Abstract 14P
Background
Pancreatic cancer has a poor prognosis and is primary resistant to immune checkpoint inhibitors (ICIs) partially due to the inhibitory immune microenvironment. Efforts to augment the sensitivity of pancreatic cancer to ICIs have focused on combinatorial therapies, including epigenetic inhibitors. EED is the regulatory subunit of the histone modification complex PRC2. The aim of this study was to explore the potential effects of EED inhibition combined with PD-1 blockade in pancreatic cancer.
Methods
Allograft models of murine pancreatic cancer lines KPC and Panc02 were used to assess the synergistic effects of PD-1 antibody and APG-5918, a novel EED inhibitor. RNA-sequencing analysis and flow cytometry were performed on the in vivo murine tumors to evaluate the immune cell infiltrations and transcriptomic alterations. The macrophage polarization phenotypes were evaluated by RT-qPCR and flow cytometry in THP1 and Raw264.7 human monocyte lines.
Results
Our study revealed that EED inhibitor APG-5918 synergized with PD-1 antibody in pancreatic cancer in the immune-competent allograft mouse models in vivo. Subsequent flow cytometry and CIBERSORT analysis demonstrated a significant increase of M1 macrophages infiltrated in tumors of the combo group compared with other groups. RNA-sequencing of APG-5918-treated tumor cells showed that EED inhibition significantly upregulated SPMD3 expression, which encoded ceramide-producing enzyme nSMase2, and enriched glycosphingolipid metabolic pathway. Upregulation of ceramide level after treatment of APG-5918 or SPMD3 inhibitor GW4869 in KPC cells was confirmed by ELISA. Furthermore, ceramide production induced by EED knockdown or exogenous administration dramatically promoted macrophage polarization toward M1 phenotype in human monocytes in vitro.
Conclusions
Our results indicate the promising roles of the novel EED inhibitor APG-5918 in reshaping the tumor immune microenvironment, mechanistically through upregulating nSMase2-ceramide pathway, and overcoming the immunotherapy resistance in pancreatic cancer. The new therapeutic strategy of EED inhibitor combining with PD-1 antibody will be tested in further translational and clinical studies.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
The authors.
Funding
Has not received any funding
Disclosure
D. Yang: Financial Interests, Personal, Officer: Ascentage Pharma. All other authors have declared no conflicts of interest.
Resources from the same session
10P - Multivariate analysis of functional organoid assays predicts patient responses in the clinic for colorectal and pancreatic cancer
Presenter: Anna-Rose Gryspeert
Session: Poster session 07
11P - Therapeutic effects of MRTX1133 in KRAS G12D mutant appendiceal cancer: Insights from organoid and in vivo studies
Presenter: John Paul Shen
Session: Poster session 07
12P - STING-activable pyroptotic nanoparticles deliver GSDMDNT mRNA for in situ pancreatic cancer vaccination and immunotherapy
Presenter: Shiyi Shao
Session: Poster session 07
Resources:
Abstract
15P - TIGIT+ CD8+ T cells limit the efficacy of PD-L1 blockade plus chemoradiotherapy in MSS locally advanced rectal cancer via NECTIN2-TIGIT interplay
Presenter: Zhehui Zhu
Session: Poster session 07
16P - PTEN deficiency leads to colorectal cancer immune evasion via atypical Keap1/Nrf2 pathway
Presenter: RunKai Cai
Session: Poster session 07
17P - Breaking chemotherapy resistance in gastric adenocarcinoma: Immunogenic cell death induction by carbonic anhydrase IX targeting
Presenter: Elena Andreucci
Session: Poster session 07
18P - The role of CTNNA1 truncating variants in hereditary diffuse gastric cancer (HDGC)
Presenter: Silvana Lobo
Session: Poster session 07
19P - KSR1 as a therapeutic target for hepatocellular carcinoma with activated RAS-RAF-MEK-ERK signaling pathway
Presenter: HYUK MOON
Session: Poster session 07
20P - Preclinical characterization of FGFR1-4 variants of unknown significance
Presenter: Martin Ziegler
Session: Poster session 07
21P - DNAJC1 inhibit the ferroptosis of glioma cells through stabilizing GPX4 by competing with TRIM21
Presenter: Min Chao
Session: Poster session 07
Resources:
Abstract