Shen Z, Zhang Q, Wei S, Nagai T
Department of Pharmaceutics, Beijing Medical University, Beijing, People's Republic of China.
Int J Pharm. 1999 Dec 10;192(2):115-21. doi: 10.1016/s0378-5173(99)00295-1.
In vitro biodegradation of insulin in lung cytosol and subcellular pellets of normal and diabetic rats was investigated. Rat lung was homogenized and subcellular fractions were isolated by ultracentrifugation. Degradations of [125I]-insulin after incubation with lung cytosol or subcellular pellets was determined using the trichloroacetic acid method. The results show that insulin is highly degraded in cytosol and subcellular pellets. Cytosolic insulin degradation was strongly inhibited by bacitracin or sodium cholate. The degradation of insulin in the lung cytosol from diabetic rats was significantly less than from normal rat. The lung protease activity reached a maximum at pH 7.4. Enzyme inhibitors like bacitracin and sodium cholate noticeably enhanced the relative pharmacological bioavailability of insulin when given intratracheally with insulin to normal rats. Acidic insulin solutions (pH 3.0) had more pronounced hypoglycaemic effects than neutrol solution (pH 7.0). These in vitro and in vivo results suggest that the proteolytic enzymes in the lung limit pulmonary delivery of insulin. The coadministration of protease inhibitors would be a useful approach for improving the pulmonary absorption of insulin.
研究了正常和糖尿病大鼠肺胞质溶胶及亚细胞沉淀中胰岛素的体外生物降解情况。将大鼠肺匀浆,通过超速离心分离亚细胞组分。采用三氯乙酸法测定[125I] -胰岛素与肺胞质溶胶或亚细胞沉淀孵育后的降解情况。结果表明,胰岛素在胞质溶胶和亚细胞沉淀中高度降解。杆菌肽或胆酸钠强烈抑制胞质溶胶中胰岛素的降解。糖尿病大鼠肺胞质溶胶中胰岛素的降解明显少于正常大鼠。肺蛋白酶活性在pH 7.4时达到最大值。当与胰岛素一起气管内给予正常大鼠时,杆菌肽和胆酸钠等酶抑制剂显著提高了胰岛素的相对药理生物利用度。酸性胰岛素溶液(pH 3.0)比中性溶液(pH 7.0)具有更明显的降血糖作用。这些体外和体内结果表明,肺中的蛋白水解酶限制了胰岛素的肺部递送。蛋白酶抑制剂的共同给药将是改善胰岛素肺部吸收的一种有用方法。