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Chronic morphine treatment selectively suppresses macrophage colony formation in bone marrow
S Roy1, S Ramakrishnan, H H Loh
1Department of Pharmacology, University of Minnesota Medical School, Minneapolis 55455.
Abstract:
Opioids have been shown to have diverse effects on the immune system, both in vivo and in vitro, but their interactions on immature progenitor cells have been little studied. We have examined the effects of chronic morphine treatment of mice on colony formation by bone marrow cells in vitro. Bone marrow cells from mice implanted with morphine pellets for 72 h showed a 65% decrease in their response to macrophage colony stimulating factor (M-CSF). In contrast, chronic morphine treatment had no effect on the response of bone marrow cells to granulocyte/macrophage colony stimulating factor (GM-CSF). Removal of the morphine pellets from the mice resulted in a time-dependent reversal of the inhibition of macrophage colony formation, and the inhibition was completely blocked by simultaneous administration of naloxone and morphine pellets to the mice. No inhibition of colony formation was observed in bone marrow cells from mice treated with a single acute dose of morphine. Incubation of bone marrow cells from untreated mice for 7 days with in vitro morphine concentrations as low as 25 microM also reduced macrophage colony formation, and the opioid peptide beta-endorphin was even more potent, significantly reducing macrophage colony formation at concentrations as low as 0.25 microM. In agreement with the in vivo effects, neither opioid in vitro had a significant effect on granulocyte/macrophage colony formation. These results suggest that opioids may significantly alter the maturation of immune cells, which could result in potent effects on overall immune competence.
Insights
Chronic morphine exposure impairs macrophage development from bone marrow cells, but not granulocyte development. This opioid effect on immune cell maturation is reversible and blocked by naloxone.
Area of Science:
- Immunology
- Pharmacology
- Cell Biology
Background:
- Opioids impact the immune system, but effects on immature progenitor cells are understudied.
- Understanding opioid interactions with immune cells is crucial for assessing immune competence.
Purpose of the Study:
- To investigate the effects of chronic morphine exposure on bone marrow progenitor cell colony formation in vitro.
- To determine if opioid effects on immune cell development are dose-dependent and reversible.
Main Methods:
- Mice received chronic morphine pellet implants for 72 hours.
- Bone marrow cells were cultured in vitro with colony-stimulating factors (M-CSF, GM-CSF).
- In vitro morphine and beta-endorphin exposure assessed effects on colony formation.
Main Results:
- Chronic morphine treatment reduced macrophage colony formation by 65% in response to M-CSF.
- No significant effect on granulocyte/macrophage colony formation (GM-CSF) was observed.
- In vitro morphine and beta-endorphin inhibited macrophage colony formation; effects were reversible and naloxone-blockable.
Conclusions:
- Opioids, particularly morphine, significantly inhibit macrophage progenitor cell development.
- These findings suggest opioids can alter immune cell maturation, potentially impacting overall immune competence.
- The observed effects highlight the need for further research into opioid-immunomodulation.