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Drug-Induced Hyperglycemia as a Potential Contributor to Translational Failure of Uncompetitive NMDA Receptor
Eric Yuhsiang Wang1,2, Ted Weita Lai3,2,4,5
1Graduate Institute of Biomedical Sciences, China Medical University, Taichung 404, Taiwan.
Abstract:
Hyperglycemia is a comorbidity in 60-80% of stroke patients; nevertheless, neuroprotective drugs like NMDA receptor (NMDAR) antagonists are typically assessed in normoglycemic animals at the preclinical stage before they are approved to enter clinical trials. Interestingly, as a possible explanation for the translational failure of NMDAR antagonists, it was recently reported that stroke occurring during nighttime causes smaller infarctions in rodents and therefore has a smaller window for neuroprotection. To investigate why stroke occurring during different circadian phases confers a difference in severity, we reanalyzed the published source data and found that some mice that were used in the daytime have higher blood glucose than mice that were used in the nighttime. We then repeated the experiments but found no difference in blood glucose concentration or infarct volume regardless of the circadian phase during which stroke occurs. On the other hand, induction of hyperglycemia by glucose injection reproducibly increased stroke severity. Moreover, although hyperglycemia increases infarction volume, which presumably would provide a larger window for neuroprotection, uncompetitive NMDAR antagonists were unexpectedly found to exacerbate stroke outcome by worsening hyperglycemia. Taken together, our new data and reanalysis of the published source data suggested that blood glucose during stroke, rather than the circadian phase during which stroke occurs, affects the size of the ischemic infarction; moreover, we have revealed drug-induced hyperglycemia as a potential reason for the translational failure of uncompetitive NMDAR antagonists. Future trials for this class of neuroprotective drugs should monitor patients' blood glucose at enrollment and exclude hyperglycemic patients.
Insights
Blood glucose levels, not circadian rhythms, impact stroke severity and the effectiveness of neuroprotective drugs. Hyperglycemia worsens stroke outcomes and drug efficacy, suggesting glucose monitoring for future clinical trials.
Area of Science:
- Neuroscience
- Endocrinology
- Cardiovascular Research
Background:
- Hyperglycemia is common in stroke patients, yet neuroprotective drugs are tested in normoglycemic models.
- Translational failure of NMDA receptor antagonists may be linked to preclinical testing conditions.
- Circadian phase was recently proposed to influence stroke severity and neuroprotection window.
Purpose of the Study:
- Investigate the impact of circadian phase versus blood glucose on stroke severity.
- Determine the effect of hyperglycemia on the efficacy of NMDA receptor antagonists.
- Identify reasons for the translational failure of NMDAR antagonists in stroke treatment.
Main Methods:
- Reanalysis of published rodent stroke data.
- Experimental stroke induction in rodents with controlled circadian phases.
- Induction of hyperglycemia via glucose injection.
- Assessment of infarct volume and neurological deficits.
- Evaluation of NMDA receptor antagonist effects in hyperglycemic models.
Main Results:
- Blood glucose levels, not circadian phase, correlate with stroke infarct size.
- Induced hyperglycemia significantly increases stroke severity.
- Uncompetitive NMDA receptor antagonists worsen stroke outcomes in hyperglycemic conditions.
- Drug-induced hyperglycemia exacerbates the negative effects of NMDAR antagonists.
Conclusions:
- Blood glucose is a critical determinant of ischemic stroke infarction size.
- Hyperglycemia, not circadian phase, influences stroke severity.
- Drug-induced hyperglycemia may explain the failure of NMDAR antagonists in clinical trials.
- Future trials should screen for and exclude hyperglycemic patients when testing NMDAR antagonists.
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