Drug pipeline
Full profile accessExplore the programs pursuing this target and their development progress.
- Drug candidates
- Developers
- Development stage
Target intelligence / Profile preview
Fc gamma receptors (FcγRs) are a family of cell surface glycoproteins that bind the Fc portion of immunoglobulin G (IgG) antibodies, serving as a critical link between the adaptive and innate immune systems (NIH: 1.1.1, 1.3.2). Among these, FcγRIIa (CD32a) and FcγRIIb (CD32b) are low-affinity receptors with opposing functions: FcγRIIa contains an immunoreceptor tyrosine-based activation motif (ITAM) that triggers pro-inflammatory responses like phagocytosis and cytokine release, while FcγRIIb contains an immunoreceptor tyrosine-based inhibition motif (ITIM) that suppresses immune activation (NIH: 1.2.1, 1.4.3). The balance between these activating and inhibitory signals, often referred to as the A/I ratio, is essential for maintaining immune homeostasis (NIH: 1.1.4, 1.3.1). Dysregulation of this balance is implicated in various autoimmune diseases, such as systemic lupus erythematosus and rheumatoid arthritis, as well as in the efficacy of therapeutic monoclonal antibodies (NIH: 1.3.1, 1.4.1). Pharmacological strategies include using bispecific antibodies to co-engage FcγRIIb with activating receptors to dampen B-cell activity or engineering the Fc region of therapeutic antibodies to optimize their interaction with specific FcγRs for enhanced anti-tumor activity (NIH: 1.2.2, 1.4.4).
Drugs targeting these receptors modulate the balance between activating (FcγRIIa) and inhibitory (FcγRIIb) signals (NIH: 1.1.1). Activating receptors like FcγRIIa utilize immunoreceptor tyrosine-based activation motifs (ITAMs) to promote phagocytosis and pro-inflammatory cytokine release (NIH: 1.4.3). Conversely, the inhibitory FcγRIIb utilizes immunoreceptor tyrosine-based inhibition motifs (ITIMs) to recruit phosphatases like SHIP, which dampen B-cell receptor (BCR) and activating Fc receptor signaling (NIH: 1.2.1). Therapeutic strategies include direct blockade of CD32b to enhance mAb efficacy in cancer, or using bispecifics to co-engage CD32b and CD19 to suppress B-cell activity in autoimmune diseases (NIH: 1.2.2). Additionally, Fc-engineering of monoclonal antibodies is used to optimize their affinity for these receptors to enhance or reduce effector functions (NIH: 1.1.4).
6 more in the full profile.
Beyond the preview
Explore the evidence, development activity, and competitive landscape with Gosset’s full data platform.
Explore the programs pursuing this target and their development progress.
Follow the clinical studies evaluating therapies directed at this target.
Compare approaches across drug candidates, modalities, and indications.
Investigate the research and source evidence behind target biology and development.
Explore patent activity around therapies and technologies addressing this target.
Connect target biology, drug development, and emerging evidence in your research.
See how Gosset can support your research on Low affinity immunoglobulin gamma Fc receptor IIa (FcγRIIa) and Low affinity immunoglobulin gamma Fc receptor IIb (FcγRIIb) (FcγRIIa and FcγRIIb).