4.5 Article

Folated pH-degradable nanogels for the simultaneous delivery of docetaxel and an IDO1-inhibitor in enhancing cancer chemo-immunotherapy

Journal

BIOMATERIALS SCIENCE
Volume 7, Issue 7, Pages 2749-2758

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9bm00324j

Keywords

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Funding

  1. National Key Research and Development Program of China [2017YFD0401301]
  2. National Natural Science Foundation of China [NSFC 51703244, 81600178, 21878337, 21676291]
  3. Natural Science Foundation of Jiangsu Province [BK20170730]
  4. Jiangsu Agriculture Science and Technology Innovation Fund [JASTIF CX(18)3039]
  5. Leading Talents in Schoow Technological Innovation and Entrepreneurship [WC201816]
  6. Jiangsu Specially-Appointed Professor Program

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Combining chemotherapy and immunotherapy has been considered as an attractive approach to improve cancer therapy. Here we prepared folated PVA-based nanogels for the simultaneous delivery of docetaxel (DTX) and the indoleamine 2,3-dioxygenase 1 (IDO1) inhibitor NLG919 (N9) for enhancing cancer chemo-immunotherapy. FDA-approved poly(vinyl alcohol) (PVA) with good biocompatibility was modified with vinyl ether acrylate (VEA) groups for UV-crosslinking and acidic degradation. Carboxyl groups were introduced via modification with succinic anhydride for improved drug loading and folic acid (FA) ligands were incorporated for tumor targeting. UV-crosslinked folated PVA nanogels were efficiently taken up by tumor cells followed by endo/lysosomal pH-triggered intracellular drug release, which induced significant cytotoxicity towards 4T1 breast cancer cells in vitro. DTX and N9 co-loaded PVA nanogels exhibited a much higher antitumor efficiency in 4T1 mouse breast cancer models in vivo as compared to the free drug controls. The drug-laden nanogels not only directly killed the tumor cells by DTX, but also induced immunogenic cell death (ICD) promoting intratumoral accumulation of cytotoxic T lymphocytes, and further combining with N9 elevated the intratumoral infiltration of CD8+ T cells and NK cells and inhibited the infiltration of MDSCs, downregulating IDO1-mediated immunosuppression.

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