Recent advances in nanomedicines for photodynamic therapy (PDT)-driven cancer immunotherapy
Последние достижения в области нанолекарственных средств для иммунотерапии рака на основе фотодинамической терапии (ФДТ)
2021-12-15
SCID: 54.1/qm44cnb4
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cancer immunotherapyimmunogenic cell deathnanomedicinesphotodynamic therapytumor microenvironment
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Abstract (AI)
Cancer immunotherapy has made tremendous clinical progress in advanced-stage malignancies. However, patients with various tumors exhibit a low response rate to immunotherapy because of a powerful immunosuppressive tumor microenvironment (TME) and insufficient immunogenicity of tumors. Photodynamic therapy (PDT) can not only directly kill tumor cells, but also elicit immunogenic cell death (ICD), providing antitumor immunity. Unfortunately, limitations from the inherent nature and complex TME significantly reduce the efficiency of PDT. Recently, smart nanomedicine-based strategies could subtly modulate the pharmacokinetics of therapeutic compounds and the TME to optimize both PDT and immunotherapy, resulting in an improved antitumor effect. Here, the emerging nanomedicines for PDT-driven cancer immunotherapy are reviewed, including hypoxia-reversed nanomedicines, nanosized metal-organic frameworks, and subcellular targeted nanoparticles (NPs). Moreover, we highlight the synergistic nanotherapeutics used to amplify immune responses combined with immunotherapy against tumors. Lastly, the challenges and future expectations in the field of PDT-driven cancer immunotherapy are discussed.
Key Findings
1
Emerging strategies include hypoxia-reversing nanomedicines, nanoscale metal-organic frameworks, and subcellular-targeted nanoparticles.
2
Photodynamic therapy can directly destroy tumor cells and induce immunogenic cell death, thereby stimulating antitumor immunity.
3
Smart nanomedicines can improve therapeutic pharmacokinetics and modulate the tumor microenvironment to enhance both PDT and immunotherapy.
4
Synergistic nanotherapeutics combined with immunotherapy are being developed to amplify immune responses and improve antitumor effects, although field-wide challenges remain.
5
The efficacy of PDT-driven immunotherapy is limited by PDT’s intrinsic constraints and the immunosuppressive, hypoxic tumor microenvironment.
Research Object
nanomedicine-based photodynamic therapy (PDT)-driven cancer immunotherapy
Research Subject
nanomedicine strategies for improving PDT efficacy and amplifying antitumor immune responses by modulating tumor pharmacokinetics and the immunosuppressive tumor microenvironment
Publication Details
Publication Date
2021-12-15
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