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Development of a Rhodium Tetrathioether Bombesin Analogue and Investigation of Cyclic and Acyclic Ligand Systems for Rhodium-105.

机译:铑四硫醚轰炸蛋白类似物的开发以及用于Rhodium-105的环状和无环配体系统的研究。

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摘要

Rhodium-105 is an attractive nuclide for radiotherapeutic applications due to its nuclear properties (566 keV beta-, 319 keV [19%], 306 keV [5%]) and the kinetic stability of Rhodium (III) complexes with soft sulfur donor atoms. Extension of previous research involving tetrathioether chelate systems to include a targeting molecule may have implications for prostate cancer therapy.;This work reports on the synthesis and evaluation of a new bombesin peptide targeted Rh (III) tetrathioether analogue, [Rh-S4-8Aoc-BBN(7-14)NH2] +, which shows high affinity for the BB2r receptor on PC-3 cancer cells (IC50 = 2.2 +/- 0.3 nM). However, multiple 105 Rh labeled species were obtained under the radiolabeling conditions investigated.;To better understand the results observed for [105Rh-8Aoc-BBN(7-14)NH 2]+, the chemistries of previously investigated [Rh-S4-Diol] + and [Rh-S4-(COOH)2]+ were reevaluated using more recently available techniques. A quantitative evaluation of the [Rh- S4-Diol] + and [Rh-S4-(COOH)2]+ systems using NMR, ESI-MS and HPLC reveals formation of multiple species resulting from both exchange of the coordinated chlorides at the metal center and esterification of pendant carboxylate groups. While a predominate trans-chloro Rh(III)-S4 species may be favored by addition of excess NaCl, both ethanol and acid are required for radiolabeling. Thus, ligand systems utilizing pendant carboxylate groups are not compatible with traditional 105Rh radiolabeling techniques. Future studies involving a 105Rh tetrathioether bombesin analogue without pendant carboxylate groups are recommended.
机译:铑105由于其核性质(566 keVβ-,319 keV [19%],306 keV [5%])的核性质和具有软硫供体原子的铑(III)配合物的动力学稳定性而成为放射治疗应用中有吸引力的核素。 。将先前涉及四硫醚螯合系统的研究扩展到包括靶向分子可能对前列腺癌治疗有影响。这项工作报道了靶向Rh(III)四硫醚类似物[Rh-S4-8Aoc- BBN(7-14)NH2] +,它对PC-3癌细胞上的BB2r受体具有高亲和力(IC50 = 2.2 +/- 0.3 nM)。但是,在所研究的放射性标记条件下获得了多个105 Rh标记的物质。;为了更好地了解观察到的[105Rh-8Aoc-BBN(7-14)NH 2] +的结果,先前研究的[Rh-S4-Diol使用最近可用的技术重新评估] +和[Rh-S4-(COOH)2] +。使用NMR,ESI-MS和HPLC对[Rh-S4-Diol] +和[Rh-S4-(COOH)2] +系统进行定量评估,发现形成多种物质是由于金属中配位氯化物的交换侧链羧酸酯基的中心和酯化。尽管可以通过添加过量的NaCl来支持主要的反氯Rh(III)-S4物种,但放射性标记既需要乙醇,也需要酸。因此,利用侧链羧酸酯基团的配体系统与传统的105Rh放射性标记技术不兼容。建议进行涉及105Rh四硫醚轰击蛋白类似物而无侧链羧酸酯基团的未来研究。

著录项

  • 作者

    Carroll, Valerie.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Chemistry Nuclear.;Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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