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首页> 外文期刊>JBIC Journal of Biological Inorganic Chemistry >A new bisphosphonate-containing 99mTc(I) tricarbonyl complex potentially useful as bone-seeking agent: synthesis and biological evaluation
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A new bisphosphonate-containing 99mTc(I) tricarbonyl complex potentially useful as bone-seeking agent: synthesis and biological evaluation

机译:一种新型的含双膦酸酯的99mTc(I)三羰基配合物,可能用作寻骨剂:合成和生物学评估

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摘要

Aiming to develop new bone-seeking radiotracers based on the organometallic core fac-[99mTc(CO)3]+ with improved radiochemical and biological properties, we have prepared new conjugates with phosphonate pendant groups. The conjugates comprise a chelating unit for metal coordination, which corresponds to a pyrazolyl-containing backbone (pz) with a N,N,N donor-atom set, and a pendant diethyl phosphonate (pz-MPOEt), phosphonic acid (pz-MPOH) or a bisphosphonic acid (pz-BPOH) group for bone targeting. Reactions of the conjugates with the precursor [99mTc(H2O)3(CO)3]+ yielded (mote than 95%) the single and well-defined radioactive species [99mTc(CO)3(κ3-pz-MPOEt)]+ (1a), [99mTc(CO)3(κ3-pz-MPOH]+ (2a) and [99mTc(CO)3(κ3-pz-BPOH)]+ (3a), which were characterized by reversed-phase high-performance liquid chromatography . The corresponding Re surrogates (1–3), characterized by the usual analytical techniques, including X-ray diffraction analysis in the case of 1, allowed for macroscopic identification of the radioactive conjugates. These radioactive complexes revealed high stability both in vitro (phosphate-buffered saline solution and human plasma) and in vivo, without any measurable decomposition. Biodistribution studies of the complexes in mice indicated a fast rate of blood clearance and high rate of total radioactivity excretion, occurring primarily through the renal–urinary pathway in the case of complex 3a. Despite presenting moderate bone uptake (3.04 ± 0.47% injected dose per gram of organ, 4 h after injection), the high stability presented by 3a and its adequate in vivo pharmacokinetics encourages the search for new ligands with the same chelating unit and different bisphosphonic acid pendant arms.
机译:为了开发新的基于有机金属核fac- [99m Tc(CO)3 ] + 的寻骨放射性示踪剂,我们制备了具有膦酸酯的新型缀合物吊坠组。缀合物包含用于金属配位的螯合单元,其对应于具有N,N,N供体原子组的含吡唑基的主链(pz)和侧链膦酸二乙酯(pz-MPOEt),膦酸(pz-MPOH) )或双膦酸(pz-BPOH)基团用于骨骼靶向。缀合物与前体[99m Tc(H2 O)3 (CO)3 ] + 的反应产生(超过95%)单和明确定义的放射性物质[99m Tc(CO)3 (κ3 -pz-MPOEt)] + (1a),[99m Tc( CO)3 (κ3 -pz-MPOH] + (2a)和[99m Tc(CO)3 (κ3 -pz -BPOH)] + (3a),通过反相高效液相色谱进行表征,相应的Re surrogates(1-3),通过常规分析技术进行表征,包括X射线衍射分析在1的情况下,可以对放射性结合物进行宏观鉴定,这些放射性配合物在体外(磷酸盐缓冲盐溶液和人血浆)和体内均具有很高的稳定性,并且没有任何可测量的分解。主要通过肾泌尿途径发生的快速血液清除率和高总放射性排泄率对于复杂的3a。尽管表现出中等的骨吸收(注射后4 h,每克器官注射剂量为3.04±0.47%),但3a所表现出的高稳定性及其充分的体内药代动力学仍鼓励人们寻找具有相同螯合单元和不同双膦酸的新配体吊臂。

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