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一系列具有不同亲脂性的3-(1'-烷氧基)乙基-3-去乙烯基紫红素-18-N-烷基酰亚胺的合成、光物理性质、肿瘤摄取及初步体内光敏疗效

Synthesis, photophysical properties, tumor uptake, and preliminary in vivo photosensitizing efficacy of a homologous series of 3-(1'-alkyloxy)ethyl-3-devinylpurpurin-18-N-alkylimides with variable lipophilicity.

作者信息

Zheng G, Potter W R, Camacho S H, Missert J R, Wang G, Bellnier D A, Henderson B W, Rodgers M A, Dougherty T J, Pandey R K

机构信息

Photodynamic Therapy Center, Department of Nuclear Medicine/Radiology, Roswell Park Cancer Institute, Buffalo, New York 14263, USA.

出版信息

J Med Chem. 2001 May 10;44(10):1540-59. doi: 10.1021/jm0005510.

Abstract

Starting from methylpheophorbide-a, a homologous series of purpurinimides containing alkyl substituents at two different positions [as 3-(1(1)-O-alkyl) and 13(2)-N-alkyl] were synthesized. These compounds with variable lipophilicity (log P 5.32-16.44) exhibit long wavelength absorption near lambda(max)700 nm (epsilon: 45 000 in dichloromethane) with singlet oxygen ((1)O2) production in the range of 57-60%. The shifts in in vivo absorptions and tumor/skin uptake of these compounds were determined in C3H mice bearing RIF tumors by in vivo reflectance spectroscopy. The results obtained from a set of photosensitizers with similar lipophilicity (log P 10.68-10.88) indicate that besides the overall lipophilicity, the presence and position of the alkyl groups (O-alkyl vs N-alkyl) in a molecule play an important role in tumor uptake, tumor selectivity, and in vivo PDT efficacy. At present, all purpurinimide analogues are being evaluated at various doses, and experiments are underway to establish a quantitative structure-activity relationship on a limited set of compounds. The 1D and 2D NMR and mass spectrometry analyses confirmed the structures of the desired purpurinimides and the byproducts formed during various reaction conditions. The mechanisms of the formation of the unexpected 12-formyl- and 12-(hydroxymethyl)purpurinimides under certain reaction conditions are also discussed.

摘要

从甲基脱镁叶绿酸-a出发,合成了一系列在两个不同位置含有烷基取代基[如3-(1(1)-O-烷基)和13(2)-N-烷基]的紫红素亚胺。这些具有可变亲脂性(log P 5.32 - 16.44)的化合物在λ(max)700 nm附近呈现长波长吸收(在二氯甲烷中的ε为45000),单线态氧((1)O2)产生率在57 - 60%范围内。通过体内反射光谱法在携带RIF肿瘤的C3H小鼠中测定了这些化合物的体内吸收和肿瘤/皮肤摄取的变化。从一组具有相似亲脂性(log P 10.68 - 10.88)的光敏剂获得的结果表明,除了整体亲脂性外,分子中烷基(O-烷基与N-烷基)的存在和位置在肿瘤摄取、肿瘤选择性和体内光动力治疗效果中起着重要作用。目前,所有紫红素亚胺类似物都在不同剂量下进行评估,并且正在进行实验以在一组有限的化合物上建立定量构效关系。一维和二维核磁共振以及质谱分析证实了所需紫红素亚胺及其在各种反应条件下形成的副产物的结构。还讨论了在某些反应条件下意外形成12-甲酰基-和12-(羟甲基)紫红素亚胺的形成机制。

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