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Nikethamide affects inspiratory neuron discharge in the nucleus retrofacialis medial region in brain slices from neonatal rats 被引量:2
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作者 Zhibin Qian Mingli Ji Zhonghai Wu 《Neural Regeneration Research》 SCIE CAS CSCD 2010年第4期287-290,共4页
BACKGROUND: Nikethamide, a respiratory center stimulant, is widely used in China. However, its effects on the central nervous system and medullary respiratory center remain poorly understood. OBJECTIVE: To investiga... BACKGROUND: Nikethamide, a respiratory center stimulant, is widely used in China. However, its effects on the central nervous system and medullary respiratory center remain poorly understood. OBJECTIVE: To investigate the influence of nikethamide on inspiratory neuron discharge in the medial region of the nucleus retrofacialis in neonatal rats, based on the observations addressing rhythmic respiratory discharge generated by the basic medullary respiratory center and various respiration neuron discharges in brain slices. DESIGN, TIME AND SETTING: A controlled, observational study utilizing in vitro neuroelectrophysiology was performed at the Department of Physiology in Southern Medical University between September and December in 2007. MATERIALS: Nikethamide was purchased from Sigma, USA; BL-420E biological signal collection and manaclement system was provided by Chengdu TME Technology, China.METHODS: Isolated medulla-spinal cord preparations were collected from neonatal Sprague Dawley rats, aged 1-3 days. Tissues were divided to include the medial region of the nucleus retrofacialis, ventral respiratory, and dorsal respiratory groups. Subsequently, modified Kreb's solution and 5 μg/mL nikethamide-containing modified Kreb's solution were consecutively perfused into the medial region of the nucleus retrofacialis in neonatal rat brain slices. MAIN OUTCOME MEASURES: Hypoglossal nerve root respiratory-related rhythmic discharge activities and inspiratory neuron discharges were recorded with an adsorption electrode and microelectrode. RESULTS Nikethamide resulted in prolonged inspiratory neuron discharge time, shortened respiratory cycle and expiratory time. Nikethamide intervention resulted in enhanced integral amplitude of some inspiratory neurons with no changes in discharge frequency or increased discharge frequency in remaining inspiratory neurons with no changes in integral amplitude. CONCLUSION: Nikethamide excites inspiratory neurons in the basic rhythmic respiration and medullary respiratory center, in addition to increased inspiratory neuron and neural network excitability. 展开更多
关键词 nikethamide medial region of nucleus retrofacialis brainstem slices inspiratory neurons
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尼克刹米及其代谢产物的气相色谱/质谱法分析
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作者 侯一斌 《中国法医学杂志》 CSCD 1991年第2期87-89,共3页
尼克刹米(即可拉明)为中枢兴奋药物,属于滥用药物之列,也是体育比赛的违禁药物。因此,血和尿中尼克刹米的检验在法庭科学和医学领域中都很有意义。Shaev 和 Seme-nov 报导了用气相色谱法检验运动员尿中的尼克刹米等兴奋剂。但是,由于尼... 尼克刹米(即可拉明)为中枢兴奋药物,属于滥用药物之列,也是体育比赛的违禁药物。因此,血和尿中尼克刹米的检验在法庭科学和医学领域中都很有意义。Shaev 和 Seme-nov 报导了用气相色谱法检验运动员尿中的尼克刹米等兴奋剂。但是,由于尼克刹米在体内代谢迅速其代谢产物的检验更有实际价值。 展开更多
关键词 nikethamide NICOTINAMIDE METABOLITE GC/MS
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