Alteration of lymphocyte opioid receptors in methadone maintenance subjects
Tipa Toskulkao1, Ruchee Pornchai, Varaporn Akkarapatumwong
1Neuro-Behavioural Biology Center, Institute of Molecular Biosciences, Mahidol University, Nakornpathom, Thailand.
Abstract:
Methadone maintenance therapy is the most widely used treatment in patients with heroin addiction. Multiple studies have suggested that both current and former heroin addicts entering a methadone maintenance treatment program have altered immune function. Our previous study indicated that heroin addicts have depressed mitogen-stimulated lymphocyte proliferation and a decrease in the modulation of lymphocyte surface markers. This immunosuppression may be mediated via the direct interaction of opiates with lymphocyte opioid receptors. In order to test this hypothesis, the levels of opioid receptors on immune cells obtained from heroin users were determined using saturation binding, and it was found that former heroin addicts on methadone maintenance treatment had a significantly reduced maximum number (B(max)) of [(3)H]naloxone binding. The B(max) values were 51.3+/-7.6 fmol/mg protein for the non-addicted group and 25.3+/-3.1 fmol/mg protein for the methadone maintenance group. Opioid receptor gene expression on the immune cell was determined using a semi-quantitative reverse-transcription polymerase chain reaction technique with specific pairs of primers to amplify mu- and delta-opioid receptor mRNAs. Both types of mRNAs were significantly decreased in lymphocytes obtained from the former heroin addicts on methadone maintenance subjects. Similarly, in an in vitro study, 100 microM methadone significantly down-regulated both mu- and delta-opioid receptor mRNA expressions in cultured lymphocytes obtained from naïve subjects. This effect was prevented by including 100 microM naloxone or pretreating with 50 ng/ml pertussis toxin. The data presented indicate that chronic opiate exposure was associated with down-regulation of G-protein-coupled opioid receptor gene expression in human lymphocytes.
Insights
Methadone maintenance therapy for heroin addiction reduces opioid receptors on immune cells. Chronic opiate exposure down-regulates opioid receptor gene expression in human lymphocytes, impacting immune function.
Area of Science:
- Immunology
- Pharmacology
- Neuroscience
Background:
- Methadone maintenance therapy is a primary treatment for heroin addiction.
- Heroin addiction and methadone treatment are linked to altered immune function.
- Previous research indicated immunosuppression in heroin addicts, potentially due to opiate interaction with lymphocyte opioid receptors.
Purpose of the Study:
- To investigate the levels and gene expression of opioid receptors on immune cells in former heroin addicts undergoing methadone maintenance treatment.
- To determine if methadone directly affects opioid receptor expression in lymphocytes.
Main Methods:
- Saturation binding assays using [(3)H]naloxone to quantify opioid receptor levels (B(max)) in immune cells.
- Semi-quantitative reverse-transcription polymerase chain reaction (RT-PCR) to measure mu- and delta-opioid receptor mRNA expression.
- In vitro study exposing lymphocytes from healthy subjects to methadone.
Main Results:
- Former heroin addicts on methadone maintenance showed significantly reduced maximum opioid receptor binding capacity (B(max)).
- Mu- and delta-opioid receptor mRNA levels were significantly decreased in lymphocytes from methadone-maintained subjects.
- In vitro methadone exposure down-regulated mu- and delta-opioid receptor mRNA expression in cultured lymphocytes, an effect blocked by naloxone or pertussis toxin.
Conclusions:
- Chronic opiate exposure, including methadone maintenance, is associated with a down-regulation of G-protein-coupled opioid receptor gene expression in human lymphocytes.
- This down-regulation may contribute to the observed alterations in immune function in individuals treated for heroin addiction.
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