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The Effect of Digestion and Drug Load on Halofantrine Absorption from Self-nanoemulsifying Drug Delivery System (SNEDDS)

机译:消化和载药量对自纳米乳化药物递送系统(SNEDDS)吸收金盏花碱的影响

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摘要

A super-saturated self-nanoemulsifying drug delivery system (super-SNEDDS), containing the poorly water-soluble drug halofantrine (Hf) at 150% of equilibrium solubility (Seq), was compared in vitro and in vivo with a conventional SNEDDS (75% of Seq) with respect to bioavailability and digestibility. Further, the effect of digestion on oral absorption of Hf from SNEDDS and super-SNEDDS was assessed by incorporation of the lipase inhibitor tetrahydrolipstatin (orlistat) into the SNEDDS. The SNEDDS contained soybean oil/Maisine 34-I (1:1), Kolliphor RH40, and ethanol at a ratio of 55:35:10, w/w percent. For the dynamic in vitro lipolysis, the precipitation of Hf at 60 min was significantly larger for the super-SNEDDS (66.8 ± 16.4%) than for the SNEDDS (18.5 ± 9.2%). The inhibition of the in vitro digestion by orlistat (1% (w/w)) lowered drug precipitation significantly for both the super-SNEDDS (36.8 ± 1.7%) and the SNEDDS (3.9 ± 0.7%). In the in vivo studies, the super-SNEDDS concept proved valid in a rat model with a significantly larger Cmax for the super-SNEDDS (964 ± 167 ng/mL) than for the SNEDDS (506 ± 112 ng/mL). The bioavailability of Hf dosed in super-SNEDDS (32.9 ± 3.6%) and SNEDDS (22.5 ± 6.3%) did not change significantly with co-administration of orlistat (45.5 ± 7.3% and 21.9 ± 6.5%, respectively). However, the pharmacokinetic parameters changed; the tmax of the super-SNEDDS (1.3 ± 0.1 h) and SNEDDS (2.8 ± 1.2 h) were significantly lower when dosed with orlistat (6.0 ± 1.3 and 6.3 ± 1.2 h, respectively). These findings suggest that the role of lipid digestion for the absorption of drugs from SNEDDS may be less important than previously thought.
机译:在体外和体内与常规SNEDDS进行了超饱和的自纳米乳化药物递送系统(super-SNEDDS)的比较,该系统包含150%的平衡溶解度(Seq)的水溶性差的药物氟替林(Hf)。生物利用度和消化率方面的百分比。此外,通过将脂酶抑制剂四氢脂抑素(奥利司他)掺入SNEDDS中来评估消化对从SNEDDS和super-SNEDDS中吸收Hf的影响。 SNEDDS包含大豆油/ Maisine 34-I(1:1),Kolliphor RH40和乙醇(重量百分比为55:35:10)。对于动态体外脂解,超级SNEDDS(66.8%±16.4%)在60分钟时的Hf沉淀明显大于SNEDDS(18.5%±9.2%)。奥利司他(1%(w / w))对体外消化的抑制作用显着降低了超级SNEDDS(36.8±1.7%)和SNEDDS(3.9±0.7%)的药物沉淀。在体内研究中,super-SNEDDS概念在大鼠模型中被证明是有效的,其超级SNEDDS(964±167 ng / mL)的Cmax明显大于SNEDDS(506±112 ng / mL)。超级SNEDDS(32.9%±3.6%)和SNEDDS(22.5%±6.3%)中施用的Hf的生物利用度与奥利司他的共同给药(分别为45.5%±7.3%和21.9%±6.5%)没有显着变化。但是,药代动力学参数发生了变化。当服用奥利司他时,super-SNEDDS(1.3±0.1h)和SNEDDS(2.8±1.2h)的tmax显着降低(分别为6.0±1.3和6.3±1.2h)。这些发现表明,脂质消化在从SNEDDS吸收药物中的作用可能没有以前想像的重要。

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