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首页> 外文期刊>Chemistry: A European journal >PAMAM Structure-Based Multifunctional Fluorescent Conjugates for Improved Fluorescent Labelling of Biomacromolecules
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PAMAM Structure-Based Multifunctional Fluorescent Conjugates for Improved Fluorescent Labelling of Biomacromolecules

机译:基于PAMAM结构的多功能荧光偶联物,可改善生物大分子的荧光标记。

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Fluorescent probes are of increasing interest in medicinal and biological applications for the elucidation of the structures and functions of healthy as well as tumour cells. The quality of these investigations is determined by the intensity of the fluorescence signal. High dye/carrier ratios give strong signals. However, these are achieved by the occupation of a high number of derivatisation sites and therefore are accompanied by strong structural alterations of the carrier. Hence, polyvalent substances containing a high number of fluorescent dyes would be favourable because they would allow the introduction of many dyes at one position of the Compound to be labelled. A large number of different dyes have been investigated to determine the efficiency of coupling to a dendrimer scaffold and the fluorescence properties of the oligomeric dyes, but compounds that fulfil the requirements of both strong fluorescence signals and reactivities are rare. Herein we describe the synthesis and characterisation of dye oligomers containing dansyl-, 7-nitro-2,1.3-benzoxadiazol-4-yl- (NBD), coumarin-343. 5(6)-carboxyfluorescein and sulforhodamine 132 moieties based on polyamidoamine (PAMAM) dendrimers. The PAMAM dendrimers were synthesised by ail improved protocol that yielded highly homogeneous scaffolds with up to 128 conjugation sites, When comparing the 0 fluorescent properties of the dye oligomers it was found that only the dansylated dendrimers met the requirements of enhanced fluorescence signals. The dendrimer containing 16 fluorescent dyes was conjugated to the anti-epidermal-growth-factor receptor (EGFR) antibody hMAb425 as a model compound to show the applicability of the dye multimer compounds. This conjugate revealed a preserved immunoreactivity of 54%. We demonstrate the applicability of the dye oligomers to the efficient and applicable labelling of proteins and other large molecules that enables high dye concentrations and therefore high contrasts in fluorescence applications.
机译:为了阐明健康细胞以及肿瘤细胞的结构和功能,荧光探针在医学和生物学应用中越来越受到关注。这些研究的质量取决于荧光信号的强度。较高的染料/载体比率会发出强烈的信号。然而,这些是通过占用大量衍生化位点来实现的,因此伴随着载体的强烈结构改变。因此,包含大量荧光染料的多价物质将是有利的,因为它们将允许在要标记的化合物的一个位置引入许多染料。为了确定与树枝状聚合物骨架的偶联效率和低聚染料的荧光性质,已经研究了许多不同的染料,但是能够同时满足强荧光信号和反应性要求的化合物很少。在本文中,我们描述了含有丹磺酰基-,7-硝基-2,1.3-苯并恶二唑-4-基-(NBD),香豆素-343的染料低聚物的合成和表征。 5(6)-羧基荧光素和磺基罗丹明132部分基于聚酰胺基胺(PAMAM)树状聚合物。 PAMAM树状聚合物是通过所有改进的方案合成的,产生了具有多达128个缀合位点的高度均一的支架。当比较染料低聚物的0荧光性质时,发现只有丹酰化的树状聚合物才能满足增强荧光信号的要求。将包含16种荧光染料的树状聚合物与抗表皮生长因子受体(EGFR)抗体hMAb425偶联作为模型化合物,以显示该染料多聚体化合物的适用性。该缀合物显示保留的免疫反应性为54%。我们证明了染料低聚物对蛋白质和其他大分子的有效和适用标记的适用性,从而使染料浓度高,从而在荧光应用中具有高对比度。

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