Improved nasal absorption of drugs using poly-L-arginine: effects of concentration and molecular weight of poly-L-arginine on the nasal absorption of fluorescein isothiocyanate-dextran in rats

被引:54
作者
Miyamoto, M
Natsume, H
Iwata, S
Ohtake, K
Yamaguchi, M
Kobayashi, D
Sugibayashi, K
Yamashina, M
Morimoto, Y
机构
[1] Nissan Chem Ind Co Ltd, Analyt Div, Chiba, Japan
[2] Josai Univ, Fac Pharmaceut Sci, Sakado, Saitama 3500295, Japan
[3] Prefectural Kakizaki Hosp, Niigata, Japan
关键词
poly-L-arginine; absorption enhancer; fluorescein isothiocyanate-labeled dextran; nasal delivery; molecular weight;
D O I
10.1016/S0939-6411(01)00149-7
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The effects of the concentration and molecular weight of poly-L-arginine (poly-L-Arg) on the in vivo nasal absorption of fluorscein isothiocyanate-labeled dextran (MW, 4 kDa, FD-4) in rats were studied. When poly-L-Arg with a range of different molecular weights (MW, 8.9, 45.5 and 92.0 kDa) was applied intranasally at various concentrations, the bioavailability (F0-9h) of FD-4 increased with the increasing concentration of poly-L-Arg. The enhanced absorption was also dependent on the molar concentration, in that the poly-L-Arg with a higher molecular weight increased F0-9 h at a lower molar concentration. In addition, for each applied concentration, the poly-l-Arg exhibited a molecular weight-dependence as far as the enhancement of FD-4 absorption was concerned. On the other hand, the maximum absorption rate (MAR) of FD-4, calculated by means of a deconvolution method, tended to reach a maximum plateau level at a lower applied concentration for the poly-L-Arg with the highest molecular weight, but this plateau level was almost the same for poly-L-Arg with molecular weights of 45.5 and 92.0 kDa. Moreover, the simulated absorption profiles of FD-4 indicate that the degree of enhancement (the level of MAR and the subsequent reduction in the absorption rate) was dependent on the molecular weight of poly-L-Arg. while the effect of poly-L-Arg was maintained for a longer period, depending on the applied concentration, although the MAR was relatively similar. These results indicate that the molecular weight of poly-L-Arg appears to affect both the enhancing efficiency (absorption rate) and the time-frame of this enhancing effect. whereas the concentrations of each poly-L-Arg system applied only have an effect on the time-frame. These effects may also be associated with the charge density of a poly-L-Arg molecule. (C) 2001 Elsevier Science B.V, All rights reserved.
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页码:21 / 30
页数:10
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