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氮杂补骨脂素:用于治疗银屑病的新型潜在光化学治疗药物。

Azapsoralens: new potential photochemotherapeutic agents for psoriasis.

作者信息

Vedaldi D, Caffieri S, Miolo G, Dall'Acqua F, Baccichetti F, Guiotto A, Benetollo F, Bombieri G, Recchia G, Cristofolini M

机构信息

Department of Pharmaceutical Sciences of the University, Padova, Italy.

出版信息

Farmaco. 1991 Dec;46(12):1407-33.

PMID:1821628
Abstract

New bioisoters of psoralen, obtained by replacing carbon 8 of the central benzene ring with a nitrogen, were studied from the photochemical, photobiological and phototherapeutic points of view. In particular, 4,4'-, 4',5'-dimetyl, 4,4',5'-trimethyl and 3,4,4',5'-tetramethylazapsoralen were studied. The crystal and molecular structure of 4,4',5'-trimethylazapsoralen, obtained by X ray diffraction, was also reported. Like psoralen, these compounds form a molecular complex with DNA, undergoing intercalation inside the double helix of the macromolecule. When irridiated with long ultraviolet light (365 nm), the intercalated drug photoconjugates covalently to the macromolecule, forming mono- and diadducts. The photobinding rate show the following order of magnitude: 4,4',5'-trimetylazapsoralen (4,4',5'-TMAP) = 3,4,4',5'-tetramethylazapsoralen (3,4,4',5'-TMAP) greater than 4',5'-dimethylazapsoralen (4',5'-DMAP) = 4,4'-dimethylazapsoralen (4,4'-DMAP). The DNA photobinding rate of 8-methoxypsoralen (8-MOP), taken as reference compound, is similar to that of the two dimetylazapsoralens but lower than tri- and tetramethyl derivatives. The ability of azapsoralens to form cross-links in DNA is lower than that of 8-MOP. However, capacity to induce cross-links does not parallel the DNA photobinding rate; it is higher for trimethyl derivate and lower for tetramethylazapsoralen. Azapsoralens show evident antiproliferative activity. The trimethyl derivative is the most active, followed by tetrametyl, both these compounds showing activity slightly higher than that of 8-MOP. The two dimethylderivatives are less active. The mautagenic activity of azapsoralens on E. coli WP2 TM6 is lower than that of 8-MOP in the same conditions. The new compounds do not show any skin phototoxicity on guinea pig skin. On the basis of its DNA photobinding, antiproliferative activity, mutagenicity and lack of skin phototoxicity, 4,4',5'-TMAP was chosen for clinical evaluation. Clinical results obtained by topical treatment of psoriatic plaques reveal evident therapeutic effectiveness and clearing is between good and moderate, although 8-MOP, used as reference compound, is more effective.

摘要

从光化学、光生物学和光治疗学的角度研究了通过将中心苯环的8位碳原子用氮原子取代而得到的补骨脂素新生物类似物。特别对4,4'-、4',5'-二甲基、4,4',5'-三甲基和3,4,4',5'-四甲基氮杂补骨脂素进行了研究。还报道了通过X射线衍射得到的4,4',5'-三甲基氮杂补骨脂素的晶体和分子结构。与补骨脂素一样,这些化合物与DNA形成分子复合物,插入到该大分子的双螺旋内部。当用长紫外光(365nm)照射时,插入的药物与大分子共价光共轭,形成单加合物和双加合物。光结合速率呈现以下量级顺序:4,4',5'-三甲基氮杂补骨脂素(4,4',5'-TMAP)=3,4,4',5'-四甲基氮杂补骨脂素(3,4,4',5'-TMAP)>4',5'-二甲基氮杂补骨脂素(4',5'-DMAP)=4,4'-二甲基氮杂补骨脂素(4,4'-DMAP)。作为参考化合物的8-甲氧基补骨脂素(8-MOP)的DNA光结合速率与两种二甲基氮杂补骨脂素相似,但低于三甲基和四甲基衍生物。氮杂补骨脂素在DNA中形成交联的能力低于8-MOP。然而,诱导交联的能力与DNA光结合速率并不平行;三甲基衍生物的能力较高,而四甲基氮杂补骨脂素的能力较低。氮杂补骨脂素显示出明显的抗增殖活性。三甲基衍生物活性最高,其次是四甲基衍生物,这两种化合物的活性均略高于8-MOP。两种二甲基衍生物活性较低。在相同条件下,氮杂补骨脂素对大肠杆菌WP2 TM6的致突变活性低于8-MOP。新化合物对豚鼠皮肤未显示任何皮肤光毒性。基于其DNA光结合、抗增殖活性、致突变性以及缺乏皮肤光毒性,选择4,4',5'-TMAP进行临床评估。通过局部治疗银屑病斑块获得的临床结果显示出明显的治疗效果,清除情况为良好至中等,尽管作为参考化合物的8-MOP更有效。

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