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Published on: November 22, 2024
Monocyte development inhibitor PRM-151 decreases corneal myofibroblast generation in rabbits
Abstract:
This study investigated whether PRM-151 (Promedior, Inc., Malvern, PA), a recombinant form of human pentraxin-2 (PTX-2, also referred to as serum amyloid P, hSAP), that inhibits differentiation of circulating monocytes into fibrocytes and profibrotic macrophages, could modulate generation of myofibroblasts after opacity-producing corneal injury in rabbits, and, therefore, have potential to reduce or prevent haze after PRK. Nine diopter PRK for myopia was performed with the VISX S4 IR laser. Four groups of 6 animals were treated in masked fashion: Group 1: 30 microl of topical PRM-151 (20 mg/ml) 6 times a day for 5 days; Group 2: 30 microl topical vehicle 6 times a day for 5 days; Group 3: 200 microl sub-conjunctival PRM-151 (total injection of 4 mg) immediately after surgery and every other day until day 8; Group 4: 200 microl sub-conjunctival injections of vehicle according to the same schedule as group 3. At one month after PRK, the animals were euthanized and immunohistochemistry was performed for the myofibroblast marker α-smooth muscle actin (SMA). The density of SMA+ cells/400× field in the central stroma was determined in each cornea. Myofibroblast density at one month after surgery was significantly lower (p = 0.006) after sub-conjunctival PRM-151 treatment (5.8 ± 2.8 cells/400× stromal field) compared to sub-conjunctival vehicle treatment (15.3 ± 2.9 cells/400× stromal field). There was no significant (p = 0.27) decrease in stromal myofibroblasts triggered by topical PRM-151 treatment (11.8 ± 6.6 cells/400× stromal field) compared to the topical vehicle treatment (14.2.8 ± 6.2 cells/400× stromal field). PRM-151 inhibits myofibroblast generation when administered by sub-conjunctival injection, but not when administered topically, after opacity-producing corneal injury. This study provides additional confirmation that bone marrow-derived cells contribute to corneal myofibroblast generation.
Insights
Subconjunctival injection of PRM-151 significantly reduced myofibroblast generation after corneal injury in rabbits, suggesting potential for preventing post-PRK haze. Topical PRM-151 did not show significant effects on myofibroblast density.
Area of Science:
- Ophthalmology
- Regenerative Medicine
- Immunology
Background:
- Corneal haze after photorefractive keratectomy (PRK) can be caused by myofibroblast generation.
- PRM-151, a pentraxin-2 (PTX-2) therapeutic, inhibits monocyte differentiation into fibrocytes and profibrotic macrophages.
Discussion:
- This study evaluated PRM-151's efficacy in modulating myofibroblast generation post-corneal injury in a rabbit model.
- Subconjunctival administration of PRM-151 significantly reduced α-smooth muscle actin (SMA)-positive myofibroblasts compared to vehicle control.
Key Insights:
- Subconjunctival PRM-151 treatment markedly decreased corneal myofibroblast density (p = 0.006) one month after PRK.
- Topical PRM-151 treatment did not significantly reduce stromal myofibroblast counts compared to topical vehicle.
Outlook:
- Subconjunctival PRM-151 demonstrates potential as a therapeutic agent to prevent corneal haze following PRK.
- Further research may explore optimizing PRM-151 delivery for enhanced corneal therapeutic outcomes.

