双特异性抗体介导的放射性标记二价半抗原靶向:理论、实验和临床结果。

J M Le Doussal, J Barbet, M Delaage
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引用次数: 0

摘要

化学偶联的双特异性(抗细胞表面抗原,抗半抗原)Fab'-Fab抗体(bs - mab)已被用于靶向125I-, 111In-和99mtc标记的半抗原到细胞亚群。在体外实验中,发现二价半抗原比它们的单价类似物与结合在细胞表面(“有序”)的单克隆抗体结合更强,或者比与游离(“无序”)的单克隆抗体结合更强:它们对细胞结合的单克隆抗体有选择性。在肿瘤移植的裸鼠模型中,连续注射微克量的单克隆抗体,1天后注射微量的二价半抗原,可以在注射后数小时内清晰地描绘小肿瘤(使用伽马照相机)。此外,发现同位素生物分布对肿瘤的选择性至少比直接标记的抗cea F(ab)'2或单价半抗原高3倍。两步靶向双价半抗原的更好的体内选择性也在使用治疗量的试剂的药代动力学研究中得到证实。在原发性结肠癌患者中,一项类似的比较免疫扫描研究证实,基于图像质量和离体组织计数,双价半抗原靶向比直接靶向具有更好的选择性。在甲状腺髓样癌患者中,二价半抗原靶向使我们能够确认肿瘤的扩展并发现隐匿病变。有趣的是,放射免疫引导手术对于切除这些小病变是必要的。这些实验结果以及技术和理论方面的考虑表明,单抗介导的同位素(或其他药物)靶向是提高基于单抗的靶向诊断和治疗工具临床性能的主要途径之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bispecific-antibody-mediated targeting of radiolabeled bivalent haptens: theoretical, experimental and clinical results.

Chemically conjugated bispecific (anti-cell surface antigen, anti-hapten) Fab'-Fab antibodies (Bs-MAbs) have been used to target 125I-, 111In- and 99mTc-labeled haptens to cell sub-sets. In vitro, bivalent haptens were found to bind more strongly than their monovalent analogs to the Bs-MAbs bound to ("ordered" on) the cell surface, or than to free ("disordered") Bs-MAbs: they are selective for cell-bound Bs-MAbs. In tumor-grafted nude mice models, the sequential injections of microgram amounts of Bs-MAb, and 1 day later, of microC amounts of bivalent haptens permits to sharply delineate small tumors (using a gamma camera), hours after injection. Further, the isotope biodistribution was found to be at least 3 times more selective for the tumor than that obtained with directly labeled anti-CEA F(ab)'2 or with monovalent haptens. This better in vivo selectivity of the 2-step targeting of bivalent haptens was also demonstrated in a pharmacokinetic study using therapeutic amounts of reagents. In primary-colon-carcinoma patients, a similar comparative immunoscintigraphy study confirmed the better selectivity of bivalent hapten targeting over direct targeting, on the basis of image quality and ex vivo tissue counting. In patients with medullary carcinoma of the thyroid, bivalent hapten targeting allowed us to confirm tumor extension and to find occult lesions. Interestingly, radio-immunoguided surgery was necessary to resect these small lesions. These experimental results, together with technological and theoretical considerations, suggest that Bs-MAb-mediated targeting of isotopes (or other agents) is one of the major ways to increase the clinical performance of MAb-based targeting diagnostic and therapeutic tools.

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