Engineered SIRPα variants as immunotherapeutic adjuvants to anticancer antibodies.
basic_science · Level V
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- Record sourced from PubMed, PMID 23722425.
- Also identified by DOI 10.1126/science.1238856 and PMC identifier 3810306.
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Abstract
CD47 is an antiphagocytic signal that cancer cells employ to inhibit macrophage-mediated destruction. Here, we modified the binding domain of human SIRPα, the receptor for CD47, for use as a CD47 antagonist. We engineered high-affinity SIRPα variants with about a 50,000-fold increased affinity for human CD47 relative to wild-type SIRPα. As high-affinity SIRPα monomers, they potently antagonized CD47 on cancer cells but did not induce macrophage phagocytosis on their own. Instead, they exhibited remarkable synergy with all tumor-specific monoclonal antibodies tested by increasing phagocytosis in vitro and enhancing antitumor responses in vivo. This "one-two punch" directs immune responses against tumor cells while lowering the threshold for macrophage activation, thereby providing a universal method for augmenting the efficacy of therapeutic anticancer antibodies.
Medical subject headings
- Adjuvants, Immunologic
- Antibodies, Monoclonal
- Antibodies, Neoplasm
- Antigens, Differentiation
- CD47 Antigen
- Neoplasms
- Receptors, Immunologic