scieee Science in your language
[en] (orig)

Psychostimulant drugs and neuroplasticity

Abstract

Drugs of abuse induce plastic changes in the brain that seem to underlie addictive phenomena. These plastic changes can be structural (morphological) or synaptic (biochemical), and most of them take place in the mesolimbic and mesostriatal circuits. Several addiction-related changes in brain circuits (hypofrontality, sensitization, tolerance) as well as the outcome of treatment have been visualized in addicts to psychostimulants using neuroimaging techniques. Repeated exposure to psychostimulants induces morphological changes such as increase in the number of dendritic spines, changes in the morphology of dendritic spines, and altered cellular coupling through new gap junctions. Repeated exposure to psychostimulants also induces various synaptic adaptations, many of them related to sensitization and neuroplastic processes, that include up- or down-regulation of D1, D2 and D3 dopamine receptors, changes in subunits of G proteins, increased adenylyl cyclase activity, cyclic AMP and protein kinase A in the nucleus accumbens, increased tyrosine hydroxylase enzyme activity, increased calmodulin and activated CaMKII in the ventral tegmental area, and increased deltaFosB, c-Fos and AP-1 binding proteins. Most of these changes are transient, suggesting that more lasting plastic brain adaptations should take place. In this context, protein synthesis inhibitors block the development of sensitization to cocaine, indicating that rearrangement of neural networks must develop for the long-lasting plasticity required for addiction to occur. Self-administration studies indicate the importance of glutamate neurotransmission in neuroplastic changes underlying transition from use to abuse. Finally, plastic changes in the addicted brain are enhanced and aggravated by neuroinflammation and neurotrophic disbalance after repeated psychostimulants

Read accessible full text

Psychostimulant drugs and neuroplasticity

Author: Fernández-Espejo, Emilio; Rodríguez-Espinosa, Nieves
Publisher: MDPI AC
Year: 2011
DOI: 10.3390/ph4070976
Source: https://idus.us.es/bitstreams/7ba25e7c-f47c-48a9-800b-6df236015a3a/download
Pha maceu icals 2011, 4, 976-991; doi:10.3390/ph4070976
pha maceu icals
ISSN 1424-8247
www.mdpi.com/jou nal/pha maceu icals
Re iew
Psychos imulan D ugs and Neu oplas ici y
Emilio Fe nandez-Espejo * and Nie es Rod iguez-Espinosa
Depa amen o de Fisiología Médica, Facul ad de Medicina, Uni e sidad de Se illa, A . Sanchez
Pizjuan 4, 41009 Se illa, Spain
* Au ho o whom co espondence should be add essed; E-Mail: [email p o ec ed];
Tel.: +34-95-455-6584; Fax: +34-95-455-1769.
Recei ed: 19 Ap il 2011; in e ised o m: 15 June 2011 / Accep ed: 23 June 2011 /
Published: 30 June 2011
Abs ac : D ugs o abuse induce plas ic changes in he b ain ha seem o unde lie
addic i e phenomena. These plas ic changes can be s uc u al (mo phological) o synap ic
(biochemical), and mos o hem ake place in he mesolimbic and mesos ia al ci cui s.
Se e al addic ion- ela ed changes in b ain ci cui s (hypo on ali y, sensi iza ion, ole ance)
as well as he ou come o ea men ha e been isualized in addic s o psychos imulan s
using neu oimaging echniques. Repea ed exposu e o psychos imulan s induces
mo phological changes such as inc ease in he numbe o dend i ic spines, changes in he
mo phology o dend i ic spines, and al e ed cellula coupling h ough new gap junc ions.
Repea ed exposu e o psychos imulan s also induces a ious synap ic adap a ions, many o
hem ela ed o sensi iza ion and neu oplas ic p ocesses, ha include up- o
down- egula ion o D1, D2 and D3 dopamine ecep o s, changes in subuni s o G p o eins,
inc eased adenylyl cyclase ac i i y, cyclic AMP and p o ein kinase A in he nucleus
accumbens, inc eased y osine hyd oxylase enzyme ac i i y, inc eased calmodulin and
ac i a ed CaMKII in he en al egmen al a ea, and inc eased del aFosB, c-Fos and AP-1
binding p o eins. Mos o hese changes a e ansien , sugges ing ha mo e las ing plas ic
b ain adap a ions should ake place. In his con ex , p o ein syn hesis inhibi o s block he
de elopmen o sensi iza ion o cocaine, indica ing ha ea angemen o neu al ne wo ks
mus de elop o he long-las ing plas ici y equi ed o addic ion o occu .
Sel -adminis a ion s udies indica e he impo ance o glu ama e neu o ansmission in
neu oplas ic changes unde lying ansi ion om use o abuse. Finally, plas ic changes in
he addic ed b ain a e enhanced and agg a a ed by neu oin lamma ion and neu o ophic
disbalance a e epea ed psychos imulan s.
OPEN ACCESS
Pha maceu icals 2011, 4
977
Keywo ds: cocaine; amphe amine; neu oplas ici y
1. In oduc ion
The e m neu onal plas ici y, in wide sense, e e s o he neu obiological basis ha allows adap i e
changes in beha io , mo i a ion and emo ions, and i is also on he basis o maladap i e changes
ela ed o addic i e phenomena [1]. Two ypes o neu oplas ici y can be dis inguished: s uc u al
plas ici y and synap ic plas ici y. S uc u al plas ici y e e s o changes in neu onal mo phology
(including axons, dend i es and dend i ic spines), he genesis and supp ession o synapses, and he
genesis o new neu ons (neu ogenesis) and neu i es (neu i ogenesis). Synap ic plas ici y e e s o
biochemical and neu ochemical modi ica ions ela ed o changes in synap ic ac i i y, which leads o
endu ing changes in synap ic e icacy, and in beha io acco dingly. O he addic ion- ela ed p ocesses
a e associa ed wi h neu oplas ici y, o ins ance d ug sensi iza ion, sel -adminis a ion, d ug-seeking
and hypo on ali y. These phenomena ha e been analyzed in dep h, mos ly in ela ion o epea ed
psychos imulan s, du ing he las yea s.
Addic i e d ugs o abuse ha e he po en ial o induce addic ion h ough endu ing changes in
neu onal plas ici y, al e ing neu o ansmission sys ems, he s eng h and du a ion o synap ic con ac s,
neu onal mo phology, e c. In o he e ms, addic ion is a disease whose neu opa hology is based on
abe an s uc u al and synap ic plas ici y. By changing b ain ci cui s, addic i e d ugs impai he
de elopmen o beha io al s a egies owa ds biological s imuli in a o o p og essi ely g ea e
o ien a ion o beha io s owa ds d ug seeking and d ug- aking s a egies. Endu ing d ug-induced
neu oplas ici y es ablishes a maladap i e o ien a ion o he en i onmen ha mani es s as: i) impai ed
abili y o egula e he d i e o ob ain and use d ugs, and ii) educed d i e o ob ain na u al ewa ds.
Psychos imulan d ugs such as amphe amine and cocaine a e p o o ypic d ugs inducing neu oplas ici y
changes, and hey ha e been ex ensi ely s udies du ing he las yea s.
2. Sensi iza ion, a Model o Neu al Plas ici y
The epea ed adminis a ion o d ugs o abuse such as cocaine and amphe amine p oduces a
p og essi e inc ease in locomo o ac i i y o e ime, e e ed as mo o sensi iza ion. Mo o
sensi iza ion is conside ed as a model o neu al plas ici y [2-4], and neu oadap a ions media ing
sensi iza ion could unde lie some o he beha io al changes associa ed wi h ch onic d ug abuse [5].
Ch onic psychos imulan exposu e p oduces biochemical adap a ions in speci ic b ain egions hough o
media e ac i a ing p ope ies o hese d ugs [3,6]. The mesolimbic sys em is he mos impo an sys em
in ol ed in hese adap a ions, which comp ises dopamine gic neu ons in he en al egmen al a ea
(VTA) and hei p ojec ions o he limbic o eb ain such as he nucleus accumbens [3,7]. O he s uc u es
such as p e on al co ex, amygdala and hippocampus a e also in ol ed. Recen ly Pe ez e al. [8]
epo ed ha sensi iza ion o cocaine gene a es a high e iciency o hippocampal synap ic plas ici y
ha may unde lie he abe an engagemen o lea ning p ocesses occu ed du ing d ug addic ion.
A a biochemical le el, y osine hyd oxylase (TH) and N-me hyl-
D-
aspa a e ecep o 1
(NMDAR1) exp ession in he VTA a e ound o be inc eased a e epea ed psychos imulan and o he
Pha maceu icals 2011, 4
978
d ugs o abuse [9-12], and hese changes a e known o be ela ed o mo o sensi iza ion. Thus TH
up- egula ion leads o augmen ed dopamine neu o ansmission in he VTA and nucleus accumbens [9,10],
a c i ical ea u e o he de elopmen o sensi iza ion. Repea ed d ug exposu e is known o inc ease
ex acellula dopamine le els in he nucleus accumbens [13,14], and acu e o ch onic cocaine di ec ly
induces augmen a ion o dopamine elease in he nucleus accumbens. Repea ed cocaine exposu e also
leads o down- egula ion o D2 ecep o s in he en al egmen al a ea, oge he wi h sensi iza ion o
D1 ecep o s loca ed o he glu ama e gic e minals o he VTA, all oge he inducing an augmen ed
dopamine gic ac i i y in his a ea as well [3,15-18]. NMDA ecep o s become mo e pe meable o
calcium a e ch onic cocaine’s adminis a ion, ano he c i ical ea u e in he mo o sensi iza ion
p ocess [19]. D1 ecep o s o he nucleus accumbens become up egula ed du ing sensi iza ion, and
in usion o a D1R agonis in o his nucleus a e known o enhance cocaine-induced beha iou al
sensi iza ion [20]. NMDARs a e loca ed on non-DA neu ons wi hin he VTA and hey play a majo
ole in cocaine-induced sensi iza ion addic i e beha io [21].
The endocannabinoid sys em is also in ol ed in sensi iza ion p ocesses o psychos imulan s. The
b ain con ains an endogenous cannabinoid sys em ha pa icipa es in se e al p ocesses such as
nocicep ion, emo ion, mo o con ol, and ewa d [22]. The endocannabinoid sys em and CB
1
ecep o s
(CB
1
Rs) a e in ol ed no only in he ein o cemen p ope ies o ∆
9
- e ahyd ocannabinol [23], bu
also o se e al d ugs o abuse such as cocaine [24]. The o e all pic u e is ha cannabinoid CB
1
R
appea o be in ol ed in he pe sis ence o cocaine addic ion [25], a ec ing he exp ession, no
induc ion, o sensi iza ion. Thus, sys emic injec ions o imonaban , ligand o CB
1
ecep o s wi h
imonaban does no a ec he de elopmen o cocaine’s sensi iza ion in a s [26], bu he exp ession
o cocaine’s sensi iza ion has been epo ed o be educed by p e ea men wi h imonaban [27,28].
Silencing accumbal CB
1
R wi h siRNAs (using len i i al-media ed silencing o CB
1
R) leads o s ong
inc ease in mo o ac i a ing e ec s o cocaine, and mo o sensi iza ion is no a ec ed
(unpublished esul s).
Ou s udies indica e ha , a he le el o he en al egmen al a ea,
D-
se ine, an endogenous ligand
o he glu ama e gic NMDA ecep o , is in ol ed in sensi iza ion e ec s o psychos imulan s [29].
As ocy es and neu ons exp ess
D
-amino acid oxidase (DAO, syn hesizing enzyme o
D
-se ine) and elease
D-
se ine [30-32].
D-
se ine modula es NMDA ecep o ac i i y in he cen al ne ous sys em [33-35], and i
ac s h ough binding o NMDA ecep o s a he glycine si e, he eby acili a ing hei ac i a ion [25].
In his con ex , sensi iza ion- ela ed changes in he VTA ha e been compa ed o long- e m po en ia ion
(LTP) in he hippocampus. Besides i is known ha a single injec ion o cocaine can induce LTP o
AMPA ecep o -media ed cu en in dopamine gic neu ons in he VTA [36]. S imula ion o NMDA
ecep o s is needed o he de elopmen o cocaine’s sensi iza ion [37-39]. The NMDA ecep o
consis s o se e al dis inc binding si es iden i ied by he ligand: glu ama e o NMDA, PCP o
MK-801, glycine, as well as Mg
2+
-binding si e.
D-
Se ine and glycine a e co-agonis s wi h glu ama e
o he NMDA ecep o ionopho e [40], and co-agonism in he VTA is needed o he ini ia ion o
locomo o sensi iza ion o cocaine.
Sensi iza ion is also media ed by calcium and calmodulin-kinase II (CaMKII) signaling in he
en al egmen al a ea. Thus, enhanced le els o calcium in he VTA media e locomo o ac i a ing
e ec s o cocaine [16,18]. Glu ama e gic AMPA and NMDA ecep o s along wi h
L
- ype calcium
channels a e in ol ed in hese ac i a ing e ec s, because hey become mo e pe meable o calcium
Pha maceu icals 2011, 4
979
a e cocaine’s adminis a ion [18]. Calcium binds calmodulin (calcium/CaM complex) and hen
calcium-dependen kinases such as CaMKII bind calcium/CaM become phospho yla ed and ac i a ed
by calmodulin kinase-kinase (CaMKK). I is well known ha cocaine injec ions enhance o al CaMKII
p o ein in he VTA [39]. Supp essing CaMKII ac i i y in he en al egmen al a ea enhances he acu e
esponse o 15 mg/kg cocaine, and a enua es he ini ia ion o cocaine-induced beha io al sensi iza ion
in a s [39]. CaMKII is a ansduce o calcium signaling, his kinase being exp essed in many b ain
egions [41,42], including he VTA [39]. Calcium signaling pa hways play a pi o al ole in synap ic
plas ici y and memo y o ma ion [43,44], as well as CaMKII [45]. CaMKII unc ions as a po en
s imula o o calcium-dependen gene exp ession, and i ac i a es se e al ansc ip ion ac o s such as
CREB, which is phospho yla ed on he egula o y Se 133 esidue [46,47]. CREB ac i a ion in he
VTA is di ec ly in ol ed in sensi iza ion as explained, and egula es y osine hyd oxylase (TH)
ansc ip ion [48].
3. S uc u al Plas ici y a e Psychos imulan Consump ion
Repea ed exposu e o psychos imulan s induces mo phological changes in he mesolimbic a ge a eas
such as inc ease in he numbe o dend i ic spines, changes in he mo phology o dend i ic spines, and
al e ed cellula coupling h ough new gap junc ions [49-51]. Se e al expe imen al da a sugges ha
ea angemen o neu al ne wo ks mus de elop o he long-las ing plas ici y equi ed o sensi iza ion
o occu . P o ein syn hesis inhibi o s block he de elopmen o sensi iza ion o cocaine [52], and pups
younge han h ee weeks old, which a e oo imma u e o de elop neu al ne wo ks, do no become
sensi ized o psychos imulan s [53]. Hence sensi iza ion is also linked o mo phological changes in
ewa ding ci cui s.
A c mRNA and A c p o ein, ma ke s o neu i ic ou g ow h, ha e been epo ed o be up egula ed in
he do sal s ia um a e ch onic cocaine in a s [54], and down egula ion o mielin- ela ed genes akes
place in he nucleus accumbens o human cocaine abuse s [55]. Enhancemen o del aFosB and AP-1
p o eins has been pos ula ed o subse e hese mo phological changes [3]. In ac , he ansc ip ion ac o
del a osB accumula es in dopamine- e minal ields in he co ex and s ia um [3,56], and i is a s ong
candida e o media ing endu ing changes in hese egions. In ac , inc ease in dend i ic spine densi y has
been epo ed in accumbens spiny neu ons du ing ex ended abs inence om psychos imulan s [57], and
his inc ease is media ed by del aFosB s imula ion o Cdk5 [51].
Ano he change in p o ein syn hesis ha is pa icula ly impo an in es ablishing d ug-induced
neu oplas ici y is a ise in b ain-de i ed neu o ophic ac o (BDNF). The endu ing changes in BDNF
accumula e wi h inc easing pe iod o abs inence [27,58,59], and BDNF p omo es o ms o synap ic
plas ici y such as dend i ic spine o ma ion [60]. This p o ein is ano he s able neu oplas ici y
candida e ha may con ibu e o pe sis ence o addic ion and d ug-seeking beha io .
I is o g ea in e es ha simila neu oplas ic changes ake place in di e en ein o cemen - ela ed
beha io s. Thus epea ed sexual beha io induces a sensi ized locomo o esponse o amphe amine in
a s, and he numbe o dend i es and spines in he nucleus accumbens is inc eased wi h sexual
expe ience. Sexual expe ience induces unc ional and mo phological al e a ions in he mesolimbic
sys em simila o epea ed exposu e o psychos imulan s, hence some al e a ions in he mesolimbic
sys em a e common o na u al and d ug ewa d and migh play a ole in gene al ein o cemen [61].
Pha maceu icals 2011, 4
980
4. Sel -Adminis a ion and Neu oplas ici y
The e is an impo an li e a u e on he neu oplas ic changes a exci a o y synapses in he b ain
ewa d ci cui s associa ed wi h psychos imulan sel -adminis a ion in oden , an expe imen al model
which is much mo e likely o help unde s anding he neu al basis o d ug addic ion. In ac , se e al
s udies ha e demons a ed ha olun a y d ug in ake h ough a sel -adminis a ion pa adigm induce
di e en changes o hose obse ed a e non-con ingen d ug-exposu e [62-65]. Sel -adminis a ion
s udies indica e ha cocaine induces an enhancemen o glu ama e gic unc ion in VTA dopamine
neu ons. This e ec o cocaine is no by i sel because i is necessa y a s ong pai ing be ween he d ug
and a cue, poin ing o he g ea impo ance o condi ioned esponses o synap ic plas ici y a e d ugs
o abuse [65]. Glu ama e ecep o s such as mGlu5 ecep o s a e in ol ed in cocaine-induced plas ici y
in VTA dopamine gic cells, bu mGlu5 ecep o may no be essen ial o psychos imulan beha iou al
sensi iza ion and consolida ion o addic ion [66].
In his con ex , he nucleus accumbens and i s NMDA ecep o s, ano he ype o glu ama e
ecep o s, a e mo e in ol ed in pe sis en addic ion, h ough he modula ion o long e m dep ession
(LTD), a o m o synap ic plas ici y. Kasane z e al. [67] ha e sugges ed ha a ailu e o an indi idual
o coun e ac he impai men in NMDAR-LTD a e ch onic cocaine con ibu es o he ansi ion o
addic ion. Sel -adminis a ion s udies also indica e ha AMPA ecep o s in he nucleus accumbens a e
in ol ed in cocaine-seeking a e addic ion consolida ion. Thus he numbe o AMPA ecep o s in he
nucleus accumbens is inc eased a e p olonged abs inence om cocaine sel -adminis a ion. New
AMPA ecep o s lacking glu ama e ecep o 2 (GluR2) a e added, and hese ecep o s media e he
incuba ion o d ug c a ing [68]. All hese s udies s eng hen he concep han ansi ion om use o
abuse akes place in limbic s uc u es such as he nucleus accumbens and ha glu ama e
neu o ansmission is associa ed o plas ic changes media ing his ansi ion and c a ing esponses
du ing wi hd awal.
5. Neu oimaging and Psychos imulan s
Addic ion- ela ed changes in co ical ci cui s has been isualized in addic s o psychos imulan s
using neu oimaging echniques. These s udies indica e ha he e is a educ ion in p e on al co ex
(PFC) me abolism and blood low in addic ed o cocaine [69]. This “hypo on ali y” is a s ong
indica o o educed abili y o egula e d ug-seeking o o inhibi mo i a ional d i es ela ed o d ug
addic ion, because a ec ed egions a e an e io cingula e and en al o bi al co ex, which a e s ongly
linked o mo i a ed beha io , swi ching and a en ion esponses [70,71]. D2 dopamine ecep o
unc ionali y seems o be linked o his hypo on ali y, as sugges ed by Volkow e al [72]. These
au ho s obse ed ha he e is an associa ion be ween le el o dopamine D2 ecep o s, and me abolism
in he o bi o on al co ex in me hamphe amine and cocaine abuse s. They p opose ha D2
ecep o -media ed dys egula ion o he o bi o on al co ex could unde lie a common mechanism o
loss o con ol and compulsi e d ug in ake in d ug-addic ed subjec s. Fu he mo e, i addic ed subjec s
a e exposed o cues p e iously associa ed o he d ug, he e is a ma ked ac i a ion in he p e on al
co ex [69,73]. The ac i i y in he PFC has been posi i ely co ela ed wi h he in ensi y o cue-induced
desi e o he d ug, an index o c a ing.

Pha maceu icals 2011, 4
981
Psychos imulan s induce dopamine elease in en al and do sal s ia al nuclei. Thus Willei e al. [74]
ha e obse ed ha
D
-amphe amine induces displacemen o he D2/3 agonis adioligand
[
11
C]-(+)-4-p opyl-9-hyd oxynaph hoxazine [(+)-PHNO], a neu oimaging way o measu e dopamine
elease in he li ing human b ain. Sensi iza ion o amphe amine has also been modeled using
neu oimaging by Boileau e al [75]. Thus hey epo ha an ini ial dose o amphe amine causes
dopamine elease in he en al s ia um, as e alua ed by he educ ion in [
11
C] aclop ide binding.
Consis en wi h a sensi iza ion-like phenomenon, 14 and 365 days a e he hi d dose o amphe amine
he e is a g ea e psychomo o esponse and inc eased dopamine elease (a g ea e educ ion in
[
11
C] aclop ide binding), ela i e o he ini ial dose, in he en al s ia um, p og essi ely ex ending o
he do sal cauda e and pu amen. This phenomenon pe sis s o a leas one yea .
Neu oimaging echniques ha e also e ealed ha he e is a educ ion in dopamine ecep o
ac i a ion in esponse o low doses o psychos imulan s [76,77]. Me hylphenida e-induced dopamine
elease in o he s ia um is impai ed in cocaine addic s, and addic s show educed le els o D2
ecep o s in he s ia um [78]. Subjec s wi h low D2 densi y epo pleasu able e ec s om
me hylphenida e, whe eas subjec s wi h highe D2 densi y do no like he e ec s o his
psychos imulan d ug [79]. The binding o cocaine and o he psychos imulan s o DAT can be assessed
in humans by measu ing he dose-dependen displacemen o [
11
C]cocaine by a non- adiac i e
compe i o . The ex en o eupho ia expe ienced ollowing adminis a ion o cocaine co ela ed
posi i ely wi h he occupancy o [
11
C]cocaine-binding si es in he s ia um, and all subjec s wi h
g ea e han 60% occupancy o DAT expe ienced eupho ia [80].
Neu oimaging s udies con i m ha cocaine and me hamphe amine abuse induce down- egula ion o D2
ecep o s, and his down egula ion wea s o a e p olonged abs inence. Thus in ch onic cocaine use s,
[
11
C] aclop ide is educed by 15% in he s ia um [81], and simple a io o [
11
C]NMSP up ake in he
s ia um is also educed, bu e u ns o no mal a e p olonged abs inence [82]. Rega ding
me hamphe amine abuse s, i has been de ec ed a 10-15% educ ion in s ia al [
11
C] aclop ide binding [72].
Finally, ea men esponse in cocaine abuse s is ela ed o dopamine signaling as ecen ly
demons a ed by Ma inez e al. [83], who ha e epo ed ha low dopamine ansmission is associa ed
wi h ea men ailu e. Thus hey quan i ied, p io o ea men , [
11
C] aclop ide binding be o e and
a e he adminis a ion o me hylphenida e, and he ou come measu es we e lowe in he olun ee s
who did no espond o ea men han in hose who expe ienced a posi i e ea men esponse. The
au ho s p opose ha he combina ion o beha io al ea men wi h me hods ha inc ease s ia al
dopamine signaling migh se e as a he apeu ic s a egy o cocaine dependence [83].
6. Psychos imulan s and Neu oin lamma ion
Neu oin lamma ion o he cen al ne ous sys em seems o pa icipa e in neu oplas ici y changes
and sensi izing e ec s o d ugs such as psychos imulan s [84-86]. I wo h ecalling ha in lamma ion
is pa o a complex biological esponse o ha m ul s imuli, such as pa hogens o i i an s. D ugs o
abuse could be included among i i an s, and neu oin lamma ion would be a p o ec i e a emp by he
o ganism o emo e he inju ious s imuli. In his con ex , i is well known ha psychos imulan s
enhance ac i a ion o in lamma o y cells such as as ocy es and glial cells in neoco ex [87]. Ac i a ed
as ocy es and glia elease nume ous p o-in lamma o y ac o s such as ni ic oxide, ATP, TGF-α,
Pha maceu icals 2011, 4
982
in e leukin-1β, in e leukin 2 and in e leukin 6 [88-90], and se e al in lamma o y cy okines such as
in e e on-gamma and in e leukin 10 a e enhanced by ch onic cocaine [91]. Cocaine is also known o
enhance he ansc ip ion ac o nuclea ac o -kappaB (NF-κB), and i educes le els o TNF-α [92].
In his con ex , NF-κB is an impo an in lamma o y ac o ha con ols many genes in ol ed in
in lamma ion, and NF-κB is ound o be ch onically ac i e in many in lamma o y diseases.
Apa om p oin lamma o y ac o s eleased by as ocy es and glia, i is o in e es ha pe oxisome
p oli e a o -ac i a ed ecep o s (PPARs) a e in ol ed in neu oin lamma ion and d ug dependence,
because PPAR-γ has a signi ican ole in he exp ession o mo o sensi iza ion o me amphe amine in
mice [86]. Pe oxisome p oli e a o -ac i a ed ecep o is a ligand-ac i a ed ansc ip ion ac o
belonging o a nuclea ho mone ecep o supe amily. Th ee PPAR iso ypes (α, β, γ) ha e been
cha ac e ised and can be ansloca ed o he nuclea ac ion o cells as he e odime s wi h he e inoid
X ecep o (RXR). The ligand-ac i a ed he e odime s can bind o PPAR esponse elemen (PPRE) o
egula e he ansc ip ion o a ge genes. In lamma ion is known o be egula ed by PPAR-γ and
PPAR-α, whose ac i a ion nega i ely egula es he ansc ip ion o in lamma o y esponse genes by
an agonizing he AP-1 and NF-κB signalling pa hways [93-95]. In ac , PPARs play p ominen oles in
se e al physiological p ocesses including he in lamma o y esponse apa om hei ole in he
con ol o lipid and lipop o ein me abolism, and glucose homeos asis [96-98]. Recen ly we ha e
obse ed ha PPAR-α plays a homeos a ic ole a enua ing mo o sensi izing e ec s o epea ed
mo phine ea men , bu no cocaine, likely h ough a educ ion o in lamma ion-associa ed changes [99].
I seems ha , among PPARs, PPAR-γ bu no PPAR-α, is mo e in ol ed in sensi izing e ec s o
psychos imulan s. Howe e i is wo hno ing ha PPAR-α has been linked o he ein o cing e ec s o
some d ugs such as nico ine, because PPAR-α agonis s sup ess nico ine-induced ac i a ion o
mesolimbic dopamine neu ons h ough PPAR-α [100].
7. Psychos imulan s and Al e ed Neu o ophism
The eme gence o neu o ophic disbalance, mainly wi hin he mesolimbic egions and o he egions
such as amygdala and hippocampus, seems o be impo an in he de elopmen o addic i e p ocesses
and neu oplas ic changes a e psychos imulan s and o he d ugs o abuse. Neu o ophic ac o s ha e
been implica ed in many o ms o plas ici y in he adul ne ous sys em, hence changes in dopamine
sys ems a e epea ed d ugs sugges ha neu o ophic ac o s such as GDNF, BDNF o FGFs a e
in ol ed in d ug’s addic i e p ocesses [3,9,101-106].
Among hese ophic ac o s, ib oblas g ow h ac o s (FGFs) and hei ecep o s pa icipa e in
many p ocesses such as egula ion o synap ic plas ici y, lea ning and memo y [107], and FGF-2
( ib oblas g ow h ac o -2) has been in ol ed in he sensi izing e ec s o psychos imulan s [105,106].
Fib oblas g ow h ac o -1 o FGF-1, ano he membe o he FGFs amily, is also in ol ed in he
egula ion o synap ic plas ici y [107], and i is implica ed in sensi iza ion o d ugs o abuse [108].
Fumagalli e al. [109] ha e demons a ed ha s ess in e ac s wi h cocaine o al e he pa e n o FGF-2
exp ession in a egionally selec i e ashion. These esul s iden i y a po en ial molecula a ge h ough
which s ess al e s cellula sensi i i y o cocaine and migh p o e use ul in unde s anding he
mechanisms unde lying b ain ulne abili y o s ess.
Pha maceu icals 2011, 4
983
A he le el o en al egmen al a ea, de ici o GDNF and up egula ion o neu o ophins such as
NT-3 a e linked o sensi iza ion phenomena a e psychos imulan s. This dual change ep esen s qui e
well he eme gence o a neu o ophic disbalance du ing addic ion, because bo h GDNF dow egula ion
and NT-3 up egula ion acili a es dopamine ac i i y wi hin he VTA. GDNF is eleased by dopamine
neu ons o VTA ac ing e og adely on GABAe gic e minals enhancing GABA elease a e
enhancemen o he calcium binding p o ein equenin inside e minals [110]. Down egula ion o
GDNF leads o a highe ac i i y o dopamine neu ons ha as a consequence a e subjec ed o less
inhibi ion om GABAe gic in e neu ons.
As al eady men ioned, ano he change in p o ein syn hesis ha is pa icula ly impo an in
es ablishing d ug-induced neu oplas ici y is a ise in b ain-de i ed neu o ophic ac o (BDNF).
Changes in le els o BDNF p o ein and mRNA ha e been obse ed in he b ain ollowing
adminis a ion o d ugs o abuse such as psychos imulan s, and hese changes ha e been obse ed in
he nucleus accumbens, p e on al co ex, en al egmen al a ea, and amygdala [111-114]. BDNF
signaling can induce di e en e ec s depending on he b ain egion examined. Fo ins ance, inc eased
BDNF in he NAc enhances cocaine-induced beha io s [113], whe eas in he p e on al co ex BDNF
sup esses hem [115]. Besides BDNF in used in o he hippocampus is an idep essan , bu in he
nucleus accumbens exe s p odep essan e ec s. In he medial p e on al co ex, up egula ed BDNF
acili a es LTP and con ibu es o neu obeha io al adap a ions o psychos imulan s [116].
Co ico- egmen al BDNF is also in ol ed in long- e m amphe amine sensi iza ion [117].
Calcium in lux and CaMKII ha e been also implica ed in he p oduc ion and esponsi eness o
BDNF [118,119]. BDNF pa icipa es on he de elopmen o sensi iza ion o cocaine o amphe amine
because di ec in usion o BDNF in o he VTA blocks he abili y o cocaine o p oduce some biochemical
and mo phological e ec s in his egion, such as he induc ion o y osine-hyd oxylase [9,101], and
epea ed amphe amine ea men inc eases BDNF wi hin he VTA, an e ec ha is enhanced in
sensi ized animals [117]. BDNF also pa icipa es du ing abs inence, and ecen ly i has been obse ed
ha ele a ed BDNF exp ession a e cocaine wi hd awal sensi izes he exci a o y synapses in he
medial p e on al co ex, and his ac may con ibu e o cue-induced d ug c a ing and d ug-seeking
beha io [116]. In he medial p e on al co ex, up egula ed BDNF acili a es LTP and con ibu es o
neu obeha io al adap a ions o psychos imulan s.
8. Conclusions
Psychos imulan s induce plas ic changes in he b ain ha seem o unde lie addic i e phenomena.
These plas ic changes ake place in he mesolimbic and mesos ia al ci cui s. Se e al addic ion- ela ed
changes in b ain ci cui s (hypo on ali y, sensi iza ion, mo phological al e a ions) as well as he
ou come o ea men ha e been isualized in addic s o psychos imulan s using neu oimaging
echniques. Repea ed exposu e o psychos imulan s induces mo phological changes such as inc ease in
he numbe o dend i ic spines o changes in he mo phology o dend i ic spines. Besides epea ed
exposu e o psychos imulan s also induces a ious synap ic adap a ions, many o hem ela ed o
sensi iza ion and neu oplas ic p ocesses, ha include up- o down- egula ion o D1, D2 and D3
dopamine ecep o s, changes in subuni s o G p o eins, inc eased adenylyl cyclase ac i i y, cyclic
AMP and p o ein kinase A in he nucleus accumbens, inc eased y osine hyd oxylase enzyme ac i i y,
Pha maceu icals 2011, 4
984
inc eased calmodulin and ac i a ed CaMKII in he en al egmen al a ea, and inc eased del aFosB,
c-Fos and AP-1 binding p o eins. Mos o hese changes a e ansien , sugges ing ha mo e las ing
plas ic b ain adap a ions should ake place. Sel -adminis a ion s udies indica e he impo ance o
glu ama e neu o ansmission in neu oplas ic changes unde lying ansi ion om use o abuse. Finally,
plas ic changes in he addic ed b ain a e enhanced and agg a a ed by neu oin lamma ion and
neu o ophic disbalance a e ch onic psychos imulan adminis a ion.
Re e ences
1. Malenka, R.C.; Bea , M.F. LTP and LTD: An emba assmen o iches. Neu on 2004, 44, 5-21.
2. Wise, R.A. Addic ion becomes a b ain disease. Neu on 2000, 26, 27-33.
3. Nes le , E.J. Molecula basis o long- e m plas ici y unde lying addic ion. Na u e Re . Neu osci.
2001, 2, 119-128.
4. Kelley, A.E. Memo y and addic ion: Sha ed neu al ci cui y and molecula mechanisms. Neu on
2004, 44, 161-179.
5. Robinson, T.E.; Be idge, K.C. The psychology and neu obiology o addic ion: An
incen i e-sensi iza ion iew. Addic ion 2000, 95, S91-S117.
6. Koob, G.F.; Bloom, F.E. Cellula and molecula mechanisms o d ug dependence. Science 1988,
242, 715-723.
7. Wise, R.A.; Romp e, P.P. B ain dopamine and ewa d. Annu. Re . Psychol. 1989, 40, 191-225.
8. Pe ez, M.F.; Gabach, L.A.; Almi on, R.S.; Ca lini, V.P.; de Ba ioglio, S.R.; Rami ez, O.A.
Di e en ch onic cocaine adminis a ion p o ocols induce changes on den a e gy us plas ici y
and hippocampal dependen beha io . Synapse 2010, 64, 742-753.
9. Bei ne -Johnson, D.; Nes le , E.J. Mo phine and cocaine exe common ch onic ac ions on
y osine hyd oxylase in dopamine b ain ewa d egions. J. Neu ochem. 1991, 57, 344-347.
10. Be how, M.T.; Russell, D.S.; Te willige , R.Z.; Bei ne -Johnson, D.; Sel , D.W.; Lindsay, R.M.;
Nes le , E.J. In luence o neu o ophic ac o s on mo phine- and cocaine-induced biochemical
changes in he mesolimbic dopamine sys em. Neu oscience 1995, 68, 969-979.
11. Fi zge ald, L.W.; O iz, J.; Hamedani, A.G.; Nes le , E.J. D ugs o abuse and s ess inc ease he
exp ession o GluR1 and NMDAR1 glu ama e ecep o subuni s in he a en al egmen al a ea:
Common adap a ions among c oss-sensi izing agen s. J. Neu osci. 1996, 16, 274-282.
12. Jones, S.W. O e iew o ol age-dependen calcium channels. J. Bioene g. Biomemb . 1998, 30,
299-312.
13. di Chia a, G.; Impe a o, A. D ugs o abuse p e e en ially inc ease synap ic dopamine
concen a ions in he mesolimbic sys em o eely mo ing a s. P oc. Na . Acad. Sci. USA 1988,
85, 5274-5278.
14. Spanagel, R.; Almeida, O.F.X.; Shippenbu g, T.S. Long-las ing changes in mo phine-induced
mesolimbic dopamine elease a e ch onic mo phine exposu e. Synapse 1993, 14, 243-245.
15. S ewa , J.; Vezina, P. Mic oinjec ions o SCH-23390 in o he en al egmen al a ea and
subs an ia nig a pa s e icula e a enua e he de elopmen o sensi iza ion o he locomo o
ac i a ing e ec s o sys emic amphe amine. B ain Res. 1989, 495, 401-406.
Pha maceu icals 2011, 4
991
106. Flo es, C.; S ewa , J. Basic ib oblas g ow h ac o as a media o o he e ec s o glu ama e in
he de elopmen o long-las ing sensi iza ion o s imulan d ugs: S udies in he a .
Psychopha macology 2000, 151, 152-165.
107. Reuss, B.; on Bohlen und Halbach, O. Fib oblas g ow h ac o s and hei ecep o s in he
cen al ne ous sys em. Cell Tissue Res. 2003, 313, 139-157.
108. Flo es, J.A.; Galan-Rod iguez, B.; Rojo, A.I.; Rami o-Fuen es, S.; Cuad ado, A.; Fe nandez-Espejo, E.
Fib oblas g ow h ac o -1 wi hin he en al egmen al a ea pa icipa es in mo o sensi izing
e ec s o mo phine. Neu oscience 2010, 165, 198-211.
109. Fumagalli, F.; di Pasquale, L.; Ca ino, L.; Racagni, G.; Ri a, M.A. S ess and cocaine in e ac o
modula e basic ib oblas g ow h ac o (FGF-2) exp ession in a b ain. Psychopha macology
(Be l.) 2008, 196, 357-364.
110. Wang, C.Y.; Yang, F.; He, X.; Chow, A.; Du, J.; Russell, J.T.; Lu, B. Ca(2+) binding p o ein
equenin media es GDNF-induced po en ia ion o Ca(2+) channels and ansmi e elease.
Neu on 2001, 32, 99-112.
111. G imm, J.W.; Lu, L.; Hayashi, T.; Hope, B.T.; Su, T.P.; Shaham, Y. Time-dependen inc eases in b ain-
de i ed neu o ophic ac o p o ein le els wi hin he mesolimbic dopamine sys em a e wi hd awal om
cocaine: Implica ions o incuba ion o cocaine c a ing. J. Neu osci. 2003, 23, 742-747.
112. Le Foll, B.; Diaz, J.; Sokolo , P. A single cocaine exposu e inc eases BDNF and D3 ecep o
exp ession: Implica ions o d ug-condi ioning. Neu o epo 2005, 16, 175-178.
113. G aham, D.L.; Edwa ds, S.; Bach ell, R.K.; di Leone, R.J.; Rios, M.; Sel , D.W. Dynamic BDNF
ac i i y in nucleus accumbens wi h cocaine use inc eases sel -adminis a ion and elapse. Na .
Neu osci. 2007, 10, 1029-1037.
114. Russo, S.J.; Mazei-Robison, M.S.; Ables, J.L.; Nes le , E.J. Neu o ophic ac o s and s uc u al
plas ici y in addic ion. Neu opha macology 2009, 56, 73-82.
115. Be glind, W.J.; See, R.E.; Fuchs, R.A.; Ghee, S.M.; Whi ield, T.W., J .; Mille , S.W.; McGin y,
J.F. A BDNF in usion in o he medial p e on al co ex supp esses cocaine seeking in a s. Eu . J.
Neu osci. 2007, 26, 757-766.
116. Lu, H.; Cheng, P.L.; Lim, B.K.; Khoshne is ad, N.; Poo, M.M. Ele a ed BDNF a e cocaine
wi hd awal acili a es LTP in medial p e on al co ex by supp essing GABA inhibi ion. Neu on
2010, 67, 821-833.
117. Fanous, S.; Lacagnina, M.J.; Nikulina, E.M.; Hamme , R.P., J . Sensi ized ac i a ion o Fos and
b ain-de i ed neu o ophic ac o in he medial p e on al co ex and en al egmen al a ea
accompanies beha io al sensi iza ion o amphe amine. Neu opha macology 2011, in p ess.
118. Finkbeine , S.; Ta azoie, S.F.; Malo a sky, A.; Jacobs, K.M.; Ha is, K.M.; G eenbe g, M.E.
CREB: A majo media o o neu onal neu o ophin esponses. Neu on 1997, 19, 1031-1047
119. Tao, X.; Finkbeine , S.; A nold, D.B.; Shaywi z, A.J.; G eenbe g, M.E. Ca2+ in lux egula es
BDNF ansc ip ion by a CREB amily ansc ip ion ac o -dependen mechanism. Neu on 1998,
20, 709-726.
© 2011 by he au ho s; licensee MDPI, Basel, Swi ze land. This a icle is an open access a icle
dis ibu ed unde he e ms and condi ions o he C ea i e Commons A ibu ion license
(h p://c ea i ecommons.o g/licenses/by/3.0/).