Related Experiment Video
Updated: Aug 18, 2026

Combination of Microstereolithography and Electrospinning to Produce Membranes Equipped with Niches for Corneal Regeneration
Published on: September 12, 2014
Concise reviews: can mesenchymal stromal cells differentiate into corneal cells? A systematic review of published
Damien G Harkin1, Leanne Foyn, Laura J Bray
1School of Biomedical Sciences; Institute of Health & Biomedical Innovation, Queensland University of Technology, Brisbane, Australia; Queensland Eye Institute, South Brisbane, Australia.
Abstract:
The majority of stem cell therapies for corneal repair are based upon the use of progenitor cells isolated from corneal tissue, but a growing body of literature suggests a role for mesenchymal stromal cells (MSC) isolated from noncorneal tissues. While the mechanism of MSC action seems likely to involve their immuno-modulatory properties, claims have emerged of MSC transdifferentiation into corneal cells. Substantial differences in methodology and experimental outcomes, however, have prompted us to perform a systematic review of the published data. Key questions used in our analysis included: the choice of markers used to assess corneal cell phenotype, the techniques used to detect these markers, adequate reporting of controls, and tracking of MSC when studied in vivo. Our search of the literature revealed 28 papers published since 2006, with half appearing since 2012. MSC cultures established from bone marrow and adipose tissue have been best studied (22 papers). Critically, only 11 studies used appropriate markers of corneal cell phenotype, along with necessary controls. Ten out of these eleven papers, however, contained positive evidence of corneal cell marker expression by MSC. The clearest evidence is observed with respect to expression of markers for corneal stromal cells by MSC. In comparison, the evidence for MSC conversion into either corneal epithelial cells or corneal endothelial cells is often inconsistent or inconclusive. Our analysis clarifies this emerging body of literature and provides guidance for future studies of MSC differentiation within the cornea as well as other tissues.
Insights
Mesenchymal stromal cells (MSC) show potential for corneal repair, with some studies indicating differentiation into corneal stromal cells. However, evidence for epithelial or endothelial cell conversion remains inconclusive, necessitating further research.
Area of Science:
- Ophthalmology
- Regenerative Medicine
- Cell Biology
Background:
- Corneal repair traditionally uses corneal progenitor cells.
- Mesenchymal stromal cells (MSC) from non-corneal tissues are increasingly explored for corneal regeneration.
- Potential mechanisms include immunomodulation and transdifferentiation, but evidence is debated.
Purpose of the Study:
- To systematically review and analyze published data on MSC differentiation into corneal cells.
- To evaluate the methodologies, markers, controls, and in vivo tracking in existing studies.
- To clarify the evidence for MSC transdifferentiation and guide future research.
Main Methods:
- Systematic literature review of 28 papers published since 2006.
- Analysis focused on marker selection, detection techniques, control reporting, and in vivo tracking.
- Included MSC from bone marrow and adipose tissue as the most studied sources.
Main Results:
- Only 11 of 28 studies met criteria for appropriate corneal cell phenotype markers and controls.
- Ten of these 11 studies reported positive evidence of corneal cell marker expression by MSC.
- Strongest evidence supports MSC expression of corneal stromal cell markers; evidence for epithelial/endothelial conversion is inconsistent.
Conclusions:
- MSC show promise for corneal repair, particularly exhibiting corneal stromal cell markers.
- The evidence for MSC transdifferentiation into corneal epithelial or endothelial cells is currently inconclusive.
- Standardized methodologies and rigorous controls are crucial for future studies on MSC differentiation in the cornea.
More Related Videos
10:07Efficient and Scalable Directed Differentiation of Clinically Compatible Corneal Limbal Epithelial Stem Cells from Human Pluripotent Stem Cells
Published on: October 24, 2018
10:11Author Spotlight: Standardizing Limbal Niche Cell (LNC) Isolation and Characterization to Support Widespread LNC Research
Published on: October 27, 2023
Related Concept Videos
Mesenchymal Stem Cells
iPS Cell Differentiation