Ramis İleri, Xixi Guo, Erik J. Suuronen
Patients with myocardial infarction (MI) have an increased risk of developing neurological disease and cognitive impairment, but the mechanisms underlying the heart-brain interaction remain to be better elucidated. Methylglyoxal (MG), a highly reactive dicarbonyl, is a shared causative factor associated with cardiovascular and neurological diseases. MG-derived advanced glycation end products (MG-AGEs) accumulate in the heart and circulation post-MI, making it a promising target in studying the heart-brain axis. Here, we report that MG-AGEs accumulate in the mouse brain at 6 h and 7 days post-MI, with the highest expression observed in the brainstem, followed by the cortex. Notably, males had higher MG-AGE expression compared to females in most brain regions. The accumulation of MG-AGEs in the brain was correlated with increased neuroinflammation, including a greater number of activated microglia and macrophages, and increased expression of AGE receptors. Greater inflammatory factor expression (NF-κB and TNF-α) and a reduction in tight junction proteins of the blood brain barrier were also observed. Taken together, this study reveals a novel MG-mediated mechanism with sex-based differences that may contribute significantly to heart-brain interactions after MI and identifies a promising therapeutic target for treating the neurological impairment associated with heart disease.