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Nitrous oxide (NO) induces rapid and durable antidepressant effects. The cellular and circuit mechanisms mediating this process are not known. Here we find that a single dose of inhaled NO induces rapid and specific activation of layer V (L5) pyramidal neurons in the cingulate cortex of rodents exposed to chronic stress conditions. NO-induced L5 activation rescues a stress-associated hypoactivity state, persists following exposure, and is necessary for its antidepressant-like activity. Although NMDA-receptor antagonism is believed to be a primary mechanism of action for NO, L5 neurons activate even when NMDA-receptor function is attenuated through both pharmacological and genetic approaches. By examining different molecular and circuit targets, we identify NO-induced inhibition of calcium-sensitive potassium (SK2) channels as a key molecular interaction responsible for driving specific L5 activity along with ensuing antidepressant-like effects. These results suggest that NO-induced L5 activation is crucial for its fast antidepressant action and this effect involves novel and specific molecular actions in distinct cortical cell types.
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http://dx.doi.org/10.1038/s41467-025-57951-y | DOI Listing |
Eur J Anaesthesiol
September 2025
From the Department of Anaesthesiology and Pain Medicine, Asan Medical Centre, University of Ulsan College of Medicine, Seoul, Republic of Korea (HJ, W-JK, SK, S-SC), Department of Anaesthesiology and Pain Medicine, Shihwa Medical Centre, Siheung, Republic of Korea (J-YJ), and Department of Anaesthe
Background: Emergence agitation is common after nasal surgery under general anaesthesia. Remimazolam, a novel ultra-short-acting benzodiazepine, allows haemodynamic stability and prompt postoperative recovery, but the specific impact of remimazolam on emergence agitation is not well understood.
Objectives: The primary aim of this study was to compare the effects of remimazolam-based total intravenous anaesthesia (TIVA) and sevoflurane-based volatile induction and maintenance of anaesthesia (VIMA) on the occurrence of emergence agitation.
Front Plant Sci
August 2025
Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Key Laboratory of Crop Physiology and Ecology, Ministry of Agriculture and Rural Affairs of China, Beijing, China.
Simultaneously enhancing the crop yield and reducing nitrous oxide (NO) emissions presents a critical challenge in sustainable agriculture. The application of nitrogen (N) fertilizer is a key strategy to enhance crop yield. However, conventional N application practices often lead to excessive soil N accumulation, insufficient crop N uptake and elevated greenhouse gas (GHG) emissions.
View Article and Find Full Text PDFBMJ Neurol Open
September 2025
Wolfson Institute of Population Health, Queen Mary University of London, Centre for Preventive Neurology, London, England, UK.
Background: Nitrous oxide (N₂O)-related neurotoxicity is a significant public health concern among young people in the UK. Recognition necessitates timely diagnosis, abstinence from N₂O consumption and replacement of vitamin B12, usually via intramuscular (IM) hydroxocobalamin. This service development project evaluated a self-injection programme (SIP) compared with a nurse-led approach, within an established ambulatory care pathway, with the aim of improving treatment adherence and completion.
View Article and Find Full Text PDFJ Am Chem Soc
September 2025
Institute of Integrated Research, Institute of Science Tokyo, 4259 Nagatsuta, Midori-ku, Yokohama 226-8501, Japan.
Upgrading methane to value-added chemicals is significant but still challenging. Well-designed catalysts are required to activate methane. Extensive efforts have been dedicated to the catalytic conversion of methane over transition-metal-containing catalysts.
View Article and Find Full Text PDFNat Commun
September 2025
Institute of Agrobiological Sciences, National Agriculture and Food Research Organization (NARO), Tsukuba, Ibaraki, Japan.
Soybeans fix atmospheric N through symbiosis with rhizobia. The relationship between rhizobia and soybeans, particularly those with high nitrous oxide (NO)-reducing (NOR) activities, can be leveraged to reduce NO emissions from agricultural soils. However, inoculating soybeans with these rhizobia under field conditions often fails because of the competition from indigenous rhizobia that possess low or no NOR activity.
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