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1.
Regen Med ; 17(7): 461-475, 2022 07.
Article in English | MEDLINE | ID: mdl-35481361

ABSTRACT

The cornea is an anterior transparent tissue of the eye that enables the transmission of surrounding light to the back of the eye, which is essential for maintaining clear vision. Corneal endothelial diseases can lead to partial or total blindness; hence, surgical replacement of the diseased corneal tissue with a healthy cadaveric donor graft becomes necessary when the endothelium is damaged. Keratoplasties face a huge challenge due to a worldwide shortage in the supply of human donor corneas. Hence, alternative solutions such as cell or tissue engineering-based therapies have been investigated for reducing the global demand of donor corneas. This review aims at highlighting studies that have been successful at replacing partial or total endothelial keratoplasty.


The cornea is an important tissue, as it allows the transmission of surrounding light to the back of the eye. The posterior layer of the cornea is made up of hexagonal endothelial cells that help maintaining the required transparency. Corneal endothelial cells do not have a natural regenerative capacity; therefore, if damaged, they must be replaced by healthy donor tissue. It is difficult to obtain human donor corneas; hence, researchers have attempted to grow endothelial cells using specific drugs that allow these cells to grow in the lab. In this review, we highlight the application of lab-grown cells in animal and human studies with ongoing clinical trials of other drugs and techniques to replace the need of human donor tissues.


Subject(s)
Corneal Diseases , Corneal Transplantation , Cornea , Corneal Diseases/surgery , Endothelium, Corneal/transplantation , Humans , Tissue Donors
2.
Graefes Arch Clin Exp Ophthalmol ; 256(1): 155-161, 2018 Jan.
Article in English | MEDLINE | ID: mdl-29082447

ABSTRACT

PURPOSE: To study corneal innervation in eyes with history of herpetic keratitis and its correlation with corneal sensitivity and biomechanical properties. METHODS: A total of 56 eyes were included, of which 16 had a history of unilateral immune stromal herpetic keratitis, 16 were their contralateral eyes, and 20 were healthy controls. Structural analysis of corneal nerve plexus was performed by confocal microscopy. Biomechanical properties were measured with the Ocular Response Analyzer. Corneal sensitivity was assessed by contact (Cochet-Bonnet) and non-contact (Belmonte) esthesiometry. RESULTS: The eyes with a history of herpetic keratitis had reduced sensitivity for mechanical stimuli when compared to healthy eyes (1441.88 ± 83 ml/min vs. 67.9 ± 7.86 ml/min). Nerve fiber density in the corneas with a history of herpetic disease was lower (4.13 ± 2.19 U/image) than in the contralateral eyes (7.44 ± 2.9 U/image, p value = 0.01) and than in healthy controls (10.35 ± 2.01, p value < 0.0001). The best structural and functional correlation was established between the total length of nerves per section and mechanic threshold assessed by Belmonte esthesiometer (Coef. -0.58 p value < 0.0001) and between total length of nerves and corneal resistance factor (CRF) (Coef. -0.64, p value < 0.0001). CONCLUSIONS: The corneal sensitivity impairment in eyes with immune stromal herpetic keratitis can be explained by the loss of nerve fibers. Biomechanical corneal properties are affected as well. Corneal hysteresis (CH) and CRF are lower for the eyes with a history of herpetic keratitis, and also for the contralateral eye when compared to healthy controls.


Subject(s)
Corneal Stroma/physiopathology , Eye Infections, Viral/physiopathology , Hypesthesia/physiopathology , Keratitis, Herpetic/physiopathology , Ophthalmic Nerve/physiopathology , Sensation/physiology , Acute Disease , Adult , Biomechanical Phenomena , Cell Count , Chronic Disease , Corneal Stroma/innervation , Corneal Stroma/virology , Eye Infections, Viral/complications , Eye Infections, Viral/immunology , Female , Humans , Hypesthesia/etiology , Keratitis, Herpetic/complications , Keratitis, Herpetic/immunology , Male , Microscopy, Confocal , Middle Aged , Nerve Fibers/pathology , Ophthalmic Nerve/diagnostic imaging , Prospective Studies
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