author_facet Zhao, Chen
Shen, Qile
Zhao, Chen
Shen, Qile
author Zhao, Chen
Shen, Qile
spellingShingle Zhao, Chen
Shen, Qile
Molecular Medicine Reports
Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
Cancer Research
Oncology
Genetics
Molecular Biology
Molecular Medicine
Biochemistry
author_sort zhao, chen
spelling Zhao, Chen Shen, Qile 1791-2997 1791-3004 Spandidos Publications Cancer Research Oncology Genetics Molecular Biology Molecular Medicine Biochemistry http://dx.doi.org/10.3892/mmr.2018.9522 Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway Molecular Medicine Reports
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title Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_unstemmed Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_full Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_fullStr Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_full_unstemmed Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_short Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_sort overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/smad pathway
topic Cancer Research
Oncology
Genetics
Molecular Biology
Molecular Medicine
Biochemistry
url http://dx.doi.org/10.3892/mmr.2018.9522
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spelling Zhao, Chen Shen, Qile 1791-2997 1791-3004 Spandidos Publications Cancer Research Oncology Genetics Molecular Biology Molecular Medicine Biochemistry http://dx.doi.org/10.3892/mmr.2018.9522 Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway Molecular Medicine Reports
spellingShingle Zhao, Chen, Shen, Qile, Molecular Medicine Reports, Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway, Cancer Research, Oncology, Genetics, Molecular Biology, Molecular Medicine, Biochemistry
title Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_full Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_fullStr Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_full_unstemmed Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_short Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
title_sort overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/smad pathway
title_unstemmed Overexpression of small ubiquitin‑like modifier 2 ameliorates high glucose‑induced reductions in cardiomyocyte proliferation via the transforming growth factor‑β/Smad pathway
topic Cancer Research, Oncology, Genetics, Molecular Biology, Molecular Medicine, Biochemistry
url http://dx.doi.org/10.3892/mmr.2018.9522