首页 | 本学科首页   官方微博 | 高级检索  
     


Effects of Absorption Enhancers on Rat Nasal Epithelium in Vivo: Release of Marker Compounds in the Nasal Cavity
Authors:Marttin  Emmeline  Verhoef  J. Coos  Romeijn   Stefan G.  Merkus  Frans W. H. M.
Affiliation:(1) Division of Pharmaceutical Technology and Biopharmaceutics, Leiden/Amsterdam Center for Drug Research, Leiden University, Leiden, The Netherlands
Abstract:
Purpose. The assessment of the effects of nasal absorption enhancers on the rat nasal epithelium and membrane permeability in vivo after a single nasal dose of the enhancers.Methods. The release of marker compounds (protein, cholesterol and acid phosphatase) from the nasal epithelium was measured using a lavage technique. The nasal membrane permeability was determined after intravenous administration of a systemic tracer (FITC-albumin).Results. The effects of the absorption enhancers could be classified into four categories. The first consisted of HPbetaCD (5%), DMbetaCD (2%) and RAMEB (2%) and was not different from the control (physiological saline). For the second category, DMbetaCD (5%), effects were significantly higher than for the control. The third category, SGC (1%), was more active than DMbetaCD (5%) but less active than the last group. The fourth, most membrane damaging, category consisted of STDHF (1%), laureth-9 (1%) and LPC (1%). Administration of these three enhancers also resulted in release of acid phosphatase, indicating that severe membrane damage occurred. The release of cholesterol from nasal epithelium was largely dependent on the cholesterol solubilisation of the absorption enhancers. The amount of cholesterol released by laureth-9 and LPC was the largest.Conclusions. The results of this in vivo study are in agreement (i.e. similarity in rank order) with morphological and ciliotoxicity studies of nasal absorption enhancers, demonstrating that this invivo model is a valuable tool to classify nasal absorption enhancers according to their effects on the rat nasal epithelium.
Keywords:nasal absorption enhancers  cyclodextrins  bile salts  L-  /content/3eq6bue72g75enyk/xxlarge945.gif"   alt="  agr"   align="  BASELINE"   BORDER="  0"  >-lysophosphatidylcholine  laureth-9
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号