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Activation and Measurement of NLRP3 Inflammasome Activity Using IL-1β in Human Monocyte-derived Dendritic Cells
Published on: May 22, 2014
BRAF inhibitors stimulate inflammasome activation and interleukin 1 beta production in dendritic cells
Eva Hajek1, Franziska Krebs1, Rebekka Bent1
1Department of Dermatology, University Medical Center of the Johannes Gutenberg University, Mainz, Germany.
Abstract:
Melanoma is the most dangerous form of skin cancer with a growing incidence over the last decades. Fourty percent of all melanomas harbor a mutation in the signaling adaptor BRAF (V600E) that results in ERK hyperactivity as an oncogenic driver. In these cases, treatment with the BRAFV600E inhibitors Vemurafenib (VEM) or Dabrafenib (DAB) coapplied with the MEK1/2 inhibitors Cobimetinib (COB) or Trametinib (TRA) can result in long-term suppression of tumor growth. Besides direct suppression of ERK activity, these inhibitors have been reported to also modulate tumor immune responses, and exert pro-inflammatory side effects such as fever and rash in some patients. Here we asked for potential effects of BRAFV600E inhibitors on dendritic cells (DC) which are essential for the induction of adaptive anti-tumor responses. Both splenic and bone marrow-derived (BM) mouse dendritic cells (DC) up-regulated costimulator expression (CD80, CD86) in response to DAB but not VEM treatment. Moreover, DAB and to lesser extent VEM enhanced IL-1β (interleukin 1 beta) release by splenic DC, and by LPS-stimulated BMDC. We demonstrate that DAB and VEM activated the NLRC4/Caspase-1 inflammasome. At high concentration, DAB also induced inflammasome activation independent of Caspase-1. TRA and COB elevated MHCII expression on BMDC, and modulated the LPS-induced cytokine pattern. Immunomodulatory activity of DAB and VEM was also observed in human monocyte-derived DC, and DAB induced IL-1β in human primary DC. Altogether, our study shows that BRAFV600E inhibitors upregulate IL-1β release by mouse and human DC which may affect the DC-mediated course of anti-tumor immune responses.
Insights
BRAF inhibitors like Dabrafenib and Vemurafenib can boost interleukin-1 beta release from dendritic cells, potentially impacting anti-tumor immunity. This immune modulation was observed in both mouse and human dendritic cells.
Area of Science:
- Immunology
- Oncology
- Dermatology
Background:
- Melanoma incidence is rising, with BRAF (V600E) mutations driving 40% of cases.
- BRAF inhibitors (Vemurafenib, Dabrafenib) combined with MEK inhibitors (Cobimetinib, Trametinib) treat BRAF-mutant melanoma.
- These inhibitors may affect anti-tumor immunity and cause pro-inflammatory side effects.
Purpose of the Study:
- Investigate the effects of BRAF inhibitors on dendritic cells (DCs), crucial for anti-tumor responses.
- Determine if BRAF inhibitors modulate DC function and cytokine release.
Main Methods:
- Treated mouse splenic and bone marrow-derived DCs with Dabrafenib (DAB) and Vemurafenib (VEM).
- Assessed costimulatory molecule expression (CD80, CD86) and IL-1β release.
- Investigated inflammasome activation (NLRC4/Caspase-1) and effects of MEK inhibitors (TRA, COB).
- Examined effects on human monocyte-derived DCs.
Main Results:
- Dabrafenib (DAB) increased costimulator expression on mouse DCs; Vemurafenib (VEM) had less effect.
- DAB and VEM enhanced IL-1β release from mouse DCs, activating the NLRC4/Caspase-1 inflammasome.
- DAB induced inflammasome activation independently of Caspase-1 at high concentrations.
- MEK inhibitors elevated MHCII on DCs and altered cytokine profiles.
- Similar immunomodulatory effects, including IL-1β induction by DAB, were seen in human DCs.
Conclusions:
- BRAF inhibitors DAB and VEM upregulate IL-1β release in both mouse and human DCs.
- This IL-1β upregulation may influence the course of DC-mediated anti-tumor immune responses.
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