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Human Molecular Genetics
|
September 3, 2010
A point mutation in the dynein heavy chain gene leads to striatal atrophy and compromises neurite outgrowth of striatal neurons
Kerstin E Braunstein, Judith Eschbach, Krisztina Ròna-Vörös, et al.
Circulation Research
|
March 9, 2023
Platelet-Derived MicroRNAs Regulate Cardiac Remodeling After Myocardial Ischemia
Jan Philipp Schütte, Mailin-Christin Manke, Katherina Hemmen, et al.
Nature Communications
|
June 8, 2021
The C5a/C5a receptor 1 axis controls tissue neovascularization through CXCL4 release from platelets
Henry Nording, Lasse Baron, David Haberthür, et al.
Oncoimmunology
|
June 10, 2022
Novel adapter CAR-T cell technology for precisely controllable multiplex cancer targeting
Christian M Seitz, Joerg Mittelstaet, Daniel Atar, et al.
Cell Metabolism
|
May 8, 2024
A 5:2 intermittent fasting regimen ameliorates NASH and fibrosis and blunts HCC development via hepatic PPARα and PCK1
Suchira Gallage, Adnan Ali, Jose Efren Barragan Avila, et al.
Page
of 4
Search research articles
Search
Showing results (31-40 of 35) with videos related to
Sort By:
Page
of 4
You have reached the last page of results.
This site can display upto 35 results.
Human Molecular Genetics
|
September 3, 2010
A point mutation in the dynein heavy chain gene leads to striatal atrophy and compromises neurite outgrowth of striatal neurons
Kerstin E Braunstein, Judith Eschbach, Krisztina Ròna-Vörös, et al.
Circulation Research
|
March 9, 2023
Platelet-Derived MicroRNAs Regulate Cardiac Remodeling After Myocardial Ischemia
Jan Philipp Schütte, Mailin-Christin Manke, Katherina Hemmen, et al.
Nature Communications
|
June 8, 2021
The C5a/C5a receptor 1 axis controls tissue neovascularization through CXCL4 release from platelets
Henry Nording, Lasse Baron, David Haberthür, et al.
Oncoimmunology
|
June 10, 2022
Novel adapter CAR-T cell technology for precisely controllable multiplex cancer targeting
Christian M Seitz, Joerg Mittelstaet, Daniel Atar, et al.
Cell Metabolism
|
May 8, 2024
A 5:2 intermittent fasting regimen ameliorates NASH and fibrosis and blunts HCC development via hepatic PPARα and PCK1
Suchira Gallage, Adnan Ali, Jose Efren Barragan Avila, et al.
Page
of 4