Sep 2026· Cell Biochemistry and Biophysics· 0 citations· 55 references
Medicine
TL;DR
Trans-ferulic acid is identified as a promising multi-target agent capable of disrupting the glycation-oxidative stress cycle at multiple levels by concurrently reducing reactive species, suppressing carbonyl formation, and limiting protein aggregation.
The pathogenesis of Alzheimer's disease (AD) involves multiple pathological processes, including β-amyloid (Aβ) deposition, aberrant tau modification, oxidative stress, and neuroinflammation. The molecular interaction mechanism among them remains to be further clarified. Peroxynitrite (ONOO⁻) is a potent oxidizing and...
Wei-Zhen Liu, Zheng-ji Piao, Tian-Li Zhu et al.· Ageing Research Reviews· 0 citations
It is demonstrated that NAC effectively attenuates d‐ribose‐induced glycation and protein aggregation in vitro and provides mechanistic insights into its anti‐glycation properties through multiple complementary biochemical mechanisms.
Rabia Nabi, Tabrez Faruqui, M. S. Khan et al.· IUBMB Life - A Journal of th...· 0 citations
This review focuses on translational insights linking α-syn pathology to dysregulated stress-response and protein quality-control pathways, intending to identify potential targets for disease-modifying intervention.
Swaprakash Paul, Abhideep Roy, Pallab Bhattacharya et al.· Current Pharmacology Reports· 0 citations
Diabetes-related complications often continue to progress despite improved glycemic control, a phenomenon known as metabolic memory. Increasing evidence suggests that methylglyoxal (MGO), a highly reactive dicarbonyl generated during glycolysis, may be an important mediator of this process. Hyperglycemia-induced oxidat...
Maya A. K. Stelzer, A. W. Khan, J. Kroon et al.· Antioxidants· 0 citations
Overall, postbiotics may represent a promising therapeutic strategy for targeting neurodegenerative processes in PD, although their safety, efficacy, optimal dosing, and clinical utility require further investigations.
Anjali Kumari, K. Aran· Metabolic brain disease· 0 citations
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