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首页> 外文期刊>Pharmaceutical research >Development of novel lipophilic derivatives of DADLE (leucine enkephalin analogue): intestinal permeability characateristics of DADLE derivatives in rats.
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Development of novel lipophilic derivatives of DADLE (leucine enkephalin analogue): intestinal permeability characateristics of DADLE derivatives in rats.

机译:DADLE(亮氨酸脑啡肽类似物)的新型亲脂性衍生物的开发:DADLE衍生物在大鼠中的肠通透性特征。

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PURPOSE: The objective of this study is to examine the intestinal permeability of novel lipophilic derivatives of DADLE (Tyr-D-Ala-Gly-Phe-D-Leu), an enkephalin analogue, using isolated rat intestinal membranes. METHODS: The novel lipophilic derivatives of DADLE were synthesized by chemical modification with various fatty acids at the C terminus. The pharmacological activities of these DADLE derivatives were assessed by a hot plate test. The intestinal permeability of these derivatives was estimated by the in vitro Ussing chamber method. RESULTS: We obtained four different DADLE derivatives including acetyl-DADLE (DADLE-C2), butyryl-DADLE (DADLE-C4), caproyl-DADLE (DADLE-C6), and caprylyl-DADLE (DADLE-C8). All the derivatives of DADLE had at least 75% of the activity of native DADLE, suggesting that chemical modification of DADLE at the C terminus did not markedly affect its pharmacological activity. These DADLE derivatives were more stable than native DADLE in jejunal and colonic homogenates. A "bell-shaped" profile was observed between the apparent permeability coefficients (Papp) of DADLE derivatives and lipophilicity. In particular, DADLE-C4 had the greatest permeability characteristics across the intestinal membrane of the acyl derivatives studied in this experiment. The permeability of DADLE-C4 across the jejunal membrane was further improved in the presence of puromycin, amastatin, and sodium glycocholate (NaGC), all at a concentration of 0.5 mM. CONCLUSIONS: We suggest that the combination of chemical modification with butyric acid and the application of a protease inhibitor are effective for improving the absorption of DADLE across the intestinal membrane.
机译:目的:本研究的目的是使用分离的大鼠肠膜来检查脑啡肽类似物DADLE(Tyr-D-Ala-Gly-Phe-D-Leu)的新型亲脂性衍生物的肠通透性。方法:通过化学修饰在C末端合成DADLE的新型亲脂性衍生物。这些DADLE衍生物的药理活性通过热板试验评估。这些衍生物的肠通透性通过体外Ussing chamber方法估算。结果:我们获得了四种不同的DADLE衍生物,包括乙酰基-DADLE(DADLE-C2),丁酰基-DADLE(DADLE-C4),己酰基-DADLE(DADLE-C6)和辛基-DADLE(DADLE-C8)。 DADLE的所有衍生物至少具有天然DADLE活性的75%,这表明DADLE在C末端的化学修饰不会明显影响其药理活性。这些DADLE衍生物在空肠和结肠匀浆中比天然DADLE更稳定。在DADLE衍生物的表观渗透系数(Papp)和亲脂性之间观察到“钟形”轮廓。特别是,DADLE-C4在该实验中研究的酰基衍生物在整个肠膜上具有最大的渗透性。在嘌呤霉素,阿马他汀和甘草酸钠(NaGC)的存在下(浓度均为0.5 mM),DADLE-C4穿过空肠膜的通透性进一步提高。结论:我们建议将丁酸化学修饰与蛋白酶抑制剂的应用相结合,可有效改善DADLE在肠膜上的吸收。

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