Key result
Efgartigimod reduced total IgG and pathogenic anti-HMGCR autoantibodies in serum (P<0.0001) and muscle (P<0.001), preventing necrosis and restoring muscle strength in a mouse model of IMNM.
Why the study?
Immune-mediated necrotizing myopathies are severe forms of myositis often associated with pathogenic anti-HMGCR autoantibodies, prompting evaluation of the therapeutic effects of IgG reduction by efgartigimod in a humanized murine model.
Does efgartigimod reduce pathogenic autoantibodies and improve muscle function in a humanized mouse model of immune-mediated necrotizing myopathy?
Does efgartigimod reduce pathogenic autoantibodies and improve muscle function in a humanized mouse model of immune-mediated necrotizing myopathy?
p-value: p=<0.0001
Efgartigimod effectively reduces pathogenic autoantibodies and restores muscle function in a preclinical model of immune-mediated necrotizing myopathy, supporting its investigation in clinical trials.
Supports clinical trial investigation of efgartigimod in IMNM; leaves open translation from this mouse model.
OBJECTIVE: Immune-mediated necrotizing myopathies (IMNMs) are severe forms of myositis often associated with pathogenic anti-3-hydroxy-3-methylglutaryl-CoA reductase (HMGCR) autoantibodies (aAbs). Efgartigimod is an engineered human IgG1 Fc fragment that antagonizes the neonatal Fc receptor (FcRn), thereby preventing recycling and promoting lysosomal degradation of IgG, including aAbs. We evaluated the therapeutic effects of IgG reduction by efgartigimod in a humanized murine model of IMNM. METHODS: Disease was induced in C5-deficient (C5def) or Rag2-deficient (Rag2-/-) mice receiving co-injections of anti-HMGCR+ IgG from an IMNM patient and human complement. C5def mice were treated in a preventive setting with s.c. injections of efgartigimod and Rag2-/- mice in a curative setting after disease was induced by anti-HMGCR+ IgG injections. Anti-HMGCR aAbs levels were monitored in mouse serum and muscle tissue. Histological analysis was performed on muscle sections. Muscle force was assessed by grip test or measurement of gastrocnemius strength upon electrostimulation. RESULTS: Administration of efgartigimod rapidly reduced total IgG levels, including the level of pathogenic anti-HMGCR aAbs, in both serum (P < 0.0001) and muscle (P < 0.001). In the preventive setting, efgartigimod prevented myofibre necrosis (P < 0.05), thus precluding loss of muscle strength (P < 0.05). In the therapeutic setting, efgartigimod prevented further necrosis and allowed muscle fibre regeneration (P < 0.05). Hence, muscle strength returned to normal (P < 0.01). CONCLUSION: Efgartigimod reduces circulating IgG levels, including pathogenic anti-HMGCR+ IgG aAbs, in a humanized mouse model of IMNM, preventing further necrosis and allowing muscle fibre regeneration. These results support investigating the therapeutic efficacy of efgartigimod through a clinical trial in IMNM patients.
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Julien et al. (2023) studied Immune-mediated necrotizing myopathy (IMNM). Efgartigimod was evaluated on Total IgG levels, including pathogenic anti-HMGCR aAbs, in serum and muscle (p=<0.0001). Efgartigimod reduced total IgG and pathogenic anti-HMGCR autoantibodies in serum (P<0.0001) and muscle (P<0.001), preventing necrosis and restoring muscle strength in a mouse model of IMNM.
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