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An Intelligent Nanovehicle Armed with Multifunctional Navigation for Precise Delivery of Toll-Like Receptor 7/8 Agonist and Immunogenic Cell Death Amplifiers to Eliminate Solid Tumors and Trigger Durable Antitumor Immunity

  • Yanyun Hao
  • , Hui Li
  • , Huajun Zhao
  • , Yutong Liu
  • , Xiaoyan Ge
  • , Xia Li
  • , Hongfei Chen
  • , Ailu Yang
  • , Jing Zou
  • , Xue Li
  • , Xuechun Sun
  • , Xinke Zhang
  • , Xiao Wang
  • , Zepeng Li
  • , Qilu Zhang
  • , Hao Wu
  • , Guan Wang
  • , Jian Zhang
  • , Bruno G. De Geest
  • , Zhiyue Zhang
  • Shandong University
  • Xi'an Jiaotong University
  • Dalian Medical University
  • Ghent University

Research output: Contribution to journalArticlepeer-review

28 Scopus citations

Abstract

Cancer immunotherapy is revolutionary in oncology and hematology. However, a low response rate restricts the clinical benefits of this therapy owing to inadequate T lymphocyte infiltration and low delivery efficiency of immunotherapeutic drugs. Herein, an intelligent nanovehicle (folic acid (FA)/1-(4-(aminomethyl) benzyl)-2-butyl-1H-imidazo[4,5-c]quinolin-4-amine (IMDQ)-oxaliplatin (F/IMO)@CuS) armed with multifunctional navigation is designed for the accurate delivery of cargoes to tumor cells and dendritic cells (DCs), respectively. The nanovehicle is based on a near infrared-responsive inorganic CuS nanoparticles, acting as a photosensitizer and carrier of the chemotherapeutic agent oxaliplatin, and enters tumor cells owing to the presence of folic acid on the surface of CuS upon intratumoral injection. Furthermore, a toll-like receptor (TLR) 7/8 agonist-conjugated polymer, anchored on the surface of CuS, is modified with mannose to bind with DCs in the tumor microenvironment. Upon exposure to laser irradiation, nanovehicles disassemble, releasing oxaliplatin, to ablate tumor cells and amplify immunogenic cell death in combination with photothermal therapy. Mannose-modified polymer-TLR7/8 agonist conjugates are subsequently exposed, leading to the activation of DCs and proliferation of T cells. Collectively, these intelligent nanovehicles reduce tumor burden, exert a robust antitumor immune response, and generate long-term immune protection to prevent tumor recurrence.

Original languageEnglish
Article number2102739
JournalAdvanced Healthcare Materials
Volume11
Issue number12
DOIs
StatePublished - Jun 2022

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • TLR7/8 agonists
  • antitumor immunity
  • chemophototherapy
  • intelligent nanovehicles
  • multifunctional navigation

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