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The Journal of Clinical Investigation
|
December 21, 2011
Heparan sulfate and heparanase play key roles in mouse β cell survival and autoimmune diabetes
Andrew F Ziolkowski, Sarah K Popp, Craig Freeman, et al.
International Journal of Molecular Sciences
|
May 14, 2025
Transient Inflammation of Pancreatic Exocrine Tissue in Autoimmune Diabetes Follows Onset of Islet Damage and Utilizes Heparanase-1
Charmaine J Simeonovic, Zuopeng Wu, Sarah K Popp, et al.
Frontiers in Immunology
|
July 25, 2022
The Contribution of Neutrophils and NETs to the Development of Type 1 Diabetes
Alessandra Petrelli, Sarah K Popp, Riho Fukuda, et al.
Advances in Experimental Medicine and Biology
|
April 11, 2020
Heparanase and Type 1 Diabetes
Charmaine J Simeonovic, Sarah K Popp, Debra J Brown, et al.
Plos One
|
June 4, 2021
Heparan sulfate proteoglycans in beta cells provide a critical link between endoplasmic reticulum stress, oxidative stress and type 2 diabetes
Sarita Dhounchak, Sarah K Popp, Debra J Brown, et al.
Immunology and Cell Biology
|
January 18, 2007
Transient transmission of porcine endogenous retrovirus to fetal lambs after pig islet tissue xenotransplantation
Sarah K Popp, David A Mann, Peter J Milburn, et al.
Xenotransplantation
|
May 2, 2002
Host systemic and local nitric oxide levels do not correlate with rejection of pig proislet xenografts in mice
Charmaine J Simeonovic, Damien V Cordery, Barbara Van Leeuwen, et al.
Transplantation
|
June 24, 2005
Porcine endogenous retrovirus encodes xenoantigens involved in porcine cellular xenograft rejection by mice
Charmaine J Simeonovic, Andrew F Ziolkowski, Sarah K Popp, et al.
Plos One
|
February 8, 2018
Loss of intra-islet heparan sulfate is a highly sensitive marker of type 1 diabetes progression in humans
Charmaine J Simeonovic, Sarah K Popp, Lora M Starrs, et al.
JCI Insight
|
January 25, 2022
Circulating platelet-neutrophil aggregates characterize the development of type 1 diabetes in humans and NOD mice
Sarah K Popp, Federica Vecchio, Debra J Brown, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 10) with videos related to
Sort By:
Page
of 1
The Journal of Clinical Investigation
|
December 21, 2011
Heparan sulfate and heparanase play key roles in mouse β cell survival and autoimmune diabetes
Andrew F Ziolkowski, Sarah K Popp, Craig Freeman, et al.
International Journal of Molecular Sciences
|
May 14, 2025
Transient Inflammation of Pancreatic Exocrine Tissue in Autoimmune Diabetes Follows Onset of Islet Damage and Utilizes Heparanase-1
Charmaine J Simeonovic, Zuopeng Wu, Sarah K Popp, et al.
Frontiers in Immunology
|
July 25, 2022
The Contribution of Neutrophils and NETs to the Development of Type 1 Diabetes
Alessandra Petrelli, Sarah K Popp, Riho Fukuda, et al.
Advances in Experimental Medicine and Biology
|
April 11, 2020
Heparanase and Type 1 Diabetes
Charmaine J Simeonovic, Sarah K Popp, Debra J Brown, et al.
Plos One
|
June 4, 2021
Heparan sulfate proteoglycans in beta cells provide a critical link between endoplasmic reticulum stress, oxidative stress and type 2 diabetes
Sarita Dhounchak, Sarah K Popp, Debra J Brown, et al.
Immunology and Cell Biology
|
January 18, 2007
Transient transmission of porcine endogenous retrovirus to fetal lambs after pig islet tissue xenotransplantation
Sarah K Popp, David A Mann, Peter J Milburn, et al.
Xenotransplantation
|
May 2, 2002
Host systemic and local nitric oxide levels do not correlate with rejection of pig proislet xenografts in mice
Charmaine J Simeonovic, Damien V Cordery, Barbara Van Leeuwen, et al.
Transplantation
|
June 24, 2005
Porcine endogenous retrovirus encodes xenoantigens involved in porcine cellular xenograft rejection by mice
Charmaine J Simeonovic, Andrew F Ziolkowski, Sarah K Popp, et al.
Plos One
|
February 8, 2018
Loss of intra-islet heparan sulfate is a highly sensitive marker of type 1 diabetes progression in humans
Charmaine J Simeonovic, Sarah K Popp, Lora M Starrs, et al.
JCI Insight
|
January 25, 2022
Circulating platelet-neutrophil aggregates characterize the development of type 1 diabetes in humans and NOD mice
Sarah K Popp, Federica Vecchio, Debra J Brown, et al.
Page
of 1