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Screening phage display libraries for organ-specific vascular immunotargeting in vivo

机译:筛选噬菌体展示文库进行体内器官特异性血管免疫靶向

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The molecular diversity of the luminal endothelial cell surface arising in vivo from local variations in genetic expression and tissue microenvironment may create opportunities for achieving targeted molecular imaging and therapies. Here, we describe a strategy to identify probes and their cognate antigens for targeting vascular endothelia of specific organs in vivo. We differentially screen phage libraries to select organ-targeting antibodies by using luminal endothelial cell plasma membranes isolated directly from tissue and highly enriched in natively expressed proteins exposed to the bloodstream. To obviate liver uptake of intravenously injected phage, we convert the phage-displayed antibodies into scFv-Fc fusion proteins, which then are able to rapidly target select organ(s) in vivo as visualized directly by γ-scintigraphic whole-body imaging. Mass spectrometry helps identify the antigen targets. This comprehensive strategy provides new promise for harnessing the power of phage display for mapping vascular endothelia natively in tissue and for achieving vascular targeting of specific tissues in vivo.
机译:体内由于基因表达和组织微环境的局部变化而产生的腔内皮细胞表面的分子多样性可能为实现靶向分子成像和疗法创造机会。在这里,我们描述了一种策略,用于识别探针及其同源抗原,以在体内靶向特定器官的血管内皮。我们通过使用直接从组织中分离并高度富集暴露于血流的天然表达蛋白质的腔内皮细胞质膜,差异筛选噬菌体文库以选择靶向器官的抗体。为了避免静脉内注射噬菌体的肝脏摄取,我们将噬菌体展示的抗体转换为scFv-Fc融合蛋白,然后可以通过γ闪烁全身成像直接观察到,从而能够迅速靶向体内的选定器官。质谱有助于鉴定抗原靶标。这种全面的策略为利用噬菌体展示的力量为组织内天然绘制血管内皮细胞以及实现体内特定组织的血管靶向提供了新的希望。

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