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首页> 外文期刊>European journal of nuclear medicine >Initial investigations of 99mTc-labeled morpholinos for radiopharmaceutical applications.
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Initial investigations of 99mTc-labeled morpholinos for radiopharmaceutical applications.

机译:放射性药物应用中99mTc标记的吗啉代的初步研究。

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This laboratory is evaluating phosphorothioate deoxyribonucleic acids (DNAs) and peptide nucleic acids (PNAs) for a variety of nuclear medicine applications. Morpholinos (MORFs) are a new class of oligomers with a nuclease-resistant, nonionic and water-soluble phosphorodiamidate backbone. We now report on the in vitro and in vivo properties of MORFs labeled with technetium-99m. Both 15-mer and 18-mer MORFs were obtained, each with a primary amine attached to the 3' equivalent end via a three-carbon beta-alanine linker. The amine was used to conjugate with NHS-MAG3 for 99mTc radiolabeling. By surface plasmon resonance at room temperature, the association rate constant for hybridization of the 18-mer MORF to its complementary oligomer (cMORF) was equivalent to that of DNAs and PNAs of comparable length. Hybridization of 99mTc-MORF in vitro to free cMORF, to a cMORF polymer and to cMORF beads was nearly quantitative under a variety of conditions. Kinetic studies in vitro at room temperature showed rapid (2-5 min) and nearly quantitative (90%) binding to cMORF beads. Using size-exclusion high-performance liquid chromatography, the stability of the 99mTc-MORF was found to be greater than 85% over 24 h in 37 degrees C serum with minimal protein binding. In normal mice, the 99mTc-MORF showed rapid pharmacokinetics, with only 21% and 8% remaining in the whole body at 3 and 24 h post administration, respectively. In vivo targeting with 99mTc-MORF of cMORF beads in one thigh of normal mice compared to control beads in the other thigh showed target/control thigh ratios of 2-10 between 3 and 24 h. These results demonstrate that MORF oligomers are capable of in vivo hybridization. Their properties of hybridization affinity and kinetics and their in vivo stability and pharmacokinetics make them suitable subjects for in vivo studies.
机译:该实验室正在评估用于多种核医学应用的硫代磷酸酯脱氧核糖核酸(DNA)和肽核酸(PNA)。 Morpholinos(MORFs)是一类新型的低聚物,具有抗核酸酶的,非离子的和水溶性的二氨基磷酸二氨基酯骨架。现在,我们报告用tech 99m标记的MORF的体外和体内特性。获得了15聚体和18聚体的MORF,每个都具有通过三碳β-丙氨酸接头连接到3'当量端的伯胺。胺用于与NHS-MAG3偶联,用于99mTc放射性标记。通过室温下的表面等离子体共振,18-mer MORF与其互补寡聚物(cMORF)杂交的缔合速率常数等于相当长度的DNA和PNA的缔合速率常数。在各种条件下,体外99mTc-MORF与游离cMORF,与cMORF聚合物以及与cMORF珠的杂交几乎是定量的。室温下的体外动力学研究表明,与cMORF磁珠的结合迅速(2-5分钟),定量接近(90%)。使用尺寸排阻高效液相色谱法,发现在37°C血清中24小时内99mTc-MORF的稳定性大于85%,且蛋白质结合最少。在正常小鼠中,99mTc-MORF表现出快速的药代动力学,在给药后3小时和24小时,全身仅剩下21%和8%。与另一只大腿中的对照珠子相比,正常小鼠一只大腿中的cMORF珠子的99mTc-MORF体内靶向显示在3至24小时内目标/对照大腿比为2-10。这些结果证明了MORF寡聚物能够体内杂交。它们的杂交亲和力和动力学性质以及其体内稳定性和药代动力学使其成为体内研究的合适对象。

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