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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >The oral absorption of phospholipid prodrugs: In vivo and in vitro mechanistic investigation of trafficking of a lecithin-valproic acid conjugate following oral administration
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The oral absorption of phospholipid prodrugs: In vivo and in vitro mechanistic investigation of trafficking of a lecithin-valproic acid conjugate following oral administration

机译:磷脂前药的口服吸收:口服后卵磷脂-丙戊酸结合物的转运的体内和体外机理研究

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The purpose of this study was to evaluate the oral absorption characteristics of a phospholipid-drug conjugate, comprising direct conjugation between the lecithin and the drug moiety through the sn-2 position. We investigated the mechanisms involved with the trafficking of this conjugate following oral administration in the gastrointestinal (GI) lumen, within the enterocyte and further. A phospholipid-valproic acid conjugate (DP-VPA) was utilized as a model molecule. The oral absorption of this conjugate in rats was investigated following administration in long (LCT) vs. medium (MCT) chain triglyceride formulations, and in the postprandial vs. fasted state. Oral administration within the LCT solution caused more than a 3-fold increase in DP-VPA bioavailability in comparison to the MCT solution. Moreover, a significant food effect was evident for DP-VPA. Hence, we evaluated the lymphatic transport of DP-VPA in mesenteric lymph duct cannulated freely moving rats. Sixty percent of the absorbed DP-VPA was associated with lymphatic transport. Similar DP-VPA absorption was obtained in secretory type 11 PLA(2) knockout mice (C57BL/6) and in control mice (BALB/c). Moreover, nil DP-VPA degradation in serum and very low (4.8%) degradation by bee venom PLA2 in vitro were obtained. In conclusion, direct conjugation between the drug and the phospholipid produces a complex having unique absorption properties that include: (1) a stable complex that does not undergo degradation in the GI tract; (2) permeation through the gut wall and entering intact to the enterocyte; and (3) association with chylomicron in the enterocyte and reaching the systemic circulation via the lymphatic route. These unique properties may be of interest in drug delivery. (C) 2007 Elsevier B.V. All rights reserved.
机译:这项研究的目的是评估磷脂-药物偶联物的口服吸收特性,包括通过sn-2位置在卵磷脂和药物部分之间直接偶联。我们研究了在胃肠道(GI)内腔,肠内细胞内以及进一步口服给药后与这种结合物的运输有关的机制。磷脂-丙戊酸缀合物(DP-VPA)被用作模型分子。在长链(LCT)对中链(MCT)甘油三酸酯制剂以及餐后对禁食状态下给药后,研究了该缀合物在大鼠中的口服吸收。与MCT溶液相比,LCT溶液内的口服给药导致DP-VPA生物利用度提高了3倍以上。此外,DP-VPA的显着食物效果也很明显。因此,我们评估了DP-VPA在肠系膜淋巴管插管的自由移动大鼠中的淋巴运输。吸收的DP-VPA的60%与淋巴运输有关。在分泌型11 PLA(2)敲除小鼠(C57BL / 6)和对照小鼠(BALB / c)中获得了类似的DP-VPA吸收。此外,在体外血清中无DP-VPA降解,而由蜂毒PLA2降解则非常低(4.8%)。总之,药物与磷脂之间的直接结合产生了具有独特吸收特性的复合物,其中包括:(1)一种稳定的复合物,在胃肠道中不发生降解; (2)通过肠壁渗透并完整进入肠上皮细胞; (3)与肠细胞中的乳糜微粒结合并通过淋巴途径到达体循环。这些独特的性质可能在药物递送中令人感兴趣。 (C)2007 Elsevier B.V.保留所有权利。

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