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首页> 外文期刊>Pediatric dentistry >A comparison of 3 routes of flumazenil administration to reverse benzodiazepine-induced desaturation in an animal model.
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A comparison of 3 routes of flumazenil administration to reverse benzodiazepine-induced desaturation in an animal model.

机译:在动物模型中比较氟马西尼3种途径逆转苯并二氮杂pine诱发的去饱和的途径。

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摘要

PURPOSE: The purpose of this study was to examine intralingual (IL) and submucosal (SM) delivery offlumazenil as viable alternatives to immediate intravenous (IV) administration for reversing benzodiazepine sedation in an animal model. METHODS: A dog animal model was chosen based upon comparable body weight to children (12-17 kg) and the ease of oral access in this species. Research design was a nonrandomized matched pair study. This type of "before-and-after study" allowed the dogs to receive 3 different routes of flumazenil administration (IV, IL, and SM) following an initial dose of midazolam (0.5 mg/kg IV). Blood samples were obtained (at 0, 2, 4, 8, 15, and 30 minutes) for high performance liquid chromatography (HPLC) analysis of flumazenil and midazolam, and oxygen saturation values were recorded. RESULTS: Both IL and SM delivery of flumazenil were determined to be viable alternatives to immediate IV administration for reversing benzodiazepine-induced oxygen saturation (SaO2) desaturation. For flumazenil to be able to reverse the SaO2 desaturation, the plasma levels must be greater than 5 ng/ml, which was exceeded by IL and SM drug delivery. CONCLUSION: In a benzodiazepine-induced desaturation, the submucosal and intralingual routes are viable alternatives to intravenous administration of flumazenil in an animal model.
机译:目的:本研究的目的是检查氟马西尼的舌内(IL)和粘膜下(SM)递送,作为在动物模型中逆转苯二氮卓镇静作用的立即静脉内(IV)给药的可行替代方案。方法:根据与儿童(12-17公斤)可比的体重和该物种的口腔通畅性,选择狗的动物模型。研究设计是非随机配对研究。这种类型的“前后研究”使咪达唑仑的初始剂量(0.5 mg / kg静脉注射)可使狗接受3种不同的氟马西尼给药途径(IV,IL和SM)。获得血样(分别在0、2、4、8、15和30分钟时)用于氟马西尼和咪达唑仑的高效液相色谱(HPLC)分析,并记录氧饱和度值。结果:氟马西尼的IL和SM递送均被确定是立即静脉注射以逆转苯二氮卓诱导的氧饱和度(SaO2)脱饱和的可行替代方法。为了使氟马西尼能够逆转SaO2的去饱和,血浆水平必须大于5 ng / ml,这是IL和SM药物递送所超过的。结论:在苯二氮卓诱导的去饱和中,粘膜下和舌内途径是在动物模型中静脉注射氟马西尼的可行替代方法。

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