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International Journal of Diabetology & Vascular Disease Research
|
April 4, 2017
Obesity, Diabetes and Cancer: A Mechanistic Perspective
V Cifarelli, S D Hursting
The Journal of Foot Surgery
|
May 1, 1989
Total dislocation of the talus
N Maffulli, C Francobandiera, L Lepore, et al.
Diabetologia
|
May 22, 2008
Human C-peptide antagonises high glucose-induced endothelial dysfunction through the nuclear factor-kappaB pathway
P Luppi, V Cifarelli, H Tse, et al.
Diabetologia
|
August 8, 2009
C-peptide is internalised in human endothelial and vascular smooth muscle cells via early endosomes
P Luppi, X Geng, V Cifarelli, et al.
Diabetologia
|
July 21, 2011
C-peptide reduces high-glucose-induced apoptosis of endothelial cells and decreases NAD(P)H-oxidase reactive oxygen species generation in human aortic endothelial cells
V Cifarelli, X Geng, A Styche, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
International Journal of Diabetology & Vascular Disease Research
|
April 4, 2017
Obesity, Diabetes and Cancer: A Mechanistic Perspective
V Cifarelli, S D Hursting
The Journal of Foot Surgery
|
May 1, 1989
Total dislocation of the talus
N Maffulli, C Francobandiera, L Lepore, et al.
Diabetologia
|
May 22, 2008
Human C-peptide antagonises high glucose-induced endothelial dysfunction through the nuclear factor-kappaB pathway
P Luppi, V Cifarelli, H Tse, et al.
Diabetologia
|
August 8, 2009
C-peptide is internalised in human endothelial and vascular smooth muscle cells via early endosomes
P Luppi, X Geng, V Cifarelli, et al.
Diabetologia
|
July 21, 2011
C-peptide reduces high-glucose-induced apoptosis of endothelial cells and decreases NAD(P)H-oxidase reactive oxygen species generation in human aortic endothelial cells
V Cifarelli, X Geng, A Styche, et al.
Page
of 1