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首页> 外文期刊>Journal of Medicinal Chemistry >Water-soluble, core-modified porphyrins as novel, longer-wavelength-absorbing sensitizers for photodynamic therapy. II. Effects of core heteroatoms and meso-substituents on biological activity.
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Water-soluble, core-modified porphyrins as novel, longer-wavelength-absorbing sensitizers for photodynamic therapy. II. Effects of core heteroatoms and meso-substituents on biological activity.

机译:水溶性,核心修饰的卟啉是用于光动力疗法的新型,更长波长吸收的敏化剂。二。核心杂原子和内取代基对生物活性的影响。

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摘要

Water-soluble, core-modified porphyrins were prepared and evaluated as sensitizers for photodynamic therapy (PDT). The addition of an aromatic aldehyde to 2,5-dilithiothiophene or -selenophene gave diol 3 as a nearly equimolar mixture of meso and d,l diastereomers, which gave a single diastereomer following careful recrystallization. The condensation of pyrrole with a diol 3 using catalytic BF(3)-etherate gave bispyrrolochalcogenophenes (4). Condensation of a diol 3 with 4 in the presence BF(3)-etherate gave 21,23-dichalcogenaporphyrins (5). 21-Thiaporphyrins (6) were prepared by condensation of a diol 3 with excess pyrrole and benzaldehyde in the presence of tetrachlorobenzoquinone and catalytic BF(3)-etherate. Sulfonation of 5 and 6 with concentrated sulfuric acid at 100 degrees C gave sulfonated derivatives 7-15. Bis-4-methoxy-21,23-dithiaporphyrins 5h and 5l were demethylated with BBr(3), and the resulting phenols were alkylated with ethyl bromoacetate. Saponification gave 21,23-dithiaporphyrin dicarboxylate salts 16 and 17. The 21,23-core-modified porphyrins gave band I absorption maxima (lambda(max) of 689-717 nm) at longer wavelengths than band I for the corresponding 21-core-modified porphyrins, but both classes had band I maxima at longer wavelengths than either TPPS(4) or Photofrin (lambda(max) of 630 nm for both). The core heteroatoms had little effect on either absorption maxima or quantum yields of singlet oxygen generation in 7-17. The meso substituents had a greater impact on absorption maxima. Compounds 7-17 were evaluated for phototoxicity against Colo-26 cells in culture using 4 J cm(-2) of 570-800 nm light. Compounds 8-12, 14, 16, and 17 gave a 50% cell kill in vitro at a lower concentration than Photofrin [5.7 mg (9 micromol)/kg]. Compounds 14, 16, and 17 gave a 50% cell kill with 4 J cm(-2) of light and submicromolar concentrations of sensitizer. Sensitizers 8 and 11 showed no toxicity or side effects in BALB/c mice observed for 90 days following a single intravenous injection of 10 mg/kg of sensitizer. Distribution studies show that sensitizer 8 accumulates in the tumors of BALB/c mice. PDT with 8 at 0.125 mg (0.13 micromol)/kg or 11 at 2.5 mg (2.5 micromol)/kg and 135 J cm(-2) of 694 nm light was comparable to PDT with Photofrin at 2.5 mg (4 micromol)/kg and 135 J cm(-2) of 630 nm light against Colo-26 tumors in BALB/c mice.
机译:制备了水溶性的,核心修饰的卟啉,并将其评估为用于光动力疗法(PDT)的敏化剂。将芳香族醛添加到2,5-二噻吩并噻吩或-硒烯中,得到二醇3,为内消旋和d,l非对映异构体的近等摩尔混合物,在仔细重结晶后得到单一非对映异构体。使用催化性BF(3)-醚酸酯将吡咯与二醇3缩合,得到双吡咯并硫属元素金属(4)。在BF(3)-醚酸酯存在下将二醇3与4缩合,得到21,23-二卤代原卟啉(5)。在四氯苯醌和催化的BF(3)-醚化物存在下,将二醇3与过量的吡咯和苯甲醛缩合,制得21-噻吩卟啉(6)。在100℃下用浓硫酸将5和6磺化,得到磺化衍生物7-15。用BBr(3)对Bis-4-methoxy-21,23-dithiaporphyrins 5h和5l进行甲基化,然后用溴乙酸乙酯将所得的酚烷基化。皂化得到21,23-二硫杂卟啉二羧酸盐16和17。21,23-核心修饰的卟啉在对应于21核的比条带I更长的波长处给出了I波段的吸收最大值(λ(最大值)为689-717 nm)。修饰的卟啉,但两种类型的I带最大值都比TPPS(4)或Photofrin(两种波长的λ(最大值)均为630 nm)更长。核心杂原子对7-17中单线态氧生成的最大吸收量或量子产率的影响很小。内消旋取代基对最大吸收有较大影响。使用4 J cm(-2)的570-800 nm光评估了化合物7-17对培养中的Colo-26细胞的光毒性。化合物8-12、14、16和17在体外的杀灭作用比光敏蛋白(5.7 mg(9 micromol)/ kg)低,浓度为50%。化合物14、16和17用4 J cm(-2)的光和亚微摩尔浓度的敏化剂可杀死50%的细胞。在单次静脉内注射10 mg / kg敏化剂90天后,敏化剂8和11在BALB / c小鼠中未观察到毒性或副作用。分布研究表明,敏化剂8积累在BALB / c小鼠的肿瘤中。具有0.125 mg(0.13 micromol)/ kg的8或2.5 mg(2.5 micromol)/ kg的11的PDT和135 J cm(-2)694 nm光的PDT与具有2.5 mg(4 micromol)/ kg的Photofrin的PDT相当和135 J cm(-2)的630 nm光针对BALB / c小鼠的Colo-26肿瘤。

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