4.6 Article

Near-Infrared Light Irradiation of Porphyrin-Modified Gold Nanoparticles Promotes Cancer-Cell-Specific Cytotoxicity

期刊

MOLECULES
卷 27, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/molecules27041238

关键词

photodynamic therapy; Au-HpD; nearinfrared; reactive oxygen species

资金

  1. JSPS [JP17H06088, JP19H02591, JP19K16854]
  2. CREST [JPMJCR1875]

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The use of nanoparticles, especially gold nanoparticles, as a new cancer treatment has been investigated. Gold nanoparticles can be modified to absorb near-infrared light, which can be used to treat deep-seated cancer in organs without causing damage. A study found that a gold compound attached to porphyrin, called Au-HpD, showed cancer-specific accumulation and cytotoxicity. When cancer cells were exposed to laser irradiation in the presence of Au-HpD, they underwent cell apoptosis, while normal cells were not affected.
The use of nanoparticles has been investigated as a new cancer treatment. These can induce specific cytotoxicity in cancer cells. In particular, Au nanoparticles (AuNPs) have unique characteristics. The maximum absorption spectrum of AuNPs can be adjusted to modify their size or shape to absorb near-infrared light that can penetrate into tissue without photodamage. Thus, the combination of AuNPs and near-infrared light can be used to treat cancer in deep-seated organs. To obtain effective cancer-specific accumulation of AuNPs, we focused on porphyrin and synthesized a porphyrin-attached Au compound: Au-HpD. In this study, we investigated whether Au-HpD possesses cancer-specific accumulation and cytotoxicity. Intracellular Au-HpD accumulation was higher in cancer cells than in normal cells. In order to analyze the cytotoxicity induced by Au-HpD, cancer cells and normal cells were co-cultured in the presence of Au-HpD; then, they were subjected to 870 nm laser irradiation. We observed that, after laser irradiation, cancer cells showed significant morphological changes, such as chromatin condensation and nuclear fragmentation indicative of cell apoptosis. This strong effect was not observed when normal cells were irradiated. Moreover, cancer cells underwent cell apoptosis with combination therapy.

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