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Mol Immunol ; 47(2-3): 302-9, 2009 Dec.
Article in English | MEDLINE | ID: mdl-19833392

ABSTRACT

Complement (C) activation is a crucial event in peripheral nerve degeneration but its effect on the subsequent regeneration is unknown. Here we show that genetic deficiency of the sixth C component, C6, accelerates axonal regeneration and recovery in a rat model of sciatic nerve injury. Foot-flick test and Sciatic Function Index monitored up to 5 weeks post-injury showed a significant improvement of sensory and motor function in the C6 deficient animals compared to wildtypes. Retrograde tracing experiments showed a significantly higher number of regenerated neurons at 1 week post-injury in C6 deficient rats than wildtypes. Pathology showed improved nerve regeneration in tibials of C6 deficient animals compared to wildtypes. Reconstitution with purified human C6 protein re-established the wildtype phenotype whereas pharmacological inhibition of C activation with soluble C receptor 1 (sCR1) facilitated recovery and improved pathology similarly to C6 deficient animals. We suggest that a destructive C-mediated event during nerve degeneration hampers the subsequent regenerative process. These findings provide a rationale for the testing of anti-complement agents in human nerve injury.


Subject(s)
Complement C6/antagonists & inhibitors , Nerve Regeneration/immunology , Peripheral Nerve Injuries , Peripheral Nerves/immunology , Animals , Complement Activation/immunology , Complement C6/immunology , Disease Models, Animal , Gene Expression Profiling , Hemolysis/immunology , Humans , Nerve Regeneration/genetics , Peripheral Nerves/physiopathology , Peripheral Nerves/ultrastructure , Rats , Receptors, Complement/blood , Receptors, Complement/immunology , Recovery of Function
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