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001-es BibID:BIBFORM030682
Első szerző:Czuriga Dániel (kardiológus)
Cím:Cellular mechanisms for diastolic dysfunction in the human heart / Czuriga D., Paulus W. J., Czuriga I., Edes I., Papp Z., Borbély A.
Dátum:2012
Megjegyzések:Left ventricular (LV) diastolic dysfunction is an important contributor to many different cardiovascular diseases. LV diastolic dysfunction can manifest itself as slow LV relaxation, slow LV filling or high diastolic LV stiffness. Diastolic abnormalities have been described in the senescent heart, in heart failure with normal ejection fraction (HFNEF), in diabetic cardiomyopathy, in aortic valve stenosis (AVS), in hypertrophic cardiomyopathy (HCM), as well as in Fabry disease (FD), however, exact cellular and molecular alterations behind the diastolic deterioration in these diseases are not yet completely characterized. Several studies thoroughly investigated altered cardiomyocyte function, changes of contractile myofilaments, extracellular collagen deposition and advanced glycation end products (AGEs) cross-linking in the background of diastolic dysfunction. These clinical and experimental data suggest that underlying mechanisms of LV diastolic dysfunction are divergent in different cardiac pathologies, therefore the present review aims to summarize mechanisms at the cellular level of diastolic abnormalities in various cardiovascular diseases.
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
Cardiomyocytes
Contractile dysfunction
Diabetes mellitus
Diastole
Fibrosis
Human heart
Megjelenés:Current Pharmaceutical Biotechnology. - 13 : 13 (2012), p. 2532-2538. -
További szerzők:Paulus, Walter J. Czuriga István (1948-2018) (kardiológus) Édes István (1952-) (kardiológus) Papp Zoltán (1965-) (kardiológus, élettanász) Borbély Attila (1978-) (kardiológus)
Pályázati támogatás:MEDIA-261409
FP7
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001-es BibID:BIBFORM030681
Első szerző:Papp Zoltán (kardiológus, élettanász)
Cím:How cardiomyocytes make the heart old / Papp Z., Czuriga D., Balogh L., Balogh A., Borbély A.
Dátum:2012
ISSN:1389-2010
Megjegyzések:Naturally occurring decline in cardiovascular reserve with age associates with a combination of the reduction in cardiomyocyte number and altered cardiomyocyte function. Recent investigations suggested that about half of the cardiomyocytes is the same as at birth, while the other half of the cardiomyocytes is the result of cardiomyocyte renewal in the senescent heart. In addition, the total number of cardiomyocytes is estimated to be less by one third in the old heart than the number of cardiomyocytes at birth. Thus, the reduction in cardiomyocyte number of the aging heart cannot be fully compensated by cardiomyocyte renewal. Aging of long-lived differentiated myocardial cells, as well as of cardiac progenitor stem cells may contribute to an increased rate of apoptosis, and decreased capacity of cell duplication and/or differentiation. In addition, differentiated cardiomyocytes are prone for accumulating biological by-products of cellular metabolism and of incompletely processed oxidative insults. In this context, interactions between lysosomes and mitochondria may provide a mechanistic background for the age-dependent alterations in cardiac macromolecules. This reasoning postulates a direct relationship between the number of pro-oxidative, ill-functioning mitochondria and the amount of ballast-overloaded lysosomes in long-lived cardiomyocytes. Accumulation of biological garbage and telomere shortening might be considered as hallmarks of cardiomyocyte aging with implications for depressed cardiac function and cardiomyocyte renewal. Changes in protein expression together with posttranslational modifications of myocardial proteins affect excitation-contraction coupling and explain the declining mechanical function of the cardiomyocytes. Altogether, these changes represent a significant part of the reduced cardiovascular reserve in aged individuals.
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
Egészség- és Környezettudomány
Aging
Cardiomyocyte cell death
Cardiomyocyte renewal
Telomere
Megjelenés:Current Pharmaceutical Biotechnology. - 13 : 13 (2012), p. 2515-2521. -
További szerzők:Czuriga Dániel (1982-) (kardiológus) Balogh László (1976-) (kardiológus) Balogh Ágnes (1984-) (kardiológus) Borbély Attila (1978-) (kardiológus)
Pályázati támogatás:TÁMOP-4.2.1/B-09/1/KONV-2010-0007
TÁMOP
Vascularis rizikó- és stroke betegek vizsgálata
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