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Development of EGFR-targeted contrast agents for in vivo applications.

机译:针对体内应用的EGFR靶向造影剂的开发。

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摘要

Optical techniques targeting biomarkers of cancer have the potential to aid in the early detection of this disease. Molecular and biochemical changes in neoplastic tissue could be interrogated, potentially providing an objective assessment and identification of suspect tissue. A method of interrogating such changes involves the development of optical based probes that provide a molecular-specific source of signal.;The work presented in this dissertation provides a systematic approach for developing optically active probes targeting EGFR. The ability to synthesize, passivate and functionalize red-emitting QDs was investigated. It was demonstrated that in order for QDs to be properly passivated for biological imaging applications, a crosslinked amphiphilic-based polymer should be used. Such polymers afforded the best surface protection of all the coating strategies tested. Unfortunately, such systems are generally very large (>35nm) and therefore might be hindered in in vivo delivery.;Due to the large size of QD-based optical probes, further research in this dissertation utilized the commercially available dye, Alexa Fluor 647. Alexa 647 was tethered individually to three different proteins: anti-EGFR antibody; mouse epidermal growth factor peptide (mEGF); and human epidermal growth factor peptide (hEGF). The specificity of each Alexa 647-protein conjugate was verified in vitro. Each protein-dye conjugate was further investigated to determine the specificity and efficiency of intravenous delivery to EGFR positive and EGFR negative tumors. These investigations revealed the importance of both the mean fluorescent signal (normalized for dye:protein ratio) as well as distinctive, recognizable patterns of contrast agents for in vivo applications. Such criteria yield a contrast agent with the best case scenario for being detected and recognized.;The use of a systematic approach to design and test contrast agents for in vivo applications was demonstrated through this work. This work stressed a comprehensive investigation including in vitro, ex vivo and in vivo testing. Additionally, it was shown that care must be taken in designing in vitro experiments to interpret in vivo results as the two do not necessarily correlate. This dissertation lays the groundwork for the development of contrast agents targeting specific molecular markers of cancer.;This dissertation aims to develop an effective optical strategy to target the epidermal growth factor for in vivo detection. The optical probe design consists of an optically active component (quantum dot, fluorescent dye) and a molecular specific probe (antibody, peptide). The optically active components investigated were cadmium telluride quantum dots (QDs) and Alexa Fluor 647 dye. Epidermal growth factor receptor (EGFR) was chosen as a molecular target because it is over-expressed in a large number of epithelial cancers. Both peptides and antibody to EGFr were investigated as molecular specific probes.
机译:靶向癌症生物标志物的光学技术有可能有助于早期发现该疾病。肿瘤组织中的分子和生化变化可以被询问,可能提供客观的评估和可疑组织的鉴定。研究这种变化的方法涉及开发基于光学的探针,该探针提供分子特异性信号源。本论文的工作为开发针对EGFR的光学活性探针提供了系统的方法。研究了合成,钝化和功能化红色发光QD的能力。已经证明,为了使QD正确钝化以用于生物成像应用,应使用交联的两亲性聚合物。这样的聚合物在所有测试的涂层策略中提供了最好的表面保护。不幸的是,这样的系统通常非常大(> 35nm),因此可能在体内传递受到阻碍。由于基于QD的光学探针尺寸较大,因此本文中的进一步研究利用了可商购的染料Alexa Fluor 647。 Alexa 647分别与三种不同的蛋白质拴系在一起:抗EGFR抗体;小鼠表皮生长因子肽(mEGF);和人类表皮生长因子肽(hEGF)。每种Alexa 647蛋白偶联物的特异性均在体外验证。进一步研究了每种蛋白质-染料偶联物,以确定向EGFR阳性和EGFR阴性肿瘤静脉内递送的特异性和效率。这些研究表明,对于体内应用而言,平均荧光信号(针对染料:蛋白质比例进行标准化)以及造影剂的独特,可识别模式的重要性。这样的标准产生了具有被检测和识别的最佳情况的造影剂。通过这项工作证明了使用系统化的方法来设计和测试用于体内应用的造影剂。这项工作强调了全面的调查,包括体外,离体和体内测试。另外,已经表明在设计体外实验时必须小心以解释体内结果,因为两者不一定相关。本论文为针对特定癌症分子标记物的造影剂的开发奠定了基础。本论文旨在开发一种有效的光学策略,靶向表皮生长因子进行体内检测。光学探针设计由光学活性成分(量子点,荧光染料)和分子特异性探针(抗体,肽)组成。研究的旋光成分是碲化镉量子点(QD)和Alexa Fluor 647染料。选择表皮生长因子受体(EGFR)作为分子靶标,因为它在大量上皮癌中过表达。研究了肽和针对EGFr的抗体作为分子特异性探针。

著录项

  • 作者

    Nida, Dawn Lynn.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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