Impact of keratocyte differentiation on corneal opacity resolution and visual function recovery in male rats

Author:

Riau Andri K.ORCID,Look ZhuojianORCID,Yam Gary H. F.,Boote Craig,Ma QianORCID,Han Evelina J. Y.,binte M. Yusoff Nur Zahirah,Ong Hon ShingORCID,Goh Tze-Wei,binte Halim Nuur Shahinda Humaira,Mehta Jodhbir S.ORCID

Abstract

AbstractIntrastromal cell therapy utilizing quiescent corneal stromal keratocytes (qCSKs) from human donor corneas emerges as a promising treatment for corneal opacities, aiming to overcome limitations of traditional surgeries by reducing procedural complexity and donor dependency. This investigation demonstrates the therapeutic efficacy of qCSKs in a male rat model of corneal stromal opacity, underscoring the significance of cell-delivery quality and keratocyte differentiation in mediating corneal opacity resolution and visual function recovery. Quiescent CSKs-treated rats display improvements in escape latency and efficiency compared to wounded, non-treated rats in a Morris water maze, demonstrating improved visual acuity, while stromal fibroblasts-treated rats do not. Advanced imaging, including multiphoton microscopy, small-angle X-ray scattering, and transmission electron microscopy, revealed that qCSK therapy replicates the native cornea’s collagen fibril morphometry, matrix order, and ultrastructural architecture. These findings, supported by the expression of keratan sulfate proteoglycans, validate qCSKs as a potential therapeutic solution for corneal opacities.

Funder

MOH | National Medical Research Council

Publisher

Springer Science and Business Media LLC

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