Aura Biosciences to Present Two Year Phase 1b/2 Clinical Data for AU-011 at the Association for Research in Vision and Ophthalmology (ARVO) 2019 Annual Meeting

CAMBRIDGE, MA – April 22, 2019 – Aura Biosciences, a leader in the development of novel targeted therapies in ocular oncology, today announced that two year clinical data from its ongoing Phase 1b/2 clinical trial evaluating the safety and efficacy of light-activated AU-011, the Company’s lead product candidate for the primary treatment of primary choroidal melanoma, will be highlighted in a poster presentation at the Association for Research in Vision and Ophthalmology (ARVO) 2019 Annual Meeting being held April 28-May 2, 2019, in Vancouver, British Columbia. 

Poster presentation details are as follows:   

Title: Two Year Results of a Phase 1/2 Open-Label Clinical Trial of AU-011 for the Treatment of Small to Medium Choroidal Melanoma

Poster Number: B0197

Poster Presenter: Tara McCannel, M.D., Ph.D, Director of the Ophthalmic Oncology Center, Jules Stein Eye Institute, UCLA School of Medicine

Session: Clinical Melanoma – Therapy and Complications

Date and time: Sunday, April 28, 2019; 1:00-2:45pm PT

Location: Vancouver Convention Centre, Western Exhibition Hall 

About Choroidal Melanoma 

Choroidal melanoma is a rare and aggressive type of eye cancer. Choroidal melanoma is the most common primary intraocular tumor in adults and develops in the uveal tract of the eye. No targeted therapies are available at present, and current radiotherapy treatments can be associated with severe visual loss and other long-term sequelae such as dry eye, glaucoma, cataracts and radiation retinopathy. The most common current treatment is plaque radiotherapy, which involves surgical placement of a radiation device on the exterior of the eye over the tumor. The alternative is enucleation, or total surgical removal of the eye. Choroidal melanoma metastasizes in approximately 50 percent of cases with liver involvement in 80-90% of cases and, unfortunately, metastatic disease is universally fatal (source: OMF). There is a very high unmet need for a new vision sparing targeted therapy that could enable early treatment intervention for this life-threatening rare disease given the lack of approved therapies, and the comorbidities of radioactive treatment options. 

About Light-Activated AU-011 

AU-011 is a first-in-class targeted therapy in development for the primary treatment of choroidal melanoma. The therapy consists of proprietary viral-like particle bioconjugates (VPB) that are activated with an ophthalmic laser. The VPBs bind selectively to unique receptors on cancer cells in the eye and are derived from technology originally pioneered by Dr. John Schiller of the Center for Cancer Research at the National Cancer Institute (NCI), recipient of the 2017 Lasker-DeBakey Award. Upon activation with an ophthalmic laser, the drug rapidly and specifically disrupts the cell membrane of tumor cells while sparing key eye structures, which may allow for the potential of preserving patients’ vision and reducing other long-term complications of radiation treatment. AU-011 can be delivered using equipment commonly found in an ophthalmologist’s office and does not require a surgical procedure, pointing to a potentially less invasive, more convenient therapy for patients and physicians. AU-011 for the treatment of choroidal melanoma has been granted orphan drug and fast track designations by the U.S. Food and Drug Administration and is currently in clinical development. 

About Aura Biosciences 

Aura Biosciences is developing a new class of therapies to selectively target and destroy cancer cells. Its lead program, AU-011 in primary choroidal melanoma, is being developed under a CRADA with the National Cancer Institute (NCI), part of the National Institutes of Health. For more information, visit www.aurabiosciences.com 

Contacts: 

Media:

David Rosen

Argot Partners

212.600.1902 | david.rosen@argotpartners.com 

Investors:

Joseph Rayne

Argot Partners

617.340.6075 | joseph@argotpartners.com

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