Key result
High inflation pressure external counterpulsation therapy significantly increased Annexin V positive microparticles by 1.8-fold and platelet-derived microparticles by 1.6-fold from baseline in patients with coronary artery disease.
Why the study?
Does high inflation pressure ECP alter the composition and pro-angiogenic properties of circulating microparticles compared to low inflation pressure ECP in patients with stable CAD?
RCT (n=15)
Randomly assigned
No
Does high inflation pressure ECP alter the composition and pro-angiogenic properties of circulating microparticles compared to low inflation pressure ECP in patients with stable CAD?
Absolute Event Rate: 1.8% vs 1.6%
p-value: p=<0.05
High inflation pressure ECP increases platelet-derived microparticles with pro-angiogenic properties in patients with stable CAD, providing a potential molecular mechanism for shear stress-induced arteriogenesis.
High-pressure ECP may promote collaterals in stable CAD; leaves open microparticle roles in shear stress arteriogenesis.
UNLABELLED: Recently, a clinical study on patients with stable coronary artery disease (CAD) showed that external counterpulsation therapy (ECP) at high (300 mmHg) but not at low inflation pressure (80 mmHg) promoted coronary collateral growth, most likely due to shear stress-induced arteriogenesis. The exact molecular mechanisms behind shear stress-induced arteriogenesis are still obscure. We therefore characterized plasma levels of circulating microparticles (MPs) from these CAD patients because of their ambivalent nature as a known cardiovascular risk factor and as a promoter of neovascularization in the case of platelet-derived MPs. MPs positive for Annexin V and CD31CD41 were increased, albeit statistically significant (P<0.05, vs. baseline) only in patients receiving high inflation pressure ECP as determined by flow cytometry. MPs positive for CD62E, CD146, and CD14 were unaffected. In high, but not in low, inflation pressure treatment, change of CD31CD41 was inversely correlated to the change in collateral flow index (CFI), a measure for collateral growth. MPs from the high inflation pressure group had a more sustained pro-angiogenic effect than the ones from the low inflation pressure group, with the exception of one patient showing also an increased CFI after treatment. A total of 1005 proteins were identified by a label-free proteomics approach from MPs of three patients of each group applying stringent acceptance criteria. Based on semi-quantitative protein abundance measurements, MPs after ECP therapy contained more cellular proteins and increased CD31, corroborating the increase in MPs. Furthermore, we show that MP-associated factors of the innate immune system were decreased, many membrane-associated signaling proteins, and the known arteriogenesis stimulating protein transforming growth factor beta-1 were increased after ECP therapy. In conclusion, our data show that ECP therapy increases platelet-derived MPs in patients with CAD and that the change in protein cargo of MPs is likely in favor of a pro angiogenic/arteriogenic property. TRIAL REGISTRATION: ClinicalTrials.gov NCT00414297.
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Kaabi et al. (2012) conducted an RCT in Chronic stable coronary artery disease (n=15). High inflation pressure external counterpulsation therapy (ECP) vs. Low inflation pressure ECP (80 mmHg) was evaluated on Change in Annexin V positive microparticles from baseline (fold increase) (p=<0.05). High inflation pressure external counterpulsation therapy significantly increased Annexin V positive microparticles by 1.8-fold and platelet-derived microparticles by 1.6-fold from baseline in patients with coronary artery disease.
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