Overcoming the Achilles' heel of photodynamic therapy
Преодоление ахиллесовой пяты фотодинамической терапии
2016-01-01
SCID: 54.1/ka5bqxra
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X-ray radiationdeep photodynamic therapyhypoxic cancer therapynear-infrared lightphotodynamic therapy
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Abstract (AI)
Photodynamic therapy (PDT) has been applied to treat a wide range of medical conditions, including wet age-related macular degeneration psoriasis, atherosclerosis, viral infection and malignant cancers. However, the tissue penetration limitation of excitation light hinders the widespread clinical use of PDT. To overcome this "Achilles' heel", deep PDT, a novel type of phototherapy, has been developed for the efficient treatment of deep-seated diseases. Based on the different excitation sources, including near-infrared (NIR) light, X-ray radiation, and internal self-luminescence, a series of deep PDT techniques have been explored to demonstrate the advantages of deep cancer therapy over conventional PDT excited by ultraviolet-visible (UV-Vis) light. In particular, the featured applications of deep PDT, such as organelle-targeted deep PDT, hypoxic deep PDT and deep PDT-involved multimodal synergistic therapy are discussed. Finally, the future development and potential challenges of deep PDT are also elucidated for clinical translation. It is highly expected that deep PDT will be developed as a versatile, depth/oxygen-independent and minimally invasive strategy for treating a variety of malignant tumours at deep locations.
Key Findings
1
Applications include organelle-targeted therapy, hypoxic-tumor treatment, and multimodal synergistic cancer therapy.
2
Conventional photodynamic therapy is clinically limited by the shallow tissue penetration of ultraviolet-visible excitation light.
3
Deep photodynamic therapy demonstrates advantages for deep cancer treatment compared with conventional ultraviolet-visible-light-excited PDT.
4
Deep photodynamic therapy is envisioned as a depth- and oxygen-independent, minimally invasive strategy, although clinical translation still faces future challenges.
5
Deep photodynamic therapy uses near-infrared light, X-ray radiation, or internal self-luminescence to treat deep-seated diseases more effectively.
Research Object
deep photodynamic therapy (deep PDT) for deep-seated diseases and malignant tumors
Research Subject
the depth- and oxygen-independent therapeutic efficacy and clinical-translational potential of deep PDT using NIR light, X-rays, or internal self-luminescence
Publication Details
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2016-01-01
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