ArticlePloS one2026
Reprogramming M2 macrophages via TLR7/8 agonist-loaded hollow MnO2 nanovehicles to suppress the progression of liver cancer.
Article in PloS one, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
As a prevalent malignancy, liver cancer ranks as the third most common cause of cancer mortality globally. Within the tumor microenvironment, tumor-associated macrophages (TAMs) exhibit contrasting functional phenotypes: the anti-tumor M1 type and the pro-tumor M2 type. Reprogramming TAMs from the M2 to the M1 phenotype has emerged as a promising immunotherapeutic strategy. Here, we engineered a multi-nano therapeutic system, PAH@HMMDN@R848, by loading a TLR7/8 agonist (R848) onto hollow MnO2 nanoparticles (HMMDN) and coating with polyallylamine hydrochloride (PAH). In vitro, this system efficiently repolarized M2 macrophages to the M1 phenotype, evidenced by decreased CD206, Arg-1, IL-10 and increased CD80, iNOS, TNF-α (P < 0.05). Under acidic/glutathione-rich conditions, HMMDN degraded to release Mn2+, which served as a T1-weighted MRI contrast agent with a high relaxivity (r1 = 5.255 mM-1 s -1). Mechanistically, PAH@HMMDN@R848 activated both NF-κB (via R848) and STING (via Mn2+) pathways, leading to synergistic M1 polarization. In a subcutaneous H22 liver cancer mouse model, intratumoral injection of PAH@HMMDN@R848 significantly suppressed tumor growth (tumor inhibition rate 80.6%) without obvious systemic toxicity. Immunohistochemistry and cytokine analysis revealed that the treatment increased M1 macrophage infiltration (CD80+) and reduced M2 macrophages (CD206+) within tumors, along with elevated TNF-α/iNOS and decreased IL-10/Arg-1. This study presents a multifunctional nanoplatform capable of TAMs reprogramming and MRI diagnosis, offering a promising approach for liver cancer theranostics.
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