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含有β-氨基酸残基的 DOTA-神经降压素(8-13)衍生物的合成、受体结合、体外和体内稳定性以及生物分布 - 关于动物实验重要性的教训。

Syntheses, receptor bindings, in vitro and in vivo stabilities and biodistributions of DOTA-neurotensin(8-13) derivatives containing β-amino acid residues - a lesson about the importance of animal experiments.

机构信息

Laboratorium für Organische Chemie, Departement Chemie und Angewandte Biowissenschaften, ETH-Zürich, Hönggerberg HCI, Wolfgang-Pauli-Strasse 10, CH-8093 Zürich, (phone: +41-44-632-2990; fax: +41-44-632-1144).

出版信息

Chem Biodivers. 2013 Dec;10(12):2101-21. doi: 10.1002/cbdv.201300331.

Abstract

Neurotensin(8-13) (NTS(8-13)) analogs with C- and/or N-terminal β-amino acid residues and three DOTA derivatives thereof have been synthesized (i.e., 1-6). A virtual docking experiment showed almost perfect fit of one of the 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid (DOTA) derivatives, 6a, into a crystallographically identified receptor NTSR1 (Fig.1). The affinities for the receptors of the NTS analogs and derivatives are low, when determined with cell-membrane homogenates, while, with NTSR1-exhibiting cancer tissues, affinities in the single-digit nanomolar range can be observed (Table 2). Most of the β-amino acid-containing NTS(8-13) analogs (Table 1 and Fig.2), including the (68) Ga complexes of the DOTA-substituted ones (6; Figs.2 and 5), are stable for ca. 1 h in human serum and plasma, and in murine plasma. The biodistributions of two (68) Ga complexes (of 6a and 6b) in HT29 tumor-bearing nude mice, in the absence and in the presence of a blocking compound, after 10, 30, and 60 min (Figs. 3 and 4) lead to the conclusion that the amount of specifically bound radioligand is rather low. This was confirmed by PET-imaging experiments with the tumor-bearing mice (Fig.6). Comparison of the in vitro plasma stability (after 1 h) with the ex vivo blood content (after 10-15 min) of the two (68) Ga complexes shows that they are rapidly cleaved in the animals (Fig.5).

摘要

已合成具有 C-和/或 N-末端β-氨基酸残基的神经降压素(8-13)(NTS(8-13))类似物和三个 DOTA 衍生物(即 1-6)。虚拟对接实验表明,其中一种 1,4,7,10-四氮杂环十二烷-1,4,7,10-四乙酸(DOTA)衍生物 6a 几乎完美地适合于结晶学鉴定的受体 NTSR1(图 1)。当用细胞膜匀浆测定时,NTS 类似物和衍生物对受体的亲和力较低,而当用表达 NTSR1 的癌症组织测定时,亲和力可达到个位数纳摩尔范围(表 2)。大多数含有β-氨基酸的 NTS(8-13)类似物(表 1 和图 2),包括取代的 DOTA 的(68)Ga 络合物(6;图 2 和 5),在人血清和血浆以及鼠血浆中约 1 小时稳定,在人血清和血浆中以及鼠血浆中约 1 小时稳定。两种(68)Ga 络合物(6a 和 6b)在 HT29 荷瘤裸鼠中的生物分布,在不存在和存在阻断化合物的情况下,在 10、30 和 60 分钟后(图 3 和 4),导致的结论是特异性结合的放射性配体的量相当低。这通过荷瘤小鼠的 PET 成像实验得到证实(图 6)。比较两种(68)Ga 络合物的体外血浆稳定性(1 小时后)与外源性血液含量(10-15 分钟后),表明它们在动物体内迅速被切割(图 5)。

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