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February 18, 2019Advanced Materials322 citations

Nanoengineered Immune Niches for Reprogramming the Immunosuppressive Tumor Microenvironment and Enhancing Cancer Immunotherapy

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HPHathaichanok PhuengkhamLRLong RenISIl-Woo Shin

Key Points

  • To review the rational design of nanoengineered synthetic immune niches and biomaterials capable of spatiotemporally reprogramming the immunosuppressive tumor microenvironment to enhance cancer immunotherapy.
  • Evaluated literature on the design of nano-biomaterials and synthetic immune niches for targeted tumor immunomodulation.
  • Assessed engineering strategies to regulate immunosuppressive factors and activate therapeutic immune cells, including T cells and antigen-presenting cells.
  • Customizable nanoengineered immune niches demonstrate the capacity to spatiotemporally modulate the tumor microenvironment to counter local immunosuppression.
  • Engineered biomaterials improve therapeutic immune cell engagement and target delivery, offering potential strategies to overcome low patient response rates and severe immune-related adverse effects.

Abstract

Cancer immunotherapies that harness the body's immune system to combat tumors have received extensive attention and become mainstream strategies for treating cancer. Despite promising results, some problems remain, such as the limited patient response rate and the emergence of severe immune-related adverse effects. For most patients, the therapeutic efficacy of cancer immunotherapy is mainly limited by the immunosuppressive tumor microenvironment (TME). To overcome such obstacles in the TME, the immunomodulation of immunosuppressive factors and therapeutic immune cells (e.g., T cells and antigen-presenting cells) should be carefully designed and evaluated. Nanoengineered synthetic immune niches have emerged as highly customizable platforms with a potent capability for reprogramming the immunosuppressive TME. Here, recent developments in nano-biomaterials that are rationally designed to modulate the immunosuppressive TME in a spatiotemporal manner for enhanced cancer immunotherapy which are rationally designed to modulate the immunosuppressive TME in a spatiotemporal manner for enhanced cancer immunotherapy are highlighted.

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Cite This Study

Phuengkham et al. (2019) studied this question.

synapsesocial.com/papers/69dcb47498c6111533e537e0https://doi.org/10.1002/adma.201803322
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