首页> 外文期刊>ACS Omega >Design and Synthesis of a 4-Nitrobromobenzene Derivative Bearing an Ethylene Glycol Tetraacetic Acid Unit for a New Generation of Caged Calcium Compounds with Two-Photon Absorption Properties in the Near-IR Region and Their Application in Vivo
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Design and Synthesis of a 4-Nitrobromobenzene Derivative Bearing an Ethylene Glycol Tetraacetic Acid Unit for a New Generation of Caged Calcium Compounds with Two-Photon Absorption Properties in the Near-IR Region and Their Application in Vivo

机译:具有近红外区双光子吸收特性的新一代笼式钙化合物的带有乙二醇四乙酸单元的4-硝基溴苯衍生物的设计与合成及其在体内的应用

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Among biologically active compounds, calcium ions (Ca~(2+)) are one of the most important species in cell physiological functions. Development of new calcium chelators with two-photon absorption (TPA) properties is a state-of-the-art challenge for chemists. In this study, we report the first and efficient synthesis of 5-bromo-2-nitrobenzyl-substituted ethylene glycol tetraacetic acid (EGTA) as a platform for a new generation of calcium chelators with TPA properties in the near-infrared region. New calcium chelators with high TPA properties, that is, a two-photon (TP) fragmentation efficiency of δ_(u) = 20.7 GM at 740 nm for 2-(4-nitrophenyl)benzofuran (NPBF)-substituted EGTA (NPBF-EGTA, K _(d) = 272 nM) and δ_(u) = 7.8 GM at 800 nm for 4-amino-4′-nitro-1,1′-biphenyl (BP)-substituted EGTA (BP-EGTA, K _(d) = 440 nM) derivatives, were synthesized using Suzuki–Miyaura coupling reactions of the bromide with benzofuran-2-boronic acid and 4-(dimethylamino)phenyl boronic acid, respectively. The corresponding acetoxymethyl (AM) esters were prepared and successfully applied to the Ca~(2+)-uncaging reaction triggered by TP photolysis in vivo.
机译:在生物活性化合物中,钙离子(Ca〜(2+))是细胞生理功能中最重要的物种之一。具有双光子吸收(TPA)特性的新型钙螯合剂的开发是化学家面临的最新挑战。在这项研究中,我们报告了第一个有效合成5-溴-2-硝基苄基取代的乙二醇四乙酸(EGTA)的平台,作为具有近红外区TPA特性的新一代钙螯合剂的平台。具有高TPA特性的新型钙螯合剂,即2-(4-硝基苯基)苯并呋喃(NPBF)取代的EGTA(NPBF-EGTA)在740 nm处的双光子(TP)裂解效率δ_(u)= 20.7 GM ,对于4-氨基-4'-硝基-1,1'-联苯(BP)取代的EGTA(BP-EGTA),在800 nm处K_(d)= 272 nM)和δ_(u)= 7.8 GM分别使用溴与苯并呋喃-2-硼酸和4-(二甲基氨基)苯基硼酸的Suzuki-Miyaura偶联反应合成了K i(d)= 440 nM)衍生物。制备了相应的乙酰氧甲基(AM)酯,并将其成功应用于体内TP光解引发的Ca〜(2 +)-解笼反应。

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