Zobrazeno 1 - 10
of 24
pro vyhledávání: '"Jaap Koopman"'
Autor:
Judith J. de Vries, Chantal Visser, Maureen van Ommen, Casper Rokx, Els van Nood, Eric C.M. van Gorp, Marco Goeijenbier, Johannes P.C. van den Akker, Henrik Endeman, Dingeman C. Rijken, Marieke J.H.A. Kruip, Miranda Weggeman, Jaap Koopman, Moniek de Maat
Publikováno v:
TH Open.
Background: Fibrinogen variants as a result of alternative mRNA splicing or protein degradation can affect fibrin(ogen) functions. The levels of these variants might be altered during COVID-19, potentially affecting disease severity or the thrombosis
Autor:
Jaap Koopman, Jos M. Grimbergen, Nicholas A. Kurniawan, Izabela K. Piechocka, Gijsje H. Koenderink
Publikováno v:
Journal of Thrombosis and Haemostasis, 15(5), 938-949. Wiley-Blackwell
Essentials Fibrinogen circulates in human plasma as a complex mixture of heterogeneous molecular variants. We measured strain-stiffening of recombinantly produced fibrinogen upon clotting. Factor XIII and molecular heterogeneity alter clot elasticity
Publikováno v:
Journal of Thrombosis and Haemostasis, 12(10), 1687-1696. Wiley-Blackwell
Summary Background Factor XIII-induced cross-linking has long been associated with the ability of fibrin blood clots to resist mechanical deformation, but how FXIII can directly modulate clot stiffness is unknown. Objectives and Methods We hypothesiz
Publikováno v:
Blood. 132:3775-3775
Staphylococcus aureus is a common gram-positive bacterium that is a causative agent for a number of life-threatening diseases. The emergence of antibiotic resistant strains of S. aureus (i.e., methicillin and vancomycin resistant) emphasizes a renewe
Publikováno v:
Blood Coagulation and Fibrinolysis, 26(6), 613-620
Fibrinogen as precursor of fibrin plays an essential role in clot formation. There are three main mechanisms associated with a reduction in fibrinogen concentration during cardiac surgery: hemodilution, consumption, and degradation. Moreover, early f
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::43f0243ac96d20462c5e6d9be66775b0
https://hdl.handle.net/1887/101121
https://hdl.handle.net/1887/101121
Autor:
Thomas M. van Gulik, C. Verhoef, Arjen M. Rijken, Petra C G Simons, Hirohito Mori, Thomas Schok, Huihui Liu, Guihua Chen, Werner Druck Medien Ag, Shouhua Wang, Xiao Zheng, Shin Hwang, Yi Zhang, N. Ayez, Sung-Gyu Lee, Keitaro Tanaka, ZhiGang Zhang, Dirk J. Gouma, J. Hans W. de Wilt, Xiaoshan Feng, Edmund Wing To Tai, Masatsugu Ishii, Eisuke Asano, Gang Liu, Guoying Wang, Dong-Hwan Jung, Robert J. Porte, Els J. M. Nieveen van Dijkum, Ki-Hun Kim, Nathalie A.L.R. Peters, Xiaocai Wu, Paul Frohna, Xiang Yuan, Hideki Kamada, Ruinuo Jia, Masashi Yamamoto, Anneke P. J. Jilesen, Shegan Gao, Olivier R. Busch, Junji Okuda, Keiichi Okano, Tong Zhang, Binsheng Fu, Gi-Won Song, Monique van Rij, Chul-Soo Ahn, Linda A. Zuckerman, Jan T. Bottema, Yasuyuki Suzuki, Gil-Chun Park, Tae-Yong Ha, Maryska L.G. Janssen-Heijnen, Ruifeng Guo, Joop L M Konsten, Hua Li, Xiaozhi Yuan, Jaap Koopman, Caihong Dong, Karin Ruitenbeek, Yoshio Kushida, Hiroki Hamamoto, Youngjoo Lee, Kazuhisa Uchiyama, Deok-Bog Moon, Tanyou Shan, Shanyu Guo, Yan Gu
Publikováno v:
Digestive Surgery. 31
Autor:
Karin A. Jansen, Izabela K. Piechocka, Jaap Koopman, Gijsje H. Koenderink, Nicholas A. Kurniawan, Jos M. Grimbergen, Fred C. MacKintosh
Publikováno v:
ResearcherID
Biophysical Journal, 108(2). Biophysical Society
Biophysical Journal, 108(2). Biophysical Society
When we cut ourselves, our body's immediate response is to stop the bleeding by repairing the damage to the wall of the blood vessel_forming a “blood clot”. This is physically carried out by forming a network of semiflexible fibrin fibers, which
Autor:
Evert N. Lamme, Abdoelwaheb El Ghalbzouri, Jaap Koopman, Clemens van Blitterswijk, Maria Ponec
Publikováno v:
Biomaterials, 25, 2987-2996. Elsevier
Biomaterials, 25, 15, pp. 2987-96
Biomaterials, 25, 2987-96
Biomaterials, 25, 15, pp. 2987-96
Biomaterials, 25, 2987-96
Item does not contain fulltext Human skin equivalents (HSEs) were engineered using biodegradable-segmented copolymer PEGT/PBT as a dermal scaffold. As control groups, fibroblast-populated de-epidermized dermis, collagen, fibrin and hybrid PEGT/PBT-co
Autor:
Linda A. Zuckerman, Jaap Koopman, Karin Ruitenbeek, J. Hans W. de Wilt, Cees Verhoef, Robert J. Porte, Ninos Ayez, Paul Frohna, Arjen M. Rijken, Jan T. Bottema, Monique van Rij
Publikováno v:
Digestive Surgery, 31, 6, pp. 422-7
Digestive Surgery, 31(6), 422-427. KARGER
Digestive Surgery, 31, 422-7
Digestive Surgery, 31(6), 422-427. KARGER
Digestive Surgery, 31, 422-7
Background/Aims: Fibrocaps is a dry powder fibrin sealant containing human plasma-derived fibrinogen and thrombin. The safety, efficacy, and application methods for Fibrocaps were evaluated in an exploratory, first-in-human, noncomparative, clinical
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::b18f3cfc16aa93936d367f3f357049c2
https://hdl.handle.net/2066/139236
https://hdl.handle.net/2066/139236
Publikováno v:
Thrombosis and Haemostasis. 85:1025-1030
SummaryThe fibrinogen Aα, Bβ, and γ polypeptides are encoded by three separate genes, which are arranged in the order γ-α-β. In order to study the biosynthesis of fibrinogen in vivo we generated a line of transgenic mice carrying extra copies o