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Solid lipid nanoparticles incorporating melatonin as new model for sustained oral and transdermal delivery systems

机译:结合褪黑激素的固体脂质纳米颗粒作为持续口服和透皮给药系统的新模型

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Introduction: melatonin (MT) is a hormone produced by the pineal gland at night, involved in the regulation of circadian rhythms. For clinical purposes, exogenous MT administration should mimic the typical nocturnal endogenous MT levels, but its p harm acoki netics is not favourable due to short half-life of elimination. Aim of this study is to examine pharmacolkinetics of MT incorporated in solid lipid nanoparticles (SLN), administered by oral and transdermal route. SLN peculiarity consists in the possibility of acting as a reservoir, permitting a constant and prolonged release of the drugs included. In 7 healthy subjects SLN incorporating MT 3 mg (MT-SLN-O) were orally administered at 8.30 a.m. MT 3 mg in standard formulation (MT-S) was then administered to the same subjects after one week at 8.30 a.m. as controls. In 10 healthy subjects SLN incorporating MT were administered transdermally (MT-SLN-TD) by the application of a patch at 8.30 a.m. for 24 hours. Compared to MT-S, Tmax after MT-SLN-O administration resulted delayed of about 20 minutes, while mean AUC and mean half life of elimination was significantly higher (respectively 169944.7 +/- 64954.4 pg/ml x hour vs. 85148.4 +/- 50642.6 pg/ml x hour, p = 0.018 and 93.1 +/- 37.1 min vs. 48.2 +/- 8.9 min, p = 0.009). MT absorption and elimination after MT-SLN-TD demonstrated to be slow (mean half life of absorption: 5.3 +/- 1.3 hours; mean half life of elimination: 24.6 +/- 12.0 hours), so MT plasma levels above 50 pg/ml were maintained for at least 24 hours. This study demonstrates a significant absorption of MT incorporated in SLN, with detectable plasma level achieved for several hours in particular after transdermal administration. As dosages and concentrations of drugs included in SLN can be varied, different plasma level profile could be obtained, so disclosing new possibilities for sustained delivery systems.
机译:简介:褪黑激素(MT)是夜间由松果腺产生的一种激素,参与昼夜节律的调节。出于临床目的,外源性MT给药应模仿典型的夜间内源性MT水平,但由于消除半衰期短,其药害学方面的作用并不理想。这项研究的目的是检查通过口服和经皮途径给药的固体脂质纳米颗粒(SLN)中所含MT的药代动力学。 SLN的特殊性在于它可以充当储存器,从而允许持续不断地释放所含药物。在7名健康受试者中,在上午8.30口服了掺入MT 3 mg的SLN(MT-SLN-O)。然后在上午8.30一周后将相同标准制剂(MT-S)的MT 3 mg给予相同的受试者作为对照。在10名健康受试者中,通过在上午8.30点应用贴剂24小时,透皮施用掺入MT的SLN(MT-SLN-TD)。与MT-S相比,MT-SLN-O给药后的Tmax延迟了约20分钟,而平均AUC和消除的平均半衰期则明显更长(分别为169944.7 +/- 64954.4 pg / ml x小时vs. 85148.4 + / -50642.6 pg / ml x小时,p = 0.018和93.1 +/- 37.1分钟,而48.2 +/- 8.9分钟,p = 0.009)。 MT-SLN-TD后MT的吸收和清除被证明是缓慢的(平均吸收半衰期:5.3 +/- 1.3小时;平均清除半衰期:24.6 +/- 12.0小时),因此MT血浆水平高于50 pg /维持毫升至少24小时。这项研究表明掺入SLN中的MT具有显着的吸收作用,尤其是经皮给药后数小时可达到血浆水平。由于SLN中包含的药物剂量和浓度可以变化,因此可以获得不同的血浆水平曲线,因此揭示了持续输送系统的新可能性。

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