Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Thuy Anh Bui"'
Publikováno v:
EBioMedicine, Vol 106, Iss , Pp 105266- (2024)
Summary: The Chimeric Antigen Receptor (CAR) T cell therapy has emerged as a ground-breaking immunotherapeutic approach in cancer treatment. To overcome the complexity and high manufacturing cost associated with current ex vivo CAR T cell therapy pro
Externí odkaz:
https://doaj.org/article/3e1671598ec94ac59f527bfb9718f13c
Publikováno v:
ACS Materials Au, Vol 3, Iss 6, Pp 600-619 (2023)
Externí odkaz:
https://doaj.org/article/daab22c1b5754eb98fed99e427969ada
Autor:
Ardiansah Bayu Nugroho, PhD, Nicholas Stafford, PhD, Min Zi, PhD, Sukhpal Prehar, MSc, Ryan Potter, MRes, Dowan Kwon, MRes, Yulia Suciati Kohar, PhD, Efta Triastuti, PhD, Thuy Anh Bui, PhD, Elizabeth J. Cartwright, PhD, Delvac Oceandy, PhD
Publikováno v:
JACC: Basic to Translational Science, Vol 7, Iss 9, Pp 859-875 (2022)
Summary: Induction of endogenous regenerative capacity has emerged as one promising approach to repair damaged hearts following myocardial infarction (MI). Re-expression of factors that are exclusively expressed during embryonic development may react
Externí odkaz:
https://doaj.org/article/e9de8d7c274f4e8cbe1fd69dc54cb414
Publikováno v:
Cells, Vol 12, Iss 17, p 2121 (2023)
Cardiomyocyte loss following myocardial infarction cannot be addressed with current clinical therapies. Cell therapy with induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) is a potential approach to replace cardiomyocyte loss. However,
Externí odkaz:
https://doaj.org/article/b654fe3cc7bc4fd3822b17dfc0da857c
Autor:
Jeanne Adiwinata Pawitan, Thuy Anh Bui, Wildan Mubarok, Radiana Dhewayani Antarianto, Retno Wahyu Nurhayati, Ismail Hadisoebroto Dilogo, Delvac Oceandy
Publikováno v:
Frontiers in Cell and Developmental Biology, Vol 8 (2020)
BackgroundThe therapeutic capacity of mesenchymal stem cells (also known as mesenchymal stromal cells/MSCs) depends on their ability to respond to the need of the damaged tissue by secreting beneficial paracrine factors. MSCs can be genetically engin
Externí odkaz:
https://doaj.org/article/e70e04a7afdf457db828ff3cf456b874
Autor:
Florence Baudoin, Sukhpal Prehar, Min Zi, Delvac Oceandy, Elizabeth J. Cartwright, Mohamed A. Shaheen, Xin Wang, Nicholas Stafford, Ludwig Neyses, Thuy Anh Bui
Publikováno v:
Zi, M, Stafford, N, Prehar, S, Baudoin, F, Oceandy, D, Wang, X, Bui, T, Shaheen, M, Neyses, L & Cartwright, E 2019, ' Cardiac hypertrophy or failure?-A systematic evaluation of the transverse aortic constriction model in C57BL/6NTac and C57BL/6J substrains ', Current Research in Physiology . https://doi.org/10.1016/j.crphys.2019.10.001
Current Research in Physiology, Vol 1, Iss, Pp 1-10 (2019)
Current Research in Physiology
Current Research in Physiology, Vol 1, Iss, Pp 1-10 (2019)
Current Research in Physiology
Background The mouse model of transverse aortic constriction (TAC) has been widely used as a cardiac stress in the investigation of the molecular mechanisms of cardiac hypertrophy. Recently, the International Knockout Mouse Consortium has selected th
Autor:
Bayu Lestari, Sukhpal Prehar, Alicia D'Souza, Elizabeth J. Cartwright, Ardiansah Bayu Nugroho, Min Zi, Efta Triastuti, Nicholas Stafford, Ryan Potter, Delvac Oceandy, Thuy Anh Bui
Publikováno v:
Basic science.
Autor:
Nicholas Stafford, Sukhpal Prehar, Ardiansah Bayu Nugroho, Sabu Abraham, Elizabeth J. Cartwright, Min Zi, Delvac Oceandy, Yulia Suciati Kohar, Efta Triastuti, Thuy Anh Bui
Publikováno v:
British Journal of Pharmacology
Background and purpose The Hippo pathway has emerged as a potential therapeutic target to control pathological cardiac remodelling. The core components of the Hippo pathway, mammalian Ste-20 like kinase 1 (Mst1) and mammalian Ste-20 like kinase 2 (Ms
Autor:
Sukhpal Prehar, Sabu Abraham, Min Zi, Ardiansah Nugroho, Efta Triastuti, Delvac Oceandy, Thuy Anh Bui, Yulia Suciati Kohar
Publikováno v:
Basic Science.
The Hippo pathway has emerged as a potential therapeutic target to control adverse cardiac remodelling as it is an important regulator of cell growth, regeneration and apoptosis. We and others have demonstrated that genetic knockout of Mst2 and Mst1,
Akademický článek
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