Abstract 323: Gamma-Enolase in Adult Cardiac Myocytes: A Study of Subcellular Localization and Post-Myocardial Infarction Modulation
Eduard I. Dedkov
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Works by Eduard I. Dedkov in Cell and Developmental Biology
2020
Non‐Perfused Coronary Arteries Are Able to Maintain Structural Integrity in Developing Scar Tissue Following a Transmural Myocardial Infarction
Eduard I. Dedkov
2019
Progressive Structural Remodeling of Residual Coronary Arteries in Post-Myocardial Infarction Scar.
Eduard I. Dedkov
2018
Preservation of functional microvascular bed is vital for long-term survival of cardiac myocytes within large transmural post-myocardial infarction scar.
Eduard I. Dedkov
2016
Sex‐related differences in intrinsic myocardial properties influence cardiac function in middle‐aged rats during infarction‐induced left ventricular remodeling.
Eduard I. Dedkov
2014
Coronary vessels and cardiac myocytes of middle-aged rats demonstrate regional sex-specific adaptation in response to postmyocardial infarction remodeling
Eduard I. Dedkov
2013
2011
Neuropeptide Y receptor Y2 is involved in morphogenic modulation of VEGF-induced coronary vessel formation
Eduard I. Dedkov
2009
Selective blockade of the vasoactive intestinal peptide (VIP) receptors affect formation and development of coronary arteries in quail embryonic heart
Eduard I. Dedkov
2007
Formation of leptofibrils is associated with remodelling of muscle cells and myofibrillogenesis in the border zone of myocardial infarction
Eduard I. Dedkov
2006
Compensatory growth of coronary arterioles in postinfarcted heart: regional differences in DNA synthesis and growth factor/receptor expression patterns
Eduard I. Dedkov
Vasoactive intestinal polypeptide receptors (VIP1 and VIP2) are morphogenic modulators of embryonic coronary vessel tube formation
Eduard I. Dedkov
2005
Differentiation of activated satellite cells in denervated muscle following single fusions in situ and in cell culture.
Eduard I. Dedkov
Reduction of heart rate by chronic β1-adrenoceptor blockade promotes growth of arterioles and preserves coronary perfusion reserve in postinfarcted heart.
Eduard I. Dedkov
2003
Dynamics of Postdenervation Atrophy of Young and Old Skeletal Muscles: Differential Responses of Fiber Types and Muscle Types.
Eduard I. Dedkov
Concentration of Caveolin-3 at the Neuromuscular Junction in Young and Old Rat Skeletal Muscle Fibers.
Eduard I. Dedkov
Aging of Skeletal Muscle Does Not Affect the Response of Satellite Cells to Denervation.
Eduard I. Dedkov
Changes in protein levels of elongation factors, eEF1A-1 and eEF1A-2/S1, in long-term denervated rat muscle.
Eduard I. Dedkov
2002
Increased accumulation of phosphorylated extracellular signal-regulated protein kinases ½ in skeletal muscle after denervation and during aging.
Eduard I. Dedkov
The increase of MyoD and myogenin protein expression in senile skeletal muscles is a result of coexisting processes of muscle fiber denervation and satellite cell activation.
Eduard I. Dedkov
Resistance vessel remodeling and reparative angiogenesis in the microcirculatory bed of long-term denervated skeletal muscles.
Eduard I. Dedkov
2001
Interrelations of myogenic response, progressive atrophy of muscle fibers, and cell death in denervated skeletal muscle.
Eduard I. Dedkov
Reparative myogenesis in long-term denervated skeletal muscles of adult rats results in a reduction of the satellite cell population.
Eduard I. Dedkov
Expression patterns of M-cadherin and N- CAM in satellite cells of skeletal muscles from young and old rats.
Eduard I. Dedkov
1999
Comparative analysis of degenerative and regenerative processes in denervated and aging skeletal muscles.
Eduard I. Dedkov
1998
Differential atrophy and fibers type-specific reactivation of myogenesis in denervated skeletal muscle.
Eduard I. Dedkov
Remodeling of intercalated discs and myofibrillogenesis in contacting and solitary cardiac myocytes in vitro and in vivo.
Eduard I. Dedkov