Vanbilloen H P, De Roo M J, Verbruggen A M
Laboratory of Radiopharmaceutical Chemistry, F.F.W., K.U. Leuven, Herestraat 49, B-3000 Leuven, Belgium.
Eur J Nucl Med. 1996 Jan;23(1):40-8. doi: 10.1007/BF01736988.
Recently, we have shown that tetrapeptides can be efficiently labelled with technetium-99m by direct labelling at alkaline pH. Tetrapeptides can be considered derivatives of mercaptoacetyltriglycine (MAG3) in which the mercaptoacetyl moiety is replaced by an amino acid residue. In view of the interesting biological properties of some C-methyl substituted derivatives of 99mTc-MAG3, we have now synthesised and evaluated the complexes of 99mTc with tetrapeptides containing three glycyl (G) moieties and one D- or L-alanyl (A) moiety. In mice, 99mTc-L-GAGG, 99mTc-D-GGAG and 99mTc-L-GGAG showed a rapid and high renal excretion, comparable to that of 99mTc-MAG3. Renal handling was somewhat reduced for isomers d and l of 99mTc-AGGG and 99mTc-D-GAGG and markedly inferior for 99mTc-L-GGGA and 99mTc-D-GGGA. In the baboon, 99mTc-L-AGGG, 99mTc-D-AGGG and 99mTc-L-GAGG showed a comparable or even higher 1-h plasma clearance than 99mTc-MAG3. 99mTc-D-GAGG, 99mTc-L-GGAG and 99mTc-D-GGAG were characterised by a lower plasma clearance and the clearance of 99mTc-L-GGGA and 99mTc-D-GGGA was remarkably low. The three 99mTc-labelled tetrapeptides with the highest plasma clearance in a baboon were compared with 99mTc-MAG3 in a human volunteer. 99mTc-L-AGGG and 99mTc-L-GAGG had a roughly similar plasma clearance as 99mTc-MAG3. The clearance of 99mTc-D-AGGG was significantly lower and liver uptake was clearly visible with this compound. Left kidney renograms of 99mTc-L-AGGG and 99mTc-D-AGGG indicated moderate kidney accumulation. On the other hand, the renogram obtained after injection of 99mTc-L-GAGG had an excellent shape and the maximum kidney concentration was slightly higher than for 99mTc-MAG3. These results show the importance of the position of the methyl substituent on the 99mTc-tetrapeptide with respect to its biological behaviour.
最近,我们已经表明,四肽可以在碱性pH条件下通过直接标记而有效地用锝-99m进行标记。四肽可以被认为是巯基乙酰三甘氨酸(MAG3)的衍生物,其中巯基乙酰部分被一个氨基酸残基所取代。鉴于99mTc-MAG3的一些C-甲基取代衍生物具有有趣的生物学特性,我们现在已经合成并评估了99mTc与含有三个甘氨酰(G)部分和一个D-或L-丙氨酰(A)部分的四肽形成的配合物。在小鼠中,99mTc-L-GAGG、99mTc-D-GGAG和99mTc-L-GGAG显示出快速且高的肾脏排泄,与99mTc-MAG3相当。99mTc-AGGG和99mTc-D-GAGG的异构体d和l的肾脏处理能力有所降低,而99mTc-L-GGGA和99mTc-D-GGGA则明显较差。在狒狒中,99mTc-L-AGGG、99mTc-D-AGGG和99mTc-L-GAGG在1小时时的血浆清除率与99mTc-MAG3相当甚至更高。99mTc-D-GAGG、99mTc-L-GGAG和99mTc-D-GGAG的特点是血浆清除率较低,而99mTc-L-GGGA和99mTc-D-GGGA的清除率非常低。将在狒狒中血浆清除率最高的三种99mTc标记的四肽与一名人类志愿者体内的99mTc-MAG3进行了比较。99mTc-L-AGGG和99mTc-L-GAGG的血浆清除率与99mTc-MAG3大致相似。99mTc-D-AGGG的清除率明显较低,并且该化合物的肝脏摄取清晰可见。99mTc-L-AGGG和99mTc-D-AGGG的左肾肾图显示肾脏有中度积聚。另一方面,注射99mTc-L-GAGG后获得的肾图形状极佳,肾脏最大浓度略高于99mTc-MAG3。这些结果表明,99mTc-四肽上甲基取代基的位置对其生物学行为具有重要意义。