Uchiyama T, Kotani A, Kishida T, Tatsumi H, Okamoto A, Fujita T, Murakami M, Muranishi S, Yamamoto A
Department of Biopharmaceutics, Kyoto Pharmaceutical University, Japan.
J Pharm Sci. 1998 Apr;87(4):448-52. doi: 10.1021/js970357+.
The effects of various protease inhibitors on the stability of leucine enkephalin (Leu-Enk) and [D-Ala2,D-Leu5] enkephalin (DADLE) were investigated, and the permeability of these peptides was also examined in an in vitro Ussing chamber. Captopril, thiorphan, bacitracin, bestatin, puromycin, amastatin, and sodium glycocholate (Na-GC) were chosen as protease inhibitors. Regional differences in the stability of Leu-Enk and DADLE were observed, and the rank order of the stability of these peptides was colon > duodenum > ileum > jejunum. Na-GC, amastatin, and puromycin were effective protease inhibitors for improving the stability of these peptides, although captopril and thiorphan did not improve the stability of Leu-Enk. In the transport studies, Leu-Enk did not cross the intestinal membrane in the absence of protease inhibitors, but its transport was improved in the presence of Na-GC. In addition, Na-GC, amastatin, and puromycin improved the permeability of DADLE in both jejunum and colon, while the permeability of DADLE was not improved by the addition of captopril, thiorphan, and bestatin. Furthermore, the permeability of 6-carboxyfluorescein, a poorly absorbable and stable compound, was also improved in the presence of Na-GC and bacitracin at a concentration of 10 mM. These findings indicated that amastatin, puromycin, and Na-GC at a concentration of 0.5 mM might increase the permeability of DADLE due to the improved stability of DADLE in the donor site. However, Na-GC and bacitracin at a concentration of 10 mM had absorption-enhancing activities which might be also related to the enhanced permeability of DADLE across the intestinal membrane.
研究了各种蛋白酶抑制剂对亮氨酸脑啡肽(Leu-Enk)和[D-Ala2,D-Leu5]脑啡肽(DADLE)稳定性的影响,并在体外Ussing室中检测了这些肽的通透性。选择卡托普利、硫醇苯丙氨酸、杆菌肽、贝司他汀、嘌呤霉素、氨肽酶抑制剂和甘氨胆酸钠(Na-GC)作为蛋白酶抑制剂。观察到Leu-Enk和DADLE稳定性的区域差异,这些肽稳定性的顺序为结肠>十二指肠>回肠>空肠。Na-GC、氨肽酶抑制剂和嘌呤霉素是提高这些肽稳定性的有效蛋白酶抑制剂,尽管卡托普利和硫醇苯丙氨酸不能提高Leu-Enk的稳定性。在转运研究中,在没有蛋白酶抑制剂的情况下,Leu-Enk不能穿过肠膜,但在有Na-GC存在时其转运得到改善。此外,Na-GC、氨肽酶抑制剂和嘌呤霉素提高了DADLE在空肠和结肠中的通透性,而加入卡托普利、硫醇苯丙氨酸和贝司他汀并没有提高DADLE的通透性。此外,在浓度为10 mM的Na-GC和杆菌肽存在下,吸收性差且稳定的化合物6-羧基荧光素的通透性也得到了提高。这些发现表明,浓度为0.5 mM的氨肽酶抑制剂、嘌呤霉素和Na-GC可能由于DADLE在供体部位稳定性的提高而增加其通透性。然而,浓度为10 mM的Na-GC和杆菌肽具有吸收增强活性,这也可能与DADLE跨肠膜通透性的增强有关。