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含叠氮基的顺铂羧酸复合物在可见光照射下具有光细胞毒性。

Platinum(IV)-azido monocarboxylato complexes are photocytotoxic under irradiation with visible light.

机构信息

Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, UK.

Photobiology Unit, Department of Dermatology and Photobiology, Ninewells Hospital, Dundee, DD1 9SY, UK.

出版信息

Dalton Trans. 2021 Aug 4;50(30):10593-10607. doi: 10.1039/d1dt01730f.

Abstract

Complexes trans,trans,trans-[Pt(N3)2(OH)(OCOR)(py)2] where py = pyridine and where OCOR = succinate (1); 4-oxo-4-propoxybutanoate (2) and N-methylisatoate (3) have been synthesized by derivation of trans,trans,trans-[Pt(OH)2(N3)2(py)2] (4) and characterised by NMR and EPR spectroscopy, ESI-MS and X-ray crystallography. Irradiation of 1-3 with green (517 nm) light initiated photoreduction to Pt(ii) and release of the axial ligands at a 3-fold faster rate than for 4. TD-DFT calculations showed dissociative transitions at longer wavelengths for 1 compared to 4. Complexes 1 and 2 showed greater photocytotoxicity than 4 when irradiated with 420 nm light (A2780 cell line IC50 values: 2.7 and 3.7 μM) and complex 2 was particularly active towards the cisplatin-resistant cell line A2780cis (IC50 3.7 μM). Unlike 4, complexes 1-3 were phototoxic under green light irradiation (517 nm), with minimal toxicity in the dark. A pKa(H2O) of 5.13 for the free carboxylate group was determined for 1, corresponding to an overall negative charge during biological experiments, which crucially, did not appear to impede cellular accumulation and photocytotoxicity.

摘要

已经通过衍生 trans,trans,trans-[Pt(OH)2(N3)2(py)2](4)合成了 trans,trans,trans-[Pt(N3)2(OH)(OCOR)(py)2],其中 py = 吡啶,OCOR = 琥珀酸酯(1);4-氧代-4-丙氧基丁酸酯(2)和 N-甲基异丁酰胺(3),并通过 NMR 和 EPR 光谱、ESI-MS 和 X 射线晶体学进行了表征。用绿光(517nm)照射 1-3 会引发光还原反应,生成 Pt(ii)并以比 4 快 3 倍的速度释放轴向配体。TD-DFT 计算表明,与 4 相比,1 具有更长波长的解离跃迁。当用 420nm 光照射时,复合物 1 和 2 比 4 具有更高的光细胞毒性(A2780 细胞系 IC50 值:2.7 和 3.7 μM),并且复合物 2 对顺铂耐药细胞系 A2780cis 特别有效(IC50 为 3.7 μM)。与 4 不同,复合物 1-3 在绿光照射下(517nm)具有光毒性,在黑暗中毒性最小。测定了游离羧酸基的 pKa(H2O) 值为 5.13,对于 1,这对应于生物学实验中的总负电荷,这至关重要的是,似乎不会阻碍细胞积累和光细胞毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ea9/8335519/319bef40a2d5/d1dt01730f-f1.jpg

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