Masaki Kajimoto, Charles D Lawrence, Kyle S Bilodeau, Robert M DiBlasi, Brian Perfette, Kevin A Charette, Michael A Portman
Neurological and neuropsychological deficits remain common following cardiovascular surgery in infants, yet the mechanisms underlying neuronal injury during deep hypothermic circulatory arrest (DHCA) are not fully understood. Our previous study demonstrated that inhaled nitric oxide (NO) attenuates DHCA induced microglial activation and neurodegeneration. In this study, we investigated whether targeted inhibition of NO synthase (NOS) could reduce brain damage following DHCA. Based on previously published data, we used 2-iminobiotin, a selective inhibitor of both neuronal NOS (nNOS) and inducible NOS (iNOS). Juvenile piglets (~7 weeks old) underwent DHCA (cooled to 18C) for 30 minutes, followed by rewarming either with or without NOS inhibitor. Neuroinflammation and neuronal injury were assessed histologically in the hippocampus. TUNEL staining revealed that NOS inhibitor (TUNEL positive cells; median 1.3%) significantly alleviated neuronal damage compared with non-treatment group (median 6.7%). NOS reduced the microglia activities related to cerebral neuroinflammatory reaction after DHCA. NOS inhibition reduces neuronal degeneration and microglial activation in the hippocampus following DHCA. These findings suggest that the NOS inhibitor reduces neuronal degeneration by ameliorating inflammation.