Dual TLR9 and PD-L1 targeting unleashes dendritic cells to induce durable antitumor immunity

Author:

Fernandez-Rodriguez LauraORCID,Cianciaruso ChiaraORCID,Bill Ruben,Trefny Marcel PORCID,Klar Richard,Kirchhammer Nicole,Buchi Mélanie,Festag Julia,Michel Sven,Kohler Rainer H,Jones Elham,Maaske Andre,vom Berg Johannes,Kobold Sebastian,Kashyap Abhishek S,Jaschinski Frank,Dixon Karen O,Pittet Mikael JORCID,Zippelius AlfredORCID

Abstract

BackgroundAlthough immune checkpoint inhibitors have been a breakthrough in clinical oncology, these therapies fail to produce durable responses in a significant fraction of patients. This lack of long-term efficacy may be due to a poor pre-existing network linking innate and adaptive immunity. Here, we present an antisense oligonucleotide (ASO)-based strategy that dually targets toll-like receptor 9 (TLR9) and programmed cell death ligand 1 (PD-L1), aiming to overcome resistance to anti-PD-L1 monoclonal therapy.MethodsWe designed a high-affinity immunomodulatory IM-TLR9:PD-L1-ASO antisense oligonucleotide (hereafter, IM-T9P1-ASO) targeting mouse PD-L1 messenger RNA and activating TLR9. Then, we performedin vitroandin vivostudies to validate the IM-T9P1-ASO activity, efficacy, and biological effects in tumors and draining lymph nodes. We also performed intravital imaging to study IM-T9P1-ASO pharmacokinetics in the tumor.ResultsIM-T9P1-ASO therapy, unlike PD-L1 antibody therapy, results in durable antitumor responses in multiple mouse cancer models. Mechanistically, IM-T9P1-ASO activates a state of tumor-associated dendritic cells (DCs), referred to here as DC3s, which have potent antitumor potential but express the PD-L1 checkpoint. IM-T9P1-ASO has two roles: it triggers the expansion of DC3s by engaging with TLR9 and downregulates PD-L1, thereby unleashing the antitumor functions of DC3s. This dual action leads to tumor rejection by T cells. The antitumor efficacy of IM-T9P1-ASO depends on the antitumor cytokine interleukin-12 (IL-12), produced by DC3s, andBatf3, a transcription factor required for DC development.ConclusionsBy simultaneously targeting TLR9 and PD-L1, IM-T9P1-ASO amplifies antitumor responses via DC activation, leading to sustained therapeutic efficacy in mice. By highlighting differences and similarities between mouse and human DCs, this study could serve to develop similar therapeutic strategies for patients with cancer.

Funder

Postdoc.Mobility Fellowship SNSF

Return Grant of the Swiss National Science Foundation

Monique Dornoville de la Cour foundation

Secarna Pharmaceuticals GmbH & Co

Swiss Cancer League Grant

the Elite Network of Bavaria

Melanoma Research Alliance

Horizon 2020

Else Kröner Fresenius-Stiftung

German Cancer Aid

Wilhelm-Sander-Stiftung

Ernst Jung Stiftung

German Excellence Initiative

Go-Bio-Initiative

m4-Award of the Bavarian Ministry for Economical Affairs

Bundesministerium für Bildung und Forschung

European Research Council

Deutsche Forschungsgemeinschaft

SFB-TRR

Fritz Bender Foundation

Deutsche José Carreras Leukämie-Stiftung

Hector Foundation

Novartis Foundation for Medical-Biological Research

Swiss Life Jubiläumsstiftung

Swiss National Science Foundation

Swiss Cancer Research

Publisher

BMJ

Subject

Cancer Research,Pharmacology,Oncology,Molecular Medicine,Immunology,Immunology and Allergy

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