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用于近红外波长单光子和双光子光动力疗法的亲水性共轭卟啉二聚体的合成

Synthesis of hydrophilic conjugated porphyrin dimers for one-photon and two-photon photodynamic therapy at NIR wavelengths.

作者信息

Balaz Milan, Collins Hazel A, Dahlstedt Emma, Anderson Harry L

机构信息

Department of Chemistry, Oxford University, Chemistry Research Laboratory, Mansfield Road, Oxford OX13TA, UK.

出版信息

Org Biomol Chem. 2009 Mar 7;7(5):874-88. doi: 10.1039/b814789b. Epub 2009 Jan 9.

Abstract

We report the synthesis of a series of hydrophilic butadiyne-linked conjugated zinc porphyrin dimers, designed as photodynamic therapy (PDT) agents. These porphyrin dimers exhibit exceptionally high two-photon absorption cross sections (delta(max) approximately 8,000-17,000 GM) and red-shifted linear absorption spectra (lambda(max) approximately 700-800 nm) making them ideal candidates for one-photon and two-photon excited photodynamic therapy. Four polar triethyleneglycol substituents are positioned along the sides of each dimer, but, on their own, these TEG chains do not confer sufficient solubility in aqueous physiological media for reproducible delivery into live cells. Charged cationic (methylpyridinium and trimethylammonium) and anionic (sulfonate and carboxylate) substituents have been appended to the meso-positions of porphyrin dimers using three synthetic strategies: 1) Suzuki coupling, 2) Sonogashira coupling, and 3) nucleophilic Senge arylation. Approaches 1 and 3 both allow attachment of aromatic substituents directly to the meso-positions of porphyrins. Approach 2 provides a route to hydrophilic porphyrin dimers with an ethyne link between the porphyrin and the polar aromatic substituent. The palladium-catalysed approaches 1 and 2 allow the synthesis of a broader range of meso-capped porphyrins, as many aryl halides are available. However the synthesis of the intermediate required for these routes necessitates a statistical reaction step, which decreases the overall yield. On the other hand, Senge-arylation provides highly regioselective nucleophilic aromatic substitution, and offers higher overall yield than the other routes. All these charged dimers exhibit good solubility in polar solvents (e.g. methanol) and aqueous solvent mixtures (aqueous DMSO or DMF).

摘要

我们报道了一系列设计用作光动力疗法(PDT)药物的亲水性丁二炔连接的共轭锌卟啉二聚体的合成。这些卟啉二聚体表现出极高的双光子吸收截面(δ(max)约为8000 - 17000 GM)和红移的线性吸收光谱(λ(max)约为700 - 800 nm),使其成为单光子和双光子激发光动力疗法的理想候选物。四个极性三甘醇取代基沿着每个二聚体的侧面定位,但是,就其本身而言,这些TEG链在水性生理介质中不能提供足够的溶解度以可重复地递送至活细胞中。使用三种合成策略将带电荷的阳离子(甲基吡啶鎓和三甲基铵)和阴离子(磺酸盐和羧酸盐)取代基连接到卟啉二聚体的中位:1)铃木偶联,2)Sonogashira偶联,以及3)亲核Senge芳基化。方法1和3都允许将芳族取代基直接连接到卟啉的中位。方法2提供了一种合成亲水性卟啉二聚体的途径,该二聚体在卟啉和极性芳族取代基之间具有乙炔连接。钯催化的方法1和2允许合成更广泛的中位封端卟啉,因为有许多芳基卤化物可用。然而,这些路线所需中间体的合成需要一个统计反应步骤,这会降低总产率。另一方面,Senge芳基化提供高度区域选择性的亲核芳族取代,并且比其他路线具有更高的总产率。所有这些带电荷的二聚体在极性溶剂(例如甲醇)和水性溶剂混合物(水性DMSO或DMF)中均表现出良好的溶解性。

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