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Isolation Protocol of Mouse Monocyte-derived Dendritic Cells and Their Subsequent In Vitro Activation with Tumor Immune Complexes
Published on: May 31, 2018
Paclitaxel enhances macrophage IL-12 production in tumor-bearing hosts through nitric oxide
D W Mullins1, C J Burger, K D Elgert
1Department of Biology, Microbiology and Immunology Section, Virginia Polytechnic Institute and State University, Blacksburg 24061, USA.
Abstract:
Tumor-induced macrophages (Mphis) mediate immunosuppression, in part, through increased production of factors that suppress T cell responsiveness and underproduction of positive regulatory cytokines. Pretreatment of tumor-bearing host (TBH) Mphis with the anticancer agent paclitaxel (Taxol) partially reverses tumor-induced Mphi suppressor activity, suggesting that paclitaxel may restore TBH Mphi production of proimmune factors. Because paclitaxel demonstrates LPS-mimetic capabilities and increased production of the LPS-induced immunostimulatory cytokine IL-12 could account for enhanced T cell responsiveness, we investigated whether paclitaxel induces Mphi IL-12 production. Tumor growth significantly down-regulated Mphi IL-12 p70 production through selective dysregulation of IL-12 p40 expression. LPS stimulation failed to overcome tumor-induced dysregulation of p40 expression. In contrast, paclitaxel significantly enhanced both normal host and TBH Mphi IL-12 p70 production in vitro, although TBH Mphi IL-12 production was lower than that of similarly treated normal host Mphis. Paclitaxel enhanced p40 expression in a dose-dependent manner. Through reconstituted Mphi IL-12 expression, paclitaxel pretreatment relieved tumor-induced Mphi suppression of T cell alloreactivity. Blocking Mphi NO suppressed paclitaxel's ability to induce IL-12 production. This suggests that paclitaxel-induced activities may involve a NO-mediated autocrine induction pathway. Collectively, these data demonstrate that paclitaxel restores IL-12 production in the TBH and ascribe a novel immunotherapeutic component to the pleiotropic activities of NO. Through its capacity to induce IL-12 production, paclitaxel may contribute to the correction of tumor-induced immune dysfunction.
Insights
Paclitaxel (Taxol) reverses tumor-induced immune suppression by restoring macrophage IL-12 production. This anticancer agent enhances T cell responses, suggesting a novel immunotherapeutic role in correcting tumor-induced immune dysfunction.
Area of Science:
- Immunology
- Cancer Biology
- Pharmacology
Background:
- Tumor-induced macrophages (Mphis) suppress T cell responses.
- Paclitaxel (Taxol) partially reverses Mphi suppressor activity.
- Paclitaxel's LPS-mimetic properties suggest immune-modulating potential.
Purpose of the Study:
- Investigate if paclitaxel induces Mphi IL-12 production.
- Determine paclitaxel's effect on IL-12 p70 and p40 expression in Mphis.
- Assess paclitaxel's ability to restore T cell alloreactivity.
Main Methods:
- Cultured Mphis from tumor-bearing hosts (TBH) and normal hosts.
- Stimulated Mphis with LPS and/or paclitaxel.
- Measured IL-12 p70 and p40 production.
- Assessed T cell alloreactivity.
- Blocked Mphi nitric oxide (NO) production.
Main Results:
- Tumor growth down-regulated Mphi IL-12 p70 production via p40 dysregulation.
- LPS failed to overcome tumor-induced p40 dysregulation.
- Paclitaxel enhanced Mphi IL-12 p70 production in both normal and TBH Mphis.
- Paclitaxel dose-dependently enhanced p40 expression.
- Paclitaxel pretreatment restored T cell alloreactivity.
- Mphi NO blockade suppressed paclitaxel-induced IL-12 production.
Conclusions:
- Paclitaxel restores IL-12 production in tumor-bearing host Mphis.
- Paclitaxel's immunotherapeutic effect involves NO-mediated pathways.
- Paclitaxel may correct tumor-induced immune dysfunction through IL-12 induction.
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