Advances in smart nanotechnology-supported photodynamic therapy for cancer
Достижения интеллектуальной нанотехнологии для фотодинамической терапии рака
2024-11-11
SCID: 54.1/ycm6d2mn
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multifunctional nanoplatformsphotodynamic therapyphotosensitizersreactive oxygen speciessmart nanotechnology
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Abstract (AI)
Cancer has emerged as a formidable challenge in the 21st century, impacting society, public health, and the economy. Conventional cancer treatments often exhibit limited efficacy and considerable side effects, particularly in managing the advanced stages of the disease. Photodynamic therapy (PDT), a contemporary non-invasive therapeutic approach, employs photosensitizers (PS) in conjunction with precise light wavelengths to selectively target diseased tissues, inducing the generation of reactive oxygen species and ultimately leading to cancer cell apoptosis. In contrast to conventional therapies, PDT presents a lower incidence of side effects and greater precision in targeting. The integration of intelligent nanotechnology into PDT has markedly improved its effectiveness, as evidenced by the remarkable synergistic antitumor effects observed with the utilization of multifunctional nanoplatforms in conjunction with PDT. This paper provides a concise overview of the principles underlying PS and PDT, while also delving into the utilization of nanomaterial-based PDT in the context of cancer treatment.
Key Findings
1
Compared with conventional cancer treatments, photodynamic therapy offers more precise diseased-tissue targeting and fewer side effects.
2
Integrating intelligent nanotechnology with photodynamic therapy improves therapeutic effectiveness through multifunctional nanoplatforms and synergistic antitumor effects.
3
Photodynamic therapy uses photosensitizers and specific light wavelengths to generate reactive oxygen species that induce cancer-cell apoptosis.
4
The paper reviews photosensitizer and photodynamic-therapy principles and summarizes nanomaterial-based applications for cancer treatment.
Research Object
nanomaterial-based photodynamic therapy for cancer treatment
Research Subject
the principles, effectiveness, precision, and synergistic antitumor effects of smart nanotechnology-supported photodynamic therapy
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2024-11-11
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