| Literature DB >> 15190345 |
Phil Oh1, Yan Li, Jingyi Yu, Eberhard Durr, Karolina M Krasinska, Lucy A Carver, Jacqueline E Testa, Jan E Schnitzer.
Abstract
The molecular complexity of tissues and the inaccessibility of most cells within a tissue limit the discovery of key targets for tissue-specific delivery of therapeutic and imaging agents in vivo. Here, we describe a hypothesis-driven, systems biology approach to identifying a small subset of proteins induced at the tissue-blood interface that are inherently accessible to antibodies injected intravenously. We use subcellular fractionation, subtractive proteomics and bioinformatics to identify endothelial cell surface proteins exhibiting restricted tissue distribution and apparent tissue modulation. Expression profiling and gamma-scintigraphic imaging with antibodies establishes two of these proteins, aminopeptidase-P and annexin A1, as selective in vivo targets for antibodies in lungs and solid tumours, respectively. Radio-immunotherapy to annexin A1 destroys tumours and increases animal survival. This analytical strategy can map tissue- and disease-specific expression of endothelial cell surface proteins to uncover novel accessible targets useful for imaging and therapy.Entities:
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Year: 2004 PMID: 15190345 DOI: 10.1038/nature02580
Source DB: PubMed Journal: Nature ISSN: 0028-0836 Impact factor: 49.962