Russell C D, Speiser A G
J Nucl Med. 1980 Nov;21(11):1086-90.
Technetium complexes of several hydroxycarboxylic acids are used for medical imaging. To determine the oxidation state of technetium in these agents, we studied the reduction of pertechnetate (Tc-99) in 0.1 M solutions of four hydroxycarboxylic acids, using polarography and amperometric titration with Sn(II). In D-gluconate below pH 6, Tc(III) and Tc(V) complexes were identified with certainty, Tc(IV) questionably; at pH 6 to 10, Tc(IV) and Tc(V) were formed; above pH 10, Tc(III), Tc(IV), and Tc(V). In D-glucoheptonate below pH 6, Tc(III) and Tc(V) were formed, and questionably Tc(IV); at pH 6 to 10, Tc(V); above pH 10, Tc(III), Tc(V), and probably Tc(IV). In L-tartrate below pH 6, Tc(III), Tc(IV), and Tc(V) were formed; above pH 6, Tc(IV) and Tc(V). In citrate below pH 10, Tc(III), Tc(IV), and Tc(V) were formed; above pH 10, Tc(IV) and Tc(V). For all four ligands the initial product of reduction by Sn(II) at pH 3 to 9 was Tc(V). In freshly prepared tin-labeled imaging agents of this class, the oxidation state is probably Tc(V). Lower stable oxidation states exist, attainable by using reducing agents stronger than tin; these may show altered imaging properties.
几种羟基羧酸的锝配合物用于医学成像。为了确定这些制剂中锝的氧化态,我们使用极谱法和用Sn(II)进行的安培滴定法,研究了在四种羟基羧酸的0.1 M溶液中高锝酸盐(Tc-99)的还原情况。在pH值低于6的D-葡萄糖酸盐中,确定鉴定出了Tc(III)和Tc(V)配合物,Tc(IV)存在疑问;在pH值为6至10时,形成了Tc(IV)和Tc(V);在pH值高于10时,形成了Tc(III)、Tc(IV)和Tc(V)。在pH值低于6的D-葡庚糖酸盐中,形成了Tc(III)和Tc(V),Tc(IV)存在疑问;在pH值为6至10时,形成了Tc(V);在pH值高于10时,形成了Tc(III)、Tc(V),可能还有Tc(IV)。在pH值低于6的L-酒石酸盐中,形成了Tc(III)、Tc(IV)和Tc(V);在pH值高于6时,形成了Tc(IV)和Tc(V)。在pH值低于10的柠檬酸盐中,形成了Tc(III)、Tc(IV)和Tc(V);在pH值高于10时,形成了Tc(IV)和Tc(V)。对于所有四种配体,在pH值为3至9时,Sn(II)还原的初始产物是Tc(V)。在这类新制备的锡标记成像剂中,氧化态可能是Tc(V)。存在较低的稳定氧化态,使用比锡更强的还原剂可达到这些氧化态;这些氧化态可能表现出改变的成像特性。