Figure 3
Figure 3. Kinetics of GPIbα-A1 interaction. (A) Disassociation rate constants were estimated at wall shear stresses between 400 and 2000 s−1 using a 2 μg/mL coating concentration of recombinant protein based on the duration of transient tether events. Kinetics of transient tethering between platelets and DC-D′A3 variant at a shear rates of 400, 600, and 1000 s−1 is demonstrated as an example. The natural logarithm of the number of tethering events (∼ 150 individual interactions) was plotted against the duration of tethering and the negative slope of the lines is the koff. Disassociation rate values at each shear rate are indicated (R2 values were ∼ 0.9). (B) Rate of platelet tethering to either wtD-A3 or OLG variants was plotted a function of shear rate. The graph shows the number of platelets that transiently tethered to each substrate at a given shear rate, during 5 seconds at 3 different fields of view (0.4 × 0.3 mm). Values are shown as mean ± SEM of 3 independent experiments.

Kinetics of GPIbα-A1 interaction. (A) Disassociation rate constants were estimated at wall shear stresses between 400 and 2000 s−1 using a 2 μg/mL coating concentration of recombinant protein based on the duration of transient tether events. Kinetics of transient tethering between platelets and DC-D′A3 variant at a shear rates of 400, 600, and 1000 s−1 is demonstrated as an example. The natural logarithm of the number of tethering events (∼ 150 individual interactions) was plotted against the duration of tethering and the negative slope of the lines is the koff. Disassociation rate values at each shear rate are indicated (R2 values were ∼ 0.9). (B) Rate of platelet tethering to either wtD-A3 or OLG variants was plotted a function of shear rate. The graph shows the number of platelets that transiently tethered to each substrate at a given shear rate, during 5 seconds at 3 different fields of view (0.4 × 0.3 mm). Values are shown as mean ± SEM of 3 independent experiments.

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