Anticancer nanocage platforms for combined immunotherapy designed to harness immune checkpoints and deliver anticancer drugs

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37
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40

초록

The interaction of programmed cell death 1 ligand 1 (PD-L1) with its receptor, programmed cell death 1 (PD-1), inhibits T cell responses. Monoclonal antibodies that block this interaction have been shown effective as immunotherapy. However, only a subset of cancers exhibits a durable response to PD-1/PD-L1 blockade. Moreover, antibody-based immune checkpoint blockade is costly and is occasionally accompanied by systemic side effects. To overcome these limitations of antibody-based immune checkpoint blockade, an immune checkpoint-blocking ferritin nanocage displaying 24 PD-L1 binding peptides (PD-L1pep1) on its surface was designed and constructed. These ferritin nanocages displaying PD-L1pep1 (PpNF) specifically bind to PD-L1 expressed on cancer cells or to purified PD-L1 with a similar to 30 nM binding affinity. The addition of PpNF to cocultures of T cells and cancer cells inhibited PD-1/PD-L1 interactions and restored T cell activities. In a mouse model of syngeneic colon cancer, PpNF specifically targeted tumors and showed antitumor activity. Moreover, PpNF nanocages encapsulating the chemotherapeutic drug doxorubicin had more potent antitumor activity than a monoclonal antibody against PD-L1. These results demonstrate that ferritin nanocages displaying surface PD-L1pep1 can be efficiently applied for immunotherapy, especially when encapsulating small chemotherapeutic drugs. These nanocages may have promise as an immunotherapeutic nanomedicine against various solid tumors.

키워드

PD-L1 binding peptide; Immune checkpoint; Ferritin; Immunotherapy; Combination therapy; Doxorubicin
제목
Anticancer nanocage platforms for combined immunotherapy designed to harness immune checkpoints and deliver anticancer drugs
저자
Jeon, In Seon; Yoo, Jae Do; Gurung, Smriti; Kim, Minseong; Lee, Chanju; Park, Eun Jung; Park, Rang-Woon; Lee, Byungheon; Kim, Soyoun
DOI
10.1016/j.biomaterials.2021.120685
발행일
2021-03
유형
Article
저널명
Biomaterials
권
270