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抗癌胚抗原单链Fv片段的肿瘤定位:通过非共价二聚体实现靶向性增强

Tumor localization of anti-CEA single-chain Fvs: improved targeting by non-covalent dimers.

作者信息

Wu A M, Chen W, Raubitschek A, Williams L E, Neumaier M, Fischer R, Hu S Z, Odom-Maryon T, Wong J Y, Shively J E

机构信息

Department of Molecular Biochemistry, Beckman Research Institute of the City of Hope, Duarte, CA 91010, USA.

出版信息

Immunotechnology. 1996 Feb;2(1):21-36. doi: 10.1016/1380-2933(95)00027-5.

Abstract

BACKGROUND

Genetic engineering can produce novel antibody fragments with improved properties for applications such as tumor targeting in vivo.

OBJECTIVES

To produce stable monomeric (27 kDa) and dimeric (55 kDa) forms of a single-chain Fv (scFv) from the anti-carcinoembryonic antigen (anti-CEA) antibody T84.66, and assess the targeting and biodistribution properties in an animal model.

STUDY DESIGN

ScFv were constructed with either a 28 or 14 amino acid connecting peptide and expressed by secretion from E. coli. Following affinity purification, proteins were characterized by gel electrophoresis and mass spectrometry. Binding properties were assessed by size exclusion HPLC after incubation with antigen, and affinities determined by surface plasmon resonance. The shorter linker favored formation of dimers (and higher multimers) which showed unusual stability. ScFv were radiolabeled with 125I for tumor targeting and biodistribution studies of monomeric or dimeric forms were conducted in athymic mice bearing LS174T human colorectal carcinoma xenografts.

RESULTS

125I-scFv monomers and dimers targeted exhibited rapid clearance kinetics in tumor-bearing mice. Nevertheless, the anti-CEA scFvs targeted very well to xenografts, leading to high tumor: normal organ ratios (greater than 20:1 at 24 h) for both forms. Tumor localization of the non-covalent dimers was much higher than monomers, reaching 10-15% injected dose per gram at 1 h.

CONCLUSION

Non-covalent dimers of scFv (also known as diabodies) are stable, easy to produce and show excellent targeting as compared to monomeric scFv, probably due to increased mass and valency.

摘要

背景

基因工程可生产具有改良特性的新型抗体片段,用于体内肿瘤靶向等应用。

目的

从抗癌胚抗原(抗CEA)抗体T84.66制备单链Fv(scFv)的稳定单体(27 kDa)和二聚体(55 kDa)形式,并在动物模型中评估其靶向和生物分布特性。

研究设计

构建带有28个或14个氨基酸连接肽的scFv,并通过大肠杆菌分泌表达。亲和纯化后,通过凝胶电泳和质谱对蛋白质进行表征。与抗原孵育后,通过尺寸排阻HPLC评估结合特性,并通过表面等离子体共振测定亲和力。较短的连接子有利于二聚体(和更高聚体)的形成,这些二聚体表现出异常的稳定性。用125I对scFv进行放射性标记以进行肿瘤靶向研究,并在携带LS174T人结肠直肠癌异种移植物的无胸腺小鼠中进行单体或二聚体形式的生物分布研究。

结果

125I-scFv单体和二聚体在荷瘤小鼠中表现出快速清除动力学。然而,抗CEA scFv对异种移植物的靶向性非常好,两种形式在24小时时肿瘤与正常器官的比率都很高(大于20:1)。非共价二聚体的肿瘤定位远高于单体,在1小时时达到每克注射剂量的10-15%。

结论

scFv的非共价二聚体(也称为双抗体)稳定、易于生产,与单体scFv相比显示出优异的靶向性,可能是由于质量和价态增加。

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