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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Rhenium and technetium tricarbonyl, {M(CO)(3)}(+) (M = Tc, Re), binding to mammalian metallothioneins: new insights into chemical and radiopharmaceutical implications
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Rhenium and technetium tricarbonyl, {M(CO)(3)}(+) (M = Tc, Re), binding to mammalian metallothioneins: new insights into chemical and radiopharmaceutical implications

机译:carbonyl和三羰基tech,{M(CO)(3)}(+)(M = Tc,Re),与哺乳动物金属硫蛋白结合:对化学和放射性药物影响的新见解

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摘要

This paper deals with the binding of the four mammalian metallothioneins (MTs) to the organometallic metal fragment {fac-M(CO)(3)}(+) (M = Tc-99, Re), which is highly promising for the preparation of second-generation radiopharmaceuticals. The study of the transmetallation reaction between zinc and rhenium in Zn-7-MT1 by means of UV-vis and CD spectroscopy demonstrated the incorporation of the {fac-Re(CO)(3)}(+) fragment to the MTs. This reaction should be performed at 70 A degrees C to accelerate the reaction rate, a result that is consistent with the reported reactivity of the rhenium fragment. ESI-TOF MS demonstrated the formation of mixed-metal species as Zn-6,{Re(CO)(3)}-MT, Zn-6,{Re(CO)(3)}(2)-MT, and Zn-5,{Re(CO)(3)}(3)-MT, as well as the different reactivity of the four MT isoforms. Hence, Zn-MT3 showed the highest reactivity, in agreement with its high Cu-thionein character, whereas Zn-MT2 exhibited the lowest reactivity, in line with its high Zn-thionein character. The reactivity of the Zn-loaded forms of MT1 and MT4 is intermediate between those of MT3 and MT2. The study of the binding of the {fac-Tc-99(CO)(3)}(+) fragment to MTs showed a significant and very interesting different reactivity in relation to rhenium. The transmetallation reaction is much more effective with technetium than with rhenium and significant amounts of mixed Zn (x) ,{Tc-99(CO)(3)} (y) -MT species were formed with the four MT isoforms whereas only MT3 rendered similar amounts of rhenium derivatives. The results obtained in this study support the possible use of technetium for labelling mammalian metallothioneins and also for possible radiopharmaceutical applications.
机译:本文研究了四种哺乳动物金属硫蛋白(MTs)与有机金属金属片段{fac-M(CO)(3)}(+)(M = Tc-99,Re)的结合,这对于制备具有很高的前景第二代放射性药物。通过紫外可见光谱和CD光谱研究了Zn-7-MT1中锌和rh之间的金属转移反应,结果表明{fac-Re(CO)(3)}(+)片段已掺入MT中。该反应应在70 A摄氏度下进行以加快反应速度,这一结果与所报道的fragment片段的反应性相符。 ESI-TOF MS证明形成了混合金属物质,如Zn-6,{Re(CO)(3)}-MT,Zn-6,{Re(CO)(3)}(2)-MT和Zn -5,{Re(CO)(3)}(3)-MT,以及四种MT同工型的不同反应性。因此,Zn-MT3显示出最高的反应性,与其高的Cu-硫代氨酸特征一致,而Zn-MT2显示出最低的反应性,与其高的Zn-硫代氨酸特征一致。 MT1和MT4的锌负载形式的反应性介于MT3和MT2之间。 {fac-Tc-99(CO)(3)}(+)片段与MT结合的研究显示出与rh有关的显着且非常有趣的不同反应性。 tech的金属转移反应比than有效得多,大量的混合锌(x),{Tc-99(CO)(3)}(y)-MT物种由四种MT同工型形成,而只有MT3类似数量的rh衍生物。在这项研究中获得的结果支持tech可能用于标记哺乳动物金属硫蛋白,也可能用于放射性药物应用。

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