Alves Susana, Paulo António, Correia João D G, Gano Lurdes, Smith Charles J, Hoffman Timothy J, Santos Isabel
Departamento de Química, ITN, Estrada Nacional 10, 2686-953 Sacavém Codex, Portugal.
Bioconjug Chem. 2005 Mar-Apr;16(2):438-49. doi: 10.1021/bc0497968.
Radiolabeling of biologically active molecules with the (99m)Tc(CO)(3) unit has been of primary interest in recent years. With this in mind, we herein report symmetric (L(1)) and asymmetric (L(2)-L(5)) pyrazolyl-containing chelators that have been evaluated in radiochemical reactions with the synthon (99m)Tc(H(2)O)(3)(CO)(3) (1a). These reactions yielded the radioactive building blocks (99m)Tc(CO)(3)(k(3)-L) (L = L(1)-L(5), 2a-6a), which were identified by RP-HPLC. The corresponding Re surrogates (2-6) allowed for macroscopic identification of the radiochemical conjugates. Complexes 2a-6a, with log P(o/w) values ranging from -2.35 to 0.87, were obtained in yields of > or =90% using ligand concentrations in the 10(-5-)10(-4) M range. Challenge studies with cysteine and histidine revealed high stability for all of these radioactive complexes, and biodistribution studies in mice indicated a fast rate of blood clearance and high rate of total radioactivity excretion, occurring primarily through the renal-urinary pathway. Based on the framework of the asymmetric chelators, the novel bifunctional ligands 3,5-Me(2)-pz(CH(2))(2)N((CH(2))(3)COOH)(CH(2))(2)NH(2) (L(6)) and pz(CH(2))(2)N((CH(2))(3)COOH)(CH(2))(2)NH(2) (L(7)) have been synthesized and their coordination chemistry toward (NEt(4))(2)[ReBr(3)(CO)(3)] (1) has been explored. The resulting complexes, fac-[Re(CO)(3)(k(3)-L)]Br (L(6)(7), L(7)(8)), contain tridentate ancillary ligands that are coordinated to the metal center through the pyrazolyl and amine nitrogen atoms, as observed for the other related building blocks. L(6) and L(7) were coupled to a glycylglycine ethyl ester dipeptide, and the resulting functionalized ligands were used to prepare the model complexes fac-Re(CO)(3)(kappa(3)-3,5-Me(2)-pz(CH(2))(2)N(glygly)(CH(2))(2)NH(2)) (9/9a) and fac-Re(CO)(3)(kappa(3)-pz(CH(2))(2)N(CH(2))(3)(glygly)(CH(2))(2)NH(2)) (10/10a) (M = Re, (99m)Tc). These small conjugates have been fully characterized and are reported herein. On the basis of the in vitro/in vivo behavior of the model complexes (2a-6a, 9a, 10a), we chose to evaluate the in vitro/in vivo biological behavior of a new tumor-seeking Bombesin pyrazolyl conjugate, [(L(6))-G-G-G-Q-W-A-V-G-H-L-M-NH(2)], that has been labeled with the (99m)Tc(CO)(3) metal fragment. Stability, in vitro cell binding assays, and pharmacokinetics studies in normal mice are reported herein.
近年来,用[(99m)Tc(CO)₃]⁺单元对生物活性分子进行放射性标记一直是主要研究兴趣所在。考虑到这一点,我们在此报告了对称(L₁)和不对称(L₂ - L₅)含吡唑基的螯合剂,它们已在与合成子[(99m)Tc(H₂O)₃(CO)₃]⁺(1a)的放射化学反应中进行了评估。这些反应产生了放射性构建块[(99m)Tc(CO)₃(κ³ - L)]⁺(L = L₁ - L₅,2a - 6a),通过反相高效液相色谱法(RP - HPLC)对其进行了鉴定。相应的铼替代物(2 - 6)有助于对放射化学缀合物进行宏观鉴定。使用浓度在10⁻⁵ - 10⁻⁴ M范围内的配体,得到了log P(o/w)值在 - 2.35至0.87之间的配合物2a - 6a,产率≥90%。用半胱氨酸和组氨酸进行的挑战性研究表明,所有这些放射性配合物都具有高稳定性,并且在小鼠体内的生物分布研究表明血液清除率快,总放射性排泄率高,主要通过肾 - 泌尿途径。基于不对称螯合剂的框架,合成了新型双功能配体3,5 - Me₂ - pz(CH₂)₂N((CH₂)₃COOH)(CH₂)₂NH₂(L₆)和pz(CH₂)₂N((CH₂)₃COOH)(CH₂)₂NH₂(L₇),并探索了它们与(NEt₄)₂[ReBr₃(CO)₃](1)的配位化学。得到的配合物fac - [Re(CO)₃(κ³ - L)]Br(L₆⁽⁷⁾,L₇⁽⁸⁾)含有三齿辅助配体,这些配体通过吡唑基和胺氮原子与金属中心配位,正如在其他相关构建块中所观察到的那样。L₆和L₇与甘氨酰甘氨酸乙酯二肽偶联,得到的功能化配体用于制备模型配合物fac - [Re(CO)₃(κ³ - 3,5 - Me₂ - pz(CH₂)₂N(glygly)(CH₂)₂NH₂)]⁺(9/9a)和fac - [Re(CO)₃(κ³ - pz(CH₂)₂N(CH₂)₃(glygly)(CH₂)₂NH₂)]⁺(10/10a)(M = Re,(99m)Tc)。这些小的缀合物已得到充分表征并在此报告。基于模型配合物(2a - 6a,9a,10a)的体外/体内行为,我们选择评估一种新的肿瘤靶向性蛙皮素吡唑基缀合物[(L₆) - G - G - G - Q - W - A - V - G - H - L - NH₂]的体外/体内生物学行为,该缀合物已用[(99m)Tc(CO)₃]⁺金属片段进行了标记。本文报告了其在正常小鼠中的稳定性、体外细胞结合试验和药代动力学研究。