Key result
Integrating closure time with visual inspection of the PFA-P2Y flow curve improved the detection of high platelet reactivity, increasing sensitivity from 20.0% to 72.7% and achieving an AUC of 0.823.
Why the study?
Response to clopidogrel can be evaluated by various techniques, and the study compared a functional rapid point-of-care technique (PFA-P2Y) with biochemical inhibition assessed by the VASP/P2Y12 assay.
Does detailed curve shape analysis of the PFA-P2Y assay improve the detection of high platelet reactivity compared to standard occlusion time in patients on clopidogrel?
Observational (n=173)
No
Does detailed curve shape analysis of the PFA-P2Y assay improve the detection of high platelet reactivity compared to standard occlusion time in patients on clopidogrel?
Absolute Event Rate: 0.823% vs 0.59%
Detailed analysis of the PFA-P2Y curve shape significantly improves the sensitivity of detecting high platelet reactivity in patients on clopidogrel compared to standard occlusion time.
May improve PFA-P2Y HPR detection sensitivity in clopidogrel patients; hypothesis-generating, requiring validation before clinical use.
Introduction Response to ADP P2Y12 receptor inhibition by clopidogrel can be evaluated by various techniques. Here, we compared a functional rapid point-of-care technique (PFA-P2Y) with the degree of biochemical inhibition assessed by the VASP/P2Y12 assay. Methods Platelet response to clopidogrel was investigated in 173 patients undergoing elective intracerebral stenting (derivation cohort n = 117; validation cohort n = 56). High platelet reactivity (HPR) was defined as PFA-P2Y occlusion time <106 seconds or VASP/P2Y12 platelet reactivity index (PRI) >50%. Results In the derivation cohort, receiver operator characteristics analysis for the ability of PFA-P2Y to detect biochemical HPR showed high specificity (98.4%) but poor sensitivity (20.0%) and a very low area under the curve (0.59). The VASP/P2Y12 assay revealed two coexisting platelet populations with different levels of vasodilator-stimulated phosphoprotein (VASP) phosphorylation: a fraction of highly phosphorylated, inhibited platelets and another of poorly phosphorylated, reactive platelets. Analysis of the PFA-P2Y curve shape revealed different types, categorized by time of occlusion (<106 seconds, 106 to 300 seconds, >300 seconds), and pattern (regular, irregular, and atypical). Noteworthy, curves with late occlusion and permeable curves with an irregular or atypical pattern correlated with VASP-PRI >50% and smaller sizes of the inhibited platelet subpopulation. Considering the PFA-P2Y shape of the curve for the detection of HPR improved sensitivity (72.7%) and preserved specificity (91.9%), with a rather high AUC (0.823). The validation cohort confirmed the VASP/P2Y12 assay data and the usefulness of considering the PFA-P2Y curve shape. Conclusion In patients treated with acetylsalicylic acid and clopidogrel for 7-10 days, the VASP/P2Y12 assay reveals two coexisting subpopulations of differentially inhibited platelets, whose relative sizes predict global PRI and distinct PFA-P2Y curve patterns, indicating incomplete clopidogrel efficacy. The detailed analysis of both VASP/P2Y12 and PFA-P2Y is necessary for optimal detection of HPR.
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Mariethoz et al. (2023) conducted an observational in High platelet reactivity (clopidogrel resistance) (n=173). PFA-P2Y curve shape analysis vs. Standard PFA-P2Y occlusion time (<106 seconds) was evaluated on Detection of biochemical high platelet reactivity (VASP-PRI >50%). Integrating closure time with visual inspection of the PFA-P2Y flow curve improved the detection of high platelet reactivity, increasing sensitivity from 20.0% to 72.7% and achieving an AUC of 0.823.
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