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Your search keyword '"Nisa Renault"' showing total 18 results

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1. Therapeutic potential of extracellular vesicles derived from cardiac progenitor cells in rodent models of chemotherapy-induced cardiomyopathy

2. Extracellular vesicles from human cardiovascular progenitors trigger a reparative immune response in infarcted hearts

3. Extracellular vesicles fail to trigger the generation of new cardiomyocytes in chronically infarcted hearts

4. Abstract 13427: Extracellular Vesicles Improve Heart Function Without Inducing the Generation of New Cardiomyocytes

5. Acellular therapeutic approach for heart failure: in vitro production of extracellular vesicles from human cardiovascular progenitors

6. P1646Do Extracellular Vesicles repair chronic ischemic heart disease by replenishing the cardiomyocyte pool?

7. Mast cells regulate myofilament calcium sensitization and heart function after myocardial infarction

8. Cardiovascular progenitor–derived extracellular vesicles recapitulate the beneficial effects of their parent cells in the treatment of chronic heart failure

9. Extracellular vesicles can be processed by electrospinning without loss of structure or function

10. How do Extracellular Vesicles Protect the Ischemic Myocardium?

11. P2568Another advantage of extracellular vesicles for the treatment of chronic heart failure: their immune privilege

12. Novel splice-site mutation inATP8B1results in atypical Progressive Familial Intrahepatic Cholestasis Type 1

13. Qualitative assessment of the emotional and behavioural responses of haemophilia A carriers to negative experiences in their medical care

14. Familial essential thrombocythemia with spontaneous megakaryocyte colony formation and acquired JAK2 mutations

15. Heritable skewed X-chromosome inactivation leads to haemophilia A expression in heterozygous females

16. Safety, Regulatory, and Ethical Issues of Human Studies

17. Novel splice-site mutation in ATP8B1 results in atypical progressive familial intrahepatic cholestasis type 1

18. Familial skewed X-chromosome inactivation linked to a component of the cohesin complex, SA2

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