AI Article Synopsis

  • Neurodegenerative disorders involve neuroinflammation, and this study used lipopolysaccharide (LPS) to induce neuroinflammation in animal models, simulating cognitive impairment.
  • The experiment involved injecting LPS and testing the effects of Adalimumab (a TNF-α inhibitor) and curcumin on anxiety, depression, and cognitive functions using various behavioral tests.
  • Results showed that LPS increased anxiety and depression while reducing learning and memory capabilities, but Adalimumab effectively mitigated these effects by reducing inflammation and regulating important biochemical markers related to cognitive function.

Article Abstract

Neurodegenerative disorders have a pathophysiology that heavily involves neuroinflammation. In this study, we used lipopolysaccharide (LPS) to create a model of cognitive impairment by inducing systemic and neuroinflammation in experimental animals. LPS was injected intraperitoneally at a dose of 0.5 mg/kg during the last seven days of the study. Adalimumab (ADA), a TNF-α inhibitor, was injected at a dose of 10 mg/kg a total of 3 times throughout the study. On the last two days of the experiment, 50 mg/kg of curcumin was administered orally as a positive control group. Open field (OF) and elevated plus maze tests (EPM) were used to measure anxiety-like behaviors. The tail suspension test (TST) was used to measure depression-like behaviors, while the novel object recognition test (NOR) was used to measure learning and memory activities. Blood and hippocampal TNF α and nitric oxide (NO) levels, hippocampal BDNF, CREB, and ACh levels, and AChE activity were measured by ELISA. LPS increased anxiety and depression-like behaviors while decreasing the activity of the learning-memory system. LPS exerted this effect by causing systemic and neuroinflammation, cholinergic dysfunction, and impaired BDNF release. ADA controlled LPS-induced behavioral changes and improved biochemical markers. ADA prevented cognitive impairment induced by LPS by inhibiting inflammation and regulating the release of BDNF and the cholinergic pathway.

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Source
http://dx.doi.org/10.1016/j.bbr.2024.114995DOI Listing

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