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Gamma-Hydroxybutyrate: Toxicokinetics, Toxicodynamics and Treatment Strategies

Gamma-Hydroxybutyrate: Toxicokinetics, Toxicodynamics and Treatment Strategies
γ-羟基丁酸盐:毒代动力学、毒效动力学和治疗策略
批准号:
8669954
负责人:
Marilyn E Morris
金额:
$33.51万
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-04-01 至 2017-06-30

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中文摘要
翻译
描述(由申请人提供):?-羟丁酸盐(GHB),一种常见的滥用药物,通常在夜总会和“狂欢”中与酒精一起摄入,或者作为毒品性侵犯的一种手段。高娱乐性剂量和过量之间的范围很窄,因此急性中毒和过量是常见的。在与GHB中毒有关的死亡的临床报告中,呼吸抑制和呼吸停止是主要的死亡原因。对GHB过量的有效药物治疗尚未确定。长期目标是确定治疗策略,以改善单独或与乙醇一起摄入GHB中毒时与GHB有关的发病率和死亡率。我们曾报道,由于单羧酸转运体(MCT)的运输,GHB在肾脏中发生浓度依赖性重吸收,并且MCT抑制剂(如l -乳酸)的使用可以增加GHB的肾脏和总清除率,降低脑外细胞液中GHB的浓度,并减少大鼠的睡眠时间。这项竞争性更新的目的是确定MCT抑制作为GHB过量治疗策略的治疗潜力,单独或与其他潜在有效策略联合使用,使用临床相关的呼吸抑制终点。我们的具体目标是:(1)GHB诱导的呼吸抑制的特征和确定治疗策略,以改善GHB过量时的呼吸测量。本研究的目的是通过选择性神经递质受体拮抗剂来确定ghb诱导呼吸抑制的机制。(2)确定口服GHB过量的有效治疗策略。我们假设MCT对从肠道吸收GHB很重要,MCT抑制剂会降低GHB的生物利用度,并在口服GHB中毒后增加其肾脏和总清除率。(3) GHB-酒精相互作用的特征和确定口服GHB/酒精过量的有效治疗策略。我们假设高浓度乙醇会增强GHB诱导的呼吸抑制,并会增加GHB中毒导致的死亡风险。(4)多次暴露后GHB的毒动学和毒理学特征,并确定有效的治疗策略。我们的假设是,过量使用GHB导致mct在组织中的表达增加,导致转运和处置改变,以及对呼吸抑制的耐受性。本提案中的研究将评估口服和静脉给药MCT抑制剂的使用,单独使用或与神经递质受体拮抗剂联合使用,以改善呼吸测量并预防GHB过量致死。本研究具有重要意义,因为它解决了毒理学效应、呼吸抑制、介导GHB死亡,并将这一终点应用于临床相关条件下。通过结合不同作用机制的治疗策略,本研究将确定哪些药物干预具有治疗危及生命的GHB过量的治疗潜力。
英文摘要
DESCRIPTION (provided by applicant): ?-Hydroxybutyrate (GHB), a popular drug of abuse, is commonly ingested with alcohol at nightclubs and "raves", or as a means of drug-facilitated sexual assault. The range between high recreational doses and overdose is narrow, so that acute intoxications and overdoses are common. Respiratory depression and arrest represent the major cause of death in clinical reports of fatality associated with GHB intoxication. Effective pharmacological treatment for GHB overdoses has yet to be identified. The long-term objective is to identify treatment strategies that improve rates of morbidity and mortality associated with GHB intoxication, when GHB is ingested alone or with ethanol. We have reported that GHB undergoes concentration-dependent reabsorption in the kidney, due to transport by monocarboxylate transporters (MCTs), and that the administration of MCT inhibitors, such as L-lactate, can increase the renal and total clearances of GHB, decrease brain extracellular fluid concentrations of GHB, and decrease sleep time in rats. The purpose of this competing renewal is to determine the therapeutic potential of MCT inhibition as a treatment strategy for GHB overdose, alone and in combination with other potentially effective strategies, using the clinically relevant endpoint of respiratory depression. Our specific aims are: (1) Characterization of GHB-induced respiratory depression and identification of treatment strategies that improve measures of respiration during GHB overdose. The purpose of this aim is to identify the mechanism of GHB-induced respiratory depression using selective neurotransmitter receptor antagonists. (2) Identification of effective treatment strategies for oral GHB overdoses. We hypothesize that MCTs are important for the absorption of GHB from the intestine, and that MCT inhibitors will decrease the bioavailability of GHB, as well as increasing its renal and total clearances following oral GHB intoxication. (3) Characterization of the GHB-alcohol interaction and identification of effective treatment strategies for oral GHB/alcohol overdoses. We hypothesize that high concentrations of ethanol will potentiate GHB-induced respiratory depression, and will increase the risk of fatality due to GHB intoxication. (4) Characterization of the toxicokinetics and toxicodynamics of GHB after multiple exposures and identification of effective treatment strategies. Our hypothesis is that binge use of GHB results in both increased expression of MCTs in tissues leading to altered transport and disposition, as well as tolerance to respiratory depression. Studies in this proposal will evaluate the use of oral and IV administered MCT inhibitors, alone or combined with neurotransmitter receptor antagonists, to improve measures of respiration and prevent fatality with GHB overdoses. This research is significant as it addresses the toxicodynamic effect, respiratory depression, mediating GHB fatality, and applies this endpoint under clinically relevant conditions. By combining treatment strategies with different mechanisms of action, this research will determine which pharmacological interventions have therapeutic potential to treat life-threatening GHB overdoses.
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Gamma-hydroxybutyrate: Toxicokinetics, Toxicodynamics and Treatment Strategies
Gamma-Hydroxybutyrate: Toxicokinetics, Toxicodynamics and Treatment Strategies
Gamma-Hydroxybutyrate: Toxicokinetics, Toxicodynamics and Treatment Strategies
Gamma-hydroxybutyrate: Toxicokinetics, Toxicodynamics and Treatment Strategies
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