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源自奎宁环基苯甲酸酯(QNB)硼酸立体异构体的二肟锝(BATO)配合物的硼酸加合物:其与毒蕈碱型乙酰胆碱受体结合的合成与研究

Boronic acid adducts of technetium dioxime (BATO) complexes derived from quinuclidine benzilate (QNB) boronic acid stereoisomers: syntheses and studies of their binding to the muscarinic acetylcholine receptor.

作者信息

Jurisson S S, Pirro J, DiRocco R J, Rosenspire K C, Jagoda E, Nanjappan P, Eckelman W C, Nowotnik D P, Nunn A D

机构信息

Diagnostics Drug Discovery, Bristol-Myers Squibb Pharmaceutical Research Institute, Princeton, NJ 08543, USA.

出版信息

Nucl Med Biol. 1995 Apr;22(3):269-81. doi: 10.1016/0969-8051(94)00125-4.

Abstract

We have investigated the possibility of using BATO complexes derivatized with the muscarinic acetylcholine receptor (mAChR) antagonist, quinuclidinyl benzilate (QNB), for mAChR imaging. The BATO complexes, TcCl(DMG)3B-QNB, were prepared using QNB derivatives containing a 4'-boronic acid substituent on one of the benzilic benzene rings (QNB-boronic acid). The QNB-boronic acid molecule has two chiral centers, and all four QNB-BATO stereoisomers were made and evaluated. When studied using in vitro receptor binding assays based on tissue from rat brain caudate-putamen (which contains primarily M1 and M4 mAChR) and rat heart (M2 mAChR), the QNB-boronic acid stereoisomers had binding affinities (KA) in the range 2 x 10(5)-1 x 10(8), at least 10-fold lower than the KA for QNB (ca 2 x 10(9)). The stereochemistry of both centers had some influence on the affinity constant. When the TcCl(DMG)3B-QNB complexes were studied, none of the stereoisomeric complexes displayed measurable specific binding (KA < 10(6)), but all showed high non-specific binding. In vitro autoradiography with rat brain slices confirmed the absence of specific binding in these tracers. In vivo, the 99mTcCl(DMG)3B-QNB complexes displayed minimal brain uptake, and modest heart uptake; the latter was unlikely to be related to uptake by the mAChR. In light of these findings, we conclude that the interaction between the TcCl(DMG)3B-QNB complexes and biological membranes is dominated by the hydrophobicity of the BATO moiety. The TcCl(DMG)3B-QNB complexes, therefore, have little potential for mAChR imaging.

摘要

我们研究了使用用毒蕈碱型乙酰胆碱受体(mAChR)拮抗剂苯甲托品(QNB)衍生化的BATO配合物进行mAChR成像的可能性。使用在苄基苯环之一上含有4'-硼酸取代基的QNB衍生物(QNB-硼酸)制备了BATO配合物TcCl(DMG)3B-QNB。QNB-硼酸分子有两个手性中心,制备并评估了所有四种QNB-BATO立体异构体。当使用基于大鼠脑尾状核-壳核组织(主要含有M1和M4 mAChR)和大鼠心脏(M2 mAChR)的体外受体结合试验进行研究时,QNB-硼酸立体异构体的结合亲和力(KA)在2×10⁵ - 1×10⁸范围内,比QNB的KA(约2×10⁹)至少低10倍。两个中心的立体化学对亲和常数都有一定影响。当研究TcCl(DMG)3B-QNB配合物时,没有一种立体异构配合物显示出可测量的特异性结合(KA < 10⁶),但都显示出高非特异性结合。用大鼠脑切片进行的体外放射自显影证实了这些示踪剂中不存在特异性结合。在体内,99mTcCl(DMG)3B-QNB配合物在脑中的摄取极少,在心脏中的摄取适中;后者不太可能与mAChR的摄取有关。鉴于这些发现,我们得出结论,TcCl(DMG)3B-QNB配合物与生物膜之间的相互作用主要由BATO部分的疏水性主导。因此,TcCl(DMG)3B-QNB配合物在mAChR成像方面几乎没有潜力。

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