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Published on: December 15, 2023
Neuroprotection for ischemic stroke: moving past shortcomings and identifying promising directions
Ryan C Turner1, Brandon Lucke-Wold, Noelle Lucke-Wold
1Department of Neurosurgery, One Medical Center Drive, West Virginia University School of Medicine, P.O. Box 9183, Morgantown, WV 26506, USA. crosen@hsc.wvu.edu.
Abstract:
The translation of neuroprotective agents for ischemic stroke from bench-to-bedside has largely failed to produce improved treatments since the development of tissue plasminogen activator (tPA). One possible reason for lack of translation is the failure to acknowledge the greatest risk factor for stroke, age, and other common comorbidities such as hypertension, obesity, and diabetes that are associated with stroke. In this review, we highlight both mechanisms of studying these factors and results of those that have been addressed. We also discuss the potential role of other lifestyle factors associated with an increased stroke risk such as sleep fragmentation and/or deprivation. Furthermore, many proposed therapeutic agents have targeted molecular mechanisms occurring soon after the onset of ischemia despite data indicating delayed patient presentation following ischemic stroke. Modulating inflammation has been identified as a promising therapeutic avenue consistent with preliminary success of ongoing clinical trials for anti-inflammatory compounds such as minocycline. We review the role of inflammation in stroke and in particular, the role of inflammatory cell recruitment and macrophage phenotype in the inflammatory process. Emerging evidence indicates an increasing role of neuro-immune crosstalk, which has led to increased interest in identification of peripheral biomarkers indicative of neural injury. It is our hope that identification and investigation of factors influencing stroke pathophysiology may lead to improved therapeutics.
Insights
Translating stroke treatments has failed due to ignoring age and comorbidities. Focusing on inflammation and patient factors like sleep may improve future neuroprotective therapies for ischemic stroke.
Area of Science:
- Neuroscience
- Immunology
- Gerontology
Background:
- Translational failure of neuroprotective agents for ischemic stroke persists despite tPA.
- Key stroke risk factors like advanced age and comorbidities (hypertension, obesity, diabetes) are often overlooked.
- Delayed patient presentation post-stroke necessitates therapeutics targeting later-stage mechanisms.
Purpose of the Study:
- To review mechanisms and results related to age and comorbidities in stroke.
- To discuss the impact of lifestyle factors like sleep fragmentation on stroke risk.
- To explore the therapeutic potential of modulating inflammation and neuro-immune crosstalk in stroke.
Main Methods:
- Literature review focusing on bench-to-bedside translation challenges in stroke.
- Analysis of studies addressing age, comorbidities, and lifestyle factors in stroke pathophysiology.
- Examination of the role of inflammation, particularly inflammatory cell recruitment and macrophage phenotype.
Main Results:
- Age and common comorbidities significantly influence stroke risk and treatment outcomes.
- Inflammation, especially involving macrophages, plays a critical role in stroke progression.
- Emerging evidence highlights neuro-immune crosstalk and the potential of peripheral biomarkers.
Conclusions:
- Addressing age, comorbidities, and lifestyle factors is crucial for successful stroke treatment translation.
- Modulating inflammation represents a promising therapeutic strategy for ischemic stroke.
- Further research into neuro-immune interactions may identify novel peripheral biomarkers for neural injury.
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