The Author(s) 2012. This article is published with open access at Springerlink.com Abstract Matrix metalloproteinases (MMPs) are key regulators of extracellular matrix remodeling, but have also important intracellular targets. The purpose of this study was to examine the activity and subcellular localization of the gelatinases MMP-2 and MMP-9 in skeletal muscle of control and physically trained rats. In control hind limb muscle, the activity of the gelatinases was barely detectable. In contrast, after 5 days of intense exercise, in Soleus (Sol), but not Extensor digitorum longus (EDL) muscle, signifi-cant upregulation of gelatinolytic activity in myofibers was observed mainly in the nuclei, as assessed by high resolu-tion in situ zymography...
Skeletal muscle makes up 40-50% of the human body and has the capability to adapt to environmental c...
Heart failure is associated with a skeletal muscle myopathy with cellular and extracellular alterati...
R.E. Fitzpatrick1, G.E. McCall1, R.S. Mehan1, J. Hyatt2, J.A. Kim1 1University of Puget Sound, Tacom...
Matrix metalloproteinases (MMPs), particularly gelatinase A (MMP-2) and gelatinase B (MMP-9), as wel...
AbstractMatrix metalloproteinases (MMPs) cooperatively degrade all components of the extracellular m...
The basal lamina of skeletal muscle is a specialized region of extracellular matrix (ECM) comprised ...
The unique adaptive ability of skeletal muscle to meet functional demands is exemplified in its resp...
Skeletal muscle is a highly versatile tissue that has the ability to move and perform a wide range o...
Neuromuscular Research Center, Department of Biology of Physical Activity, University of Jyvaskyla, ...
Muscle cell migration and extracellular matrix remodeling are essential aspects of muscle developmen...
M. Pang1, G. McCall FACSM1, R. Mehan1, J-P. Hyatt2, J. Kim1 1University of Puget Sound, Tacoma, WA &...
Injured skeletal muscle can undergo repair spontaneously via satellite cells activation. However, in...
Matrix metallopeptidases (MMPs) are responsible for degradation of the extracellular matrix componen...
Extracellular Matrix: Mammalian skeletal muscle is notable for both its highly ordered biophysical s...
K. Hundemer University of Puget Sound, Tacoma, WA INTRODUCTION: Skeletal muscle makes up about forty...
Skeletal muscle makes up 40-50% of the human body and has the capability to adapt to environmental c...
Heart failure is associated with a skeletal muscle myopathy with cellular and extracellular alterati...
R.E. Fitzpatrick1, G.E. McCall1, R.S. Mehan1, J. Hyatt2, J.A. Kim1 1University of Puget Sound, Tacom...
Matrix metalloproteinases (MMPs), particularly gelatinase A (MMP-2) and gelatinase B (MMP-9), as wel...
AbstractMatrix metalloproteinases (MMPs) cooperatively degrade all components of the extracellular m...
The basal lamina of skeletal muscle is a specialized region of extracellular matrix (ECM) comprised ...
The unique adaptive ability of skeletal muscle to meet functional demands is exemplified in its resp...
Skeletal muscle is a highly versatile tissue that has the ability to move and perform a wide range o...
Neuromuscular Research Center, Department of Biology of Physical Activity, University of Jyvaskyla, ...
Muscle cell migration and extracellular matrix remodeling are essential aspects of muscle developmen...
M. Pang1, G. McCall FACSM1, R. Mehan1, J-P. Hyatt2, J. Kim1 1University of Puget Sound, Tacoma, WA &...
Injured skeletal muscle can undergo repair spontaneously via satellite cells activation. However, in...
Matrix metallopeptidases (MMPs) are responsible for degradation of the extracellular matrix componen...
Extracellular Matrix: Mammalian skeletal muscle is notable for both its highly ordered biophysical s...
K. Hundemer University of Puget Sound, Tacoma, WA INTRODUCTION: Skeletal muscle makes up about forty...
Skeletal muscle makes up 40-50% of the human body and has the capability to adapt to environmental c...
Heart failure is associated with a skeletal muscle myopathy with cellular and extracellular alterati...
R.E. Fitzpatrick1, G.E. McCall1, R.S. Mehan1, J. Hyatt2, J.A. Kim1 1University of Puget Sound, Tacom...