Key result
Laminin-111 increases myofiber size and regenerative markers in a merosin-deficient muscular dystrophy mouse model.
Why the study?
Does laminin-111 protein therapy improve muscle regeneration in a mouse model of merosin-deficient congenital muscular dystrophy?
Does laminin-111 protein therapy improve muscle regeneration in a mouse model of merosin-deficient congenital muscular dystrophy?
Laminin-111 protein therapy restores muscle regeneration in a mouse model of merosin-deficient congenital muscular dystrophy, supporting its potential as a therapeutic approach.
Supports laminin-111 development in merosin-deficient CMD models; leaves open translation to human therapy.
Merosin-deficient congenital muscular dystrophy type 1A (MDC1A) is a severe and fatal muscle-wasting disease with no cure. MDC1A patients and the dy(W-/-) mouse model exhibit severe muscle weakness, demyelinating neuropathy, failed muscle regeneration and premature death. We have recently shown that laminin-111, a form of laminin found in embryonic skeletal muscle, can substitute for the loss of laminin-211/221 and prevent muscle disease progression in the dy(W-/-) mouse model. What is unclear from these studies is whether laminin-111 can restore failed regeneration to laminin-α2-deficient muscle. To investigate the potential of laminin-111 protein therapy to improve muscle regeneration, laminin-111 or phosphate-buffered saline-treated laminin-α2-deficient muscle was damaged with cardiotoxin and muscle regeneration quantified. Our results show laminin-111 treatment promoted an increase in myofiber size and number, and an increased expression of α7β1 integrin, Pax7, myogenin and embryonic myosin heavy chain, indicating a restoration of the muscle regenerative program. Together, our results show laminin-111 restores muscle regeneration to laminin-α2-deficient muscle and further supports laminin-111 protein as a therapy for the treatment of MDC1A.
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Ry et al. (2013) studied Merosin-deficient congenital muscular dystrophy type 1A (MDC1A). Laminin-111 vs. Phosphate-buffered saline was evaluated on Muscle regeneration (myofiber size and number, expression of α7β1 integrin, Pax7, myogenin and embryonic myosin heavy chain). Laminin-111 treatment promoted an increase in myofiber size and number, and increased expression of regenerative markers in a mouse model of merosin-deficient congenital muscular dystrophy.
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