2018
DOI: 10.1016/j.bpj.2018.11.009
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Sensitivity and Robustness of Spatially Dependent Thrombin Generation and Fibrin Clot Propagation

Abstract: Blood coagulation is a delicately regulated space-and time-dependent process that leads to the formation of fibrin clots preventing blood loss upon vascular injury. The sensitivity of the coagulation network was previously investigated without accounting for transport processes. To investigate its sensitivity to coagulation factor deficiencies in a spatial reactiondiffusion system, we combined an in vitro experimental design with a computational systems biology model. Clot formation in platelet-free plasma sup… Show more

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Cited by 26 publications
(17 citation statements)
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“…45,46 The phenotype observed in normal plasma spiked with C7P (►Fig. 2A-D) is in line with the model of FXI-deficient coagulation described by Kuprash et al 38 2. TF-independent TG and fibrin formation are reduced in FXI-deficient bleeders…”
Section: Thrombosis and Haemostasissupporting
confidence: 84%
See 1 more Smart Citation
“…45,46 The phenotype observed in normal plasma spiked with C7P (►Fig. 2A-D) is in line with the model of FXI-deficient coagulation described by Kuprash et al 38 2. TF-independent TG and fibrin formation are reduced in FXI-deficient bleeders…”
Section: Thrombosis and Haemostasissupporting
confidence: 84%
“…For details on TG threedimensional plots see legend of ►Fig. 2 and studies of Dashkevich et al 31 and Kuprash et al 38…”
Section: Spatiotemporal Propagation Of Thrombin As a Function Of Fxi mentioning
confidence: 99%
“…Recently, a detailed model of spatial thrombin generation and clot formation consisting of 21 partial differential equations and three ODEs was used to investigate blood coagulation sensitivity to coagulation factor deficiencies. 88 The authors concluded that the spatially heterogeneous coagulation system was robust to factor concentration variation due to combination of local high TF surface, diffusion control being shared between different active factors, and early saturated dependence of fibrin clot formation by thrombin. These studies ultimately led to the proposal of a modular concept of blood coagulation network (►Fig.…”
Section: Computer Models Of Blood Coagulation and Fibrinolysismentioning
confidence: 99%
“…Fibrin is a protein polymer network that plays a crucial role in blood clotting, wound healing, and other biological processes, such as blood vessel formation and cell growth (1)(2)(3)(4)(5)(6). Aside from its importance in clinical applications, fibrin also finds an increasing role in tissue regeneration and engineering (5,7,8).…”
Section: Introductionmentioning
confidence: 99%