4.4 Article

The Influence of Hindered Transport on the Development of Platelet Thrombi Under Flow

期刊

BULLETIN OF MATHEMATICAL BIOLOGY
卷 75, 期 8, 页码 1255-1283

出版社

SPRINGER
DOI: 10.1007/s11538-012-9784-3

关键词

Multiscale model; Hindered advection; Hindered diffusion; Coagulation; Thrombus

资金

  1. NSF RTG [DMS-0943760]
  2. NSF [DMS-0540779]
  3. NIGMS [R01-GM090203]
  4. Direct For Mathematical & Physical Scien
  5. Division Of Mathematical Sciences [0943760] Funding Source: National Science Foundation

向作者/读者索取更多资源

Vascular injury triggers two intertwined processes, platelet deposition and coagulation, and can lead to the formation of an intravascular clot (thrombus) that may grow to occlude the vessel. Formation of the thrombus involves complex biochemical, biophysical, and biomechanical interactions that are also dynamic and spatially-distributed, and occur on multiple spatial and temporal scales. We previously developed a spatial-temporal mathematical model of these interactions and looked at the interplay between physical factors (flow, transport to the clot, platelet distribution within the blood) and biochemical ones in determining the growth of the clot. Here, we extend this model to include reduction of the advection and diffusion of the coagulation proteins in regions of the clot with high platelet number density. The effect of this reduction, in conjunction with limitations on fluid and platelet transport through dense regions of the clot can be profound. We found that hindered transport leads to the formation of smaller and denser clots compared to the case with no protein hindrance. The limitation on protein transport confines the important activating complexes to small regions in the interior of the thrombus and greatly reduces the supply of substrates to these complexes. Ultimately, this decreases the rate and amount of thrombin production and leads to greatly slowed growth and smaller thrombus size. Our results suggest a possible physical mechanism for limiting thrombus growth.

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