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Updated: Aug 1, 2025

Author Spotlight: Modeling Vascular Contributions to Alzheimer's Disease in Transgenic Mice
Published on: May 17, 2024
Cromolyn prevents cerebral vasospasm and dementia by targeting WDR43
Xingqiao Wang1, Fanqiang Kong1, Zengbin Lin1
1Emergency Department, The Affiliated Yantai Yuhuangding Hospital of Qingdao University, Yantai, China.
Insights
Cerebral vasospasm (CV) in the elderly is linked to dementia. WDR43 and THBS1 genes are potential targets, with cromolyn showing promise for treating neurodegenerative diseases like Alzheimer's.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Cerebral vasospasm (CV) can cause neuronal damage and dementia in elderly individuals.
- Understanding the genetic basis of CV-induced dementia is crucial for developing effective treatments.
Purpose of the Study:
- Investigate genetic mechanisms of CV-induced dementia in the elderly.
- Identify potential preventive and therapeutic drugs for neurodegenerative diseases.
- Evaluate drug efficacy in preclinical models.
Main Methods:
- Screened genes and differentially expressed miRNAs (DEmiRNAs) related to aneurysm rupture.
- Constructed a DEmiRNA-mRNA regulatory network.
- Performed virtual screening of FDA-approved drugs and molecular dynamics simulations.
- Conducted cellular experiments to assess drug efficacy.
Main Results:
- Identified WDR43 and THBS1 as key genes associated with aneurysm rupture and CV.
- Discovered two DEmiRNAs targeting WDR43 and THBS1.
- Cromolyn and lanoxin showed promising binding with WDR43 and THBS1, respectively.
- Cromolyn enhanced cell viability and Aβ42 uptake in cellular models.
Conclusions:
- WDR43 and THBS1 are potential therapeutic targets for CV-induced dementia.
- Cromolyn demonstrates therapeutic potential for Alzheimer's disease and dementia treatment.
Background:
Cerebral vasospasm (CV) can cause inflammation and damage to neuronal cells in the elderly, leading to dementia.
Purpose:
This study aimed to investigate the genetic mechanisms underlying dementia caused by CV in the elderly, identify preventive and therapeutic drugs, and evaluate their efficacy in treating neurodegenerative diseases.
Methods:
Genes associated with subarachnoid hemorrhage and CV were acquired and screened for differentially expressed miRNAs (DEmiRNAs) associated with aneurysm rupture. A regulatory network of DEmiRNAs and mRNAs was constructed, and virtual screening was performed to evaluate possible binding patterns between Food and Drug Administration (FDA)-approved drugs and core proteins. Molecular dynamics simulations were performed on the optimal docked complexes. Optimally docked drugs were evaluated for efficacy in the treatment of neurodegenerative diseases through cellular experiments.
Results:
The study found upregulated genes (including WDR43 and THBS1) and one downregulated gene associated with aneurysm rupture. Differences in the expression of these genes indicate greater disease risk. DEmiRNAs associated with ruptured aortic aneurysm were identified, of which two could bind to THBS1 and WDR43. Cromolyn and lanoxin formed the best docking complexes with WDR43 and THBS1, respectively. Cellular experiments showed that cromolyn improved BV2 cell viability and enhanced Aβ42 uptake, suggesting its potential as a therapeutic agent for inflammation-related disorders.
Conclusion:
The findings suggest that WDR43 and THBS1 are potential targets for preventing and treating CV-induced dementia in the elderly. Cromolyn may have therapeutic value in the treatment of Alzheimer's disease and dementia.
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