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Photobiological properties of 3-psoralenacetic acids

机译:3-补骨脂乙酸的光生物学特性

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摘要

Some 4,8-dimethyl-3-psoralenacetic acids were synthesized and studied. All the designed psoralenacetic acids bear alkyl or cycloalkyl substituents at the furan ring. These psoralenacetic acids were shown to be a novel class of psoralen derivatives characterized by an interesting photobiological profile. The carboxylic group at the 3 position, useful to confer hydrophilic properties, appears to be detrimental to the classical intercalation into DNA, likely because of repulsive interactions with the negative surface of the macromolecule. Nevertheless, the new derivatives possess a notable photoantiproliferative activity, due to a peculiar mechanism of action consisting of a decarboxylation step before exerting their photobiological activity. The most active compound 2 is able to induce a noteworthy photocytotoxic effect, with GI(50) values being submicromolar on human tumor cell lines and no effect in the dark. The involvement of DNA photoaddition after UVA light-mediated decarboxylation and ROS formation is responsible for its biological activity, as demonstrated comparing the activity profile of the decarboxylated analogue. However, other biological targets seem to be involved in the photooxidative damage, such as proteins. Compound 2 could thus be considered as a prodrug, inactive without UVA light but activated upon specific irradiation, thus preventing unselective side effects and opening new perspectives on agents useful in photochemotherapy.
机译:合成并研究了一些4,8-二甲基-3-补骨脂乙酸。所有设计的补骨脂酸在呋喃环上带有烷基或环烷基取代基。这些补骨脂乙酸被证明是一类新颖的补骨脂酸衍生物,其特征在于有趣的光生物学特性。在3位的羧基可用于赋予亲水性,这似乎不利于经典的插入DNA,这可能是由于与大分子负表面的排斥相互作用。然而,由于新的衍生物具有独特的作用机理,该特殊的作用机理包括在发挥其光生物活性之前的脱羧步骤,因此它们具有显着的光抗增殖活性。活性最高的化合物2能够诱导出显着的光细胞毒性作用,GI(50)值对人肿瘤细胞系亚微摩尔,在黑暗中无作用。 UVA光介导的脱羧和ROS形成后DNA光加成的参与为其生物学活性负责,如比较脱羧类似物的活性谱所证明。但是,其他生物靶标似乎也参与了光氧化损伤,例如蛋白质。因此,化合物2可以被视为前药,在没有UVA光的情况下没有活性,但在特定的辐射下被激活,从而防止了非选择性副作用,并为光化学疗法中有用的药物开辟了新的前景。

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