Drivers of Chronic Pathology Following Ischemic Stroke: A Descriptive Review
Grant W Goodman1, Trang H Do1, Chunfeng Tan1
1Department of Neurology, McGovern Medical School, The University of Texas Health Science Center at Houston, Houston, TX, USA.
Insights
Stroke survivors face long-term cognitive decline due to chronic brain changes. Understanding these post-stroke injuries is key to developing new treatments for stroke-associated dementia.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Stroke is a leading cause of death and disability, with increasing survival rates due to advanced treatments.
- Cognitive impairment is a significant chronic sequela of stroke, linked to white matter changes and neurodegeneration.
- Brain vasculature and immune responses play crucial roles in both acute and chronic stroke pathology.
Purpose of the Study:
- To review the progression of post-stroke injury and its chronic pathological features.
- To explore secondary injury mechanisms contributing to cognitive impairment and dementia after stroke.
- To discuss long-term effects of ischemic stroke on brain anatomy and function.
Main Methods:
- Review of current clinical and experimental literature on post-stroke injury.
- Analysis of findings related to chronic pathological features and secondary injury mechanisms.
- Synthesis of information on long-term effects on brain structure and functional outcomes.
Main Results:
- Chronic stroke pathology involves white matter deterioration, neurodegeneration, and vascular remodeling.
- Immune responses, both innate and adaptive, contribute to long-term injury but require further characterization.
- Identifying chronic mechanisms is crucial for mitigating stroke-associated cognitive decline.
Conclusions:
- Understanding chronic post-stroke injury progression is vital for improving patient outcomes.
- Further research into the chronicity of immune responses and neurodegenerative processes is needed.
- Developing targeted treatments for the chronic phase of stroke can help reduce cognitive impairment and dementia.
Abstract:
Stroke is the third leading cause of death and long-term disability in the world. Considered largely a disease of aging, its global economic and healthcare burden is expected to rise as more people survive into advanced age. With recent advances in acute stroke management, including the expansion of time windows for treatment with intravenous thrombolysis and mechanical thrombectomy, we are likely to see an increase in survival rates. It is therefore critically important to understand the complete pathophysiology of ischemic stroke, both in the acute and subacute stages and during the chronic phase in the months and years following an ischemic event. One of the most clinically relevant aspects of the chronic sequelae of stroke is its extended negative effect on cognition. Cognitive impairment may be related to the deterioration and dysfunctional reorganization of white matter seen at later timepoints after stroke, as well as ongoing progressive neurodegeneration. The vasculature of the brain also undergoes significant insult and remodeling following stroke, undergoing changes which may further contribute to chronic stroke pathology. While inflammation and the immune response are well established drivers of acute stroke pathology, the chronicity and functional role of innate and adaptive immune responses in the post-ischemic brain and in the peripheral environment remain largely uncharacterized. In this review, we summarize the current literature on post-stroke injury progression, its chronic pathological features, and the putative secondary injury mechanisms underlying the development of cognitive impairment and dementia. We present findings from clinical and experimental studies and discuss the long-term effects of ischemic stroke on both brain anatomy and functional outcome. Identifying mechanisms that occur months to years after injury could lead to treatment strategies in the chronic phase of stroke to help mitigate stroke-associated cognitive decline in patients.
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