The Neurobiology of Addiction: Where We Have Been and Where We Are Going
Нейробиология зависимости: пройденный путь и дальнейшие перспективы
2009-01-01
SCID: 54.1/wgsfzc4z
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addiction neurocircuitrydopaminergic functionendogenous opioid systemneurobiology of addictionopioid receptors
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Abstract (AI)
A number of dramatic breakthroughs in the neurobiology of addiction have occurred in the past 40 years. Two domains will be highlighted: the neurocircuitry of addiction and the molecular biology of addiction targets. The neurobiological substrates for the reinforcing effects of drugs of abuse have been largely identified both at the initial site of action and in the circuitry involved. In human imaging studies, decreases in dopaminergic function have been identified as a key element of addiction, lending support for research on the role of dopamine in addiction. Three novel areas currently are emerging: the role of deficits in frontal cortex functioning, changes in the brain neurocircuitry that convey long-term vulnerability to relapse, and the role of nondopaminergic systems in the neuroadaptations associated with the development of drug dependence. Parallel to these functional changes have been major advances in our understanding of the molecular biology of addiction; the greatest contribution has been in the understanding of the molecular mechanisms of opioid action. This paper reviews the major developments in our understanding of the molecular biology of the endogenous opioid system and the use of genomics to advance our knowledge of the function and regulation of opioid receptors and endorphins.
Key Findings
1
Emerging research emphasizes frontal-cortex deficits, persistent circuit changes mediating relapse vulnerability, and nondopaminergic neuroadaptations in dependence.
2
Genomics is advancing understanding of opioid-receptor and endorphin function and regulation.
3
Human imaging studies show reduced dopaminergic function as a key feature of addiction, supporting dopamine’s role in addictive processes.
4
Molecular advances have substantially clarified addiction biology, particularly the mechanisms of opioid action and the endogenous opioid system.
5
Research over four decades has identified the neurocircuitry underlying drug reinforcement, including initial drug-action sites and involved brain circuits.
Research Object
the neurobiology of drug addiction, including addiction-related brain neurocircuitry and molecular targets
Research Subject
the neurobiological and molecular mechanisms underlying drug reinforcement, dependence, vulnerability to relapse, and opioid-system function and regulation
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2009-01-01
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