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Spectral Properties of Fluorophores Combining the Boronic Acid Group with Electron Donor or Withdrawing Groups. Implication in the Development of Fluorescence Probes for Saccharides

机译:硼酸基团与电子给体或吸电子基团结合的荧光团的光谱性质。对糖类荧光探针开发的意义

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摘要

We evaluated the spectral properties of four stilbene derivatives containing the boronic acid group [–B(OH)2]: stilbene-4-boronic acid (STBA), 4′-cyanostilbene-4-boronic acid (CSTBA), 4′-methoxystilbene-4-boronic acid (MSTBA), and 4′-(dimethylamino)stilbene-4-boronic acid (DSTBA). The emission spectrum of DSTBA displays a large solvent-polarity dependence showing the formation of a photoinduced charge transfer state (CT). This state is weakly present in MSTBA and not present for CSTBA and STBA for the neutral form of the boronic acid group. These results show the donor withdrawing property of the neutral form of the boronic acid group. At higher pH, the boronic acid group is present in the anionic form [–B(OH)3], resulting in a change of the configuration around the boron atom from the triangular planar (sp2 hybridization) to the tetrahedral conformation (sp3 hybridization). This change induced a blue shift of about 50 nm and an increase of intensity in the emission spectrum of DSTBA because of the loss of the electron-withdrawing properties for the anionic form of the boronic acid group, leading to the loss of the CT effect. The same effect is also observed for MSTBA. In contrast, a red shift of about 35 nm and a decrease of intensity are observed for CSTBA from the neutral to the anionic forms of the boronic acid group. These observations lead to the conclusion that the anionic form of the boronic acid group acts as an electron donor group and a photoinduced CT state can be formed when an electron withdrawing group is present on the fluorophore. The usefulness of this effect for the development of saccharide probes is also demonstrated. After addition of sugar, the emission spectra of DSTBA and MSTBA showed a blue shift and an increase of the intensity. On the other hand, a red shift and a decrease of the intensity are observed in the emission spectra of CSTBA after addition of sugar. A change from the neutral to the anionic form of the boronic acid group is used to explain these changes. These results show that the use of the combination of electron donor or withdrawing groups with the boronic acid group is a new and promising way to develop ratiometric fluorescent probes for glucose and other saccharides.
机译:我们评估了四个含硼酸基团[–B(OH)2]的1,2-二苯乙烯衍生物的光谱性质:1,2-苯乙烯-4-硼酸(STBA),4'-氰基茂铁-4-硼酸(CSTBA),4'-甲氧基苯乙烯-4-硼酸(MSTBA)和4'-((二甲基氨基)sti -4-硼酸(DSTBA)。 DSTBA的发射光谱显示出很大的溶剂极性依赖性,表明形成了光致电荷转移状态(CT)。此状态在MSTBA中微弱存在,而对于中性形式的硼酸基团而言,对于CSTBA和STBA不存在。这些结果表明中性形式的硼酸基团的供体抽出性质。在较高的pH值下,硼酸基团以阴离子形式[–B(OH)3 -]存在,导致硼原子周围的构型从三角形平面改变(sp 2 杂交)到四面体构象(sp 3 杂交)。由于失去了硼酸基团的阴离子形式的吸电子性能,该变化引起了约50nm的蓝移和DSTBA的发射光谱的强度增加,导致CT效应的丧失。对于MSTBA,也观察到相同的效果。相反,对于CSTBA,从硼酸基团的中性形式到阴离子形式观察到约35nm的红移和强度降低。这些观察结果得出这样的结论:当荧光团上存在吸电子基团时,硼酸基团的阴离子形式充当电子给体基团,并且可以形成光致CT态。还证明了该作用对糖探针的开发的有用性。添加糖后,DSTBA和MSTBA的发射光谱显示出蓝移和强度增加。另一方面,在添加糖之后的CSTBA的发射光谱中观察到红移和强度降低。从硼酸基团的中性形式到阴离子形式的变化用于解释这些变化。这些结果表明,将电子给体或吸电子基团与硼酸基团结合使用是开发用于葡萄糖和其他糖类的比例荧光探针的一种新的且有希望的方法。

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  • 期刊名称 other
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  • 年(卷),期 -1(105),28
  • 年度 -1
  • 页码 6834–6840
  • 总页数 24
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