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Xanthene and silicon analogs of xanthene fluorophores as chemical sensors for pH and hypochlorous acid.

机译:an吨和silicon吨荧光团的硅类似物可作为pH和次氯酸的化学传感器。

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摘要

Chemical sensors capable of detecting a specific atom or molecule under various conditions have been utilized in biological and environmental analyses. Fluorescence based sensors are particularly advantageous in these studies because of their high sensitivity, relative ease in handling, and low technical costs. This dissertation focuses on the detection of two analytes, H+ and hypochlorous acid, which are of interest in biology because the presence of abnormal quantities of these analytes may be indicative of disease.;We have established a new platform for which sensitive changes in various regions of pH can be detected using fluorescence. The aminomethylrhodamine (AMR) scaffold is highly versatile, i.e. the pH range in which the sensor is active can be tuned by introducing different substituents on the amine moiety. Overall this systematic approach to the design of pH sensitive fluorophores has allowed for a library of compounds that are responsive over a broad range of pH (pH 3 - 10) by simply changing the substituent on the amino group. We report the synthesis and characterization of a silicon analog of rhodamine for the fluorescence based detection of hypochlorous acid. This fluorophore exhibits a 90 nm bathochromic shift in its absorption and emission, relative to its oxygen counterpart. Hypochlorous acid is a biological agent linked to certain diseases. Therefore, the longer wavelength properties of the this far-red fluorescent sensor will be of significant benefit to imaging experiments of this analyte in biological media and tissue due to its spectral proximity of the so called NIR optical window. Furthermore, the novel synthetic methodology of this sensor possesses a key intermediate, which could potentially lead to future fluorescence based sensors.;The characterization of a fluorescent probe designed for the detection of hypochlorous acid (HOCl) using a silicon analog of fluorescein (SiF) was also reported. Over a range of pHs, the probe reacts with a stoichiometric amount of HOCl resulting in a mixture of two pH dependent fluorescent species, a SiF disulfide product and a SiF sulfonate product. The unique colorometric properties of the individual SiF fluorophores were utilized to perform simultaneous detection of HOCl and pH. When an excess of HOCl is present, the SiF fluorophores become chlorinated, via an intermediate halohydrin, resulting in a more pH independent and red-shifted fluorophore.;Finally, an attempt was made at developing a pH responsive photodynamic therapy agent. This system was designed to target the relatively low extracellular pH found around tumors. A di-bromohydroxymethylrhodamine system was synthesized and the photophysical properties were characterized. This system absorbs weakly under acidic conditions (ca. pH 3), however was shown to be a moderate photosensitizer under acidic conditions.
机译:能够在各种条件下检测特定原子或分子的化学传感器已用于生物学和环境分析中。基于荧光的传感器由于它们的高灵敏度,相对容易处理和低技术成本而在这些研究中特别有利。本论文的重点是检测生物学上感兴趣的两种分析物H +和次氯酸,因为这些分析物的异常量的存在可能指示疾病。;我们建立了一个新的平台,可以针对该变化的各个区域进行敏感变化可以使用荧光检测pH值。氨基甲基罗丹明(AMR)支架具有很高的通用性,即可以通过在胺部分引入不同的取代基来调节传感器具有活性的pH范围。总的来说,这种设计pH敏感荧光团的系统方法允许通过简单地改变氨基上的取代基而在宽范围的pH值(pH 3-10)范围内具有响应性的化合物库。我们报告了若丹明的硅类似物的合成和表征,用于基于荧光的次氯酸检测。相对于其氧对应物,该荧光团在其吸收和发射方面表现出90 nm的红移。次氯酸是一种与某些疾病有关的生物制剂。因此,由于该远红外荧光传感器的光谱接近所谓的NIR光学窗口,因此对于生物介质和组织中这种分析物的成像实验,该远红外荧光传感器的更长波长特性将具有显着优势。此外,这种传感器的新型合成方法具有关键的中间体,这可能会导致将来基于荧光的传感器的使用。荧光探针的表征,该探针设计为使用荧光素(SiF)的硅类似物检测次氯酸(HOCl)。也有报道。在一定的pH值范围内,探针与化学计量的HOCl反应,生成两种pH依赖性荧光物质,SiF二硫化物产物和SiF磺酸盐产物的混合物。各个SiF荧光团的独特比色特性可用于同时检测HOCl和pH。当存在过量的HOCl时,SiF荧光团会通过中间卤代醇被氯化,从而产生更不依赖pH值和红移的荧光团。最后,人们尝试开发一种对pH敏感的光动力治疗剂。设计该系统以靶向肿瘤周围相对较低的细胞外pH。合成了二溴羟甲基罗丹明体系,并对其光物理性质进行了表征。该体系在酸性条件下(约pH 3)吸收较弱,但在酸性条件下显示为中等光敏剂。

著录项

  • 作者

    Best, Quinn Adams.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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