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首页> 外文期刊>Brain research >Microdialysis study of striatal dopaminergic dysfunctions induced by 3 MPa of nitrogen- and helium-oxygen breathing mixtures in freely moving rats.
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Microdialysis study of striatal dopaminergic dysfunctions induced by 3 MPa of nitrogen- and helium-oxygen breathing mixtures in freely moving rats.

机译:在自由活动大鼠中,由3 MPa的氮气和氦氧呼吸混合物引起的纹状体多巴胺能功能障碍的微透析研究。

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摘要

Previous studies have demonstrated opposite effects of high-pressure helium and nitrogen on extracellular dopamine (DA) levels, which may reflect disturbances on the synthesis, release or metabolic mechanisms. Intrastriatal microdialysis was used to measure the precursor (tyrosine), DA and its metabolites (DOPAC, HVA) levels under nitrogen- or helium- at pressure up to 3 MPa. Under 3 MPa of helium-oxygen breathing mixtures, the extracellular concentration of tyrosine is decreased while the extracellular concentration of DA is increased. On the contrary, nitrogen-oxygen breathing mixture at the same pressure increased extracellular tyrosine concentration and decreased DA release. Under both conditions, an increment of the DOPAC and HVA levels could be noted. Our results suggest that changes in DA release and metabolism during high-pressure helium exposure reflect the effect of the pressure per se, whereas the intrinsic effects of narcotic gases, although sensitive to pressure, would be revealed by hyperbaric nitrogen exposure.
机译:先前的研究表明,高压氦气和氮气对细胞外多巴胺(DA)含量有相反的影响,这可能反映了对合成,释放或代谢机制的干扰。纹状体内微透析用于在压力高达3 MPa的氮气或氦气下测量前体(酪氨酸),DA及其代谢产物(DOPAC,HVA)的水平。在3 MPa的氦氧呼吸混合物下,酪氨酸的细胞外浓度降低,而DA的细胞外浓度升高。相反,在相同压力下的氮气-氧气呼吸混合物增加了细胞外酪氨酸的浓度并减少了DA的释放。在这两种情况下,DOPAC和HVA的水平都会增加。我们的结果表明,高压氦气暴露期间DA释放和代谢的变化反映了压力本身的影响,而高压气体暴露会揭示麻醉气体的内在作用,尽管对压力敏感。

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