抗体噬菌体展示在核医学成像和治疗中的应用。

M D Winthrop, G L Denardo, S J Denardo
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引用次数: 0

摘要

基于不同来源基因的基因工程抗体构建为开发功能性分子成像技术和特异性分子靶向放射性核素治疗提供了绝佳的机会。抗体片段基因的噬菌体展示文库可用于选择结合任何选定表位的基于抗体的构建体。一个大型的基于幼稚人抗体的文库被用来说明抗体结构与各种常见和独特抗原的结合。从杂交瘤细胞、免疫的人或小鼠的淋巴细胞和转基因小鼠产生的人抗体库中获得的基于抗体的文库也被描述。几个数量级的亲和力增强可以通过随机或位点特异性突变的选择结合肽区域的scFv实现。亲和成熟的scFv的亲和度(Kd)高达10(-11)M (10 pM)。这样的基因库因此提供了几乎无限种类的基于抗体的分子结合肽模块,可以以创造性的方式用于构建新的靶向药物,用于功能或分子成像和治疗。
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Antibody phage display applications for nuclear medicine imaging and therapy.

Antibody-based constructs genetically engineered from genes of diverse origin provide a remarkable opportunity to develop functional molecular imaging techniques and specific molecular targeted radionuclide therapies. Phage display libraries of antibody fragment genes can be used to select antibody-based constructs that bind any chosen epitope. A large naive human antibody-based library was used to illustrate binding of antibody constructs to a variety of common and unique antigens. Antibody-based libraries from hybridoma cells, lymphocytes from immunized humans or from mice and human antibody repertoires produced in transgenic mice have also been described. Several orders of magnitude of affinity enhancement can be achieved by random or site specific mutations of the selected binding peptide domains of the scFv. Affinities (Kd) as high as 10(-11) M (10 pM) for affinity-matured scFv have been documented. Such gene libraries thus offer an almost limitless variety of antibody-based molecular binding peptide modules that can be used in creative ways for the construction of new targeting agents for functional or molecular imaging and therapy.

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