São Carlos Institute of Physics, University of São Paulo, Avenida Trabalhador São-carlense, n° 400 Parque Arnold Schimidt - CEP, 13566-590, São Carlos, SP, Brazil.
Chemphyschem. 2023 Sep 15;24(18):e202300381. doi: 10.1002/cphc.202300381. Epub 2023 Aug 13.
Indocyanine green is an attractive molecule for photodynamic therapy due to its near infrared absorption, resulting in a higher tissue penetration. However, its quantum yields of the triplet and singlet state have been reported to be low and then, reactive oxygen species are unlikely to be formed. Aiming to understand the ICG role in photodynamic response, its photobleaching behavior in solution has been studied under distinct conditions of CW laser irradiation at 780 and 808 nm, oxygen saturations and solvents. Sensitizer bleaching and photoproduct formation were measured by absorption spectroscopy and analyzed using the PDT bleaching macroscopic model to extract physical parameters. ICG photobleaching occurs even at lower oxygen concentrations, indicating that the molecule presents more than one way of degradation. Photoproducts were produced even in solution of less than 4 % oxygen saturation for both solvents and excitation wavelengths. Also, the amplitude of absorption related to J-dimers was increased during irradiation, but only in 50 % PBS solution. The formation of photoproducts was enhanced in the presence of J-type dimers under low oxygen concentration, and the quantum yields of triplet and singlet states were one order of magnitude and two times higher, respectively, when compared to ICG in distilled H O.
吲哚菁绿是一种很有吸引力的光动力治疗分子,因为它在近红外区域有吸收,从而有更高的组织穿透能力。然而,其三重态和单重态的量子产率已经被报道为低,因此,活性氧很可能不会形成。为了了解 ICG 在光动力反应中的作用,研究了其在溶液中的光漂白行为,在 CW 激光分别以 780nm 和 808nm 波长、不同氧饱和度和溶剂条件下进行辐照。通过吸收光谱测量敏化剂漂白和光产物的形成,并使用 PDT 漂白宏观模型进行分析,以提取物理参数。即使在较低的氧浓度下,ICG 也会发生光漂白,这表明该分子有不止一种降解方式。对于两种溶剂和激发波长,即使在氧饱和度低于 4%的溶液中也会产生光产物。此外,在辐照过程中,与 J-二聚体相关的吸收振幅增加,但仅在 50%的 PBS 溶液中。在低氧浓度下 J 型二聚体存在时,光产物的形成增强,与在蒸馏水中的 ICG 相比,三重态和单重态的量子产率分别提高了一个数量级和两倍。