A Biophysics-Based Mathematical Model of Shear-Induced Platelet Activation and Receptor Shedding: Re-Examining Previous Experimental Data

Publication typeJournal Article
Publication date2025-02-19
scimago Q1
wos Q2
SJR0.895
CiteScore5.9
Impact factor2.3
ISSN10582916, 1538943X
Abstract

The power-law model, originally developed for shear-induced hemolysis, has been used to predict shear-induced platelet activation and receptor shedding. However, its empirical nature lacks mechanistic explanations and violates physical reality by not imposing an upper limit, often leading to inaccuracies. Recent studies suggest that the mechanical pulling of platelet GPIb-IX complex triggers the unfolding of its mechanosensitive domain, a crucial process to platelet activation, which can be explained by Bell’s model of bond unbinding under force. Motivated by these findings, we propose a novel mathematical model for shear-induced platelet activation (P-selectin) and shear-induced platelet receptor (glycoprotein Ibα [GPIbα], GPVI, and GPIIb/IIIa) shedding based on the principle of bond unbinding. The model was examined using experimental data from previous studies in which blood samples were exposed to different combinations of constant shear stress and exposure time. The new model demonstrated an excellent fit with experimental data with an overall coefficient of determination R 2 >0.8, mapping the trends in platelet activation and receptor shedding (except for GPIIb/IIIa) across a range of shear conditions. This new model not only addresses the intrinsic upper bound error in the power-law model but also provides a theoretical foundation into blood damage under shear stress.

Found 

Are you a researcher?

Create a profile to get free access to personal recommendations for colleagues and new articles.
Metrics
0
Share
Cite this
GOST |
Cite this
GOST Copy
Han Dong et al. A Biophysics-Based Mathematical Model of Shear-Induced Platelet Activation and Receptor Shedding: Re-Examining Previous Experimental Data // ASAIO Journal. 2025.
GOST all authors (up to 50) Copy
Han Dong, Tarafder A., Griffith B. P., Wu Z. J. A Biophysics-Based Mathematical Model of Shear-Induced Platelet Activation and Receptor Shedding: Re-Examining Previous Experimental Data // ASAIO Journal. 2025.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.1097/mat.0000000000002399
UR - https://journals.lww.com/10.1097/MAT.0000000000002399
TI - A Biophysics-Based Mathematical Model of Shear-Induced Platelet Activation and Receptor Shedding: Re-Examining Previous Experimental Data
T2 - ASAIO Journal
AU - Han Dong
AU - Tarafder, Anik
AU - Griffith, Bartley P
AU - Wu, Zhongjun J.
PY - 2025
DA - 2025/02/19
PB - Ovid Technologies (Wolters Kluwer Health)
SN - 1058-2916
SN - 1538-943X
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2025_Han Dong,
author = {Han Dong and Anik Tarafder and Bartley P Griffith and Zhongjun J. Wu},
title = {A Biophysics-Based Mathematical Model of Shear-Induced Platelet Activation and Receptor Shedding: Re-Examining Previous Experimental Data},
journal = {ASAIO Journal},
year = {2025},
publisher = {Ovid Technologies (Wolters Kluwer Health)},
month = {feb},
url = {https://journals.lww.com/10.1097/MAT.0000000000002399},
doi = {10.1097/mat.0000000000002399}
}