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Studies on phosphine and phosphonite cationic technetium complexes as potential myocardial imaging agents.

机译:作为潜在的心肌显像剂的膦和亚膦酸酯阳离子tech络合物的研究。

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摘要

The ultimate goal of this research is the development of a more effective 99m-Tc myocardial imaging agent. In this thesis the disciplines of bioanalytical chemistry and inorganic chemistry are combined and employed to gain a further understanding of the in vivo behavior of potential 99m-Tc myocardial imaging agents. Analytical methods, particularly high performance liquid chromatography (HPLC), are used to investigate the in vitro behavior of the cationic 99m-Tc complexes and to relate this behavior to trends seen during in vivo testing.; Due to the low molar concentrations of 99m-Tc radiopharmaceuticals, HPLC with radiometric detection is one of the few means available for their analysis and characterization. Reverse phase ion-pair HPLC is the preferred method of analysis for cationic 99m-Tc complexes. Studies are presented which elucidate some of the unusual chromatographic behavior seen during the reverse phase HPLC analysis of these complexes. Analyses of unstable complexes which are susceptible to in vivo redox reactions at the 10{dollar}sp{lcub}-10{rcub}{dollar} to 10{dollar}sp{lcub}-15{rcub}{dollar} M concentration level are described.; In vitro prescreening of potential 99m-Tc radiopharmaceuticals is essential to the development of these agents. New analytical techniques are presented which may prove of use in the development of prescreening methods. In vitro chromatographic analysis of the serum protein binding behavior of some cationic 99m-T complexes provides an explanation of the unusual biological properties of these complexes.; The synthesis of two groups of 99-Tc and 99m-Tc complexes are described. The first group is based upon bidentate phosphonite ligands which are analogs to the DMPE (bis-1,2-dimethylphophinoethane) ligand. The second group is based upon mixed ligand complexes containing the bidentate phosphine ligand DMPE and either monodentate phosphines or isonitriles; Tc(L){dollar}sb2{dollar}(Y){dollar}sb2sp+{dollar} where L = DMPE, and Y = a monodentate phosphine or isonitrile ligand. These complexes were synthesized to both further our understanding of the biological behavior of cationic 99m-Tc myocardial imaging agents, and assist in the development of prescreening methods.
机译:这项研究的最终目标是开发更有效的99m-Tc心肌显像剂。在本文中,将生物分析化学和无机化学的学科相结合,并用于进一步了解潜在的99m-Tc心肌显像剂的体内行为。分析方法,特别是高效液相色谱法(HPLC),用于研究阳离子99m-Tc配合物的体外行为,并将这种行为与体内测试中发现的趋势相关联。由于99m-Tc放射性药物的摩尔浓度较低,因此具有放射检测功能的HPLC是可用于其分析和表征的少数手段之一。反相离子对HPLC是分析99m-Tc阳离子络合物的首选方法。提出的研究阐明了在对这些配合物进行反相HPLC分析时发现的一些异常色谱行为。在10 {dollar} sp {lcub} -10 {rcub} {dollar}至10 {dollar} sp {lcub} -15 {rcub} {dollar} M浓度水平下易受体内氧化还原反应影响的不稳定复合物的分析被描述。潜在的99m-Tc放射性药物的体外预筛选对于开发这些药物至关重要。提出了新的分析技术,这些技术可能证明可用于预筛查方法的开发。某些阳离子99m-T复合物的血清蛋白结合行为的体外色谱分析提供了这些复合物异常生物学特性的解释。描述了两组99-Tc和99m-Tc配合物的合成。第一组基于双齿亚膦酸酯配体,其类似于DMPE(双-1,2-二甲基膦基乙烷)配体。第二组是基于混合配体复合物,其中含有二齿膦配体DMPE和单齿膦或异腈; Tc(L){美元} sb2 {美元}(Y){sb2sp + {美元}其中L = DMPE,Y =单齿膦或异腈配体。合成这些复合物不仅可以进一步了解阳离子99m-Tc心肌显像剂的生物学行为,而且有助于开发预筛选方法。

著录项

  • 作者

    Hirth, Walter William.;

  • 作者单位

    University of Cincinnati.;

  • 授予单位 University of Cincinnati.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 229 p.
  • 总页数 229
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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