Reprogramming tumor microenvironment via systemic delivery of TLR3 agonist and manganese nanoparticle

Y Young Seok Cho (Department of Pharmaceutical Sciences, University of Michigan) X Xingwu Zhou (Department of Pharmaceutical Sciences, University of Michigan) X Xiaoqi Sun (Department of Chemistry, College of Science) Z Ziye Wan (Department of Pharmaceutical Sciences, University of Michigan) J Julia Crowther (Department of Pharmaceutical Sciences, University of Michigan) M Mariko Takahashi S Swetha Kodamasimham (Department of Pharmaceutical Sciences, University of Michigan) Q Qi Wu (Department of Pharmaceutical Sciences, University of Michigan) M May Thazin Phoo (Department of Pharmaceutical Sciences, University of Michigan) Y Youngseo Na (Department of Medicinal Chemistry, University of Michigan) K Kai Han (Key Laboratory of Medical Molecule Science and Pharmaceutics Engineering, Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering, Center for Quantum Technology Research and School of Physics) Z Zaiye Li (Department of Cancer Biology, The University of Texas MD Anderson Cancer Center) A Anna Schwendeman (Department of Pharmaceutical Sciences, University of Michigan) S Steven P. Schwendeman (Department of Pharmaceutical Sciences, University of Michigan) Y Yu Leo Lei (Department of Cancer Biology, The University of Texas MD Anderson Cancer Center) J James J. Moon (Department of Pharmaceutical Sciences, University of Michigan)

Abstract

Toll-like receptor (TLR) agonists, as potent immunostimulatory adjuvants, play a critical role in linking the innate and adaptive immune responses. However, their antitumor effects as cancer immunotherapeutic agents have been limited. Here, we report our finding that manganese ion (Mn 2+ ) potentiates various TLR agonists, leading to robust activation of the TLR pathway and the stimulator of interferon genes (STING) pathway among innate immune cells. In particular, we have observed robust antitumor efficacy after intratumoral administration of a TLR3 agonist and Mn 2+ . To achieve systemic codelivery of TLR3 agonist and Mn 2+ , we have developed a low-molecular-weight poly(inosinic:cytidylic acid)-Mn 2+ coordination lipid nanoparticle (PLCMP). When administered intravenously in tumor-bearing mice, PLCMP successfully accumulated in tumor, induced innate immune activation, generated tumor-specific T cells, and exerted antitumor efficacy in TLR3- and STING-dependent manner without triggering overt toxicity. Moreover, PLCMP in combination with α-PD-1 therapy achieved long-lasting antitumor efficacy in multiple murine tumor models. Furthermore, vaccination with PLCMP carrying TC-1 tumor antigen peptide elicited strong antigen-specific CD8 + T cell responses and remodeled the tumor microenvironment, resulting in robust therapeutic efficacy. Overall, these results show that simultaneous activation of the TLR3 and STING pathways via PLCMP provides a promising strategy for immunotherapy and vaccination against cancer.

Article Details

Volume / Issue Vol. 122, Issue 45
Published November 11, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (16)

Y

Young Seok Cho

Department of Pharmaceutical Sciences, University of Michigan

X

Xingwu Zhou

Department of Pharmaceutical Sciences, University of Michigan

X

Xiaoqi Sun

Department of Chemistry, College of Science

Z

Ziye Wan

Department of Pharmaceutical Sciences, University of Michigan

J

Julia Crowther

Department of Pharmaceutical Sciences, University of Michigan

M

Mariko Takahashi

S

Swetha Kodamasimham

Department of Pharmaceutical Sciences, University of Michigan

Q

Qi Wu

Department of Pharmaceutical Sciences, University of Michigan

M

May Thazin Phoo

Department of Pharmaceutical Sciences, University of Michigan

Y

Youngseo Na

Department of Medicinal Chemistry, University of Michigan

K

Kai Han

Key Laboratory of Medical Molecule Science and Pharmaceutics Engineering, Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering, Center for Quantum Technology Research and School of Physics

Z

Zaiye Li

Department of Cancer Biology, The University of Texas MD Anderson Cancer Center

A

Anna Schwendeman

Department of Pharmaceutical Sciences, University of Michigan

S

Steven P. Schwendeman

Department of Pharmaceutical Sciences, University of Michigan

Y

Yu Leo Lei

Department of Cancer Biology, The University of Texas MD Anderson Cancer Center

J

James J. Moon

Department of Pharmaceutical Sciences, University of Michigan