Okamoto Hirokazu, Danjo Kazumi
Faculty of Pharmacy, Meijo University, Nagoya, Japan.
Yakugaku Zasshi. 2007 Apr;127(4):643-53. doi: 10.1248/yakushi.127.643.
The pulmonary route has recently attracted attention as a noninvasive administration route for peptide and protein drugs, and an insulin powder for inhalation was approved by authorities in Europe and the USA. The present study examined usefulness of insulin and gene powders for systemic and local inhalation therapy. We prepared several dry insulin powders by spray drying to examine the effect of additives on insulin absorption. Citric acid appears to be a safe and potent absorption enhancer for insulin in dry powder. However, in the powder with citric acid (MIC0.2 SD) insulin was unstable compared with the other powders examined. To improve insulin stability, a combination of insulin powder and citric acid powder was prepared (MIC Mix). MIC Mix showed hypoglycemic activity comparable to MIC0.2 SD while the insulin stability was much better than that of MIC SD. Next, dry insulin powders with mannitol were prepared with supercritical carbon dioxide (SCF); the powder thus prepared reduced blood glucose level rapidly and was more effective than that prepared by spray drying. Chitosan-pDNA complex powders as a pulmonary gene delivery system were also prepared with SCF and their in vivo activity was evaluated. The addition of chitosan suppressed the degradation of pCMV-Luc during preparation and increased the storage stability. The luciferase activity in mouse lung was evaluated after pulmonary administration of the powders. The chitosan-pDNA powder with an N/P ratio=5 increased the luciferase activity to 27 times that of the pCMV-Luc solution. These results suggest that gene powder with chitosan is a useful pulmonary gene delivery system.
肺部给药途径最近作为肽类和蛋白质药物的一种非侵入性给药途径受到关注,一种吸入用胰岛素粉末已获欧美当局批准。本研究考察了胰岛素和基因粉末用于全身和局部吸入治疗的有效性。我们通过喷雾干燥制备了几种干燥胰岛素粉末,以研究添加剂对胰岛素吸收的影响。柠檬酸似乎是干粉中胰岛素的一种安全且有效的吸收增强剂。然而,与所考察的其他粉末相比,含柠檬酸的粉末(MIC0.2 SD)中的胰岛素不稳定。为提高胰岛素稳定性,制备了胰岛素粉末与柠檬酸粉末的混合物(MIC Mix)。MIC Mix显示出与MIC0.2 SD相当的降血糖活性,而胰岛素稳定性比MIC SD好得多。接下来,用超临界二氧化碳(SCF)制备了含甘露醇的干燥胰岛素粉末;如此制备的粉末能迅速降低血糖水平,且比喷雾干燥制备的粉末更有效。还采用SCF制备了作为肺部基因递送系统的壳聚糖-pDNA复合粉末,并评估了其体内活性。壳聚糖的添加抑制了制备过程中pCMV-Luc的降解并提高了储存稳定性。在肺部给药粉末后评估了小鼠肺中的荧光素酶活性。N/P比 = 5的壳聚糖-pDNA粉末使荧光素酶活性提高到pCMV-Luc溶液的27倍。这些结果表明含壳聚糖的基因粉末是一种有用的肺部基因递送系统。