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Potential use of tight junction modulators to reversibly open membranous barriers and improve drug delivery

期刊

BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES
卷 1788, 期 4, 页码 892-910

出版社

ELSEVIER
DOI: 10.1016/j.bbamem.2008.09.016

关键词

Absorption enhancer; Adherens junction; Blood-brain barrier; Drug delivery; Epithelial cell; Gastrointestinal barrier; Nasal drug delivery; Paracellular transport; Peptide; Permeability enhancer; Tight junction; Tight junction modulator

资金

  1. National Office for Research and Technology [RET 08/2004]
  2. Hungarian Ministry of Health [ETT 589/2006]

向作者/读者索取更多资源

The epithelial and endothelial barriers of the human body are major obstacles for drug delivery to the systemic circulation and to organs with unique environment and homeostasis, like the central nervous system. Several transport routes exist in these barriers, which potentially can be exploited for enhancing drug permeability. Beside the transcellular pathways via transporters, adsorptive and receptor-mediated transcytosis, the paracellular flux for cells and molecules is very limited. While lipophilic molecules can diffuse across the cellular plasma membranes, the junctional complexes restrict or completely block the free passage of hydrophilic molecules through the paracellular clefts. Absorption or permeability enhancers developed in the last 40 years for modifying intercellular junctions and paracellular permeability have unspecific mode of action and the effective and toxic doses are very close. Recent advances in barrier research led to the discovery of an increasing number of integral membrane, adaptor, regulator and signalling proteins in tight and adherens junctions. New tight junction modulators are under development, which can directly target tight OF adherens junction proteins, the signalling pathways regulating junctional function, or tight junction associated lipid raft microdomains. Modulators acting directly on tight junctions include peptides derived from zonula occludens toxin, or Clostridium perfringens enterotoxin, peptides selected by phage display that bind to integral membrane tight junction proteins, and lipid modulators. They can reversibly increase paracellular transport and drug delivery with less toxicity than previous absorption enhancers, and have a potential to be used as pharmaceutical excipients to improve drug delivery across epithelial barriers and the blood-brain barrier. (C) 2008 Elsevier B.V. All rights reserved.

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