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Updated: Dec 9, 2025

A Thrombotic Stroke Model Based On Transient Cerebral Hypoxia-ischemia
Published on: August 18, 2015
Neuroinflammatory Mechanisms in Ischemic Stroke: Focus on Cardioembolic Stroke, Background, and Therapeutic
Carlo Domenico Maida1,2, Rosario Luca Norrito1, Mario Daidone1
1U.O.C di Medicina Interna con Stroke Care, Dipartimento di Promozione della Salute, Materno-Infantile, di Medicina Interna e Specialistica di Eccellenza "G. D'Alessandro", University of Palermo, 90127 Palermo, Italy.
Insights
Ischemic stroke, a leading cause of death, involves complex immune responses. Understanding neuroinflammation in cardioembolic stroke is key to developing new treatments.
Area of Science:
- Neurology
- Immunology
- Pathophysiology
Background:
- Ischemic stroke is a major global cause of death and disability.
- It results from events like embolism, small vessel occlusion, and cerebral atherosclerosis.
- The immune system plays a dual role in post-stroke neuroinflammation, causing damage and initiating repair.
Purpose of the Study:
- To review current understanding of inflammation mechanisms in ischemic stroke.
- To highlight the immune system's role, particularly in cardioembolic stroke.
- To discuss potential treatment strategies targeting inflammation.
Main Methods:
- This is a review article, synthesizing existing research.
- It focuses on the pathophysiology of neuroinflammation following ischemic injury.
- Emphasis is placed on cardioembolic stroke and immune mediator involvement.
Main Results:
- Neuroinflammation following ischemic stroke contributes to secondary brain damage.
- Proinflammatory signals attract immune cells (T cells, monocytes, neutrophils) to the ischemic area.
- Cardioembolic stroke involves systemic inflammation and is linked to worse outcomes.
Conclusions:
- The immune system's role in ischemic stroke, especially cardioembolic types, is critical.
- Targeting neuroinflammation presents a promising therapeutic avenue.
- Further research into immune mechanisms could lead to improved stroke treatments.
Abstract:
One of the most important causes of neurological morbidity and mortality in the world is ischemic stroke. It can be a result of multiple events such as embolism with a cardiac origin, occlusion of small vessels in the brain, and atherosclerosis affecting the cerebral circulation. Increasing evidence shows the intricate function played by the immune system in the pathophysiological variations that take place after cerebral ischemic injury. Following the ischemic cerebral harm, we can observe consequent neuroinflammation that causes additional damage provoking the death of the cells; on the other hand, it also plays a beneficial role in stimulating remedial action. Immune mediators are the origin of signals with a proinflammatory position that can boost the cells in the brain and promote the penetration of numerous inflammatory cytotypes (various subtypes of T cells, monocytes/macrophages, neutrophils, and different inflammatory cells) within the area affected by ischemia; this process is responsible for further ischemic damage of the brain. This inflammatory process seems to involve both the cerebral tissue and the whole organism in cardioembolic stroke, the stroke subtype that is associated with more severe brain damage and a consequent worse outcome (more disability, higher mortality). In this review, the authors want to present an overview of the present learning of the mechanisms of inflammation that takes place in the cerebral tissue and the role of the immune system involved in ischemic stroke, focusing on cardioembolic stroke and its potential treatment strategies.
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