Tumor Microenvironment Remodeling-Mediated Sequential Drug Delivery Potentiates Treatment Efficacy.

Xu, Yajun; Lv, Jianlin; Liu, Fuyao; Wang, Jinqiang; Liu, Ya; Kong, Chaoying; Li, Yanran; Shen, Na et al. · Adv Mater · 2024

basic_science · Level V

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Abstract

Toll-like receptor 7/8 agonists, such as imidazoquinolines (IMDQs), are promising for the de novo priming of antitumor immunity. However, their systemic administration is severely limited due to the off-target toxicity. Here, this work describes a sequential drug delivery strategy. The formulation is composed of two sequential modules: a tumor microenvironment remodeling nanocarrier (poly(l-glutamic acid)-graft-methoxy poly(ethylene glycol)/combretastatin A4, termed CA4-NPs) and an immunotherapy nanocarrier (apcitide peptide-decorated poly(l-glutamic acid)-graft-IMDQ-N<sub>3</sub> conjugate, termed apcitide-PLG-IMDQ-N<sub>3</sub>). CA4-NPs, as a vascular disrupting agent, are utilized to remodel the tumor microenvironment for enhancing tumor coagulation and hypoxia. Subsequently, the apcitide-PLG-IMDQ-N<sub>3</sub> could identify and target tumor coagulation through the binding of surface apcitide peptide to the GPIIb-IIIa on activated platelets. Afterward, IMDQ is activated selectively through the conversion of "-N<sub>3</sub>" to "-NH<sub>2</sub>" in the presence of hypoxia. The biodistribution results confirm their high tumor uptake of activated IMDQ (22.66%ID/g). By augmenting the priming and immunologic memory of tumor-specific CD8<sup>+</sup> T cells, 4T1 and CT26 tumors with a size of ≈500 mm<sup>3</sup> are eradicated without recurrence in mouse models.

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