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Bimatoprost, prostamide activity, and conventional drainage.

Publication ,  Journal Article
Wan, Z; Woodward, DF; Cornell, CL; Fliri, HG; Martos, JL; Pettit, SN; Wang, JW; Kharlamb, AB; Wheeler, LA; Garst, ME; Landsverk, KJ ...
Published in: Invest Ophthalmol Vis Sci
September 2007

PURPOSE: Despite structural similarity with prostaglandin F(2 alpha), the ocular hypotensive agent bimatoprost (Lumigan; Allergan, Inc., Irvine, CA) shows unique pharmacology in vitro and functional activity in vivo. Unfortunately, the precise mechanisms that underlie bimatoprost's distinctive impact on aqueous humor dynamics are unclear. The purpose of the present study was to investigate the effects of bimatoprost and a novel prostamide-selective antagonist AGN 211334 on human conventional drainage. METHODS: Two model systems were used to test the consequences of bimatoprost and/or AGN 211334 treatment on conventional drainage. Human anterior segments in organ culture were perfused at a constant flow rate of 2.5 microL/min while pressure was recorded continuously. After stable baseline facilities were established, segments were treated with drug(s), and pressure was monitored for an additional 3 days. In parallel, the drugs' effects on hydraulic conductivity of human trabecular meshwork (TM) cell monolayers were evaluated. Pharmacological properties of AGN 211334 were characterized in isolated feline iris preparations in organ culture and heterologously expressed G-protein-coupled receptors were examined in vitro. RESULTS: Bimatoprost increased outflow facility by an average of 40% +/- 10% within 48 hours of treatment (n = 10, P < 0.001). Preincubation or coincubation with AGN 211334 significantly blunted bimatoprost's effects by 95% or 43%, respectively. Similar results were obtained in cell culture experiments in which bimatoprost increased hydraulic conductivity of TM cell monolayers by 78% +/- 25%. Pretreatment with AGN 211334 completely blocked bimatoprost's effects, while coincubation decreased its effects on average by 74%. In both models, AGN 211334 alone significantly decreased fluid flux across trabecular tissues and cells. CONCLUSIONS: The findings indicate that bimatoprost interacts with a prostamide receptor in the trabecular meshwork to increase outflow facility.

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Published In

Invest Ophthalmol Vis Sci

DOI

ISSN

0146-0404

Publication Date

September 2007

Volume

48

Issue

9

Start / End Page

4107 / 4115

Location

United States

Related Subject Headings

  • Trabecular Meshwork
  • Recombinant Proteins
  • Receptors, Thromboxane
  • Oxazoles
  • Organ Culture Techniques
  • Ophthalmology & Optometry
  • Muscle, Smooth
  • Muscle Contraction
  • Middle Aged
  • Male
 

Citation

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Wan, Z., Woodward, D. F., Cornell, C. L., Fliri, H. G., Martos, J. L., Pettit, S. N., … Stamer, W. D. (2007). Bimatoprost, prostamide activity, and conventional drainage. Invest Ophthalmol Vis Sci, 48(9), 4107–4115. https://doi.org/10.1167/iovs.07-0080
Wan, Zhou, David F. Woodward, Clive L. Cornell, Hans G. Fliri, José L. Martos, Simon N. Pettit, Jenny W. Wang, et al. “Bimatoprost, prostamide activity, and conventional drainage.Invest Ophthalmol Vis Sci 48, no. 9 (September 2007): 4107–15. https://doi.org/10.1167/iovs.07-0080.
Wan Z, Woodward DF, Cornell CL, Fliri HG, Martos JL, Pettit SN, et al. Bimatoprost, prostamide activity, and conventional drainage. Invest Ophthalmol Vis Sci. 2007 Sep;48(9):4107–15.
Wan, Zhou, et al. “Bimatoprost, prostamide activity, and conventional drainage.Invest Ophthalmol Vis Sci, vol. 48, no. 9, Sept. 2007, pp. 4107–15. Pubmed, doi:10.1167/iovs.07-0080.
Wan Z, Woodward DF, Cornell CL, Fliri HG, Martos JL, Pettit SN, Wang JW, Kharlamb AB, Wheeler LA, Garst ME, Landsverk KJ, Struble CS, Stamer WD. Bimatoprost, prostamide activity, and conventional drainage. Invest Ophthalmol Vis Sci. 2007 Sep;48(9):4107–4115.

Published In

Invest Ophthalmol Vis Sci

DOI

ISSN

0146-0404

Publication Date

September 2007

Volume

48

Issue

9

Start / End Page

4107 / 4115

Location

United States

Related Subject Headings

  • Trabecular Meshwork
  • Recombinant Proteins
  • Receptors, Thromboxane
  • Oxazoles
  • Organ Culture Techniques
  • Ophthalmology & Optometry
  • Muscle, Smooth
  • Muscle Contraction
  • Middle Aged
  • Male