Blood-brain barrier in vitro models as tools in drug discovery: assessment of the transport ranking of antihistaminic drugs

Pharmazie. 2012 May;67(5):432-9.

Abstract

In the course of our validation program testing blood-brain barrier (BBB) in vitro models for their usability as tools in drug discovery it was evaluated whether an established Transwell model based on porcine cell line PBMEC/C1-2 was able to differentiate between the transport properties of first and second generation antihistaminic drugs. First generation antihistamines can permeate the BBB and act in the central nervous system (CNS), whereas entry to the CNS of second generation antihistamines is restricted by efflux pumps such as P-glycoprotein (P-gP) located in brain endothelial cells. P-gP functionality of PBMEC/C1-2 cells grown on Transwell filter inserts was proven by transport studies with P-gP substrate rhodamine 123 and P-gP blocker verapamil. Subsequent drug transport studies with the first generation antihistamines promethazine, diphenhydramine and pheniramine and the second generation antihistamines astemizole, ceterizine, fexofenadine and loratadine were accomplished in single substance as well as in group studies. Results were normalised to diazepam, an internal standard for the transcellular transport route. Moreover, effects after addition of P-gP inhibitor verapamil were investigated. First generation antihistamine pheniramine permeated as fastest followed by diphenhydramine, diazepam, promethazine and second generation antihistaminic drugs ceterizine, fexofenadine, astemizole and loratadine reflecting the BBB in vivo permeability ranking well. Verapamil increased the transport rates of all second generation antihistamines, which suggested involvement of P-gP during their permeation across the BBB model. The ranking after addition of verapamil was significantly changed, only fexofenadine and ceterizine penetrated slower than internal standard diazepam in the presence of verapamil. In summary, permeability data showed that the BBB model based on porcine cell line PBMEC/C1-2 was able to reflect the BBB in vivo situation for the transport of antihistaminc drugs and to distinguish between first and second generation antihistamines.

MeSH terms

  • ATP Binding Cassette Transporter, Subfamily B, Member 1 / metabolism
  • Algorithms
  • Animals
  • Biological Transport, Active
  • Blood-Brain Barrier / drug effects*
  • Blood-Brain Barrier / physiology*
  • Cell Line
  • Chromatography, High Pressure Liquid
  • Drug Discovery*
  • Fluorescent Dyes
  • Histamine Antagonists / pharmacokinetics*
  • Microscopy, Fluorescence
  • Models, Biological
  • Permeability
  • Rats
  • Rhodamine 123

Substances

  • ATP Binding Cassette Transporter, Subfamily B, Member 1
  • Fluorescent Dyes
  • Histamine Antagonists
  • Rhodamine 123