2020
DOI: 10.1002/adhm.202000760
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Designer Descemet Membranes Containing PDLLA and Functionalized Gelatins as Corneal Endothelial Scaffold

Abstract: Corneal blindness is the fourth leading cause of visual impairment. Of specific interest is blindness due to a dysfunctional corneal endothelium which can only be treated by transplanting healthy tissue from a deceased donor. Unfortunately, corneal supply does not meet the demand with only one donor for every 70 patients. Therefore, there is a huge interest in tissue engineering of grafts consisting of an ultra‐thin scaffold seeded with cultured endothelial cells. The present research describes the fabrication… Show more

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Cited by 32 publications
(36 citation statements)
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“…Cells with an underdeveloped tight junction may have low ZO-1 level, and active and proliferative cell cycles (Y-CM). Similar results were observed with corneal endothelial cells cultured on the collagen-vitrigel membrane [24,25].…”
Section: Cell Culture On Collagen Filmsupporting
confidence: 87%
“…Cells with an underdeveloped tight junction may have low ZO-1 level, and active and proliferative cell cycles (Y-CM). Similar results were observed with corneal endothelial cells cultured on the collagen-vitrigel membrane [24,25].…”
Section: Cell Culture On Collagen Filmsupporting
confidence: 87%
“…The final scaffold was ultrathin (<1 µm) and very transparent and had semipermeable membranes and great biological potential. The cultured HCECs on this scaffold had a natural morphology and an acceptable proliferation rate (Van Hoorick et al, 2020).…”
Section: Corneal Endothelium Tissue Engineeringmentioning
confidence: 99%
“…The combination of these two biomaterials provides the ideal environment for cytocompatibility and cellular interaction exhibited by gelatin. In addition, PDLLA provides appropriate mechanical resistance for the graft tissue in corneal endothelial transplant [21]. v.…”
Section: Family Of Hydrogelsmentioning
confidence: 99%
“…(A) (B) The recent studies on Alg-based hydrogels primarily focused on improving the mechanical properties [58,88], manufacturing methods [89,90], payload of gels [21], and transport and release of hydrophilic and hydrophobic drugs [91,92] such as CNIs. These Alg-based PolyHy are good drug delivery systems for the brain, cancer, antibacterial activity, immunosuppressive therapies, etc.…”
Section: Advantages Of Polyhy In Controlled Drug Distributionmentioning
confidence: 99%