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Updated: Jan 7, 2026

A Metadata Extraction Approach for Clinical Case Reports to Enable Advanced Understanding of Biomedical Concepts
Published on: September 20, 2018
Manifestaciones Clínicas
Abdul Moeed1, Hassan Waseem2, Abdul Hannan Siddiqui1
1Dow Medical College, Dow University of Health Sciences, Karachi, Karachi, Sindh, Pakistan.
Background:
Alzheimer's disease (AD), being a deteriorative and progressive neurocognitive condition, constitutes nearly 70% of all the cases related to dementia and has a prevalence of 50 million globally. This study aims to analyze the probiotic's effect on neurocognitive function and markers of inflammation and oxidative stress in AD patients.
Method:
An exhaustive literature search was conducted across databases, including PubMed, Cochrane Central, and Google Scholar, for the relevant studies from inception to January 2025. Data from the included studies were extracted for relevant outcomes of interest. We used Review Manager version 5.4 to pool the mean differences (MD) and 95 % CIs for continuous outcomes. The random effects model was employed for statistical analysis, and the source of heterogeneity in the included studies was investigated through a sensitivity analysis.
Result:
Five randomized clinical trials, including 219 AD individuals, were added to this quantitative analysis. The results depict that the Mini-Mental status examination score was significantly higher in the probiotics group (MD = 2.49, 95% CI: 0.44,4.53; p = 0.02; I2 = 85%). Probiotics also resulted in a higher level of glutathione (MD = 17.78 µmol/L, 95% CI: [3.07 to 32.50]; p = 0.02; I2=0%) and a lower malondialdehyde (MD = -1.54 µmol/L, 95% CI = -2.31 to -0.78; p <0.0001; I2 = 95) compared to placebo. Other outcomes were comparable between the two groups.
Conclusion:
The results show that probiotics effectively improve neurocognitive function in AD patients. Probiotics also increase antioxidants like glutathione and decrease inflammatory markers like malondialdehyde, leading to favorable outcomes.
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