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Intravascular hemolysis triggers ADP-mediated generation of platelet-rich thrombi in precapillary pulmonary arterioles
Tomasz Brzoska, Ravi Vats, Margaret F. Bennewitz, Egemen Tutuncuoglu, Simon C. Watkins, Margaret V. Ragni, Matthew D. Neal, Mark T. Gladwin, Prithu Sundd
Tomasz Brzoska, Ravi Vats, Margaret F. Bennewitz, Egemen Tutuncuoglu, Simon C. Watkins, Margaret V. Ragni, Matthew D. Neal, Mark T. Gladwin, Prithu Sundd
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Research Article Pulmonology Vascular biology

Intravascular hemolysis triggers ADP-mediated generation of platelet-rich thrombi in precapillary pulmonary arterioles

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Abstract

Patients with hereditary or acquired hemolytic anemias have a high risk of developing in situ thrombosis of the pulmonary vasculature. While pulmonary thrombosis is a major morbidity associated with hemolytic disorders, the etiological mechanism underlying hemolysis-induced pulmonary thrombosis remains largely unknown. Here, we use intravital lung microscopy in mice to assess the pathogenesis of pulmonary thrombosis following deionized water–induced acute intravascular hemolysis. Acute hemolysis triggered the development of αIIbβ3-dependent platelet-rich thrombi in precapillary pulmonary arterioles, which led to the transient impairment of pulmonary blood flow. The hemolysis-induced pulmonary thrombosis was phenocopied with intravascular ADP- but not thrombin-triggered pulmonary thrombosis. Consistent with a mechanism involving ADP release from hemolyzing erythrocytes, the inhibition of platelet P2Y12 purinergic receptor signaling attenuated pulmonary thrombosis and rescued blood flow in the pulmonary arterioles of mice following intravascular hemolysis. These findings are the first in vivo studies to our knowledge to suggest that acute intravascular hemolysis promotes ADP-dependent platelet activation, leading to thrombosis in the precapillary pulmonary arterioles, and that thrombin generation most likely does not play a significant role in the pathogenesis of acute hemolysis–triggered pulmonary thrombosis.

Authors

Tomasz Brzoska, Ravi Vats, Margaret F. Bennewitz, Egemen Tutuncuoglu, Simon C. Watkins, Margaret V. Ragni, Matthew D. Neal, Mark T. Gladwin, Prithu Sundd

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Figure 6

ADP-induced pulmonary thrombosis in mice is αIIbβ3 dependent.

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ADP-induced pulmonary thrombosis in mice is αIIbβ3 dependent.
(A) WT mic...
(A) WT mice were IV administered 2.5 mg/kg ADP with or without IV administration of 10 mg/kg αIIbβ3 inhibitor (eptifibatide) 15 minutes before IV ADP. Pulmonary circulation was imaged using quantitative fluorescence intravital lung microscopy (qFILM). qFILM images of the same field of view (FOV) at 6 different time points are shown to assess the effect of eptifibatide on the development of IV ADP-dependent pulmonary thrombosis. t = 0 seconds (s) corresponds to time point before and t > 0 s correspond to time points immediately following IV ADP administration. Pulmonary thrombosis was absent at t = 0 s. ADP failed to evoke pulmonary thrombosis in mouse pretreated with eptifibatide. Platelets (green) and pulmonary microcirculation (purple). Asterisks denote alveoli. White arrow mark the direction of blood flow within the arterioles. The diameter of the arteriole shown is 38 μm. Scale bar: 50 μm. (B) Pulmonary thrombi area plotted as a function of time for the FOV shown in A. Red arrow indicates pulmonary thrombi maximum area. (C and D) Pulmonary thrombi max area and AUC in mice with (n = 4 mice) or without (n = 7 mice) pretreatment with eptifibatide before IV ADP. Pulmonary thrombi max area and AUC were estimated as described in Methods. Pulmonary thrombi max area and AUC were compared using Wilcoxon-Mann-Whitney test. Data are shown as mean ± SEM. **P < 0.01 when comparing with and without eptifibatide pretreatment.

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