Matches in SemOpenAlex for { <https://semopenalex.org/work/W2890746196> ?p ?o ?g. }
- W2890746196 endingPage "105" @default.
- W2890746196 startingPage "95" @default.
- W2890746196 abstract "When faced with stressful conditions, people with a tendency toward impulsive aggression may suddenly hurt others. We have previously shown that the blockade of NMDA receptors (NMDARs) within the ventral hippocampus (VH) produces anti-aggressive effects. However, little is known about the mechanism for tamping down stress-provoked attack behavior. Here, we report that expression of brain-derived neurotrophic factor (BDNF) after inhibition of NMDARs in the VH is required for blunting stress-provoked attack behavior in post-weaning socially isolated mice. Administration of NMDAR antagonist MK-801 decreased the phosphorylated eukaryotic elongation factor 2 (p-eEF2) and increased BDNF expression in the VH. Infusion of eEF2 kinase inhibitor NH125 to the VH decreased attack behavior and increased BDNF expression. Knockdown of BDNF in the VH blocked the anti-aggressive effect of MK-801 and NH125. Furthermore, MK-801 rapidly increased the activity of protein phosphatase 2A (PP2A). Intra-VH infusion of PP2A inhibitor okadaic acid blocked the anti-aggressive effects of MK-801. These results suggest that blockade of NMDAR reduces attack behavior through increasing PP2A activity leading to dephosphorylation of eEF2 and an increase in BDNF expression. Our findings indicate that the enhancement of BDNF expression is beneficial for preventing impulsive aggression in at-risk beings." @default.
- W2890746196 created "2018-09-27" @default.
- W2890746196 creator A5016808498 @default.
- W2890746196 creator A5030582950 @default.
- W2890746196 creator A5040551405 @default.
- W2890746196 date "2018-12-01" @default.
- W2890746196 modified "2023-10-10" @default.
- W2890746196 title "Mechanism underlying NMDA blockade-induced inhibition of aggression in post-weaning socially isolated mice" @default.
- W2890746196 cites W1560901632 @default.
- W2890746196 cites W1590162153 @default.
- W2890746196 cites W1620605846 @default.
- W2890746196 cites W1837565197 @default.
- W2890746196 cites W1898862291 @default.
- W2890746196 cites W1914381346 @default.
- W2890746196 cites W1964359453 @default.
- W2890746196 cites W1970448316 @default.
- W2890746196 cites W1975458654 @default.
- W2890746196 cites W1976625370 @default.
- W2890746196 cites W1976688415 @default.
- W2890746196 cites W1978930750 @default.
- W2890746196 cites W1981097208 @default.
- W2890746196 cites W1989095400 @default.
- W2890746196 cites W1993682611 @default.
- W2890746196 cites W1994045297 @default.
- W2890746196 cites W1994345197 @default.
- W2890746196 cites W1995221679 @default.
- W2890746196 cites W1995630439 @default.
- W2890746196 cites W1999600703 @default.
- W2890746196 cites W1999756792 @default.
- W2890746196 cites W1999810166 @default.
- W2890746196 cites W2009173112 @default.
- W2890746196 cites W2009244271 @default.
- W2890746196 cites W2009353293 @default.
- W2890746196 cites W2010314493 @default.
- W2890746196 cites W2013839872 @default.
- W2890746196 cites W2015948349 @default.
- W2890746196 cites W2019243277 @default.
- W2890746196 cites W2021199403 @default.
- W2890746196 cites W2021235911 @default.
- W2890746196 cites W2024684743 @default.
- W2890746196 cites W2026466461 @default.
- W2890746196 cites W2027304084 @default.
- W2890746196 cites W2032739515 @default.
- W2890746196 cites W2033919519 @default.
- W2890746196 cites W2036180008 @default.
- W2890746196 cites W2038122755 @default.
- W2890746196 cites W2042422960 @default.
- W2890746196 cites W2043867072 @default.
- W2890746196 cites W2047038893 @default.
- W2890746196 cites W2051922817 @default.
- W2890746196 cites W2052830386 @default.
- W2890746196 cites W2060644077 @default.
- W2890746196 cites W2065254519 @default.
- W2890746196 cites W2065679484 @default.
- W2890746196 cites W2073287346 @default.
- W2890746196 cites W2073731825 @default.
- W2890746196 cites W2077674356 @default.
- W2890746196 cites W2078678809 @default.
- W2890746196 cites W2079555292 @default.
- W2890746196 cites W2081817618 @default.
- W2890746196 cites W2086319339 @default.
- W2890746196 cites W2087002084 @default.
- W2890746196 cites W2089351762 @default.
- W2890746196 cites W2092246783 @default.
- W2890746196 cites W2094530511 @default.
- W2890746196 cites W2097243895 @default.
- W2890746196 cites W2099416285 @default.
- W2890746196 cites W2099717181 @default.
- W2890746196 cites W2109851824 @default.
- W2890746196 cites W2110037546 @default.
- W2890746196 cites W2112122107 @default.
- W2890746196 cites W2113188248 @default.
- W2890746196 cites W2117055846 @default.
- W2890746196 cites W2121935766 @default.
- W2890746196 cites W2122366132 @default.
- W2890746196 cites W2132249192 @default.
- W2890746196 cites W2137155095 @default.
- W2890746196 cites W2151264766 @default.
- W2890746196 cites W2157255715 @default.
- W2890746196 cites W2159692236 @default.
- W2890746196 cites W2162737016 @default.
- W2890746196 cites W2204122304 @default.
- W2890746196 cites W2413515606 @default.
- W2890746196 cites W2470164629 @default.
- W2890746196 cites W2508093536 @default.
- W2890746196 cites W2556544290 @default.
- W2890746196 cites W2596690433 @default.
- W2890746196 cites W2728773201 @default.
- W2890746196 cites W2741363039 @default.
- W2890746196 cites W2783894827 @default.
- W2890746196 cites W2804562206 @default.
- W2890746196 cites W2845784957 @default.
- W2890746196 cites W573876062 @default.
- W2890746196 doi "https://doi.org/10.1016/j.neuropharm.2018.09.019" @default.
- W2890746196 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30243915" @default.
- W2890746196 hasPublicationYear "2018" @default.
- W2890746196 type Work @default.
- W2890746196 sameAs 2890746196 @default.