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Updated: Aug 21, 2026

Mucin Agarose Gel Electrophoresis: Western Blotting for High-molecular-weight Glycoproteins
Published on: June 14, 2016
Normal but not altered mucins activate neutrophils
Marie-Laure Rachel Aknin1, Monica Berry, Andrew David Dick
1Department of Clinical Sciences, Ophthalmology, Bristol Eye Hospital, University of Bristol, BS1 2LX, Bristol, UK. ml.aknin@bristol.ac.uk
Abstract:
Interactions between leucocytes and their surroundings are mediated through oligosaccharide epitopes, some of which are also expressed on ocular mucins. Neutrophils represent the majority of immune cells in the proinflammatory environment of the ocular surface during sleep. We have tested whether changes in mucin glycosylation, as occur in dry eyes, influence the phenotype and activation of neutrophils. Peripheral blood leucocytes were circulated over equal concentration mats of ocular surface mucins purified from normal volunteers and dry-eye patients, and in sequence over normal and pathological mucins in all combinations. Non-adherent cells were tagged with monoclonal fluorescent antibodies to leucocyte determinants and analysed by flow cytometry. Oxidative burst, assessed with dihydrorhodamine, was followed in cells and supernatant. At a speed similar to that of leucocyte traffic in the retina, normal mucins caused a decrease in neutrophil cathepsin G fluorescence, a decrease that was not observed with mucins from patients with Meibomian gland disease or Sjogren syndrome. No effect was detected at a higher flow. Supernatant and cells collected after circulation over normal mucin showed increased rhodamine fluorescence, indicative of oxidative burst. Fluorescence could also be observed in intact cells adherent to dry-eye mucins. Non-adherent cells could be activated with phorbol 12-myristate 13-acetate after flow over any mucin or combination of mucins. Differences in neutrophil activation after exposure to normal and pathological mucins highlight reciprocal influences at the interface between local and systemic immunity.
Insights
Changes in ocular mucins, common in dry eye disease, alter neutrophil activation. Normal mucins promote neutrophil oxidative burst, while dry eye mucins do not, suggesting immune interplay at the ocular surface.
Area of Science:
- Ocular immunology
- Cellular immunology
- Glycobiology
Background:
- Leukocyte interactions with their environment are mediated by oligosaccharide epitopes found on ocular mucins.
- Neutrophils are the primary immune cells in the inflamed ocular surface environment during sleep.
- Dry eye disease is associated with changes in mucin glycosylation.
Purpose of the Study:
- To investigate how alterations in mucin glycosylation, as seen in dry eye, affect neutrophil phenotype and activation.
- To explore the reciprocal influences between the ocular surface environment and systemic immunity.
Main Methods:
- Peripheral blood leukocytes were flowed over ocular surface mucins from normal and dry eye patients.
- Cells were analyzed using flow cytometry with fluorescent antibodies.
- Oxidative burst was assessed using dihydrorhodamine.
Main Results:
- Normal mucins decreased neutrophil cathepsin G fluorescence at physiological flow rates, an effect not seen with dry eye mucins.
- Normal mucins induced an oxidative burst in neutrophils.
- Dry eye mucins showed fluorescence in adherent intact cells, indicating altered neutrophil interaction.
Conclusions:
- Differences in neutrophil activation by normal versus pathological mucins highlight immune system interplay.
- Ocular mucin glycosylation plays a role in modulating neutrophil responses.
- These findings suggest a link between local ocular immunity and systemic immune regulation.
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