LYNTHERA CORP — Department of Health and Human Services SBIR Phase I: NEI

LYNTHERA CORP — SBIR Phase I award from Department of Health and Human Services.

Amount
$300,000
Agency
Department of Health and Human Services · National Institutes of Health
Program / Phase
SBIR · Phase I
Topic
NEI
Solicitation
PA20-260
NAICS
Place of performance
PA
Period
2021-05-01 → 2022-04-30

Description

PROJECT SUMMARY Sixteen million Americans are diagnosed with dry eye disease, with likely many more suffering from this issue. Prevalence is higher among women, increases with age, and is now also notable among those aged 18–34 years. It is characterized by a loss of homeostasis of the tear film and may be accompanied by persistent symptoms of irritation or burning that can cause inflammatory damage to the cornea and conjunctiva if untreated. Current eye-drop treatments that work by reducing the inflammation on the ocular service have several deficiencies that can be frustrating for patients. The immunomodulator, cyclosporine, is commonly prescribed in these eye drops using a variety of delivery vehicles including anionic emulsions, cationic nanoemulsions, or nanomicellar solutions. However, the impact of the vehicle to prolong corneal residence is still limited due to natural ocular defensive mechanisms. This is believed to be one reason that the common dry eye disease treatment by such eye drops do not have better or faster efficacy in clinical trials. The project team proposes to incorporate cyclosporine into a contact lens to better deliver the active ingredient and potentially with fewer side effects as the dosing is better controlled. It is known that drug delivery from a contact lens can result in several times higher bioavailability than eye drops due to the direct transfer of a drug to cornea across a thin tear layer. Using our dual layer contact lens platform and charged boundary layer technology we will resolve the deficiencies of current therapy by (1) Delivering cyclosporine at low concentration consistently for 8 hours/day using a drug eluting contact lens to allow a precise accumulation of cyclosporine on corneal surface, (2) Delivering cyclosporine loaded cationic nanocarriers from a novel drug eluting contact lens to improve the nanocarrier adhesion to cornea and conjunctiva surface and enhance cyclosporine penetration into the anterior chamber, (3) Conducting in vitro cell-based cytotoxicity studies of the nanocarriers and by means of an ex vivo porcine eye model measure cyclosporine corneal penetration efficacy of the drug eluting contact lens devices.PROJECT NARRATIVE In the United States, over 16 million individuals are diagnosed with dry eye disease and often with suboptimal outcomes because of poor adherence and limited effectiveness of prescribed topical eye drop medications. Dry eye disease can substantially affect vision and quality of life, as symptoms often interfere with daily activities, and prevalence rates range from 5% to 50%, but can be as high as 75% among adults over age 40, with women most often affected. We propose to develop a novel contact lens device for treatment of dry eye disease that can precisely transport anti-inflammation agents to the eye with the therapeutic agent(s) delivered even more effectively by incorporation of ocular penetrating nanocarriers.