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Effect of an hyperbaric nitrogen narcotic ambience on arginine and citrulline levels, the precursor and co-product of nitric oxide, in rat striatum.

高圧窒素麻酔環境がラット線条体における一酸化窒素の前駆体および共産物であるアルギニンとシトルリンのレベルに及ぼす影響 (機械翻訳の邦題)

Medical gas research2011Vallée N, Rissoe JJ, Blatteau JE
研究デザインその他の原著論文
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記録の確認項目

研究デザイン
その他の原著論文
対象
未確定
出版年
2011
出典
doi.org
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表示あり
出版状態
有効な記録
状態確認日
2026/08/17
収集日
2026/08/03
鮮度
確認期限内
確認段階
自動処理
記録状態
公開

日本語要約(機械生成)

窒素麻酔は線条体のグルタミン酸とドーパミン濃度を低下させるが、NMDA受容体刺激ではグルタミン酸濃度を回復できないことから、その下流の神経型一酸化窒素合成酵素(nNOS)の障害が疑われた。ラット線条体のマイクロダイアリシスにより、NOの前駆体であるアルギニンと共産物であるシトルリンを測定した。加圧窒素曝露により、シトルリンは-18.9%、アルギニンは-10.4%減少した。常圧ではNMDA注入によりシトルリンは+85.6%、アルギニンは+45.7%増加したが、3MPaの窒素下ではシトルリンは変化せず、アルギニンは-51.6%減少した。前頭前皮質へのサクロフェンとKClの逆行透析は常圧でシトルリンを+30.5%増加、アルギニンを-67.4%減少させたが、窒素加圧下では有意差はなかった。窒素麻酔ではシトルリン/NO合成が低下し、人工的活性化は可能であるが、グルタミン酸低下がドーパミンとNOの減少を引き起こすと示唆された。

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抄録

Previous studies performed in the laboratory have shown that nitrogen narcosis induces a decrease in striatal glutamate and dopamine levels. Although we stimulated the N-methyl-D-aspartate (NMDA) receptor, an important glutamate receptor required for motor and locomotor activity managed by the striatum, and demonstrated that the receptor was effective when exposed to nitrogen at 3MPa, it was not possible to return the striatal glutamate level to its base values. We conclude that it was the striatopetal neurons of the glutamatergic pathways that were mainly affected in this hyperbaric syndrome, without understanding the principal reasons. Hence we sought to establish what happens in the vicinity of the plasma membrane, downstream the NMDA-Receptor, and we used the hypothesis that there could be neuronal nitric oxide synthase (nNOS) disturbances. A microdialysis study was performed in rat striatum in order to analyse levels of citrulline, the NO co-product, and arginine, the NO precursor. Those both NO metabolites were detectable with an HPLC coupled to a fluorimetric detector. Exposure to pressurized nitrogen induced a reduction in citrulline (-18.9%) and arginine (-10.4%) levels. Under the control normobaric conditions, the striatal NMDA infusion enhanced the citrulline level (+85.6%), whereas under 3 MPa of nitrogen, the same NMDA infusion did not change the citrulline level which remains equivalent to that of the baseline. The level of arginine increased (+45.7%) under normobaric conditions but a decrease occurred in pressurized nitrogen (-51.6%). Retrodialysis with Saclofen and KCl in the prefrontal cortex under normobaric conditions led to an increase in striatal levels of citrulline (+30.5%) and a decrease in arginine levels (-67.4%). There was no significant difference when nitrogen at 3MPa was added. To conclude, the synthesis of citrulline/NO is reduced in nitrogen narcosis while it seems possible to activate it artificially by infusion. We have suggested that the low glutamate levels recorded in nitrogen narcosis induced these dopamine and NO reductions in the striatum.

DOI 10.1186/2045-9912-1-16

PMID 22146244

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