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<dc:title>Analisi dell’espressione della fosfoERK quale strumento di indagine per la caratterizzazione della sensibilità alle sostanze d’abuso in linee di ratti geneticamente selezionati</dc:title>
<dc:creator>ROSAS, MICHELA</dc:creator>
<dc:subject>addiction</dc:subject>
<dc:subject>cocaina</dc:subject>
<dc:subject>cociane</dc:subject>
<dc:subject>dipendenza</dc:subject>
<dc:subject>etanolo</dc:subject>
<dc:subject>ethanol</dc:subject>
<dc:subject>morfina</dc:subject>
<dc:subject>morphine</dc:subject>
<dc:subject>nucleus accumbens</dc:subject>
<dc:subject>pERK</dc:subject>
<dc:subject>psychogenetic selction</dc:subject>
<dc:subject>selezione genetica</dc:subject>
<dc:subject>Settore BIO/14 - Farmacologia</dc:subject>
<dc:description>Clinical studies indicate that genetically determined personality traits, such as sensation&#xd;
seeking and impulsivity, are associated with increased drug addiction liability. Thus, in spite&#xd;
of the fact that for instance a prolonged ethanol exposure is an essential precondition to&#xd;
develop the disease, genetic factors account for about 50-60% of the risk of developing&#xd;
alcoholism. These observations have stimulated the use of selected strains and lines of&#xd;
rodents as models to investigate genetically determined differences in behavioral and&#xd;
neurochemical traits related to addictive disorders. Among those, the Roman high (RHA)- and&#xd;
low (RLA)-avoidance rats are selectively bred for rapid vs poor acquisition of active&#xd;
avoidance, respectively, and differ markedly in emotional reactivity, coping style, and&#xd;
behavioral and neurochemical responses to a number of drugs of abuse such as morphine,&#xd;
ethanol and psychostimulants. On the other hand, one of the most efficacious approaches to&#xd;
model several aspects of alcoholism is represented by the use of rat lines selectively bred&#xd;
for high ethanol preference or excessive ethanol drinking that represent well-suited&#xd;
experimental models to investigate the biological bases of alcoholism by virtue of their&#xd;
predictive, face, and construct validity. In particular, Sardinian alcohol-preferring (sP) rats&#xd;
constitute one of these rat lines selectively bred for excessive ethanol intake. Thus, when&#xd;
given a choice between 10% (v/v) ethanol and water, under the standard, home cage 2-bottle&#xd;
regimen, with unlimited access for 24 h/day, sP rats display a clear preference for the&#xd;
ethanol solution and daily consume 6 to 7 g/kg of pure ethanol.&#xd;
Among the kinases and transcription factors that have been deeply investigated in the recent&#xd;
years for their involvement in the molecular basis of addiction, the extracellular signalregulated&#xd;
kinase (ERK) occupies a strategic position, both at the cytoplasmic and nuclear&#xd;
level. In fact, activation of ERK is critical for memory formation and consolidation in&#xd;
different tasks such as conditioned taste aversion and fear conditioning, but it also appears&#xd;
critical in synaptic plasticity, as well as in synapse formation and function. Activation of ERK&#xd;
is also critical for long-term potentiation, a phenomenon of long-lasting synaptic plasticity&#xd;
that allows the characterization of the role of transduction molecules in the processes of&#xd;
learning and formation of long-term memories. In addition, in mature neurons, activation of&#xd;
ERK is involved in the mechanism of action of addictive drugs and its expression in dopaminerich&#xd;
terminal areas plays a critical role in several of their psychopharmacological effects,&#xd;
including their ability to sustain acquisition of conditioned place preference. However, some controversial findings still remain on the effects of morphine on ERK phosphorylation in the&#xd;
nucleus accumbens. Similarly, the issue of genetically determined differences among pairs of&#xd;
rat lines selectively bred for rapid vs slow acquisition of active avoidance (RHA vs RLA) and&#xd;
for high vs poor ethanol preference or excessive ethanol drinking (sP vs sNP) has never been&#xd;
systematically investigated. Hence, in order to gain insights on the differential sensitivity in&#xd;
terms of activated ERK in brain structures of the mesolimbic system and extended amygdala&#xd;
of such rat lines, the present study was devoted to investigate these issues by assessing the&#xd;
ability of morphine to activate ERK phosphorylation in the shell (AcbSh) and core (AcbC) of&#xd;
the nucleus accumbens (Acb) of Roman RHA and RLA, Sprague-Dawley and Wistar rats as well&#xd;
as in CD-1 mice and C57BL6J mice. This study was also aimed at comparing the effects of&#xd;
acute cocaine administration in Roman rats, and of ethanol administration in sP vs sNP rats,&#xd;
on ERK phosphorylation in Acb, prelimbic (PrL) and infralimbic (IL) prefrontal cortex (PFCx)&#xd;
and nuclei of the extended amygdala (BSTL, CeA and BLA).&#xd;
The results of these experiments demonstrate 1) that morphine significantly decreased Acb&#xd;
pERK expression, as determined by counting the number of pERK positive cells/area, in RLA,&#xd;
Sprague-Dawley and Wistar rats, 2) failed to either decrease or increase this measure in&#xd;
Acb of RHA rats and 3) significantly increased pERK expression in both CD-1 and C57BL6J&#xd;
mice. Ethanol (1 g/kg) significantly increased pERK immunoreactivity in AcbSh and AcbC of sP&#xd;
but not sNP rats. Conversely, ethanol failed to affect pERK expression in PrL and IL PFCx as&#xd;
well as in BSTL and CeA of both sP and sNP rats. In RHA but not RLA rats, cocaine (5 mg/kg)&#xd;
increased pERK in the IL PFCx and AcbSh, two areas involved in its acute effects, but did not&#xd;
modify pERK in the PrL PFCx and AcbC, which mediate the chronic effects of cocaine.&#xd;
These findings suggest that the lack of stimulation of pERK expression observed in RHA rats&#xd;
after morphine administration may be of considerable importance and significance, given the&#xd;
enhanced responsiveness of these animals to the neurochemical and behavioral effects of&#xd;
morphine; these findings also confirm previously reported differential effects of morphine&#xd;
on ERK phosphorylation in the Acb of rats vs mice and call for further experiments to&#xd;
elucidate the significance of the property of morphine to either increase and decrease pERK&#xd;
expression in rodents’ AcbSh and AcbC. The results also show that ethanol activated ERK&#xd;
differentially in Acb and PFCx of sP and sNP rats and indicate that selective breeding of&#xd;
these rat lines resulted in a double dissociation of the effects of acute ethanol on ERK phosphorylation in brain regions critical for ethanol’s psychopharmacological effects.&#xd;
Furthermore, these results extend to pERK expression previous findings on the greater&#xd;
sensitivity to acute cocaine of RHA vs RLA rats and confirm the notion that genetic factors&#xd;
influence the differential responses to addictive drugs. In conclusion, these findings support&#xd;
the view that the genetically selected rat lines represent a valid model to investigate the&#xd;
neural basis of the individual vulnerability to drug addiction and that pERK phosphorylation in&#xd;
nuclei of extended amygdala represents a valuable dynamic marker of drug-induced neuronal activation .</dc:description>
<dc:date>2015-05-06</dc:date>
<dc:type>info:eu-repo/semantics/doctoralThesis</dc:type>
<dc:identifier>http://hdl.handle.net/11584/266619</dc:identifier>
<dc:language>ita</dc:language>
<dc:relation>numberofpages:103</dc:relation>
<dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
<dc:publisher>Università degli Studi di Cagliari</dc:publisher>
<dc:rights>license:Non specificato</dc:rights>
</oai_dc:dc></metadata></record></GetRecord></OAI-PMH>