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Friday, March 21, 2025

四虎影院researchers develop eye drops that slow vision loss in animals

Treatment shows potential to slow the progression of human degenerative eye diseases, including retinitis pigmentosa.

3D image of a model PEDF protein Model of PEDF protein alongside the 17-mer and H105A peptides. Amino acid 105, which is changed from histidine in PEDF and the 17-mer peptide to alanine in the H105A peptide, is shown in green. Image credit: NEI. Alt tag: 3D image of a model PEDF protein.NEI

Researchers at the 四虎影院 (NIH) have developed eye drops that extend vision in animal models of a group of inherited diseases that lead to progressive vision loss in humans, known as retinitis pigmentosa. The eye drops contain a small fragment derived from a protein made by the body and found in the eye, known as pigment epithelium-derived factor (PEDF).聽 PEDF helps preserve cells in the eye鈥檚 retina. A report on the study is published in Communications Medicine.

鈥淲hile not a cure, this study shows that PEDF-based eye drops can slow progression of a variety of degenerative retinal diseases in animals, including various types of retinitis pigmentosa and dry age-related macular degeneration (AMD),鈥 said Patricia Becerra, Ph.D., chief of NIH鈥檚聽聽at the National Eye Institute and senior author of the study. 鈥淕iven these results, we鈥檙e excited to begin trials of these eye drops in people.鈥

All degenerative retinal diseases have cellular stress in common. While the source of the stress may vary鈥攄ozens of mutations and gene variants have been linked to retinitis pigmentosa, AMD, and other disorders鈥攈igh levels of cellular stress cause retinal cells to gradually lose function and die. Progressive loss of photoreceptor cells leads to vision loss and eventually blindness.

Previous research from Becerra鈥檚 lab revealed that, in a mouse model, the natural . However, the full PEDF protein is too large to pass through the outer eye tissues to reach the retina, and the complete protein has multiple functions in retinal tissue, making it impractical as a treatment. To optimize the molecule鈥檚 ability to preserve retinal cells and to help the molecule reach the back of the eye, Becerra developed a that supports cell viability. These small peptides can move through eye tissues to bind with PEDF receptor proteins on the surface of the retina.

In this new study, led by first author Alexandra Bernardo-Col贸n, Becerra鈥檚 team created two eye drop formulations, each containing a short peptide. The first peptide candidate, called 鈥17-mer,鈥 contains 17 amino acids found in the active region of PEDF. A second peptide, H105A, is similar but binds more strongly to the PEDF receptor. Peptides applied to mice as drops on the eye鈥檚 surface were found in high concentration in the retina within 60 minutes, slowly decreasing over the next 24 to 48 hours. Neither peptide caused toxicity or other side effects.

When administered once daily to young mice with retinitis pigmentosa-like disease, H105A slowed photoreceptor degeneration and vision loss. To test the drops, the investigators used specially bred mice that lose their photoreceptors shortly after birth. Once cell loss begins, the majority of photoreceptors die in a week. When given peptide eye drops through that one-week period, mice retained up to 75% of photoreceptors and continued to have strong retinal responses to light, while those given a placebo had few remaining photoreceptors and little functional vision at the end of the week.

鈥淔or the first time, we show that eye drops containing these short peptides can pass into the eye and have a therapeutic effect on the retina,鈥 said Bernardo-Col贸n. 鈥淎nimals given the H105A peptide have dramatically healthier-looking retinas, with no negative side effects.鈥

A variety of gene-specific therapies are under development for many types of retinitis pigmentosa, which generally start in childhood and progress over many years. These PEDF-derived peptide eye drops could play a crucial role in preserving cells while waiting for these gene therapies to become clinically available.

To test whether photoreceptors preserved through the eye drop treatment are healthy enough for gene therapy to work, collaborators Valeria Marigo, Ph.D. and Andrea Bighinati, Ph.D., University of Modena, Italy, treated mice with gene therapy at the end of the week-long eye drop regimen. The gene therapy successfully preserved vision for at least an additional six months. 聽

To see whether the eye drops could work in humans 鈥 without actually testing in humans directly 鈥 the researchers worked with Natalia Vergara, Ph.D., University of Colorado Anschutz, Aurora, to test the peptides in a human retinal tissue model of retinal degeneration. Grown in a dish from human cells, the retina-like tissues were exposed to chemicals that induced high levels of cellular stress. Without the peptides, the cells of the tissue model died quickly, but with the peptides, the retinal tissues remained viable. These human tissue data provide a key first step supporting human trials of the eye drops.

The research was funded by the NEI Intramural Research Program. Additional funding was provided by the Prevention of Blindness Society, Fondazione Telethon, HEAL-ITALIA Foundation, CellSight Development Fund, and Research to Prevent Blindness.

NEI leads the federal government鈥檚 research on the visual system and eye diseases. NEI supports basic and clinical science programs to develop sight-saving treatments and address special needs of people with vision loss. For more information, visit . 聽

About the 四虎影院 (NIH): NIH, the nation's medical research agency, includes 27 Institutes and Centers and is a component of the U.S. Department of Health and Human Services. 四虎影院is the primary federal agency conducting and supporting basic, clinical, and translational medical research, and is investigating the causes, treatments, and cures for both common and rare diseases. For more information about 四虎影院and its programs, visit www.nih.gov.

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References

Bernardo-Col贸n A, Bighinati A, Parween S, Debnath S, Piano I, Adani E, Corsi F, Gargini C, Vergara N, Marigo V, and Becerra SP. 鈥淗105A peptide eye drops promote photoreceptor survival in murine and human models of retinal degeneration.鈥 Mar 21, 2025, Comms Med.聽

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