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Ischemic stroke, which is characterized by hypoxia and ischemia, triggers a cascade of injury responses, including neurotoxicity, inflammation, oxidative stress, disruption of the blood-brain barrier, and neuronal death. In this context, tryptophan metabolites and enzymes, which are synthesized through the kynurenine and 5-hydroxytryptamine pathways, play dual roles. The delicate balance between neurotoxic and neuroprotective substances is a crucial factor influencing the progression of ischemic stroke. Neuroprotective metabolites, such as kynurenic acid, exert their effects through various mechanisms, including competitive blockade of N-methyl-D-aspartate receptors, modulation of α7 nicotinic acetylcholine receptors, and scavenging of reactive oxygen species. In contrast, neurotoxic substances such as quinolinic acid can hinder the development of vascular glucose transporter proteins, induce neurotoxicity mediated by reactive oxygen species, and disrupt mitochondrial function. Additionally, the enzymes involved in tryptophan metabolism play major roles in these processes. Indoleamine 2,3-dioxygenase in the kynurenine pathway and tryptophan hydroxylase in the 5-hydroxytryptamine pathway influence neuroinflammation and brain homeostasis. Consequently, the metabolites generated through tryptophan metabolism have substantial effects on the development and progression of ischemic stroke. Stroke treatment aims to restore the balance of various metabolite levels; however, precise regulation of tryptophan metabolism within the central nervous system remains a major challenge for the treatment of ischemic stroke. Therefore, this review aimed to elucidate the complex interactions between tryptophan metabolites and enzymes in ischemic stroke and develop targeted therapies that can restore the delicate balance between neurotoxicity and neuroprotection.
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http://dx.doi.org/10.4103/NRR.NRR-D-24-00777 | DOI Listing |
Neurol Res
September 2025
Zeenat Qureshi Stroke Institute and Department of Neurology, University of Missouri, Columbia, MO, USA.
Background: The benefits of rehabilitation in acute ischemic stroke patients following thrombectomy remain underexplored. We assessed which activities of daily living (ADLs) show the greatest improvement after goal-directed therapy in an inpatient rehabilitation setting.
Methods: We retrospectively analyzed pre- and post-rehabilitation functional assessments in 40 acute ischemic stroke patients treated with mechanical thrombectomy.
CNS Drugs
September 2025
Global Health Neurology Lab, Sydney, NSW, 2150, Australia.
Acute ischemic stroke (AIS) remains a leading cause of mortality and long-term disability globally, with survivors at high risk of recurrent stroke, cardiovascular events, and post-stroke dementia. Statins, while widely used for their lipid-lowering effects, also possess pleiotropic properties, including anti-inflammatory, endothelial-stabilizing, and neuroprotective actions, which may offer added benefit in AIS management. This article synthesizes emerging evidence on statins' dual mechanisms of action and evaluates their role in reducing recurrence, improving survival, and mitigating cognitive decline.
View Article and Find Full Text PDFClin Neuroradiol
September 2025
Department of Diagnostic and Interventional Neuroradiology, Inselspital, Bern University Hospital, University of Bern, Bern, Switzerland.
Background: Pediatric acute ischemic stroke is a rare yet severe condition with multifactorial etiology, often associated with vasculopathies. Endovascular intervention in children with focal cerebral arteriopathy is seldom reported.
Purpose: Our aim was to report feasibility of intracranial rescue stenting for the management of pediatric focal cerebral arteriopathy with flow-limiting stenosis.
Neurol Res
September 2025
Department of Human Anatomy, Wannan Medical College, Wuhu, China.
Background: Ischemic stroke can damage the cerebral white matter, resulting in myelin loss and neurological deficits. Moreover, microglial activation plays an important role in ischemic stroke; therefore, inhibiting microglial activation has become an effective therapeutic target for ischemic stroke.
Objective: This study aimed to investigate the effects of electroacupuncture (EA) on microglial activation and polarization, and the role of oligodendrocyte genesis in myelin reformation after ischemic stroke.
Background: This study aimed to evaluate the predictive value of combining the Padua score with D-dimer levels for identifying lower extremity deep vein thrombosis (DVT) in acute ischemic stroke (AIS) patients undergoing intravenous thrombolysis with alteplase.
Methods: This retrospective study analyzed clinical data from 632 AIS patients who received alteplase treatment at our hospital between September 2019 and October 2023. After applying strict inclusion and exclusion criteria, a total of 172 patients were included in the analysis: 35 patients in the DVT group and 137 patients in the non-DVT group.