Stroke is a leading cause of death and long-term disability worldwide, and the majority of stroke cases are ischemic in origin — triggered by the occlusion of a cerebral artery that abruptly cuts off oxygen and glucose supply to the brain. Despite decades of research, therapeutic options remain limited — thrombolysis and mechanical thrombectomy are only available within a narrow time window, and no clinically proven neuroprotective agent has yet reached routine practice. Validated in vivo models that faithfully recapitulate the temporal evolution of ischemic injury are the cornerstone of improving preclinical predictive value and de-risking clinical translation.
Leveraging deep expertise in neuroscience disease modeling, we have established a comprehensive in vivo ischemic stroke platform centered on middle cerebral artery occlusion (MCAO) in rats, offering two complementary focal cerebral ischemia models — transient MCAO (tMCAO) and permanent MCAO (pMCAO). Our models stably reproduce key ischemic phenotypes from acute hemodynamic disruption to chronic functional decline. We deliver comprehensive behavioral assessments including neurological severity score (mNSS), Rotarod test, Novel Object Recognition (NOR), and Morris Water Maze (MWM), complemented by TTC staining, HE staining, and immunofluorescence (IF) techniques. Combined with intraoperative Laser Doppler Flowmetry validation, these models support multi-layered efficacy evaluation and mechanistic dissection spanning hemodynamics, infarct evolution, neuroinflammatory cascades, and long-term neurorestoration.
Select a model below to review its biological rationale, experimental design, efficacy readouts, and representative data.
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