Specificity and biological activity of the protein deposited on the hydrogel surface. Relationship of polymer structure to biofilm formation.
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Summary
The in-situ lens-bound protein layer (LBPL) was characterized on hydrogels of varying water content and ionic-binding capacity and proved to be critically dependent on the ionic binding capacity of a given hydrogel.
- Type
- article
- Published
- 1987-05-01
- Cited by
- 138
- References
- 27
- OpenAlex
- https://openalex.org/W125955240
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:34350153
Keywords
Lysozyme, Chemistry, Self-healing hydrogels, Biocompatibility, Ionic strength
References
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- Adsorption of tear proteins on soft contact lenses.
- Biochemical and Surface Characteristics of Human Tear Proteins
- Non-lysozyme antibacterial factor in human tears.
- Immunological and electrophoretic studies of human tear proteins.
- Human tears inhibit the coating of proteins to solid phase surfaces.
- Conformational state of lacrimal proteins adsorbed on contact lenses.
- Vernal conjunctivitis and contact lens-associated giant papillary conjunctivitis compared and contrasted.
- A Rapid and Sensitive Assay of Muramidase.∗ †
- Recent development in the periodate method of conjugating horseradish peroxidase(HRPO) to antibodies.
- Bacterial keratitis associated with extended wear soft contact lenses.
- The retrograde transport method.
- The genesis of organic deposits on soft contact lenses.
Cited by
- Evaporative tear film and contact lens factors associated with dry eye symptoms in contact lens wearers
- A Review of Techniques to Measure Protein Sorption to Soft Contact Lenses
- Quantitation of total protein deposits on contact lenses by means of amino acid analysis.
- Human serum albumin adsorption on hydrogel contact lenses in vitro.
- Characterization of single network and interpenetrating network hydrogels of natural and synthetic polymers
- In vitro and ex vivo wettability of hydrogel contact lenses
- Analysis of glycoprotein deposits on disposable soft contact lenses.
- Lecithin treatment to prevent protein adsorption onto contact lenses
- Phospholipids in human tears, meibum and deposited onto contact lenses
- Selective binding of a 30-kilodalton protein to disposable hydrophilic contact lenses.
- The Effect of Denatured Lysozyme on Human Corneal Epithelial Cells.
- Impact of Manufacturing Technology and Material Composition on the Clinical Performance of Hydrogel Lenses
- Pseudomonas corneal ulcers associated with daily wear of disposable hydrogel contact lenses
- Characterization of the Surface of Conventional Hydrogel and Silicone Hydrogel Contact Lenses by Time-of-Flight Secondary Ion Mass Spectrometry
- Allergy and contact lenses.
- HYDROGELS FROM POLYACRYLIC ACID FOR REDUCTION OF BIOADHESION ON SILICONE CONTACT LENSES
- Mass spectrometry-based proteomic analyses of contact lens deposition
- Infant tear film collection and composition
- Effects of protein, mucin, and human tears on adherence of Pseudomonas aeruginosa to hydrophilic contact lenses
- Hydrogel lens monomer constituents modulate protein sorption.
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