首页> 美国卫生研究院文献>AAPS PharmSci >Rapid Delivery of Diazepam from Supersaturated Solutions Prepared Using Prodrug/Enzyme Mixtures: Toward Intranasal Treatment of Seizure Emergencies
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Rapid Delivery of Diazepam from Supersaturated Solutions Prepared Using Prodrug/Enzyme Mixtures: Toward Intranasal Treatment of Seizure Emergencies

机译:从使用前药/酶混合物制备的过饱和溶液中快速递送地西p:以鼻腔治疗癫痫发作

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摘要

Current treatments for seizure emergencies, such as status epilepticus, include intravenous or rectal administration of benzodiazepines. While intranasal delivery of these drugs is desirable, the small volume of the nasal cavity and low drug solubility pose significant difficulties. Here, we prepared supersaturated diazepam solutions under physiological conditions and without precipitation, using a prodrug/enzyme system. Avizafone, a peptide prodrug of diazepam, was delivered with—Aspergillus oryzae (A.O.) protease, an enzyme identified from a pool of hydrolytic enzymes in assay buffer, pH 7.4 at 32°C. This enzyme converted avizafone to diazepam at supersaturated concentrations. In vitro permeability studies were performed at various prodrug/enzyme ratios using Madin-Darby canine kidney II-wild type (MDCKII-wt) monolayers, a representative model of the nasal epithelium. Monolayer integrity was examined using TEER measurement and the lucifer yellow permeability assay. Prodrug/drug concentrations were measured using HPLC. Enzyme kinetics with avizafone-protease mixtures revealed KM = 1,501 ± 232 μM and Vmax = 1,369 ± 94 μM/s. Prodrug-protease mixtures, when co-delivered apically onto MDCKII-wt monolayers, showed 2–17.6-fold greater diazepam flux (S = 1.3–15.3) compared to near-saturated diazepam (S = 0.7). Data for prodrug conversion upstream (apical side) and drug permeability downstream (basolateral side) fitted reasonably well to a previously developed in vitro two compartment pharmacokinetic model. Avizafone-protease mixtures resulted in supersaturated diazepam in less than 5 min, with the rate and extent of supersaturation determined by the prodrug/enzyme ratio. Together, these results suggest that an intranasal avizafone-protease system may provide a rapid and alternative means of diazepam delivery.Electronic supplementary materialThe online version of this article (doi:10.1208/s12248-014-9596-5) contains supplementary material, which is available to authorized users.
机译:当前用于癫痫发作紧急情况例如癫痫持续状态的治疗包括静脉内或直肠施用苯二氮卓类药物。尽管需要鼻内递送这些药物,但是鼻腔的小体积和低的药物溶解度带来了很大的困难。在这里,我们使用前药/酶系统在生理条件下且没有沉淀的条件下制备了过饱和地西epa溶液。地西epa的肽前药阿维沙芬与米曲霉(A.O.)蛋白酶一起递送,米曲霉(A.O.)蛋白酶是一种在32°C下从pH 7.4的测定缓冲液中的水解酶库中鉴定出来的酶。该酶以过饱和浓度将阿维沙酮转化为地西m。体外通透性研究使用Madin-Darby犬肾II型野生型(MDCKII-wt)单层(鼻上皮的代表性模型)以各种前体药物/酶比率进行。使用TEER测量和萤光黄渗透性测定法检查单层完整性。使用HPLC测量前药/药物浓度。 avizafone-蛋白酶混合物的酶动力学显示KM = 1,501±232μM和Vmax = 1,369±94μM/ s。当将前药-蛋白酶混合物顶峰共递送至MDCKII-wt单分子层时,与近饱和地西epa(S showed = 0.7)相比,前地西epa通量(S = 1.3-15.3)大2–17.6倍。上游前药转化(顶侧)和下游药物通透性(基底外侧)的数据与先前开发的体外两室药代动力学模型相当吻合。阿维沙芬蛋白酶混合物在不到5分钟的时间内产生了过饱和的地西epa,过饱和的速率和程度取决于前药/酶的比例。总之,这些结果表明鼻内阿扎酮-蛋白酶系统可能提供快速且替代地西epa给药的方法。电子补充材料本文的在线版本(doi:10.1208 / s12248-014-9596-5)包含补充材料,可供授权用户使用。

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