4.8 Article

Acid-Activatable Versatile Micelleplexes for PD-L1 Blockade Enhanced Cancer Photodynamic Immunotherapy

Journal

NANO LETTERS
Volume 16, Issue 9, Pages 5503-5513

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.6b01994

Keywords

Micelleplexes; acid-activatable; photodynamic therapy; cancer immunotherapy; RNA interference

Funding

  1. National Basic Research Program of China [2013CB932704]
  2. National Natural Science Foundation of China [81373359, 31671024, 31622025, 81521005]
  3. Youth Innovation Promotion Association CAS [2014248]

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Photodynamic therapy (PDT) has emerged as a promising clinical modality for cancer therapy due to its ability to initiate an antitumor immune response. However, PDT-mediated cancer immunotherapy is severely impaired by tumor-cell immunosuppression of host T cell antitumor activity through the programmed cell death 1 ligand (PD-L1) and programmed cell death receptor 1 (PD-1) (PD-L1PD-1) immune checkpoint pathway. Here, we demonstrate that PDT-mediated cancer immunotherapy can be augmented by PD-L1 knockdown (KD) in tumor cells. We rationally designed a versatile micelleplex by integrating an acid-activatable cationic micelle, photosensitizer (PS), and small interfering RNA (siRNA). The micelleplex was inert at physiological pH conditions and activated only upon internalization in the acidic endocytic vesicles of tumor cells for fluorescence imaging and PDT. Compared to PDT alone, the combination of PDT and PD-L1 KD showed significantly enhanced efficacy for inhibiting tumor growth and distant metastasis in a B16-F10 melanoma xenograft tumor model. These results suggest that acid-activatable micelleplexes utilizing PDT-induced cancer immunotherapy are more effective when combined with siRNA-mediated PD-L1 blockade. This study could provide a general strategy for enhancing the therapy efficacy of photodynamic cancer therapy.

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