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Molecular approaches to drug abuse research. Vol. 3, Recent advances and emerging strategies
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  • Molecular approaches to drug abuse research. Vol. 3, Recent advances and emerging strategies
Utgivning, distribution etc.
  • National Institute on Drug Abuse, Rockville, Md : 1996
Fysisk beskrivning
  • 229 s : ill.
Serietitel - biuppslagsform
  • NIDA research monograph series ; 161
  • NIH publication ; 96-4022
Anmärkning: Allmän
  • E-bok
Anmärkning: Innehållsbeskrivning, sammanfattning
  • Immunological approaches to nicotine receptors. The dopamine D4 receptor. Behavioral characterization of mice packing the 5-HT-IB receptor. Mechanisms regulating proenkephalin gene expression: contributions to transgenic models. Human opioid receptors: chromosomal mapping and mRNA localization. Molecular biology of opioid receptors. Mu opioid receptors: cellular action and tolerance development. Cloning and characterization of multiple opioid receptors. Regulation of acute and chronic opioid receptor functions by OBCAM, a cell adhesion-like molecule. Discrete structural domains and cell-specific expression determine functional selectivity of the dopamine and norepinephrine transporters. Drug interactions with vesicular amine transport. Strategies for identifying genes underlying drug abuse susceptibility.
Term
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Personnamn
Institutionsnamn
  • National Institute on Drug Abuse Utgivare
*000      am a       7a
*00116882
*007cr |||||||||||
*008070120s1996||||xxu||||es|||||||||1|eng||
*24510$aMolecular approaches to drug abuse research.$nVol. 3,$pRecent advances and emerging strategies /$ceditor: Theresa N.H. Lee
*260  $aRockville, Md :$bNational Institute on Drug Abuse,$c1996
*300  $a229 s :$bill.
*440  $aNIDA research monograph series ;$v161
*440  $aNIH publication ;$v96-4022
*500  $aE-bok
*520  $aImmunological approaches to nicotine receptors. The dopamine D4 receptor. Behavioral characterization of mice packing the 5-HT-IB receptor. Mechanisms regulating proenkephalin gene expression: contributions to transgenic models. Human opioid receptors: chromosomal mapping and mRNA localization. Molecular biology of opioid receptors. Mu opioid receptors: cellular action and tolerance development. Cloning and characterization of multiple opioid receptors. Regulation of acute and chronic opioid receptor functions by OBCAM, a cell adhesion-like molecule. Discrete structural domains and cell-specific expression determine functional selectivity of the dopamine and norepinephrine transporters. Drug interactions with vesicular amine transport. Strategies for identifying genes underlying drug abuse susceptibility.
*650 4$aReceptors, nicotinic
*650 4$aReceptors, dopamine
*650 4$aReceptors, opioid
*650 4$aReceptors, opioid, mu
*650 4$aDrug interactions
*650 4$aGenetics
*653  $aReceptorer
*7001 $aLee, Theresa N.H.$4edt
*7101 $aNational Institute on Drug Abuse$4pbl$0124050
*85640$uhttps://archives.drugabuse.gov/sites/default/files/monograph161_0.pdf
^
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