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硫鸟嘌呤衍生物的单线态氧生成的吸收特性和量子产率。

Absorption Characteristics and Quantum Yields of Singlet Oxygen Generation of Thioguanosine Derivatives.

机构信息

Department of Chemistry and Biological Science, Aoyama Gakuin University, Sagamihara, Kanagawa, Japan.

School of Life, Health and Chemical Sciences, the Open University, Milton Keynes, UK.

出版信息

Photochem Photobiol. 2018 Jul;94(4):677-684. doi: 10.1111/php.12900. Epub 2018 Mar 31.

DOI:10.1111/php.12900
PMID:29420844
Abstract

6-Thioguanine (1a) is considered to be photochemotherapeutic due to its specific characteristics of photosensitivity to UVA light and singlet molecular oxygen generation. To extend its phototherapeutic ability, two related thioguanines, 8-thioguanine (2a) and 6,8-dithioguanine (3a), have been designed and explored. Since the solubility of these thioguanines in dehydrated organic solvents is too poor to study, their triacetyl-protected ribonucleosides, that is, 2',3',5'-tri-O-acetyl-6-thioguanosine (1c), 2',3',5'-tri-O-acetyl-8-thioguanosine (2c) and 2',3',5'-tri-O-acetyl-6,8-dithioguanosine (3c) were prepared and investigated. The absorption maxima of 1c, 2c and 3c in acetonitrile were found at longer wavelengths than that of unthiolated guanosine (4c). Especially, 3c has the longest wavelength for absorption maximum and the highest value in terms of molar absorption coefficient among all thionucleobases and thionucleosides reported. These absorption properties were also well reproduced by quantum chemical calculations. Quantum yields of singlet oxygen generation of 2c and 3c were determined by near-infrared emission measurements to be as large as that of 1c. These results suggest that the newly synthesized thioguanosines, in particular 3c, can be further developed as a potential photosensitive agent for light-induced therapies.

摘要

6-硫鸟嘌呤(1a)因其对 UVA 光的光敏特性和单重态氧生成而被认为具有光化疗作用。为了扩展其光疗能力,设计并探索了两种相关的硫鸟嘌呤,8-硫鸟嘌呤(2a)和 6,8-二硫鸟嘌呤(3a)。由于这些硫鸟嘌呤在脱水有机溶剂中的溶解度太差,无法进行研究,因此制备并研究了它们的三乙酰保护核苷,即 2',3',5'-三-O-乙酰-6-硫鸟苷(1c)、2',3',5'-三-O-乙酰-8-硫鸟苷(2c)和 2',3',5'-三-O-乙酰-6,8-二硫鸟苷(3c)。在乙腈中,1c、2c 和 3c 的吸收最大值比未硫代鸟苷(4c)的吸收最大值长。特别是,3c 在所有报道的硫代核苷酸碱基和硫代核苷中具有最长的吸收最大值波长和最高的摩尔吸光系数值。这些吸收特性也通过量子化学计算得到了很好的重现。通过近红外发射测量确定了 2c 和 3c 的单重态氧生成量子产率与 1c 一样大。这些结果表明,新合成的硫鸟嘌呤,特别是 3c,可以进一步开发为用于光诱导治疗的潜在光敏剂。

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引用本文的文献

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