Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Geertje Swennen"'
Autor:
Sanghun Park, Mick Gagliardi, Geertje Swennen, Arin Dogan, Yuna Kim, Yunhwan Park, Gyutae Park, Sehyuk Oh, Mark Post, Jungseok Choi
Publikováno v:
Biomolecules, Vol 12, Iss 6, p 838 (2022)
Among future food problems, the demand for meat is expected to increase rapidly, but the production efficiency of meat, which is a protein source, is very low compared to other foods. To address this problem, research on the development and productio
Externí odkaz:
https://doaj.org/article/59707accfb4c4fbf8719189c85553e0b
Autor:
Sébastien Foulquier, Natalia Alenina, Geertje Swennen, R. J. van Oostenbrugge, Elizabeth A. V. Jones, Irina V. Milanova, Ulrike Muscha Steckelings, Chiara Recarti, Tim Vanmierlo, Stefan Reinhold, Th. Unger, Michael Bader, Mark J. Post, Vincenza Caolo
Publikováno v:
Article
Angiogenesis
Foulquier, S, Caolo, V, Swennen, G, Milanova, I, Reinhold, S, Recarti, C, Alenina, N, Bader, M, Steckelings, U M, Vanmierlo, T, Post, M J, Jones, E A, van Oostenbrugge, R J & Unger, T 2019, ' The role of receptor MAS in microglia-driven retinal vascular development ', Angiogenesis, vol. 22, pp. 481-489 . https://doi.org/10.1007/s10456-019-09671-3
Angiogenesis, 22(4), 481-489. Springer, Cham
Angiogenesis
Foulquier, S, Caolo, V, Swennen, G, Milanova, I, Reinhold, S, Recarti, C, Alenina, N, Bader, M, Steckelings, U M, Vanmierlo, T, Post, M J, Jones, E A, van Oostenbrugge, R J & Unger, T 2019, ' The role of receptor MAS in microglia-driven retinal vascular development ', Angiogenesis, vol. 22, pp. 481-489 . https://doi.org/10.1007/s10456-019-09671-3
Angiogenesis, 22(4), 481-489. Springer, Cham
Objective The receptor MAS, encoded by Mas1, is expressed in microglia and its activation has been linked to anti-inflammatory actions. However, microglia are involved in several different processes in the central nervous system, including the promot
Autor:
Geertje Swennen, Bahar Kasaai, Emma Gordon, Lena Claesson-Welsh, Elizabeth A. V. Jones, Vincenza Caolo, Hanna M. Peacock, Peter Verhamme, Mark J. Post
Publikováno v:
Arteriosclerosis Thrombosis and Vascular Biology, 38(9), 2174-2183. LIPPINCOTT WILLIAMS & WILKINS
Objective— Vascular fusion represents an important mechanism of vessel enlargement during development; however, its significance in postnatal vessel enlargement is still unknown. During fusion, 2 adjoining vessels merge to share 1 larger lumen. The
Autor:
Vincenza, Caolo, Hanna M, Peacock, Bahar, Kasaai, Geertje, Swennen, Emma, Gordon, Lena, Claesson-Welsh, Mark J, Post, Peter, Verhamme, Elizabeth A V, Jones
Publikováno v:
Arteriosclerosis, thrombosis, and vascular biology. 38(9)
Objective- Vascular fusion represents an important mechanism of vessel enlargement during development; however, its significance in postnatal vessel enlargement is still unknown. During fusion, 2 adjoining vessels merge to share 1 larger lumen. The a
Autor:
Tobias Messmer, Guanghong Zhou, Mark J. Post, Geertje Swennen, Shijie Ding, Mick Gagliardi, Daniel G. M. Molin, Chunbao Li
Publikováno v:
Scientific Reports
Scientific Reports, 8:10808. Nature Publishing Group
Scientific Reports, Vol 8, Iss 1, Pp 1-12 (2018)
Scientific Reports, 8:10808. Nature Publishing Group
Scientific Reports, Vol 8, Iss 1, Pp 1-12 (2018)
Isolating and maintaining the appropriate stem cell for large scale cell culture is essential in tissue engineering or food production. For bovine satellite cells an optimized isolation and purification protocol is lacking and there is also no detail
Autor:
Marcel Houben, Daniel G. M. Molin, John Andrew Zupancich, Mark J. Post, Tilman M. Hackeng, George Mihov, Allard Wagenaar, Ingrid Dijkgraaf, Geertje Swennen, Y. Nossent, Vincenza Caolo, Dennis Suylen, Mark H. M. Vries, Paul H.A. Quax
Publikováno v:
Drug Delivery, 23(8), 2919-2926. Routledge/Taylor & Francis Group
Drug Delivery, 23(8), 2919-2926
Europe PubMed Central
Drug Delivery, 23(8), 2919-2926
Europe PubMed Central
After arterial occlusion, diametrical growth of pre-existing natural bypasses around the obstruction, i.e. arteriogenesis, is the body's main coping mechanism. We have shown before that continuous infusion of chemokine (C-X-C motif) ligand 1 (CXCL1)
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::f3627f3de821a9f2465beca9c54a567a
https://cris.maastrichtuniversity.nl/en/publications/70d7d82a-0103-42c3-a5c7-5e0e9728e61a
https://cris.maastrichtuniversity.nl/en/publications/70d7d82a-0103-42c3-a5c7-5e0e9728e61a
Autor:
Nynke M. S. van den Akker, Daniel G. M. Molin, Johannes Waltenberger, Vincenza Caolo, Mark J. Post, Henny Schulten, Marjo M. P. C. Donners, Geertje Swennen, Sanne Verbruggen
Publikováno v:
Journal of Biological Chemistry. 285:40681-40689
The DELTA like-4 ligand (DLL4) belongs to the highly conserved NOTCH family and is specifically expressed in the endothelium. DLL4 regulates crucial processes in vascular growth, including endothelial cell (EC) sprouting and arterial specification. I
Autor:
Lena Claesson-Welsh, Peter Verhamme, Bahar Kasaai, Vincenza Caolo, Hanna M. Peacock, Emma Gordon, Elizabeth A. V. Jones, Geertje Swennen
Publikováno v:
Cardiovascular Research. 114:S13-S13
Autor:
Sanne Verbruggen, Athena Chalaris, Geertje Swennen, Daniel G. M. Molin, Marc Vooijs, Vincenza Caolo, Mark J. Post, Allard Wagenaar, Stefan Rose-John
Publikováno v:
Angiogenesis, 18(1), 13-22. Springer, Cham
During angiogenesis, endothelial tip cells start sprouting and express delta-like 4 (DLL4) downstream of vascular endothelial growth factor (VEGF). DLL4 subsequently activates Notch in the adjacent stalk cells suppressing sprouting. VEGF also activat
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::d0484d81934f9e24742cdbef25d95b8b
https://cris.maastrichtuniversity.nl/en/publications/af17564f-f5f5-4477-be4d-65d5f5e9f5cb
https://cris.maastrichtuniversity.nl/en/publications/af17564f-f5f5-4477-be4d-65d5f5e9f5cb
Autor:
Daniel G. M. Molin, Sanne Verbruggen, Nastaran Rahimi, Martyna Scibiorek, Geertje Swennen, Mark J. Post
Publikováno v:
Tissue Engineering. Part C. Methods, 20(9), 703-713. Mary Ann Liebert Inc.
Acrylic acid/fibrin hydrogel can mechanically stimulate cells when an external electrical field is applied, enabling them to migrate and align throughout the depth of the gel. The ability of electro-responsive polyacrylic acid (PAA)/fibrin hydrogel t
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8c68bc230371f52fbe0b56b3b6967405
https://cris.maastrichtuniversity.nl/en/publications/9b157fd7-a7c7-4b2f-9a3f-002ad9c6dbd3
https://cris.maastrichtuniversity.nl/en/publications/9b157fd7-a7c7-4b2f-9a3f-002ad9c6dbd3