Louvain Drug Research Institute, Pharmaceutics & Drug Delivery Group, Université Catholique de Louvain, Avenue Mounier 73 B1.73.12, 1200, Brussels, Belgium.
Pharm Res. 2013 Oct;30(10):2694-705. doi: 10.1007/s11095-013-1094-4. Epub 2013 Jun 6.
We aimed to assess the fate of β-arteether lipid-based drug delivery systems (AE-LBDDS) in terms of resistance to lipolysis and permeation across intestinal cells.
AE-LBDDS contained Tween 80 or Cremophor EL as surfactants, ethanol, Maisine 35-1 and vegetable oil. The solubilization behavior of AE was investigated during dynamic in vitro lipolysis. The permeation of AE-LBDDS was evaluated using Caco-2, HT29-MTX and M cell monolayers.
A higher level of AE precipitation was observed for formulations containing Cremophor EL (30%) compared to formulations containing Tween 80 (10%) after lipolysis. However, rapid re-dissolution of the precipitated AE from LBDDS containing Cremophor EL in the intestinal biorelevant media was observed. The transport of AE loaded in LBDDS was enhanced in comparison to that of free drug due to the increased AE solubility. The apparent permeability of all AE-LBDDS across Caco-2 cell monolayers was approximately 3.10(-6) cm/s. A decrease in the permeability was observed at 4°C. M cells did not influence the transport of AE-LBDDS, and mucus decreased AE permeability when formulated with Tween 80. Furthermore, AE is not a P-glycoprotein substrate.
LBDDS that are partly resistant to in vitro lipolysis significantly increased the transport of AE across intestinal cell monolayers.
我们旨在评估β-青蒿琥酯脂质体给药系统(AE-LBDDS)在抵抗脂解和跨肠细胞渗透方面的命运。
AE-LBDDS 含有吐温 80 或 Cremophor EL 作为表面活性剂、乙醇、Maisine 35-1 和植物油。在动态体外脂解过程中研究了 AE 的溶解行为。使用 Caco-2、HT29-MTX 和 M 细胞单层评估 AE-LBDDS 的渗透。
在脂解后,含有 Cremophor EL 的制剂中观察到比含有吐温 80 的制剂中 AE 沉淀水平更高(约 30%)。然而,在含有 Cremophor EL 的 LBDDS 中观察到沉淀的 AE 迅速在肠生物相关介质中重新溶解。与游离药物相比,负载在 LBDDS 中的 AE 的转运得到增强,因为 AE 的溶解度增加。与游离药物相比,所有 AE-LBDDS 跨 Caco-2 细胞单层的表观渗透系数约为 3.10(-6)cm/s。在 4°C 时观察到渗透系数降低。M 细胞对 AE-LBDDS 的转运没有影响,当与吐温 80 形成制剂时,粘液会降低 AE 的渗透性。此外,AE 不是 P-糖蛋白的底物。
部分抵抗体外脂解的 LBDDS 显著增加了 AE 跨肠细胞单层的转运。