基于放射性示踪剂的血管生成成像策略。

R H Haubner, H J Wester, W A Weber, M Schwaiger
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引用次数: 0

摘要

肿瘤诱导的血管生成在肿瘤进展中起着重要作用。人们做出了巨大的努力来开发治疗策略,以干扰这一过程,导致肿瘤饥饿。然而,监测常规疗法的策略似乎不适合控制这些方法。因此,人们对开发提供有关相应治疗效果信息的方法非常感兴趣。目前正在研究几种基于放射性示踪剂的方法,重点关注血管生成过程中的不同目标。一类示踪剂是基于基质金属蛋白酶抑制剂。这些化合物在体外试验中显示出有希望的结果。然而,使用小鼠肿瘤模型的体内研究的初步数据还不能证实成功的无创监测MMP活性。另一种策略是使用放射性标记的单链片段来对抗纤维连接蛋白(一种细胞外基质蛋白)的ED-B结构域。有希望的结果表明,示踪剂在小鼠肿瘤模型的肿瘤血管中选择性积累。大多数研究都集中在整合素α (v) β的放射性标记拮抗剂的开发上(3)。这种异二聚体跨膜糖蛋白参与了新血管形成过程中活化内皮细胞的迁移。不同的化合物被标记为(18F), (111)In, (99m)Tc, (90)Y和几种碘同位素。在体外实验中,它们大多显示出高α (v) β(3)亲和力和选择性。此外,在不同的小鼠肿瘤模型中,成功的非侵入性测定了α (v) β(3)的表达。其中一些方法表明,可以在动物实验中监测肿瘤诱导的血管生成。然而,将这些方法转化为临床环境,使患者的肿瘤诱导血管生成可视化仍然需要证明。
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Radiotracer-based strategies to image angiogenesis.

Tumour-induced angiogenesis plays an important role in tumour progression. Great efforts are made to develop therapeutic strategies to interfere with this process resulting in the starvation of the tumour. However, strategies to monitor conventional therapies seems to be inappropriate to control these approaches. Thus, there is a keen interest in developing methods supplying information about the corresponding therapeutical effects. Several radiotracer-based approaches focused on different targets in the angiogenic process are currently investigated. One class of tracers is based on matrix metalloproteinases inhibitors. These compounds show promising results in in vitro assays. However, initial data from in vivo studies using murine tumour models could not confirm successful non-invasive monitoring of MMP activity yet. Another strategy uses a radiolabelled single chain fragment against the ED-B domain of fibronectin, an extracellular matrix protein. Promising results demonstrated selective accumulation of the tracer in the tumour vasculature of a murine tumour model. Most of the studies are concentrated on the development of radiolabelled antagonists of the integrin alpha(v)beta(3). This heterodimeric transmembrane glycoprotein is involved in the migration of activated endothelial cells during formation of new vessels. Different compounds have been labelled with (18F), (111)In, (99m)Tc, (90)Y and several iodine isotopes. In in vitro assays most of them revealed high alpha(v)beta(3) affinity and selectivity. Moreover, in different murine tumour models successful non-invasive determination of alpha(v)beta(3) expression has been shown. Some of these approaches indicate that tumour-induced angiogenesis can be monitored in animal studies. Nevertheless, translation of these approaches into clinical settings allowing visualisation of tumour-induced angiogenesis in patients needs still to be demonstrated.

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