Biomaterial-guided regeneration represents a novel approach for the treatment of myopathies. Revascularisation and the intramuscular extracellular matrix are important factors in stimulating myogenesis and regenerating muscle damaged by ischaemia. In this study, we used an injectable collagen matrix, enhanced with sialyl LewisX (sLeX), to guide skeletal muscle differentiation and regeneration. The elastic properties of collagen and sLeX-collagen matrices were similar to those of skeletal muscle, and culture of pluripotent mESCs on the matrices promoted their differentiation into myocyte-like cells expressing Pax3, MHC3, myogenin and Myf5. The regenerative properties of matrices were evaluated in ischaemic mouse hind-limbs. Treatment with th...
textEfficient restoration of skeletal muscle function after severe injury is a major goal of interve...
Skeletal muscle function can be severely compromised by injury and disease, leading to decreased qua...
Tissue engineering is an innovative, multidisciplinary approach which combines (bio)materials, cells...
Biomaterial-guided regeneration represents a novel approach for the treatment of myopathies. Revascu...
Diseases affecting striated muscle are prevalent and deadly in both the Western and developing world...
Although many regenerative cell therapies are being developed to replace or regenerate ischaemic mus...
Biomaterials that are similar to skeletal muscle extracellular matrix have been shown to augment reg...
SUMMARY Biomaterials that are similar to skeletal muscle extracellular matrix have been shown to aug...
Biomaterials that are similar to skeletal muscle extracellular matrix have been shown to augment reg...
Myopathies of skeletal muscle are prevalent diseases worldwide. To address this, regenerative therap...
Skeletal muscle injury is a leading cause of diminished quality of life and morbidity in adults, wit...
Unlike many organs, skeletal muscle possesses the ability to naturally regenerate. However, chronic ...
Peripheral artery disease (PAD) currently affects approximately 27 million patients in Europe and No...
Tissue engineered therapies have demonstrated promise for multiple injuries and diseases that in par...
Regenerative efforts typically focus on the delivery of single factors, but it is likely that multip...
textEfficient restoration of skeletal muscle function after severe injury is a major goal of interve...
Skeletal muscle function can be severely compromised by injury and disease, leading to decreased qua...
Tissue engineering is an innovative, multidisciplinary approach which combines (bio)materials, cells...
Biomaterial-guided regeneration represents a novel approach for the treatment of myopathies. Revascu...
Diseases affecting striated muscle are prevalent and deadly in both the Western and developing world...
Although many regenerative cell therapies are being developed to replace or regenerate ischaemic mus...
Biomaterials that are similar to skeletal muscle extracellular matrix have been shown to augment reg...
SUMMARY Biomaterials that are similar to skeletal muscle extracellular matrix have been shown to aug...
Biomaterials that are similar to skeletal muscle extracellular matrix have been shown to augment reg...
Myopathies of skeletal muscle are prevalent diseases worldwide. To address this, regenerative therap...
Skeletal muscle injury is a leading cause of diminished quality of life and morbidity in adults, wit...
Unlike many organs, skeletal muscle possesses the ability to naturally regenerate. However, chronic ...
Peripheral artery disease (PAD) currently affects approximately 27 million patients in Europe and No...
Tissue engineered therapies have demonstrated promise for multiple injuries and diseases that in par...
Regenerative efforts typically focus on the delivery of single factors, but it is likely that multip...
textEfficient restoration of skeletal muscle function after severe injury is a major goal of interve...
Skeletal muscle function can be severely compromised by injury and disease, leading to decreased qua...
Tissue engineering is an innovative, multidisciplinary approach which combines (bio)materials, cells...