospho yla ion o LEPRb, JAK2, and STAT3 in he hypo halamus, esul ing
in he s imula ion o lep in signaling and signi ican ly educed ood in ake [149].
3.6. Mic onu ien s
Mic onu ien s include nume ous mine als and i amins de i ed om he die ha a e essen ial
o cellula me abolism and op imal issue unc ion. I has been epo ed ha an adequa e supply
o mic onu ien s du ing p egnancy may signi ican ly educe he isk o de eloping diso de s o
p egnancy, including GDM [
150
]. Th oughou he cou se o p egnancy, he e may be inc eased isk
o mic onu ien de iciency in esponse o he equi emen s o he g owing e us [
151
]. The e o e,
al hough a heal hy die would be he ideal way o co e he mic onu ien equi emen s, i is
possible ha he physiological challenge o p egnancy migh equi e addi ional nu i ional suppo
o mic onu ien s [
152
]. The majo i y o supplemen s on he ma ke con ain a wide a ie y o
i amins (B g oup i amins, i amins C, D, E and ola e) and mine als (i on, coppe , zinc, iodine,
selenium [
153
]. Howe e , despi e he bene i s o mic onu ien s in suppo ing ma e nal, placen al,
and e al homeos asis du ing p egnancy [
152
,
154
], insigni ican e idence and a ied esul s ha e been
no ed upon andomized ials o supplemen a ion [
155
]. Such a iabili y may be linked o a ia ions
in speci ic mic onu ien supplemen p epa a ions and popula ion con ex s [
155
]. The e o e, he
possibili y ha mic onu ien s supplemen a ion could p e en complica ions o p egnancy wa an s
u he in es iga ion wi h la ge ials in his ield [151].
4. Medi e anean Die
Despi e he publica ion o nume ous andomized ials on die and li es yle in e en ions in
p egnancy [
156
], as men ioned abo e, no clea die a y ecommenda ions ha e eme ged o imp o e
p egnancy ou comes o women wi h me abolic isk ac o s, pa icula ly GDM. This can be a ibu ed o
he lack o obus e idence on e ec i eness o he die [
157
]. The adi ional die , “Medi e anean die ”,
has long been associa ed wi h p e en i e ac i i y agains ch onic in lamma ion-associa ed diseases,
which a e suppo ed by obse a ional and epidemiological da a. The Medi e anean-s yle die includes
componen s such as a high in ake o nu s, ex a i gin oli e oil, ui , ege ables, non- e ined g ains,
legumes and mic onu ien s, as well as mode a e o high consump ion o ish and low consump ion o
p ocessed mea , suga y d inks, as ood, and ood ich in animal a [
158
]. These key componen s
o his die migh help o con ol he ac i i y o obesi y and GDM as well as o he in lamma o y
pa hologies. In ac , he Medi e anean die has been ecen ly ound o educe he isk o GDM in a
Nu ien s 2020,12, 1970 16 o 18
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