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Microfluidics in Assessing Platelet Function
Published on: November 8, 2024
Assessment of platelet function in acute ischemic stroke patients previously treated with aspirin
Aida Lago1, Vera Parkhutik1, Jose Ignacio Tembl1
1Department of Neurology, Hospital Universitari La Fe, Valencia, Spain.
Insights
Stopping aspirin after an ischemic stroke significantly increases thromboxane A2 (TXA2) synthesis. Replacing aspirin with clopidogrel alone offers incomplete protection, highlighting the need for optimized antiplatelet strategies in acute stroke patients.
Area of Science:
- Cardiology
- Neurology
- Pharmacology
Background:
- Platelet inhibition is crucial for understanding early recurrence and guiding therapy after ischemic stroke.
- Assessing platelet function during the acute phase is vital for stroke patients pretreated with aspirin.
Purpose of the Study:
- To evaluate platelet function in ischemic stroke patients continuing aspirin, switching to clopidogrel, or adding clopidogrel to aspirin.
Main Methods:
- Sixty-four pre-stroke aspirin patients were divided into three groups: aspirin continuation (ASA), clopidogrel only (CLO), and aspirin plus clopidogrel (ASA + CLO).
- Measurements included collagen-induced thromboxane A2 (TXA2) synthesis, ADP-induced aggregation, and occlusion time using the PFA-100.
- Groups were defined as ASA (n=30), CLO (n=16), and ASA + CLO (n=10).
Main Results:
- The CLO group showed significantly elevated TXA2 levels and shortened PFA-100 closure times compared to ASA and ASA + CLO groups.
- Clopidogrel monotherapy resulted in a modest 13% reduction in ADP-induced aggregation compared to the aspirin group.
- Stopping aspirin increased TXA2 synthesis, while clopidogrel alone had limited impact on ADP-induced aggregation.
Conclusions:
- Discontinuing aspirin within 72 hours of acute ischemic stroke markedly increases TXA2 synthesis.
- Replacing aspirin with clopidogrel alone provides insufficient protection during the early post-stroke period.
- Strategies like continuing aspirin temporarily or using clopidogrel loading doses may enhance protection.
Background:
Platelet inhibition measured by platelet function tests could be critical to understand the reasons for early recurrence and to guide therapeutic recommendations. We assess the platelet function during the acute phase of ischemic stroke in patients pretreated with aspirin who continue their treatment with aspirin only, are started on clopidogrel only, or add clopidogrel to aspirin.
Methods:
Sixty-four patients were taking aspirin before the stroke. Depending on the administered antiplatelet, 3 groups were defined: ASA: patients who continued on aspirin orally or intravenous acetylsalicylate of lysine, n = 30; CLO: patients who discontinued aspirin and were started on clopidogrel, n = 16; and ASA + CLO: patients who were prescribed both aspirin and clopidogrel, n = 10. Collagen-induced thromboxane A2 (TXA2) synthesis, ADP (adenosine diphosphate)-induced aggregation, and occlusion time (PF-100) were measured.
Results:
CLO group only had a marked elevation of TXA2 (17.44 ± 15.62 ng/mL, P = .000) and a shortening of the platelet function analyzer (PFA)-100 closure time (157.13 ± 88 seconds, P = .047) compared with the other 2 groups (ASA: TXA2, .62 ± 1.59 ng/mL; ASA + CLO: TXA2 1.79 ± 4.59 ng/mL). They achieved a small (13%) but significant reduction of ADP-induced aggregation (87.00 ± 23.06 mm, P = .008) compared with the ASA group (102.82 ± 22.38 seconds).
Conclusions:
Stopping aspirin intake within the first 72 hours of the acute stroke drastically increases TXA2 synthesis. During the same time window, the freshly prescribed clopidogrel manages to reduce the ADP-induced aggregation only slightly (13%). This study offers analytic proof that the common practice of replacing aspirin with clopidogrel does not leave stroke patients fully protected during the first days after an ischemic stroke. Possible solutions could be to preserve aspirin during a few days or to use loading doses of clopidogrel at hospital admission.
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