S100B protein and neuron-specific enolase as predictors of postoperative cognitive dysfunction in aged dogs: a case-control study
VETERINARY ANAESTHESIA AND ANALGESIA
Authors: Zboril, Sabrina; Schmidt, Andre P.; Oses, Jean P.; Wiener, Carolina D.; Portela, Luis, V; Souza, Diogo O.; Auler Junior, Jose O. C.; Carmona, Maria J. C.; Fugita, Mariana S.; Flor, Patricia B.; Cortopassi, Silvia R. G.
Abstract
Objective Postoperative cognitive dysfunction (POCD) may be related to brain injury. S100B protein and neuronspecific enolase (NSE) have been investigated as potential biochemical markers of neural cell injury in animals and humans. This study aimed to investigate the association between POCD, brain injury and serum concentrations of S100B and NSE after periodontal surgery in aged dogs. Study design Prospective observational animal study. Animals A total of 24 male and female dogs undergoing periodontal surgery. Methods Dogs were separated into two groups based on age: control group, 10 dogs <= 8 years and aged group, 14 dogs > 8 years. Cognitive function was measured preoperatively and on the seventh postoperative day using the Canine Cognitive Dysfunction Rating scale and the Age-Related Cognitive and Affective Disorders scale. S100B protein and NSE serum concentrations were measured before and immediately after the surgery. Results POCD was not observed after surgery in the present study. Serum concentrations of S100B and NSE were increased postoperatively in the control group but not in the aged group (p = 0.04 and 0.03, respectively). Preoperative S100B serum concentrations were significantly higher in the aged group (p = 0.01). Conclusions There was no association between POCD and high concentrations of S100B and NSE in dogs. However, increased postoperative serum concentrations of S100B and NSE were found in the control group after surgery, an effect that may indicate neural damage.
Mannose Binding Lectin, S100 B Protein, and Brain Injuries in Neonates With Perinatal Asphyxia
FRONTIERS IN PEDIATRICS
Authors: Auriti, Cinzia; Prencipe, Giusi; Inglese, Rita; Moriondo, Maria; Nieddu, Francesco; Mondi, Vito; Longo, Daniela; Bucci, Silvia; Del Pinto, Tamara; Timelli, Laura; Di Ciommo, Vincenzo Maria
Abstract
Perinatal asphyxia triggers an acute inflammatory response in the injured brain. Complement activation and neuroinflammation worsen brain damage after a systemic ischemia/reperfusion insult. The increase of mannose binding lectin (MBL) during asphyxia may contribute to the brain damage, via activation of the complement lectin pathway. The possible role ofMBL2gene variants in influencing the severity of post-asphyxia brain injuries is still unexplored. This retrospective study included 53 asphyxiated neonates: 42 underwent therapeutic hypothermia (TH) and 11 did not because they were admitted to the NICU later than 6 h after the hypoxic insult. Blood samples from TH-treated and untreated patients were genotyped forMBL2gene variants, and biomarker plasma levels (MBL and S100 B protein) were measured at different time points: during hypothermia, during rewarming, and at 7-10 days of life. The timing of blood sampling, except for the T1 sample, was the same in untreated infants. Highest (peak) levels of MBL andMBL2genotypes were correlated to neuroimaging brain damage or death and long-term neurodevelopmental delay.MBL2wild-type genotype was associated with the highest MBL levels and worst brain damage on MRI (p= 0.046) at 7-10 days after hypoxia. MBL increased in both groups and S100B decreased, slightly more in treated than in untreated neonates. The progressive increase of MBL (p= 0.08) and to be untreated with TH (p= 0.08) increased the risk of brain damage or death at 7-10 days of life, without affecting neurodevelopmental outcomes at 1 year. The effect of TH on MBL plasma profiles is uncertain.