Panfilov Mikhail A, Starodubtseva Ezhena S, Karogodina Tatyana Yu, Vorob'ev Alexey Yu, Moskalensky Alexander E
N.N. Vorozhtsov Novosibirsk Institute of Organic Chemistry SB RAS, 630090 Novosibirsk, Russia.
Department of Physics, Novosibirsk State University, 630090 Novosibirsk, Russia.
J Xenobiot. 2025 Jan 8;15(1):8. doi: 10.3390/jox15010008.
Engineered light-sensitive molecules offer a sophisticated toolkit for the manipulation of biological systems with both spatial and temporal precision. Notably, artificial "caged" compounds can activate specific receptors solely in response to light exposure. However, the uncaging process can lead to the formation of potentially harmful byproducts. For example, the photochemical release of adrenaline (epinephrine) is accompanied by the formation of adrenochrome, which has neuro- and cardiotoxic effects. To investigate this effect in detail, we synthesized and compared two "caged" epinephrine analogs. The first was a classical compound featuring an -nitrobenzyl protecting group attached to the amino group of epinephrine. The second analog retained the -nitrobenzyl group but included an additional carbamate linker. The photolysis of both compounds was conducted under identical conditions, and the resulting products were analyzed using UV-Vis spectroscopy, chromatography, and NMR techniques. Surprisingly, while the classical compound led to the formation of adrenochrome, the carbamate-type caged epinephrine did not produce this byproduct, resulting in the clean release of the active substance. Subsequently, we assessed the novel compound in an in vitro platelet activation assay. The results demonstrated that the uncaging of epinephrine significantly enhances platelet activation, making it a valuable tool for advanced signaling studies.
工程化的光敏分子提供了一套精密的工具,可在空间和时间上精确地操纵生物系统。值得注意的是,人工“笼形”化合物仅在光照下就能激活特定受体。然而,解笼过程可能会导致潜在有害副产物的形成。例如,肾上腺素(epinephrine)的光化学释放伴随着肾上腺色素的形成,肾上腺色素具有神经毒性和心脏毒性作用。为了详细研究这种效应,我们合成并比较了两种“笼形”肾上腺素类似物。第一种是经典化合物,其在肾上腺素的氨基上连接有一个硝基苄基保护基团。第二种类似物保留了硝基苄基,但包含一个额外的氨基甲酸酯连接体。两种化合物的光解在相同条件下进行,使用紫外可见光谱、色谱和核磁共振技术对所得产物进行分析。令人惊讶的是,虽然经典化合物导致了肾上腺色素的形成,但氨基甲酸酯型笼形肾上腺素并未产生这种副产物,从而实现了活性物质的纯净释放。随后,我们在体外血小板活化试验中评估了这种新型化合物。结果表明,肾上腺素的解笼显著增强了血小板活化,使其成为高级信号研究的一个有价值的工具。