Key result
Intracarotid ADP in rabbits induces transient platelet emboli and focal ischemia mimicking human TIAs.
Why the study?
An experimental model was needed to demonstrate that transient ischemic attacks in humans can be caused by pure platelet emboli.
Does intracarotid ADP infusion create a reliable animal model of transient ischemic attacks in rabbits?
Does intracarotid ADP infusion create a reliable animal model of transient ischemic attacks in rabbits?
Intracarotid ADP infusion in rabbits provides a viable experimental model for human transient ischemic attacks caused by pure platelet emboli.
Offers reversible rabbit TIA model for mechanistic studies; leaves open human translation pending validation.
Adenosine diphosphate (8 mg per minute for five minutes) was infused into the carotid artery of 63 rabbits. The effects were twofold: systemic hypotension and platelet aggregation in the cerebral circulation. As a consequence of the last effect, platelet emboli were produced which occluded cerebral arteries in a number and size sufficient to cause cerebral ischemia. Areas of focal ischemia were observed through a cranial window, and documented with antipyrine autoradiography. Platelet thrombi were almost entirely transient, being fragmented and removed within a very short time of cessation of ADP infusion. Consequently, no permanent tissue damage ensued. This experimental model approaches the spontaneous transient ischemia attacks (TIAs) in man, demonstrating that these can be caused by pure platelet emboli. A high cholesterol diet administered for two months prior to ADP infusion did not enhance the effect of the procedure or make the platelet aggregation and the following ischemia longer in duration or more severe.
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Fieschi et al. (1975) studied Transient ischemic attacks (TIA) (n=63). Intracarotid ADP infusion was evaluated on Systemic hypotension and platelet aggregation causing transient focal ischemia. Intracarotid infusion of ADP in rabbits produced transient platelet emboli and focal cerebral ischemia without permanent tissue damage, mimicking human transient ischemic attacks.
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