Corneal Membrane Permeability

Corneal membrane permeability is the ability of substances to cross the layered cornea, a key property governing ocular drug absorption and protection of the eye. The epithelium, stroma, and endothelium create distinct barriers: tight epithelial junctions restrict movement between cells, while the lipid-rich epithelium favors some lipophilic molecules and the hydrated stroma permits diffusion of more hydrophilic compounds. Permeability depends on molecular size, charge, solubility, and concentration, as well as transport through or between cells. In clinical research, measuring these properties helps predict corneal penetration, optimize topical formulations, and improve treatment of anterior eye diseases while limiting systemic exposure.

Corneal Membrane Permeability - Related Videos

Research

JoVE EoE - Immune Response

A Permeable Membrane Insert-Based Infection System to Study the Impact of Bacterial Toxins

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2025

This video demonstrates a permeable membrane insert-based infection system to assess the impact of secreted bacterial toxins. By eliminating direct contact between the bacterial pathogen and the host cells using a permeable membrane, this technique allows for studying the effect of toxins secreted by pathogenic bacteria on mammalian host cells.

Extracting Host Cell Lysate from Infected Host Cells Cultured in a Permeable Membrane System

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2025

This video demonstrates a permeable membrane insert system to investigate the impact of bacterial toxins on host cells in a controlled and isolated manner. This approach allows for the selective exposure of the cells to the toxins while maintaining a physical separation that mimics the natural host-pathogen interaction.

Microperfusion Technique to Investigate Regulation of Microvessel Permeability in Rat Mesentery

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Cited by 3 •

2015

The modified Landis technique enables paired measurement of the hydraulic conductivity of individual microvessels in the mesentery of normal and genetically modified rats under control and test conditions using microperfusion techniques. It provides a convenient method to evaluate mechanisms that regulate microvessel permeability and transvascular exchange under physiological conditions.

In Vitro and In Vivo Models to Study Corneal Endothelial-mesenchymal Transition

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Cited by 7 •

2016

A primary culture of bovine corneal endothelial cells was used to investigate the mechanism of corneal endothelial-mesenchymal transition. Furthermore, a rat corneal endothelium cryoinjury model was used to demonstrate corneal endothelial-mesenchymal transition in vivo.

Research

JoVE Journal - Immunology and Infection
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Implementation of a Permeable Membrane Insert-based Infection System to Study the Effects of Secreted Bacterial Toxins on Mammalian Host Cells

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Cited by 4 •

2016

Here, a method using a permeable membrane insert-based infection system to study the effects of Streptolysin S, a secreted toxin produced by Group A Streptococcus, on keratinocytes is described. This system can be readily applied to the study of other secreted bacterial proteins on various host cell types during infection.

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