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Radiation Synthesis of Organostarch as Fluorescence Label

机译:辐射合成荧光标记作为荧光标记

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摘要

Fluorescence label preparation, being the core of sensing and imaging, is the most interesting aspect of label technology. Using the gamma irradiation technique, a facial method is proposed to prepare organostarch consisting of polyaniline and starch. Polyaniline was introduced into starch molecules to form an inclusion complex between V-type starch and aniline monomer. The inclusion complex thus formed consisted of starch-aniline crosslink caused by gamma irradiation through organostarch crosslinks. Thus, organostarch develops fluorescence property at 470 nm possibly through the interaction of aniline and starch, which are both fluorophores. A comparative analysis of variations is performed in common fluorescent labels of starch and organostarch based on their physico-chemical properties. X-ray diffraction (XRD) and Fourier transform infrared (FTIR) spectrometry were utilized to confirm the inclusion of polyaniline into starch molecules. Furthermore, using a fluorescence microscope, the positive implementation of fluorescent organostarch was verified. Fluorescent organostarch can be synthesized through this simple method and can be widely used for developing biomarkers and biosensors in food and biomedical industries. Organostarch produces florescence under mild conditions even without complicated preparations, such as additives for labelling with dye fluorescence. The intensity of fluorescence of organostarch was 17,000 times that of natural starch.
机译:荧光标签制备是感应和成像的核心,是标签技术最有趣的方面。使用γ辐射技术,提出了一种面部方法,制备由聚苯胺和淀粉组成的组织遗传术。将聚苯胺引入淀粉分子中以在V型淀粉和苯胺单体之间形成包含复合物。由此形成的包含复合物由通过γ辐射引起的淀粉 - 苯胺交联通过细胞统计交联引起的。因此,通过苯胺和淀粉的相互作用,它们可以在470nm下在470nm处发育荧光性能,这是荧光团。基于其物理化学性质,在淀粉和体壳的常见荧光标记中进行了对比较分析。利用X射线衍射(XRD)和傅里叶变换红外(FTIR)光谱法确认将聚苯胺包含成淀粉分子。此外,使用荧光显微镜,验证了荧光器官的阳性实施。可以通过这种简单的方法合成荧光器织遗传学,并且可以广泛用于食品和生物医学行业中的生物标志物和生物传感器。均匀的细胞遗失在轻度条件下产生荧光性,即使没有复杂的制剂,例如用染料荧光标记的添加剂。 Organostarch的荧光强度为17,000倍的天然淀粉。

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