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首页> 外文期刊>The Journal of Nuclear Medicine >Multifunctional antibodies by the Dock-and-Lock method for improved cancer imaging and therapy by pretargeting.
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Multifunctional antibodies by the Dock-and-Lock method for improved cancer imaging and therapy by pretargeting.

机译:Dock-and-Lock方法的多功能抗体可通过预靶向来改善癌症成像和治疗。

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The Dock-and-Lock (DNL) method, which makes bioactive molecules with multivalency and multifunctionality, is a new approach to develop targeting molecules for improved cancer imaging and therapy. It involves the use of a pair of distinct protein domains involved in the natural association between cyclic adenosine monophosphate (cAMP)-dependent protein kinase A (PKA) and A-kinase anchoring proteins (AKAPs). The dimerization and docking domain found in the regulatory subunit of PKA and the anchoring domain (AD) of an interactive AKAP are each attached to a biologic entity, and the resulting derivatives, when combined, readily form a stably tethered complex of a defined composition that fully retains the functions of the individual constituents. The DNL method has generated several trivalent, bispecific, binding proteins, each consisting of 2 identical Fab fragments linked site-specifically to a different Fab fragment. For example, 2 identical Fabs reacting with carcinoembryonic antigen (CEA) are bound toa Fab reacting with a hapten peptide that bears a diagnostic or therapeutic radionuclide. Using a 2-step, pretargeting method that separates the bivalent anti-CEA antibody targeting of tumor from the delivery of the radioactive peptide that is captured by the second Fab of the tri-Fab construct, an improved method of cancer imaging and therapy has been developed and shows very sensitive and specific targeting of CEA-expressing tumors for either diagnostic imaging, such as with immunoSPECT and immunoPET, or radioimmunotherapy. Improved therapeutic efficacy is shown with pretargeting in a pancreatic cancer xenograft model given a tri-Fab to a pancreatic cancer MUC1 and the hapten peptide labeled with (90)Y.
机译:Dock-and-Lock(DNL)方法使生物活性分子具有多价和多功能性,是开发靶向分子以改善癌症成像和治疗的新方法。它涉及一对涉及环状单磷酸腺苷(cAMP)依赖性蛋白激酶A(PKA)和A激酶锚定蛋白(AKAPs)之间自然结合的蛋白质结构域的使用。在PKA调节亚基中发现的二聚化和对接结构域以及交互式AKAP的锚定结构域(AD)均附着于生物实体,并且所得到的衍生物在结合时易于形成具有确定组成的稳定束缚的复合物,充分保留各个组成部分的功能。 DNL方法已经产生了几种三价,双特异性的结合蛋白,每种蛋白都由2个相同的Fab片段组成,这些Fab片段位点特异性地连接至不同的Fab片段。例如,与癌胚抗原(CEA)反应的两个相同的Fabs与与带有诊断性或治疗性放射性核素的半抗原肽反应的Fab结合。使用两步预靶向方法将靶向肿瘤的二价抗CEA抗体与由tri-Fab构建体的第二个Fab捕获的放射性肽的传递分开,已经开发了一种改进的癌症成像和治疗方法开发并显示出非常敏感和特异性地靶向表达CEA的肿瘤,可用于诊断成像,例如免疫SPECT和immunoPET或放射免疫疗法。通过在胰腺癌异种移植模型中预靶向三Fab胰腺癌MUC1和标有(90)Y的半抗原肽,可以提高治疗效果。

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