Related Experiment Video
Updated: Aug 9, 2026

Bead Based Multiplex Assay for Analysis of Tear Cytokine Profiles
Published on: October 13, 2017
Fibronectin in the tear film
M Fukuda1, R J Fullard, M D Willcox
1Cooperative Research Centre for Eye Research and Technology, University of New South Wales, Sydney, Australia.
Insights
Fibronectin levels in human tears vary significantly. Closed-eye and reflex tears show higher fibronectin concentrations, suggesting plasma origin and leakage from conjunctival blood vessels.
Area of Science:
- Ophthalmology
- Biochemistry
- Tear Film Research
Background:
- Fibronectin is crucial for corneal healing.
- Previous studies detected fibronectin in human tear film.
Purpose of the Study:
- To measure and compare fibronectin concentrations in open-eye, closed-eye, and reflex tear fluid.
- To investigate the origin of fibronectin in tear film by analyzing its concentration alongside total protein and albumin.
Main Methods:
- Collected open-eye, closed-eye, and reflex tears from 11 noncontact lens wearers.
- Used enzyme-linked immunosorbent assays (ELISA) for fibronectin and albumin, and bicinchoninic acid assays for total protein.
- Analyzed fibronectin molecular mass under reducing conditions.
Main Results:
- Significantly higher fibronectin concentration in closed-eye tears (4127 ± 3222 µg/ml) compared to open-eye tears (19 ± 24 µg/ml).
- Fibronectin concentration increased significantly in reflex tears after 100 µl collection and transiently after stimulus cessation.
- Albumin levels mirrored fibronectin patterns; conjunctival vessel dilation noted post-reflex tearing.
Conclusions:
- Fibronectin in tear fluid originates from plasma.
- Elevated fibronectin in closed-eye and reflex tears results from plasma leakage via dilated conjunctival blood vessels.
Purpose:
Fibronectin plays an important role in corneal healing and has been detected previously in the tear film. To investigate the levels of fibronectin in normal human tears, the authors measured and compared fibronectin concentration in open-eye, closed-eye, and reflex tear fluid. The origin of fibronectin in the tear film was investigated by comparing fibronectin concentration in sequentially collected reflex tear samples with the concentrations of total protein and albumin in the same samples.
Methods:
Open-eye and closed-eye tears were collected from 11 noncontact lens wearers. From 7 subjects, 20 uninterrupted reflex tear samples (10 microliters each) subsequently were collected, using the sneeze reflex method of stimulation, followed by an additional 10 nonstimulated tear samples (3 microliters each) immediately after cessation of stimulus. Enzyme-linked immunosorbent assays were used to determine fibronectin and albumin concentrations, and bicinchoninic acid protein assays were used to determine total protein concentration in each sample.
Results:
Fibronectin concentration in open-eye tears (19 +/- 24 eta g/ml, range 3 to 78 eta g/ml) was significantly different (P = 0.004) from that in closed-eyes tears (4127 +/- 3222 eta g/ml, range 1177 to 11384 eta g/ml). In the first 50 microliters of reflex tears, fibronectin concentrations were low (10 +/- 23 eta g/ml), but they increased significantly (P = 0.028) after 100 microliters of reflex tears had been collected (220 +/- 126 eta g/ml). There was a further marked transient increase (767 +/- 946 eta g/ml) after cessation of stimulus. Total protein concentration in the same samples decreased significantly during reflex tear collection compared to open-eye tears, and it increased gradually after cessation of stimulus. Albumin concentration in the same samples, analyzed for two subjects only, showed a pattern similar to that for fibronectin. Dilation of conjunctival blood vessels was noted in all subjects after reflex tear collection. Administration of a topical vasoconstrictor in two subjects eliminated the increase in fibronectin concentration during reflex tearing but did not affect total protein concentration. Under reducing conditions, the molecular mass of fibronectin in open-eye and reflex tears was 240 kDa, identical to commercially available purified plasma fibronectin, whereas fibronectin in closed-eye tears was degraded into small molecular mass fragments.
Conclusions:
These findings suggest that fibronectin in tear fluid is derived from plasma and that the increase in concentration in closed-eye and reflex tear fluid is caused by leakage from dilated conjunctival blood vessels.
Related Concept Videos
Structural Protein Function
Collagen, the most abundant protein in mammals, is found throughout the body. In connective tissue, such as skin, ligaments, and tendons, it provides tensile strength and elasticity. In bones and teeth, it mineralizes to form...
Fibril-associated Collagen
For example, the type II collagen fibrils in cartilage have covalently bound type IX fibril-associated collagens at regular intervals. Other types of fibril-associated collagens are...
Fibronectins Connect Cells with ECM
Both proteoglycans and collagen are attached to fibronectin proteins, which, in turn, are attached to integrin proteins. These integrin proteins interact with transmembrane...
Intracellular Signaling Affects Focal Adhesions
Some...
Cell-matrix's Response to Mechanical Forces
Anchoring junctions mechanically attach a cell to the...
Microbiome of the Eye

