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Erschienen in: Basic Research in Cardiology 2/2013

01.03.2013 | Original Contribution

Doxorubicin induces senescence and impairs function of human cardiac progenitor cells

verfasst von: Elena Piegari, Antonella De Angelis, Donato Cappetta, Rosa Russo, Grazia Esposito, Sarah Costantino, Gallia Graiani, Caterina Frati, Lucia Prezioso, Liberato Berrino, Konrad Urbanek, Federico Quaini, Francesco Rossi

Erschienen in: Basic Research in Cardiology | Ausgabe 2/2013

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Abstract

The increasing population of cancer survivors faces considerable morbidity and mortality due to late effects of the antineoplastic therapy. Cardiotoxicity is a major limiting factor of therapy with doxorubicin (DOXO), the most effective anthracycline, and is characterized by a dilated cardiomyopathy that can develop even years after treatment. Studies in animals have proposed the cardiac progenitor cells (CPCs) as the cellular target responsible for DOXO-induced cardiomyopathy but the relevance of these observations to clinical settings is unknown. In this study, the analysis of the DOXO-induced cardiomyopathic human hearts showed that the majority of human CPCs (hCPCs) was senescent. In isolated hCPCs, DOXO triggered DNA damage response leading to apoptosis early after exposure, and telomere shortening and senescence at later time interval. Functional properties of hCPCs, such as migration and differentiation, were also negatively affected. Importantly, the differentiated progeny of DOXO-treated hCPCs prematurely expressed the senescence marker p16INK4a. In conclusion, DOXO exposure severely affects the population of hCPCs and permanently impairs their function. Premature senescence of hCPCs and their progeny can be responsible for the decline in the regenerative capacity of the heart and may represent the cellular basis of DOXO-induced cardiomyopathy in humans.
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Literatur
1.
Zurück zum Zitat Adamcová M, Potáčová A, Popelová O, Stěrba M, Mazurová Y, Aupperle H, Geršl V (2010) Cardiac remodeling and MMPs on the model of chronic daunorubicin-induced cardiomyopathy in rabbits. Physiol Res 59:831–836PubMed Adamcová M, Potáčová A, Popelová O, Stěrba M, Mazurová Y, Aupperle H, Geršl V (2010) Cardiac remodeling and MMPs on the model of chronic daunorubicin-induced cardiomyopathy in rabbits. Physiol Res 59:831–836PubMed
3.
Zurück zum Zitat Arola OJ, Saraste A, Pulkki K, Kallajoki M, Parvinen M, Voipio-Pulkki LM (2000) Acute doxorubicin cardiotoxicity involves cardiomyocyte apoptosis. Cancer Res 60:1789–1792PubMed Arola OJ, Saraste A, Pulkki K, Kallajoki M, Parvinen M, Voipio-Pulkki LM (2000) Acute doxorubicin cardiotoxicity involves cardiomyocyte apoptosis. Cancer Res 60:1789–1792PubMed
4.
Zurück zum Zitat Bearzi C, Rota M, Hosoda T, Tillmanns J, Nascimbene A, De Angelis A, Yasuzawa-Amano S, Trofimova I, Siggins RW, Lecapitaine N, Cascapera S, Beltrami AP, D’Alessandro DA, Zias E, Quaini F, Urbanek K, Michler RE, Bolli R, Kajstura J, Leri A, Anversa P (2007) Human cardiac stem cells. Proc Natl Acad Sci USA 104:14068–14073. doi:10.1073/pnas.0706760104 PubMedCrossRef Bearzi C, Rota M, Hosoda T, Tillmanns J, Nascimbene A, De Angelis A, Yasuzawa-Amano S, Trofimova I, Siggins RW, Lecapitaine N, Cascapera S, Beltrami AP, D’Alessandro DA, Zias E, Quaini F, Urbanek K, Michler RE, Bolli R, Kajstura J, Leri A, Anversa P (2007) Human cardiac stem cells. Proc Natl Acad Sci USA 104:14068–14073. doi:10.​1073/​pnas.​0706760104 PubMedCrossRef
5.
6.
Zurück zum Zitat Beltrami AP, Barlucchi L, Torella D, Baker M, Limana F, Chimenti S, Kasahara H, Rota M, Musso E, Urbanek K, Leri A, Kajstura J, Nadal-Ginard B, Anversa P (2003) Adult cardiac stem cells are multipotent and support myocardial regeneration. Cell 114:763–776. doi:10.1016/S0092-8674(03)00687-1 PubMedCrossRef Beltrami AP, Barlucchi L, Torella D, Baker M, Limana F, Chimenti S, Kasahara H, Rota M, Musso E, Urbanek K, Leri A, Kajstura J, Nadal-Ginard B, Anversa P (2003) Adult cardiac stem cells are multipotent and support myocardial regeneration. Cell 114:763–776. doi:10.​1016/​S0092-8674(03)00687-1 PubMedCrossRef
8.
Zurück zum Zitat Bolli R, Chugh AR, D’Amario D, Loughran JH, Stoddard MF, Ikram S, Beache GM, Wagner SG, Leri A, Hosoda T, Sanada F, Elmore JB, Goichberg P, Cappetta D, Solankhi NK, Fahsah I, Rokosh DG, Slaughter MS, Kajstura J, Anversa P (2011) Cardiac stem cells in patients with ischaemic cardiomyopathy (SCIPIO): initial results of a randomised phase 1 trial. Lancet 378:1847–1857. doi:10.1016/S0140-6736(11)61590-0 PubMedCrossRef Bolli R, Chugh AR, D’Amario D, Loughran JH, Stoddard MF, Ikram S, Beache GM, Wagner SG, Leri A, Hosoda T, Sanada F, Elmore JB, Goichberg P, Cappetta D, Solankhi NK, Fahsah I, Rokosh DG, Slaughter MS, Kajstura J, Anversa P (2011) Cardiac stem cells in patients with ischaemic cardiomyopathy (SCIPIO): initial results of a randomised phase 1 trial. Lancet 378:1847–1857. doi:10.​1016/​S0140-6736(11)61590-0 PubMedCrossRef
9.
Zurück zum Zitat Buccini S, Haider KH, Ahmed RP, Jiang S, Ashraf M (2012) Cardiac progenitors derived from reprogrammed mesenchymal stem cells contribute to angiomyogenic repair of the infarcted heart. Basic Res Cardiol 107:301. doi:10.1007/s00395-012-0301-5 PubMedCrossRef Buccini S, Haider KH, Ahmed RP, Jiang S, Ashraf M (2012) Cardiac progenitors derived from reprogrammed mesenchymal stem cells contribute to angiomyogenic repair of the infarcted heart. Basic Res Cardiol 107:301. doi:10.​1007/​s00395-012-0301-5 PubMedCrossRef
12.
Zurück zum Zitat Cesselli D, Beltrami AP, D’Aurizio F, Marcon P, Bergamin N, Toffoletto B, Pandolfi M, Puppato E, Marino L, Signore S, Livi U, Verardo R, Piazza S, Marchionni L, Fiorini C, Schneider C, Hosoda T, Rota M, Kajstura J, Anversa P, Beltrami CA, Leri A (2011) Effects of age and heart failure on human cardiac stem cell function. Am J Pathol 179:349–366. doi:10.1016/j.ajpath.2011.03.036 PubMedCrossRef Cesselli D, Beltrami AP, D’Aurizio F, Marcon P, Bergamin N, Toffoletto B, Pandolfi M, Puppato E, Marino L, Signore S, Livi U, Verardo R, Piazza S, Marchionni L, Fiorini C, Schneider C, Hosoda T, Rota M, Kajstura J, Anversa P, Beltrami CA, Leri A (2011) Effects of age and heart failure on human cardiac stem cell function. Am J Pathol 179:349–366. doi:10.​1016/​j.​ajpath.​2011.​03.​036 PubMedCrossRef
14.
15.
Zurück zum Zitat Chimenti C, Kajstura J, Torella D, Urbanek K, Heleniak H, Colussi C, Di Meglio F, Nadal-Ginard B, Frustaci A, Leri A, Maseri A, Anversa P (2003) Senescence and death of primitive cells and myocytes lead to premature cardiac aging and heart failure. Circ Res 93:604–613. doi:10.1161/01.RES.0000093985.76901.AF PubMedCrossRef Chimenti C, Kajstura J, Torella D, Urbanek K, Heleniak H, Colussi C, Di Meglio F, Nadal-Ginard B, Frustaci A, Leri A, Maseri A, Anversa P (2003) Senescence and death of primitive cells and myocytes lead to premature cardiac aging and heart failure. Circ Res 93:604–613. doi:10.​1161/​01.​RES.​0000093985.​76901.​AF PubMedCrossRef
16.
Zurück zum Zitat d’Adda di Fagagna F, Reaper PM, Clay-Farrace L, Fiegler H, Carr P, Von Zglinicki T, Saretzki G, Carter NP, Jackson SP (2003) A DNA damage checkpoint response in telomere-initiated senescence. Nature 426:194–198. doi:10.1038/nature02118 PubMedCrossRef d’Adda di Fagagna F, Reaper PM, Clay-Farrace L, Fiegler H, Carr P, Von Zglinicki T, Saretzki G, Carter NP, Jackson SP (2003) A DNA damage checkpoint response in telomere-initiated senescence. Nature 426:194–198. doi:10.​1038/​nature02118 PubMedCrossRef
17.
Zurück zum Zitat D’Amario D, Cabral-Da-Silva MC, Zheng H, Fiorini C, Goichberg P, Steadman E, Ferreira-Martins J, Sanada F, Piccoli M, Cappetta D, D’Alessandro DA, Michler RE, Hosoda T, Anastasia L, Rota M, Leri A, Anversa P, Kajstura J (2011) Insulin-like growth factor-1 receptor identifies a pool of human cardiac stem cells with superior therapeutic potential for myocardial regeneration. Circ Res 108:1467–1481. doi:10.1161/CIRCRESAHA.111.240648 PubMedCrossRef D’Amario D, Cabral-Da-Silva MC, Zheng H, Fiorini C, Goichberg P, Steadman E, Ferreira-Martins J, Sanada F, Piccoli M, Cappetta D, D’Alessandro DA, Michler RE, Hosoda T, Anastasia L, Rota M, Leri A, Anversa P, Kajstura J (2011) Insulin-like growth factor-1 receptor identifies a pool of human cardiac stem cells with superior therapeutic potential for myocardial regeneration. Circ Res 108:1467–1481. doi:10.​1161/​CIRCRESAHA.​111.​240648 PubMedCrossRef
18.
Zurück zum Zitat De Angelis A, Piegari E, Cappetta D, Marino L, Filippelli A, Berrino L, Martins-Ferreira J, Zheng H, Hosoda T, Rota M, Urbanek K, Kajstura J, Leri A, Rossi F, Anversa P (2010) Anthracycline cardiomyopathy is mediated by depletion of the cardiac stem cell pool and is rescued by restoration of progenitor cell function. Circulation 121:276–292. doi:10.1161/CIRCULATIONAHA.109.895771 PubMedCrossRef De Angelis A, Piegari E, Cappetta D, Marino L, Filippelli A, Berrino L, Martins-Ferreira J, Zheng H, Hosoda T, Rota M, Urbanek K, Kajstura J, Leri A, Rossi F, Anversa P (2010) Anthracycline cardiomyopathy is mediated by depletion of the cardiac stem cell pool and is rescued by restoration of progenitor cell function. Circulation 121:276–292. doi:10.​1161/​CIRCULATIONAHA.​109.​895771 PubMedCrossRef
20.
Zurück zum Zitat Gonzalez A, Rota M, Nurzynska D, Misao Y, Tillmanns J, Ojaimi C, Padin-Iruegas ME, Müller P, Esposito G, Bearzi C, Vitale S, Dawn B, Sanganalmath SK, Baker M, Hintze TH, Bolli R, Urbanek K, Hosoda T, Anversa P, Kajstura J, Leri A (2008) Activation of cardiac progenitor cells reverses the failing heart senescent phenotype and prolongs lifespan. Circ Res 102:597–606. doi:10.1161/CIRCRESAHA.107.165464 PubMedCrossRef Gonzalez A, Rota M, Nurzynska D, Misao Y, Tillmanns J, Ojaimi C, Padin-Iruegas ME, Müller P, Esposito G, Bearzi C, Vitale S, Dawn B, Sanganalmath SK, Baker M, Hintze TH, Bolli R, Urbanek K, Hosoda T, Anversa P, Kajstura J, Leri A (2008) Activation of cardiac progenitor cells reverses the failing heart senescent phenotype and prolongs lifespan. Circ Res 102:597–606. doi:10.​1161/​CIRCRESAHA.​107.​165464 PubMedCrossRef
24.
Zurück zum Zitat Huang C, Zhang X, Ramil JM, Rikka S, Kim L, Lee Y, Gude NA, Thistlethwaite PA, Sussman MA, Gottlieb RA, Gustafsson AB (2010) Juvenile exposure to anthracyclines impairs cardiac progenitor cell function and vascularization resulting in greater susceptibility to stress-induced myocardial injury in adult mice. Circulation 121:675–683. doi:10.1161/CIRCULATIONAHA.109.902221 PubMedCrossRef Huang C, Zhang X, Ramil JM, Rikka S, Kim L, Lee Y, Gude NA, Thistlethwaite PA, Sussman MA, Gottlieb RA, Gustafsson AB (2010) Juvenile exposure to anthracyclines impairs cardiac progenitor cell function and vascularization resulting in greater susceptibility to stress-induced myocardial injury in adult mice. Circulation 121:675–683. doi:10.​1161/​CIRCULATIONAHA.​109.​902221 PubMedCrossRef
26.
Zurück zum Zitat Kajstura J, Gurusamy N, Ogórek B, Goichberg P, Clavo-Rondon C, Hosoda T, D’Amario D, Bardelli S, Beltrami AP, Cesselli D, Bussani R, del Monte F, Quaini F, Rota M, Beltrami CA, Buchholz BA, Leri A, Anversa P (2010) Myocyte turnover in the aging human heart. Circ Res 107:1374–1386. doi:10.1161/CIRCRESAHA.110.231498 PubMedCrossRef Kajstura J, Gurusamy N, Ogórek B, Goichberg P, Clavo-Rondon C, Hosoda T, D’Amario D, Bardelli S, Beltrami AP, Cesselli D, Bussani R, del Monte F, Quaini F, Rota M, Beltrami CA, Buchholz BA, Leri A, Anversa P (2010) Myocyte turnover in the aging human heart. Circ Res 107:1374–1386. doi:10.​1161/​CIRCRESAHA.​110.​231498 PubMedCrossRef
29.
Zurück zum Zitat Li Q, Guo Y, Ou Q, Chen N, Wu WJ, Yuan F, O’Brien E, Wang T, Luo L, Hunt GN, Zhu X, Bolli R (2011) Intracoronary administration of cardiac stem cells in mice: a new, improved technique for cell therapy in murine models. Basic Res Cardiol 106:849–864. doi:10.1007/s00395-011-0180-1 PubMedCrossRef Li Q, Guo Y, Ou Q, Chen N, Wu WJ, Yuan F, O’Brien E, Wang T, Luo L, Hunt GN, Zhu X, Bolli R (2011) Intracoronary administration of cardiac stem cells in mice: a new, improved technique for cell therapy in murine models. Basic Res Cardiol 106:849–864. doi:10.​1007/​s00395-011-0180-1 PubMedCrossRef
30.
Zurück zum Zitat Linke A, Müller P, Nurzynska D, Casarsa C, Torella D, Nascimbene A, Castaldo C, Cascapera S, Böhm M, Quaini F, Urbanek K, Leri A, Hintze TH, Kajstura J, Anversa P (2005) Stem cells in the dog heart are self-renewing, clonogenic, and multipotent and regenerate infarcted myocardium, improving cardiac function. Proc Natl Acad Sci USA 102:8966–8971. doi:10.1073/pnas.0502678102 PubMedCrossRef Linke A, Müller P, Nurzynska D, Casarsa C, Torella D, Nascimbene A, Castaldo C, Cascapera S, Böhm M, Quaini F, Urbanek K, Leri A, Hintze TH, Kajstura J, Anversa P (2005) Stem cells in the dog heart are self-renewing, clonogenic, and multipotent and regenerate infarcted myocardium, improving cardiac function. Proc Natl Acad Sci USA 102:8966–8971. doi:10.​1073/​pnas.​0502678102 PubMedCrossRef
33.
34.
Zurück zum Zitat Minotti G, Menna P, Salvatorelli E, Cairo G, Gianni L (2004) Anthracyclines: molecular advances and pharmacologic developments in antitumor activity and cardiotoxicity. Pharmacol Rev 56:185–229. doi:10.1124/pr.56.2.6 PubMedCrossRef Minotti G, Menna P, Salvatorelli E, Cairo G, Gianni L (2004) Anthracyclines: molecular advances and pharmacologic developments in antitumor activity and cardiotoxicity. Pharmacol Rev 56:185–229. doi:10.​1124/​pr.​56.​2.​6 PubMedCrossRef
35.
Zurück zum Zitat Nithipongvanitch R, Ittarat W, Cole MP, Tangpong J, Clair DK, Oberley TD (2007) Mitochondrial and nuclear p53 localization in cardiomyocytes: redox modulation by doxorubicin (Adriamycin)? Antioxid Redox Signal 9:1001–1008. doi:10.1089/ars.2007.1632 PubMedCrossRef Nithipongvanitch R, Ittarat W, Cole MP, Tangpong J, Clair DK, Oberley TD (2007) Mitochondrial and nuclear p53 localization in cardiomyocytes: redox modulation by doxorubicin (Adriamycin)? Antioxid Redox Signal 9:1001–1008. doi:10.​1089/​ars.​2007.​1632 PubMedCrossRef
39.
Zurück zum Zitat Rodier F, Coppé JP, Patil CK, Hoeijmakers WAM, Muñoz DP, Raza SR, Freund A, Campeau E, Davalos AR, Campisi J (2009) Persistent DNA damage signalling triggers senescence-associated inflammatory cytokine secretion. Nat Cell Biol 11:973–979. doi:10.1038/ncb1909 PubMedCrossRef Rodier F, Coppé JP, Patil CK, Hoeijmakers WAM, Muñoz DP, Raza SR, Freund A, Campeau E, Davalos AR, Campisi J (2009) Persistent DNA damage signalling triggers senescence-associated inflammatory cytokine secretion. Nat Cell Biol 11:973–979. doi:10.​1038/​ncb1909 PubMedCrossRef
41.
Zurück zum Zitat Rota M, LeCapitaine N, Hosoda T, Boni A, De Angelis A, Padin-Iruegas ME, Esposito G, Vitale S, Urbanek K, Casarsa C, Giorgio M, Lüscher TF, Pelicci PG, Anversa P, Leri A, Kajstura J (2006) Diabetes promotes cardiac stem cell aging and heart failure, which are prevented by deletion of the p66shc gene. Circ Res 99:42–52. doi:10.1161/01.RES.0000231289.63468.08 PubMedCrossRef Rota M, LeCapitaine N, Hosoda T, Boni A, De Angelis A, Padin-Iruegas ME, Esposito G, Vitale S, Urbanek K, Casarsa C, Giorgio M, Lüscher TF, Pelicci PG, Anversa P, Leri A, Kajstura J (2006) Diabetes promotes cardiac stem cell aging and heart failure, which are prevented by deletion of the p66shc gene. Circ Res 99:42–52. doi:10.​1161/​01.​RES.​0000231289.​63468.​08 PubMedCrossRef
43.
Zurück zum Zitat Sanchez-Quintana D, Climent V, Garcia-Martinez V, Macias D, Hurle JM (1994) Extracellular matrix arrangement in the papillary muscles of the adult rat heart. Alterations after doxorubicin administration and experimental hypertension. Basic Res Cardiol 89:279–292PubMed Sanchez-Quintana D, Climent V, Garcia-Martinez V, Macias D, Hurle JM (1994) Extracellular matrix arrangement in the papillary muscles of the adult rat heart. Alterations after doxorubicin administration and experimental hypertension. Basic Res Cardiol 89:279–292PubMed
46.
Zurück zum Zitat Singal PK, Siveski-Iliskovic N, Kaul N, Sahai M (1992) Significance of adaptation mechanisms in adriamycin induced congestive heart failure. Basic Res Cardiol 87:512–518PubMedCrossRef Singal PK, Siveski-Iliskovic N, Kaul N, Sahai M (1992) Significance of adaptation mechanisms in adriamycin induced congestive heart failure. Basic Res Cardiol 87:512–518PubMedCrossRef
47.
48.
Zurück zum Zitat Spallarossa P, Altieri P, Barisione C, Passalacqua M, Aloi C, Fugazza G, Frassoni F, Podestà M, Canepa M, Ghigliotti G, Brunelli C (2010) p38 MAPK and JNK antagonistically control senescence and cytoplasmic p16INK4A expression in doxorubicin-treated endothelial progenitor cells. PLoS ONE 5:e15583. doi:10.1371/journal.pone.0015583 PubMedCrossRef Spallarossa P, Altieri P, Barisione C, Passalacqua M, Aloi C, Fugazza G, Frassoni F, Podestà M, Canepa M, Ghigliotti G, Brunelli C (2010) p38 MAPK and JNK antagonistically control senescence and cytoplasmic p16INK4A expression in doxorubicin-treated endothelial progenitor cells. PLoS ONE 5:e15583. doi:10.​1371/​journal.​pone.​0015583 PubMedCrossRef
52.
Zurück zum Zitat Torella D, Rota M, Nurzynska D, Musso E, Monsen A, Shiraishi I, Zias E, Walsh K, Rosenzweig A, Sussman MA, Urbanek K, Nadal-Ginard B, Kajstura J, Anversa P, Leri A (2004) Cardiac stem cell and myocyte aging, heart failure, and insulin-like growth factor-1 overexpression. Circ Res 94:514–524. doi:10.1161/01.RES.0000117306.10142.50 PubMedCrossRef Torella D, Rota M, Nurzynska D, Musso E, Monsen A, Shiraishi I, Zias E, Walsh K, Rosenzweig A, Sussman MA, Urbanek K, Nadal-Ginard B, Kajstura J, Anversa P, Leri A (2004) Cardiac stem cell and myocyte aging, heart failure, and insulin-like growth factor-1 overexpression. Circ Res 94:514–524. doi:10.​1161/​01.​RES.​0000117306.​10142.​50 PubMedCrossRef
53.
Zurück zum Zitat Ueno M, Kakinuma Y, Yuhki K, Murakoshi N, Iemitsu M, Miyauchi T, Yamaguchi I (2006) Doxorubicin induces apoptosis by activation of caspase-3 in cultured cardiomyocytes in vitro and rat cardiac ventricles in vivo. J Pharmacol Sci 101:151–158. doi:10.1254/jphs.FP0050980 PubMedCrossRef Ueno M, Kakinuma Y, Yuhki K, Murakoshi N, Iemitsu M, Miyauchi T, Yamaguchi I (2006) Doxorubicin induces apoptosis by activation of caspase-3 in cultured cardiomyocytes in vitro and rat cardiac ventricles in vivo. J Pharmacol Sci 101:151–158. doi:10.​1254/​jphs.​FP0050980 PubMedCrossRef
54.
Zurück zum Zitat Urbanek K, Rota M, Cascapera S, Bearzi C, Nascimbene A, De Angelis A, Hosoda T, Chimenti S, Baker M, Limana F, Nurzynska D, Torella D, Rotatori F, Rastaldo R, Musso E, Quaini F, Leri A, Kajstura J, Anversa P (2005) Cardiac stem cells possess growth factor-receptor systems that after activation regenerate the infarcted myocardium, improving ventricular function and long-term survival. Circ Res 97:663–673. doi:10.1161/01.RES.0000183733.53101.11 PubMedCrossRef Urbanek K, Rota M, Cascapera S, Bearzi C, Nascimbene A, De Angelis A, Hosoda T, Chimenti S, Baker M, Limana F, Nurzynska D, Torella D, Rotatori F, Rastaldo R, Musso E, Quaini F, Leri A, Kajstura J, Anversa P (2005) Cardiac stem cells possess growth factor-receptor systems that after activation regenerate the infarcted myocardium, improving ventricular function and long-term survival. Circ Res 97:663–673. doi:10.​1161/​01.​RES.​0000183733.​53101.​11 PubMedCrossRef
55.
Zurück zum Zitat Urbanek K, Torella D, Sheikh F, De Angelis A, Nurzynska D, Silvestri F, Beltrami CA, Bussani R, Beltrami AP, Quaini F, Bolli R, Leri A, Kajstura J, Anversa P (2005) Myocardial regeneration by activation of multipotent cardiac stem cells in ischemic heart failure. Proc Natl Acad Sci U S A 102:8692–8697. doi:10.1073/pnas.0500169102 PubMedCrossRef Urbanek K, Torella D, Sheikh F, De Angelis A, Nurzynska D, Silvestri F, Beltrami CA, Bussani R, Beltrami AP, Quaini F, Bolli R, Leri A, Kajstura J, Anversa P (2005) Myocardial regeneration by activation of multipotent cardiac stem cells in ischemic heart failure. Proc Natl Acad Sci U S A 102:8692–8697. doi:10.​1073/​pnas.​0500169102 PubMedCrossRef
56.
Zurück zum Zitat Urbanek K, Cesselli D, Rota M, Nascimbene A, De Angelis A, Hosoda T, Bearzi C, Boni A, Bolli R, Kajstura J, Anversa P, Leri A (2006) Stem cell niches in the adult mouse heart. Proc Natl Acad Sci U S A 103:9226–9231. doi:10.1073/pnas.0600635103 PubMedCrossRef Urbanek K, Cesselli D, Rota M, Nascimbene A, De Angelis A, Hosoda T, Bearzi C, Boni A, Bolli R, Kajstura J, Anversa P, Leri A (2006) Stem cell niches in the adult mouse heart. Proc Natl Acad Sci U S A 103:9226–9231. doi:10.​1073/​pnas.​0600635103 PubMedCrossRef
57.
Zurück zum Zitat Venkatakrishnan CD, Dunsmore K, Wong H, Roy S, Sen CK, Wani A, Zweier JL, Ilangovan G (2008) HSP27 regulates p53 transcriptional activity in doxorubicin-treated fibroblasts and cardiac H9c2 cells: p21 upregulation and G2/M phase cell cycle arrest. Am J Physiol Heart Circ Physiol 4:H1736–H1744. doi:10.1152/ajpheart.91507.2007 CrossRef Venkatakrishnan CD, Dunsmore K, Wong H, Roy S, Sen CK, Wani A, Zweier JL, Ilangovan G (2008) HSP27 regulates p53 transcriptional activity in doxorubicin-treated fibroblasts and cardiac H9c2 cells: p21 upregulation and G2/M phase cell cycle arrest. Am J Physiol Heart Circ Physiol 4:H1736–H1744. doi:10.​1152/​ajpheart.​91507.​2007 CrossRef
58.
Zurück zum Zitat Wang S, Song P, Zou MH (2012) Inhibition of AMP-activated protein kinase Œ ± (AMPKŒ ±) by doxorubicin accentuates genotoxic stress and cell death in mouse embryonic fibroblasts and cardiomyocytes: role of p53 and SIRT1. J Biol Chem 287:8001–8012. doi:10.1074/jbc.M111.315812 PubMedCrossRef Wang S, Song P, Zou MH (2012) Inhibition of AMP-activated protein kinase Œ ± (AMPKŒ ±) by doxorubicin accentuates genotoxic stress and cell death in mouse embryonic fibroblasts and cardiomyocytes: role of p53 and SIRT1. J Biol Chem 287:8001–8012. doi:10.​1074/​jbc.​M111.​315812 PubMedCrossRef
60.
Zurück zum Zitat Yao Y, Xu X, Zhang G, Zhang Y, Qian W, Rui T (2012) Role of HMGB1 in doxorubicin-induced myocardial apoptosis and its regulation pathway. Basic Res Cardiol 107:267PubMedCrossRef Yao Y, Xu X, Zhang G, Zhang Y, Qian W, Rui T (2012) Role of HMGB1 in doxorubicin-induced myocardial apoptosis and its regulation pathway. Basic Res Cardiol 107:267PubMedCrossRef
Metadaten
Titel
Doxorubicin induces senescence and impairs function of human cardiac progenitor cells
verfasst von
Elena Piegari
Antonella De Angelis
Donato Cappetta
Rosa Russo
Grazia Esposito
Sarah Costantino
Gallia Graiani
Caterina Frati
Lucia Prezioso
Liberato Berrino
Konrad Urbanek
Federico Quaini
Francesco Rossi
Publikationsdatum
01.03.2013
Verlag
Springer-Verlag
Erschienen in
Basic Research in Cardiology / Ausgabe 2/2013
Print ISSN: 0300-8428
Elektronische ISSN: 1435-1803
DOI
https://doi.org/10.1007/s00395-013-0334-4

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