# Combination treatment with radiotherapy and a novel oxidative phosphorylation inhibitor overcomes PD-1 resistance and enhances antitumor immunity

**Authors:** Dawei Chen, Hampartsoum B Barsoumian, Grant Fischer, Liangpeng Yang, Vivek Verma, Ahmed I Younes, Yun Hu, Fatemeh Masropour, Katherine Klein, Christopher Vellano, Joseph Marszalek, Michael Davies, Maria Angelica Cortez, James Welsh

PMC · DOI: 10.1136/jitc-2019-000289 · 2020-06-24

## TL;DR

Combining radiotherapy with a new OXPHOS inhibitor improves PD-1 resistance in lung cancer by boosting antitumor immunity.

## Contribution

A novel OXPHOS inhibitor combined with radiotherapy overcomes PD-1 resistance in NSCLC.

## Key findings

- PD-1-resistant models rely more on OXPHOS than sensitive models.
- Combining IACS-010759 with radiotherapy enhances antitumor effects in resistant models.
- Triple therapy with IACS-010759, radiotherapy, and anti-PD-1 promotes abscopal responses and survival.

## Abstract

Despite outstanding responses to anti-PD-1 agents in a subset of non-small cell lung cancer (NSCLC) patients, approximately 80% of patients fail to have prolonged favorable response. Recent studies show that tumor cell oxidative metabolism is a barrier to PD-1 immunotherapy and radiotherapy could overcome PD-1 resistance, so it is urgent to determine if combination treatment with radiotherapy and a novel oxidative phosphorylation (OXPHOS) inhibitor (IACS-010759) is an effective strategy against PD-1 resistance in NSCLC.

The antitumor effect of this combinational treatment was evaluated in vitro and in vivo. For in vivo experiments, we treated 129Sv/Ev mice with anti-PD1-sensitive and anti-PD1-resistant 344SQ NSCLC adenocarcinoma xenografts with oral IACS-010759 combined with radiotherapy (XRT). In vitro experiments included PCR, seahorse bioenergetic profiling, flow cytometry phenotyping, and clonogenic survival assay.

In the current study, we found that our PD-1-resistant model utilized OXPHOS to a significantly greater extent than the PD-1-sensitive model and XRT increased OXPHOS in vitro and in vivo. Thus, we explored the effect of the novel OXPHOS inhibitor IACS-010759 on PD-1-resistant NSCLC in an effort to overcome XRT-induced immunosuppression and maximize response to PD-1. Additionally, combined XRT and IACS-010759 promoted antitumor effects in the PD-1-resistant model, but not in the sensitive model. After elucidation of the most optimal dose/fractionation scheme of XRT with IACS-010759, the combinatorial therapy with this regimen did not increase the abscopal antitumor effect, although IACS-010549 did not decrease CD45+, CD4+, and CD8+ immune cells. Finally, triple therapy with IACS-010759, XRT, and anti-PD-1 promoted abscopal responses and prolonged survival time.

OXPHOS inhibition as part of a combinatorial regimen with XRT is a promising strategy to address PD-1-resistant NSCLC, and this combination is being tested clinically.

## Linked entities

- **Chemicals:** IACS-010759 (PubChem CID 86711931)
- **Diseases:** non-small cell lung cancer (MONDO:0005233), NSCLC (MONDO:0005233)

## Full-text entities

- **Genes:** Egfr (epidermal growth factor receptor) [NCBI Gene 13649] {aka 9030024J15Rik, Erbb, Errb1, Errp, Wa5, wa-2}, Ly6g (lymphocyte antigen 6 family member G) [NCBI Gene 546644] {aka Gr-1, Gr1, Ly-6G}, CD8A (CD8 subunit alpha) [NCBI Gene 925] {aka CD8, CD8alpha, IMD116, Leu2, p32}, Itgam (integrin alpha M) [NCBI Gene 16409] {aka CD11b/CD18, CR3, CR3A, Cd11b, F730045J24Rik, Ly-40}, PDCD1 (programmed cell death 1) [NCBI Gene 5133] {aka ADMIO4, AIMTBS, CD279, PD-1, PD1, SLEB2}, Hk2 (hexokinase 2) [NCBI Gene 15277] {aka HKII}, Gzmb (granzyme B) [NCBI Gene 14939] {aka CCP-1/C11, CCP1, Ctla-1, Ctla1, GZB}, Ptprc (protein tyrosine phosphatase receptor type C) [NCBI Gene 19264] {aka B220, CD45R, Cd45, L-CA, Ly-5, Lyt-4}, NDUFB7 (NADH:ubiquinone oxidoreductase subunit B7) [NCBI Gene 100737726], ATP5PB (ATP synthase peripheral stalk-membrane subunit b) [NCBI Gene 100154817] {aka ATP5F1}, Cd274 (CD274 antigen) [NCBI Gene 60533] {aka A530045L16Rik, B7h1, Pdcd1l1, Pdcd1lg1, Pdl1}, Mtor (mechanistic target of rapamycin kinase) [NCBI Gene 56717] {aka 2610315D21Rik, FRAP, FRAP2, Frap1, RAFT1, RAPT1}, ATP5MF (ATP synthase membrane subunit f) [NCBI Gene 100037979] {aka ATP5J2}, Foxp3 (forkhead box P3) [NCBI Gene 20371] {aka JM2, scurfin, sf}, Mrc1 (mannose receptor, C type 1) [NCBI Gene 17533] {aka CD206, MR}, PTPRC (protein tyrosine phosphatase receptor type C) [NCBI Gene 5788] {aka B220, CD45, CD45R, GP180, IMD105, L-CA}, SDHB (succinate dehydrogenase complex iron sulfur subunit B) [NCBI Gene 414412] {aka Ip}, Cox6a1 (cytochrome c oxidase subunit 6A1) [NCBI Gene 12861] {aka VIaL}, Cd4 (CD4 antigen) [NCBI Gene 12504] {aka L3T4, Ly-4}, NDUFS8 (NADH:ubiquinone oxidoreductase core subunit S8) [NCBI Gene 100521945], Cd38 (CD38 antigen) [NCBI Gene 12494] {aka ADPRC 1, Cd38-rs1, I-19}, NDUFB9 (NADH:ubiquinone oxidoreductase subunit B9) [NCBI Gene 100154130], Il1rapl1 (interleukin 1 receptor accessory protein-like 1) [NCBI Gene 331461] {aka 6330532G10Rik, C030039N24, IL1R8, IL1RAPL, IL1RAPL-1, MRX34}, Atp5pd (ATP synthase peripheral stalk subunit d) [NCBI Gene 71679] {aka 0610009D10Rik, Atp5h}, CD4 (CD4 molecule) [NCBI Gene 920] {aka CD4mut, IMD79, Leu-3, OKT4D, T4}, Pdcd1 (programmed cell death 1) [NCBI Gene 18566] {aka Ly101, PD-1, Pdc1}
- **Diseases:** death (MESH:D003643), MD Anderson (MESH:C535460), OXPHOS (MESH:D028361), lung cancer (MESH:D008175), hematologic tumors (MESH:D019337), NSCLC (MESH:D002289), Cancer (MESH:D009369), pancreatic adenocarcinoma (MESH:D010190), Lung metastases (MESH:D009362), hypoxia (MESH:D000860), radiation resistance (MESH:D011832), leukemia (MESH:D007938), Melanoma (MESH:D008545), Lewis Lung Carcinoma (MESH:D018827),  (MESH:D004195)
- **Chemicals:** glutamine (MESH:D005973), antimycin (MESH:C032456), O (MESH:D010100), oligomycin (MESH:D009840), glucose (MESH:D005947), FCCP (MESH:D002259), 137Cs (MESH:C000614989), ATP (MESH:D000255), Trizol (MESH:C411644), Bio X- (-), amuvatinib (MESH:C521047), rotenone (MESH:D012402), metformin (MESH:D008687), antimycin A (MESH:D000968), SYBR Green (MESH:C098022), pyruvate (MESH:D019289), CO2 (MESH:D002245), 2-deoxyglucose (MESH:D003847), IACS-010759 (MESH:C000710313),  (MESH:D061026),  (MESH:C491383),  (MESH:D010069),  (MESH:D010880)
- **Species:** Homo sapiens (human, species) [taxon 9606], Mus musculus (house mouse, species) [taxon 10090]
- **Cell lines:** PANC-2 — Homo sapiens (Human), Pancreatic ductal adenocarcinoma, Cancer cell line (CVCL_0480), 344-SQ — Homo sapiens (Human), Lung squamous cell carcinoma, Cancer cell line (CVCL_4900), 129Sv/Ev — Homo sapiens (Human), Hybridoma (CVCL_DD91), LLC — Mus musculus (Mouse), Malignant tumors of the mouse pulmonary system, Cancer cell line (CVCL_4358)

## Figures

7 figures with captions in the complete paper: https://tomesphere.com/paper/PMC7319777/full.md

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Source: https://tomesphere.com/paper/PMC7319777