| Literature DB >> 29619546 |
Tsutomu Namikawa1,2, Kazune Fujisawa3, Eri Munekage3, Jun Iwabu3, Sunao Uemura3, Shigehiro Tsujii3, Hiromichi Maeda4, Hiroyuki Kitagawa3, Hideo Fukuhara5,6, Keiji Inoue5,6, Takayuki Sato5,7, Michiya Kobayashi4,8, Kazuhiro Hanazaki3,5.
Abstract
The natural amino acid 5-aminolevulinic acid (ALA) is a protoporphyrin IX (PpIX) precursor and a new-generation photosensitive substance that accumulates specifically in cancer cells. When indocyanine green (ICG) is irradiated with near-infrared (NIR) light, it shifts to a higher energy state and emits infrared light with a longer wavelength than the irradiated NIR light. Photodynamic diagnosis (PDD) using ALA and ICG-based NIR fluorescence imaging has emerged as a new diagnostic technique. Specifically, in laparoscopic examinations for serosa-invading advanced gastric cancer, peritoneal metastases could be detected by ALA-PDD, but not by conventional visible-light imaging. The HyperEye Medical System (HEMS) can visualize ICG fluorescence as color images simultaneously projected with visible light in real time. This ICG fluorescence method is widely applicable, including for intraoperative identification of sentinel lymph nodes, visualization of blood vessels in organ resection, and blood flow evaluation during surgery. Fluorescence navigation by ALA-PDD and NIR using ICG imaging provides good visualization and detection of the target lesions that is not possible with the naked eye. We propose that this technique should be used in fundamental research on the relationship among cellular dynamics, metabolic enzymes, and tumor tissues, and to evaluate clinical efficacy and safety in multicenter cooperative clinical trials.Entities:
Keywords: 5-Aminolevulinic acid; Gastric cancer; Indocyanine green; Near-infrared ray; Photodynamic diagnosis; Photodynamic therapy
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Year: 2018 PMID: 29619546 DOI: 10.1007/s00795-018-0190-2
Source DB: PubMed Journal: Med Mol Morphol ISSN: 1860-1499 Impact factor: 2.309