Intracellular toxic advanced glycation end-products in cardiomyocytes may cause cardiovascular disease
Takanobu Takata(Kanazawa Medical University), Masayoshi Takeuchi(Kanazawa Medical University)
Cited by 45
Related Papers
Impact of intracellular glyceraldehyde-derived advanced glycation end-products on human hepatocyte cell death
|Scientific Reports|2017|47
The Ubiquitin-Proteasome Pathway and p62/SQSTM1 are Involved in The Rapid Degradation and Aggregation Mechanisms of CHK1 Mutant-Derived Toxic AGEs Formed by Glyceraldehyde
|Preprints.org|2023|1
Carbonyl stress by glyceraldehyde promotes glycation of nuclear non-muscle myosins in DNA–protein crosslink assemblies
|Journal of Clinical Biochemistry and Nutrition|2026|0