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Photochemotherapeutic Properties of a Linear Tetrapyrrole Palladium(II) Complex displaying an Exceptionally High Phototoxicity Index

机译:线性四吡咯钯(II)配合物表现出极高的光毒性指数的光化学治疗性质。

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摘要

Photodynamic therapy (PDT) represents a minimally invasive and highly localized treatment strategy to ablate tumors with few side effects. In PDT, photosensitizers embedded within tumors are activated by light and undergo intersystem crossing, followed by energy transfer to molecular oxygen, resulting in the production of toxic singlet oxygen (1O2). Previously, we reported a robust, linear tetrapyrrole palladium(II) complex, >Pd[>DMBil1], characterized by its facile and modular synthesis, broad absorption profile, and efficient 1O2 quantum yield of ΦΔ = 0.8 in organic media. However, the insolubility of this porphyrinoid derivative in aqueous solution prevents its use under biologically relevant conditions. In this work, we report the synthesis of >Pd[>DMBil1]>-PEG750, a water-soluble dimethylbiladiene derivative that is appended with a poly(ethylene) glycol (PEG) functionality. Characterization of this complex shows that this PEGylated biladiene architecture maintains the attractive photophysical properties of the parent complex under biologically relevant conditions. More specifically, the absorption profile of >Pd[>DMBil1]>-PEG750 closely matches that of >Pd[>DMBil1] and obeys the Beer–Lambert Law, suggesting that the complex does not aggregate under biologically relevant conditions. Additionally, the emission spectrum of >Pd[>DMBil1]>-PEG750 retains the fluorescence and phosphorescence features characteristic of >Pd[>DMBil1]. Importantly, the PEGylated photosensitizer generates 1O2 with >ΦΔ = 0.57, which is well within the range to warrant interrogation as a potential PDT agent for treatment of cancer cells. The >Pd[>DMBil1]>-PEG750 is biologically compatible, as it is taken up by MDA-MB-231 triple negative breast cancer (TNBC) cells and has an effective dose (ED50) of only 0.354 μM when exposed to λex > 500 nm light for 30 min. Impressively, the lethal dose (LD50) of >Pd[>DMBil1]>-PEG750 without light exposure was measured to be 1.87 mM, leading to a remarkably high phototoxicity index of ~5300, which is vastly superior to existing photosensitizers that form the basis for clinical PDT treatments. Finally, through flow cytometry experiments, we show that PDT with >Pd[>DMBil1]>-PEG750 induces primarily apoptotic cell death in MDA-MB-231 cells. Overall these results demonstrate that >Pd[>DMBil1]>-PEG750 is an easily prepared, biologically compatible, and well-tolerated photochemotherapeutic agent that can efficiently drive the photoinduced apoptotic death of TNBC cells.
机译:光动力疗法(PDT)代表了一种微创且高度局部化的治疗策略,可消融几乎没有副作用的肿瘤。在PDT中,嵌入在肿瘤中的光敏剂被光激活并经历系统间交换,然后能量转移到分子氧中,从而产生有毒的单线态氧( 1 O2)。以前,我们报道了一种坚固的线性四吡咯钯(II)络合物> Pd [> DMBil1 ],其特征在于易于合成和模块化合成,广泛的吸收曲线和高效的 1 O2量子产率。然而,该卟啉类衍生物在水溶液中的不溶性阻止了其在生物学相关条件下的使用。在这项工作中,我们报告了> Pd [> DMBil1 ] > -PEG750 的合成,这是一种水溶性的二甲基双二烯衍生物,其后附加有聚(乙二醇)(PEG)官能团。该复合物的表征表明,该聚乙二醇化的二甲苯结构在生物学相关条件下保持了母体复合物的诱人光物理性质。更具体地说,> Pd [> DMBil1 ] > -PEG750 的吸收曲线与> Pd [> DMBil1 ]并遵守比尔-兰伯特定律,表明该复合物在生物学相关条件下不会聚集。此外,> Pd [> DMBil1 ] > -PEG750 的发射光谱保留了> Pd 的荧光和磷光特征[ > DMBil1 ]。重要的是,聚乙二醇化的光敏剂会产生>ΦΔ = 0.57的 1 O2,该浓度正好在可以作为治疗癌细胞的潜在PDT剂的范围内。 > Pd [> DMBil1 ] > -PEG750 具有生物相容性,因为它被MDA-MB-231三阴性乳腺癌(TNBC)吸收。当暴露于λex> 500 nm的光线30分钟时,其有效剂量(ED50)仅0.354μM。令人印象深刻的是,未曝光的> Pd [> DMBil1 ] > -PEG750 的致死剂量(LD50)为1.87 mM,导致显着高达5300的高光毒性指数,大大优于现有的光敏剂,后者是临床PDT治疗的基础。最后,通过流式细胞术实验,我们发现带有> Pd [> DMBil1 ] > -PEG750 的PDT主要诱导MDA-MB-231中的凋亡细胞死亡。细胞。总体而言,这些结果表明> Pd [> DMBil1 ] > -PEG750 是一种易于制备,生物相容且耐受性良好的光化学疗法药物,可以有效驱动TNBC细胞的光诱导凋亡死亡。

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